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2012年9月17日 星期一

Indoor Environmental Quality (IEQ) Problems And Opportunities


In reality, the perfect office doesn't exist today. Evidence that it doesn't, if any is needed, comes from a survey of members of the International Facilities Management Association (IFMA). IFMA asked more than 7,000 facility managers at U.S. corporations to rank the complaints they received most often. At the top of the list, according to the 2,400 respondents, were indoor environmental quality concerns. The biggest complaint was being too hot; number two was being too cold.

Employees responding to another survey reported difficulty doing their work because of poor indoor environmental quality. Those employees specified a number of factors as "stressors." Again, being too hot or too cold were among the top complaints. In fact, all of the top five stressors related to indoor environmental quality (IEQ):

1. Lack of air movement

2. Being too hot in summer

3. Stagnant air

4. Cigarette smoke

5. Being too cold in winter

IEQ is a broader term than IAQ - indoor air quality. IAQ deals specifically with the condition of the air within the building's occupied spaces. IEQ addresses the overall condition of the indoor space. Elements of IEQ include indoor temperature, ergonomics, noise and lighting, as well as the quality of the indoor air.

While there's no distinct line between IAQ and IEQ, what is clear is that the HVAC system has a substantial impact on both areas. What's also clear is that evaluating the HVAC system in light of the broader IEQ concerns can bring important benefits, including improved occupant comfort, reduced complaints and enhanced employee performance.

HVAC and IAQ

IAQ, of course, is a familiar topic for facility executives. It's also an area that's easy to overlook until a problem arises. Often, it is an accumulation of factors that cause the problem. Smoke, odors, dust and high occupancy in an area with too little ventilation all can decrease comfort and affect employee productivity. The U.S. Environmental Protection Agency (EPA) ranks indoor air as one of the top five environmental threats to human health. According to the World Health Organization, 30 percent of commercial buildings show signs of Sick Building Syndrome, including headaches, nausea, irritated nasal passages, itchy eyes and skin irritations.

Most code authorities recognize standards for ventilation air qualities established under ASHRAE Standard, which is based on the maximum possible number of occupants in the building. What complicates the matter is that, in the case of outside air, more is not necessarily better. The problem is how to avoid wasting energy by unnecessarily overventilating a building. Among the solutions are the methods used to control the ventilation, such as time-based ventilation, demand-based ventilation, carbon dioxide sensors and mixed gas sensors.

Controlling humidity

Humidity plays an important role in indoor environmental quality. If it gets too low, it causes respiratory problems, particularly for people with allergies, sinus problems or asthma. If it gets too high, more places become breeding grounds for microbial growth.

ASHRAE standards suggest relative humidity levels should be maintained between 30 percent and 60 percent. That means at times humidity needs to be added to the air and at other times it must be removed.

High relative humidity can have an impact on absenteeism and increases the potential for respiratory illnesses among workers. When relative humidity exceeds recommended levels, humans are adversely affected. Our sinuses are affected when humidity is too low and our skin dries out. Too high humidity causes different bacteria to propagate in mechanical systems.

There's another advantage to controlling humidity directly. The building owner can reduce energy bills in the heating season by reducing the temperature that would otherwise have been maintained and increasing the relative humidity within healthy ranges. The opposite can be done in the summer. Raising the temperature above what would otherwise have been maintained and lowering the humidity allows the body to evaporate moisture off the skin to stay cool.

While humidity and airborne contaminants are traditionally considered in IAQ analyses, other important IEQ factors may not be. Consider air movement. So many people look at IAQ from a system level and they tend to overlook what's happening in the occupied space. ASHRAE spells out rules for selecting a diffuser based on an air diffusion performance index (ADPI). An ADPI of 80 or higher assures adequate air movement.

Temperature is another issue that isn't always included in discussions of IAQ. One rationale for excluding temperature is that IAQ should be limited to health and safety issues.

Unfortunately, that distinction doesn't matter to building occupants who are complaining about their space. Rightly or wrongly, complaints about temperature are often attributed to poor indoor air quality. What's more, it can be difficult to separate health issues from ones tied to comfort.

Equally important is that employees who are uncomfortably hot or cold are likely to be less productive than they would otherwise be. That's one more reason facility executives are better off taking the IEQ approach to analyzing interior space.

