ASHRAE IJHVAC 14-4-2008 HVAC&R RESEARCH An International Journal of Heating Ventilating Air-Conditioning and Refrigerating Research《《HVAC&R研究》国际供暖、通风、空调、制冷研究杂志》.pdf
《ASHRAE IJHVAC 14-4-2008 HVAC&R RESEARCH An International Journal of Heating Ventilating Air-Conditioning and Refrigerating Research《《HVAC&R研究》国际供暖、通风、空调、制冷研究杂志》.pdf》由会员分享,可在线阅读,更多相关《ASHRAE IJHVAC 14-4-2008 HVAC&R RESEARCH An International Journal of Heating Ventilating Air-Conditioning and Refrigerating Research《《HVAC&R研究》国际供暖、通风、空调、制冷研究杂志》.pdf(103页珍藏版)》请在麦多课文档分享上搜索。
1、VOLUME 14, NUMBER 4 HVAC costbenefits, scalability of the network; simpler and more flexible system design; faster and less dis-ruptive installations and retrofits; and smoother and less costly migrations staged to accommo-date budgets and schedules.Flexibility is the ultimate benefit in deploying a
2、 wireless system compared to