Gains from good IEQ

A report for the National Energy Management Institute states that even in healthy buildings, a 1.5 percent productivity gain is possible when IEQ measures are instituted. In fact, the 1.5 percent gain is the conservative estimate; the report says that gains may be as high as 10 percent.

Productivity gains are not the only benefits from improving indoor environmental quality. Good IEQ also is good business.

To the building owner, good IEQ is a very clear plus. When you have good thermal comfort and good acoustic comfort, it differentiates your building from your competition. You can market your building as a clean and comfortable environment in which to work.

Analyzing IEQ

There are four basic steps to take. First, listen to your occupants and understand what they are saying about the building's indoor environmental quality. The second is walk through the building checking for those things and take specific measurements for those problems. The third step is to go back to the source - the HVAC system, for example - and take measurements there, making sure the equipment is doing what it is designed to do. The fourth step is to document any revised design or maintenance procedures that are taken to correct the problem. You also want to incorporate an occupant response mechanism for feedback to make sure you have corrected the problem.

Before making HVAC improvements, facilities executives need to conduct an economic analysis. Often, this analysis is based on utilities costs and savings. But, payback periods for HVAC improvements are much shorter when all major cost elements are added to the analysis. Such factors as building operating costs, salary costs and current productivity losses that could be regained shorten the payback period for proposed improvements.

Indoor environmental quality can be improved in nearly every building. And a number of steps can improve quality without costing much. In fact, many steps are just good facilities management.

You need to do proper maintenance of the building. Set up a checklist on a periodic basis and keep a log of all maintenance of your HVAC system. Do carbon monoxide monitoring for ventilation and make sure all controls are operating properly.

Facility managers and their staff need to fully understand how the HVAC and other systems in their buildings were intended to work and keep them operating in that manner. When major remodeling occurs or changes in space occupancy or usage, the ventilation and thermal requirements of the space need to be reviewed. When replacing equipment, the facility's staff needs to be involved in the selection, location and installation of the new equipment. This can help assure that the equipment will meet their needs and that they understand how it is to be operated and maintained. Building managers should also demand that the systems and equipment selected meet the currently established standards-of-care in that industry.

There are many solutions to indoor environmental quality problems, but it's not wise to wait for the crisis. Facility executives are better off looking now, before they have a problem. Chances are they'll find a number of IEQ issues that need to be addressed that can be handled at next to no cost. Half the issues that arise involve simple things your inhouse staff can do, like changing filters, cleaning drain pans, using high efficiency vacuums in housekeeping and so on. When you wait for the complaints, you are in a reactive mode trying to find a Band-Aid when you could have a more serious situation. If you consider IEQ now, you can take a more holistic approach and prevent your building from experiencing many IEQ problems.

Given all things on the facility agenda, it can be tough to find time to tackle a problem that no one is complaining about. But being proactive can pay off. One direct benefit is that, over the long term, a preventive approach will save time, perhaps a significant amount of time. There's another plus: Facility executives who can show senior managers that their actions have increased employee satisfaction or productivity are positioning themselves as problem-solvers and are demonstrating that the buildings they manage are assets, not costs.




Julian Arhire is a Manager with DtiCorp.com - DtiCorp.com carries more than 35,000 HVAC products, including industrial, commercial and residential parts and equipment from Honeywell, Johnson Contols, Robertshaw, Jandy, Grundfos, Armstrong and more.





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2012年9月5日 星期三

Server Room Monitoring of Environmental Conditions Reduces the Risk of Cataclysmic Failure


Whatever line of business an organization is in environmental monitoring of the server room and IT equipment is an absolute must to ensure business continuity. Environmental conditions that cause the breakdown of a network can cost an organization large amounts of lost revenue and impaired business performance. Businesses rely more and more on their IT and communications infrastructure making any loss of data or network downtime catastrophic for them. Providing conditions that are as stable as possible helps to ensure continuity and reliability.

Effective monitoring of some key conditions, temperature, humidity and water leakage, together with an alerting system will enable the IT department to keep networks operational, avoid intermittent problems and hopefully steer clear of the major failures that can occur if environmental conditions deteriorate undetected.

Temperature monitoring in computer rooms and server rooms

Racks and servers tend to operate more efficiently when they're cool. Running at temperatures too high can cause network downtime or can create a situation where there is intermittent unreliability of equipment. Although all servers come with internal cooling fans these will not be sufficient to keep the temperature down in data centers and rack rooms. Modern computers, servers and routers create a huge amount of heat.

Air conditioning units are necessary to maintain temperatures at a level where equipment can work efficiently. Temperature sensors should be positioned at various locations throughout the data room to ensure that there aren't problem areas or hotspots, for instance, behind equipment. Combined with an effective alerting system the temperature sensors will notify the necessary staff if temperatures vary outside a set range.

Humidity sensors within server and IT rooms

Humidity within an IT environment can be incredibly damaging. If humidity is too low then static can build up and static discharge becomes a major issue. Alternatively high humidity can lead to the formation of condensation which can cause electrical failures and corrosion. Maintaining both temperature and humidity within satisfactory confines is crucial to business continuity.

Water leak detection within server rooms

In the process of cooling the air in the room, air conditioning units collect water and therefore have the potential to create water leaks or spills. It's a good idea to have these kept well away from the servers and to have water leak detectors nearby.

To ensure reliability and efficiency of data centers, environmental conditions must be monitored. The installation of independent monitoring equipment for temperature, humidity and water leaks coupled with efficient alerting facilities will significantly reduce the risk of IT failure. Failing to install such a system can lead to catastrophic breakdowns with huge losses in business productivity.




http://www.jacarta.com provide environmental monitoring solutions for data rooms, IT rooms and racks. Download our free white paper on monitoring temperature and humidity at http://www.jacarta.com





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2012年8月28日 星期二

Wireless Humidity and Temperature Sensor: 5 Common Uses for Environmental Sensors


1. Temperature and Humidity: You can monitor critical temperatures continuously and in real time with a system that wirelessly monitors the temperature of equipment (cold or hot) anywhere in your building such as: kitchens, laboratories, pharmacies, nursing and medical stations as well as off-site facilities. The system can page, e-mail and visually alert any computer screen the moment food, lab samples, pharmaceuticals or other temperature sensitive items are outside the prescribed parameters. Wireless humidity and temperature sensors allow flexibility, reduce wiring cost and transmit data up to 100 feet without the use of a repeater. The unit is battery powered using two AA batteries and it uses a 418 MHz transmitter so you can change the location of the sensors without worrying about extra labor costs.

2. Barometric pressure: The wireless sensor system also provides Web-based monitoring humidity, and barometric pressure in critical HVAC and refrigeration applications. The compact wireless "end devices" mount on the wall in clean rooms, laboratories, museums, computer server rooms, warehouses, and any remote facility. You can select one end device to serve as an internal or external sensor, in order to monitor temperature and humidity both inside and outside a climate-controlled facility. Another bonus is that these devices are designed for harsh environments such as outdoor weather, HVAC ducts, freezers and refrigerators.

3. Water Detection Sensors: These detection sensors have a remote monitoring system which uses an 802.11 Wi-Fi network of water leak detection in pipelines, agricultural fields, server rooms and more and is available with various other applications.

4. CO2 Sensors: With these sensors you can monitor the CO2 levels continuously and in real time. It is a system that uses your existing Wi-Fi network and is ideal for indoor air quality, HVAC management, environmental surveillance, greenhouses, and incubators. You will receive a page, e-mail and visual alert on any computer screen whenever your measurements are outside the prescribed parameters, making your home and/or workplace safer.

5. PH Sensors: This sensor is ideal for storage applications where continuous pH monitoring is required such as: health care, food storage and inside a laboratory. As with the CO2 sensors, you will receive a page, e-mail and visually alert on any computer screen whenever your measurements are outside the prescribed parameters.

Just some of the various reasons to install them, environmental sensors are easy to add to your life, take up little space, and work effectively to make your work easier, safer and more effective.




To learn more about environmental sensors and creating a healthy home environment, go to: Creating a Healthy Home.





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2012年7月20日 星期五

Environmental Chambers: Designed for Product Testing


Environmental chambers are large reactors and are usually made of glass or polytetrafluoroethylene (PTFE) film, in which gas phase chemical reactions are carried out to simulate changes occurring in the atmosphere. Natural sunlight or artificial ultraviolet lighting can be used to initiate the chemistry.

Environmental chambers are made of convenient wireless systems complete with finely calibrated sensor caps, logger caps and complaint software. They are designed for product testing at various temperatures, from extreme cold to extreme hot.

They can also measure humidity, vibration, highly accelerated stress screening, life test or any combination of these. These are used to test the effects of specified environmental conditions on biological items, industrial products, materials and electronic devices and components.

The chambers can be used for:

• As a standalone test for environmental effects of test specimens.

• As preparation of test specimens for further physical test or chemical tests.

• As environmental conditions for conducting testing of specimens.

Environmental test chambers artificially replicate the conditions under which the machinery, materials, devices or components might be exposed. These can include the conditions which might not be expected like: extreme temperatures, sudden and extreme temperatures variations, moisture or relative humidity, electro-dynamic vibrations, rain weathering and others.

Chambers can be small rooms used both to condition test specimens and to conduct the test. They can be smaller units that are used for conditioning test items. There are some test chambers which are small enough to be placed onto a universal testing machine or other test apparatus.

Environmental chambers vary widely in size, they can be small unites designed for placement on bench tops to large walk in chambers. With the wide difference in size, a number of user control options are available, including simple analog indicators up to digital readouts with LCD displays.

Environmental may be computer programmable, and networked or web-enabled test chambers are also available.




I am holding a degree of post graduate. I love to write articles on various topics.This article is on environmental chambers which specially designed for product testing in pharmaceutical companies.





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2012年6月21日 星期四

Art Exhibitions - Environmental Concerns for Different Types of Exhibitions


An art exhibition is typically thought to include the work of artists and artisans presenting their drawings, paintings, and sculpting to an audience in a viewing gallery. Architecture is used and integrated into an exhibit when the structure is built for a specific art show space.

Whether an art exhibit is showing the present work of one individual artist or a travelling group featuring a thirty year retrospective of computer animation using mixed media, the exhibition environment is controlled in order to preserve the art objects through time without adding to the normal degradation process.

The materials used by an artist in an art exhibition determine the necessary environmental controls. Normally art objects are best kept cool in the mid to low fifty degree level. Materials such as vellum and parchment are especially susceptible to changing humidity levels. Inks and pigments which are water soluble also require humidity control as well as transfer protection using impermeable barrier casing.

De-humidification and air conditioning are used together to maintain consistent levels of moisture and temperature. More sophisticated exhibition space will use zone control sensors that will adjust a specific area while maintaining overall temperature and humidity control. Light intensity and UV radiation are especially destructive to paper, pigments, and ink. Light is necessary to properly observe and appreciate art but they need to be in low light or total darkness when not being viewed. UV filters are helpful but give a false sense of security as they only block less than ten percent of UV radiation.

Art objects corrode when they come in contact with materials which are off gassing. That new car smell is an example of off gassing. Pollution absorbers like silica and activated carbon are essential tools when seeking to stop corrosion of art objects from the effects of off gassing.

An exposure log is helpful in assessing art work for show. Knowing the exposure level of a piece can determine its future life. If a piece is at a critical point a facsimile may be substituted in its place.

Art exhibition has no limits. The fruits of human creativity will continue to be shown to appreciative audiences. As each new media is used in the creation of art we will find ways of controlling the environment and preserving our creations.




For more information on art exhibtions, visit one of the many different art portals that can be found on the internet. Many of these contain databases with current listings of ongoing art exhibtions.





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2012年5月19日 星期六

Wireless Humidity and Temperature Sensor: 5 Common Uses for Environmental Sensors


1. Temperature and Humidity: You can monitor critical temperatures continuously and in real time with a system that wirelessly monitors the temperature of equipment (cold or hot) anywhere in your building such as: kitchens, laboratories, pharmacies, nursing and medical stations as well as off-site facilities. The system can page, e-mail and visually alert any computer screen the moment food, lab samples, pharmaceuticals or other temperature sensitive items are outside the prescribed parameters. Wireless humidity and temperature sensors allow flexibility, reduce wiring cost and transmit data up to 100 feet without the use of a repeater. The unit is battery powered using two AA batteries and it uses a 418 MHz transmitter so you can change the location of the sensors without worrying about extra labor costs.

2. Barometric pressure: The wireless sensor system also provides Web-based monitoring humidity, and barometric pressure in critical HVAC and refrigeration applications. The compact wireless "end devices" mount on the wall in clean rooms, laboratories, museums, computer server rooms, warehouses, and any remote facility. You can select one end device to serve as an internal or external sensor, in order to monitor temperature and humidity both inside and outside a climate-controlled facility. Another bonus is that these devices are designed for harsh environments such as outdoor weather, HVAC ducts, freezers and refrigerators.

3. Water Detection Sensors: These detection sensors have a remote monitoring system which uses an 802.11 Wi-Fi network of water leak detection in pipelines, agricultural fields, server rooms and more and is available with various other applications.

4. CO2 Sensors: With these sensors you can monitor the CO2 levels continuously and in real time. It is a system that uses your existing Wi-Fi network and is ideal for indoor air quality, HVAC management, environmental surveillance, greenhouses, and incubators. You will receive a page, e-mail and visual alert on any computer screen whenever your measurements are outside the prescribed parameters, making your home and/or workplace safer.

5. PH Sensors: This sensor is ideal for storage applications where continuous pH monitoring is required such as: health care, food storage and inside a laboratory. As with the CO2 sensors, you will receive a page, e-mail and visually alert on any computer screen whenever your measurements are outside the prescribed parameters.

Just some of the various reasons to install them, environmental sensors are easy to add to your life, take up little space, and work effectively to make your work easier, safer and more effective.




To learn more about environmental sensors and creating a healthy home environment, go to: Creating a Healthy Home.





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2012年1月31日 星期二

Importance of Environmental Process Monitoring


Environmental process monitoring is conducted by some federal government and state agencies in order to identify any environmental stress, evaluate the effectiveness of programs and policies, and understand natural ecological processes and patterns. Environmental process monitoring is usually conducted on water, air, and soil samples. Animals and plants are tested, as well. This process is crucial in guiding future conservation and management plans.

A lot of businesses and companies rely on the environment's consistency within their facilities. Any change in the environment can have an effect on them, and may even bring about destruction and damage. Hence, they avail of security products that can alert their monitoring centers in case of an environmental change. This includes change in temperature, water leakage, inappropriate humidity, and power failure.

These products are necessary to provide total protection. They should, however, be compatible with the security systems available. Environmental process monitoring is essential to keep the business or company secured. A monitoring center should contact the business or company at once in case an environmental shift is detected. This is so the environmental shift can be minimized, and property damage would be lessened.

Environmental sensors should be availed by commercial kitchens and restaurants, and other industries that make use of large industrial freezers and refrigerators. These sensors should also be used in data centers in which electronics and servers are kept in temperature specific housings. Moreover, they should be used in hospitals, clinics, and offices in which prescription drugs need to be stored. The sensors may also be used in warehouses and buildings in which moisture and temperature sensitive products are kept.

The overall loss of a business or company would be reduced if environmental process monitoring is implied. Aside from detecting environmental shift, a record of humidity, temperature, and other essential factors should be kept. An electronic record is actually more preferable than a manual record. It is more accurate and easier to update. Keeping a record is necessary in order for the critical elements to be inspected and routinely monitored.

The samples collected during this process are typically analyzed in laboratories using instrumentations such as spectrophotometers, elemental analyzers, and gas chromatographs. Surveys are also conducted by determining and counting how many species are there in a certain area. Then again, even though monitoring natural resources is helpful and useful, the laboratory and field analyses involved can be extremely costly. Several monitoring projects also yield too much data, making it impossible for them to be analyzed immediately.




Are you looking for more information regarding Environmental process monitoring? Visit http://www.unisearch-associates.com today!





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2012年1月12日 星期四

Server Room Environmental Monitoring


Server room environmental monitoring is an often overlooked but important part of facilities management. If your building hosts a data center, installing a proper server room temperature monitoring system can dramatically increase your energy efficiency. There are now high tech IT sensors available that can accurately monitor the room temperature. The data from the server system can be integrated with the data center's air handler controls through the building's IT network.

Maintaining proper temperature and humidity control is essential to the functioning of any computer room or data center. High temperatures or humidity levels can shorten the life cycle of expensive equipment and can cause downtime or even failure of critical network systems. A temperature monitoring system can help you to reduce your energy costs as well as avoid emergency repairs.

Server Room Temperature Monitoring

Most data center cooling systems use direct-expansion refrigeration cooling coils or air handlers with chilled water cooling coils. These systems generally monitor the temperature using return air temperature sensors to adjust the air temperature supplied to the sever room. This is not the most effective method for monitoring because of the location of the sensors. A more accurate method of temperature monitoring would be to use front-panel, inlet temperature sensor data.

How to Best Monitor Server Room Temperature

Computer servers can now take data provided from your server cooling environmental monitoring system and send it to your facility management system. The facilities management system can then determine operating set points for the data center cooling system. This can help to greatly reduce your energy consumption.




Hill York is the only MSCA Green Star Certified mechanical contractor recognized by USGBC in Florida that offers Server Room Environmental Monitoring and other Facility management systems. We provide full-service air conditioning and energy solutions including Energy Management, Design/Build. For more visit http://www.hillyork.com





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2011年12月18日 星期日

Server Room Monitoring of Environmental Conditions Reduces the Risk of Cataclysmic Failure


Whatever line of business an organization is in environmental monitoring of the server room and IT equipment is an absolute must to ensure business continuity. Environmental conditions that cause the breakdown of a network can cost an organization large amounts of lost revenue and impaired business performance. Businesses rely more and more on their IT and communications infrastructure making any loss of data or network downtime catastrophic for them. Providing conditions that are as stable as possible helps to ensure continuity and reliability.

Effective monitoring of some key conditions, temperature, humidity and water leakage, together with an alerting system will enable the IT department to keep networks operational, avoid intermittent problems and hopefully steer clear of the major failures that can occur if environmental conditions deteriorate undetected.

Temperature monitoring in computer rooms and server rooms

Racks and servers tend to operate more efficiently when they're cool. Running at temperatures too high can cause network downtime or can create a situation where there is intermittent unreliability of equipment. Although all servers come with internal cooling fans these will not be sufficient to keep the temperature down in data centers and rack rooms. Modern computers, servers and routers create a huge amount of heat.

Air conditioning units are necessary to maintain temperatures at a level where equipment can work efficiently. Temperature sensors should be positioned at various locations throughout the data room to ensure that there aren't problem areas or hotspots, for instance, behind equipment. Combined with an effective alerting system the temperature sensors will notify the necessary staff if temperatures vary outside a set range.

Humidity sensors within server and IT rooms

Humidity within an IT environment can be incredibly damaging. If humidity is too low then static can build up and static discharge becomes a major issue. Alternatively high humidity can lead to the formation of condensation which can cause electrical failures and corrosion. Maintaining both temperature and humidity within satisfactory confines is crucial to business continuity.

Water leak detection within server rooms

In the process of cooling the air in the room, air conditioning units collect water and therefore have the potential to create water leaks or spills. It's a good idea to have these kept well away from the servers and to have water leak detectors nearby.

To ensure reliability and efficiency of data centers, environmental conditions must be monitored. The installation of independent monitoring equipment for temperature, humidity and water leaks coupled with efficient alerting facilities will significantly reduce the risk of IT failure. Failing to install such a system can lead to catastrophic breakdowns with huge losses in business productivity.




http://www.jacarta.com provide environmental monitoring solutions for data rooms, IT rooms and racks. Download our free white paper on monitoring temperature and humidity at http://www.jacarta.com





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2011年12月16日 星期五

Indoor Environmental Quality (IEQ) Problems And Opportunities


In reality, the perfect office doesn't exist today. Evidence that it doesn't, if any is needed, comes from a survey of members of the International Facilities Management Association (IFMA). IFMA asked more than 7,000 facility managers at U.S. corporations to rank the complaints they received most often. At the top of the list, according to the 2,400 respondents, were indoor environmental quality concerns. The biggest complaint was being too hot; number two was being too cold.

Employees responding to another survey reported difficulty doing their work because of poor indoor environmental quality. Those employees specified a number of factors as "stressors." Again, being too hot or too cold were among the top complaints. In fact, all of the top five stressors related to indoor environmental quality (IEQ):

1. Lack of air movement

2. Being too hot in summer

3. Stagnant air

4. Cigarette smoke

5. Being too cold in winter

IEQ is a broader term than IAQ - indoor air quality. IAQ deals specifically with the condition of the air within the building's occupied spaces. IEQ addresses the overall condition of the indoor space. Elements of IEQ include indoor temperature, ergonomics, noise and lighting, as well as the quality of the indoor air.

While there's no distinct line between IAQ and IEQ, what is clear is that the HVAC system has a substantial impact on both areas. What's also clear is that evaluating the HVAC system in light of the broader IEQ concerns can bring important benefits, including improved occupant comfort, reduced complaints and enhanced employee performance.

HVAC and IAQ

IAQ, of course, is a familiar topic for facility executives. It's also an area that's easy to overlook until a problem arises. Often, it is an accumulation of factors that cause the problem. Smoke, odors, dust and high occupancy in an area with too little ventilation all can decrease comfort and affect employee productivity. The U.S. Environmental Protection Agency (EPA) ranks indoor air as one of the top five environmental threats to human health. According to the World Health Organization, 30 percent of commercial buildings show signs of Sick Building Syndrome, including headaches, nausea, irritated nasal passages, itchy eyes and skin irritations.

Most code authorities recognize standards for ventilation air qualities established under ASHRAE Standard, which is based on the maximum possible number of occupants in the building. What complicates the matter is that, in the case of outside air, more is not necessarily better. The problem is how to avoid wasting energy by unnecessarily overventilating a building. Among the solutions are the methods used to control the ventilation, such as time-based ventilation, demand-based ventilation, carbon dioxide sensors and mixed gas sensors.

Controlling humidity

Humidity plays an important role in indoor environmental quality. If it gets too low, it causes respiratory problems, particularly for people with allergies, sinus problems or asthma. If it gets too high, more places become breeding grounds for microbial growth.

ASHRAE standards suggest relative humidity levels should be maintained between 30 percent and 60 percent. That means at times humidity needs to be added to the air and at other times it must be removed.

High relative humidity can have an impact on absenteeism and increases the potential for respiratory illnesses among workers. When relative humidity exceeds recommended levels, humans are adversely affected. Our sinuses are affected when humidity is too low and our skin dries out. Too high humidity causes different bacteria to propagate in mechanical systems.

There's another advantage to controlling humidity directly. The building owner can reduce energy bills in the heating season by reducing the temperature that would otherwise have been maintained and increasing the relative humidity within healthy ranges. The opposite can be done in the summer. Raising the temperature above what would otherwise have been maintained and lowering the humidity allows the body to evaporate moisture off the skin to stay cool.

While humidity and airborne contaminants are traditionally considered in IAQ analyses, other important IEQ factors may not be. Consider air movement. So many people look at IAQ from a system level and they tend to overlook what's happening in the occupied space. ASHRAE spells out rules for selecting a diffuser based on an air diffusion performance index (ADPI). An ADPI of 80 or higher assures adequate air movement.

Temperature is another issue that isn't always included in discussions of IAQ. One rationale for excluding temperature is that IAQ should be limited to health and safety issues.

Unfortunately, that distinction doesn't matter to building occupants who are complaining about their space. Rightly or wrongly, complaints about temperature are often attributed to poor indoor air quality. What's more, it can be difficult to separate health issues from ones tied to comfort.

Equally important is that employees who are uncomfortably hot or cold are likely to be less productive than they would otherwise be. That's one more reason facility executives are better off taking the IEQ approach to analyzing interior space.

Gains from good IEQ

A report for the National Energy Management Institute states that even in healthy buildings, a 1.5 percent productivity gain is possible when IEQ measures are instituted. In fact, the 1.5 percent gain is the conservative estimate; the report says that gains may be as high as 10 percent.

Productivity gains are not the only benefits from improving indoor environmental quality. Good IEQ also is good business.

To the building owner, good IEQ is a very clear plus. When you have good thermal comfort and good acoustic comfort, it differentiates your building from your competition. You can market your building as a clean and comfortable environment in which to work.

Analyzing IEQ

There are four basic steps to take. First, listen to your occupants and understand what they are saying about the building's indoor environmental quality. The second is walk through the building checking for those things and take specific measurements for those problems. The third step is to go back to the source - the HVAC system, for example - and take measurements there, making sure the equipment is doing what it is designed to do. The fourth step is to document any revised design or maintenance procedures that are taken to correct the problem. You also want to incorporate an occupant response mechanism for feedback to make sure you have corrected the problem.

Before making HVAC improvements, facilities executives need to conduct an economic analysis. Often, this analysis is based on utilities costs and savings. But, payback periods for HVAC improvements are much shorter when all major cost elements are added to the analysis. Such factors as building operating costs, salary costs and current productivity losses that could be regained shorten the payback period for proposed improvements.

Indoor environmental quality can be improved in nearly every building. And a number of steps can improve quality without costing much. In fact, many steps are just good facilities management.

You need to do proper maintenance of the building. Set up a checklist on a periodic basis and keep a log of all maintenance of your HVAC system. Do carbon monoxide monitoring for ventilation and make sure all controls are operating properly.

Facility managers and their staff need to fully understand how the HVAC and other systems in their buildings were intended to work and keep them operating in that manner. When major remodeling occurs or changes in space occupancy or usage, the ventilation and thermal requirements of the space need to be reviewed. When replacing equipment, the facility's staff needs to be involved in the selection, location and installation of the new equipment. This can help assure that the equipment will meet their needs and that they understand how it is to be operated and maintained. Building managers should also demand that the systems and equipment selected meet the currently established standards-of-care in that industry.

There are many solutions to indoor environmental quality problems, but it's not wise to wait for the crisis. Facility executives are better off looking now, before they have a problem. Chances are they'll find a number of IEQ issues that need to be addressed that can be handled at next to no cost. Half the issues that arise involve simple things your inhouse staff can do, like changing filters, cleaning drain pans, using high efficiency vacuums in housekeeping and so on. When you wait for the complaints, you are in a reactive mode trying to find a Band-Aid when you could have a more serious situation. If you consider IEQ now, you can take a more holistic approach and prevent your building from experiencing many IEQ problems.

Given all things on the facility agenda, it can be tough to find time to tackle a problem that no one is complaining about. But being proactive can pay off. One direct benefit is that, over the long term, a preventive approach will save time, perhaps a significant amount of time. There's another plus: Facility executives who can show senior managers that their actions have increased employee satisfaction or productivity are positioning themselves as problem-solvers and are demonstrating that the buildings they manage are assets, not costs.




Julian Arhire is a Manager with DtiCorp.com - DtiCorp.com carries more than 35,000 HVAC products, including industrial, commercial and residential parts and equipment from Honeywell, Johnson Contols, Robertshaw, Jandy, Grundfos, Armstrong and more.





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2011年11月26日 星期六

Wireless Humidity and Temperature Sensor: 5 Common Uses for Environmental Sensors


1. Temperature and Humidity: You can monitor critical temperatures continuously and in real time with a system that wirelessly monitors the temperature of equipment (cold or hot) anywhere in your building such as: kitchens, laboratories, pharmacies, nursing and medical stations as well as off-site facilities. The system can page, e-mail and visually alert any computer screen the moment food, lab samples, pharmaceuticals or other temperature sensitive items are outside the prescribed parameters. Wireless humidity and temperature sensors allow flexibility, reduce wiring cost and transmit data up to 100 feet without the use of a repeater. The unit is battery powered using two AA batteries and it uses a 418 MHz transmitter so you can change the location of the sensors without worrying about extra labor costs.

2. Barometric pressure: The wireless sensor system also provides Web-based monitoring humidity, and barometric pressure in critical HVAC and refrigeration applications. The compact wireless "end devices" mount on the wall in clean rooms, laboratories, museums, computer server rooms, warehouses, and any remote facility. You can select one end device to serve as an internal or external sensor, in order to monitor temperature and humidity both inside and outside a climate-controlled facility. Another bonus is that these devices are designed for harsh environments such as outdoor weather, HVAC ducts, freezers and refrigerators.

3. Water Detection Sensors: These detection sensors have a remote monitoring system which uses an 802.11 Wi-Fi network of water leak detection in pipelines, agricultural fields, server rooms and more and is available with various other applications.

4. CO2 Sensors: With these sensors you can monitor the CO2 levels continuously and in real time. It is a system that uses your existing Wi-Fi network and is ideal for indoor air quality, HVAC management, environmental surveillance, greenhouses, and incubators. You will receive a page, e-mail and visual alert on any computer screen whenever your measurements are outside the prescribed parameters, making your home and/or workplace safer.

5. PH Sensors: This sensor is ideal for storage applications where continuous pH monitoring is required such as: health care, food storage and inside a laboratory. As with the CO2 sensors, you will receive a page, e-mail and visually alert on any computer screen whenever your measurements are outside the prescribed parameters.

Just some of the various reasons to install them, environmental sensors are easy to add to your life, take up little space, and work effectively to make your work easier, safer and more effective.




To learn more about environmental sensors and creating a healthy home environment, go to: Creating a Healthy Home.





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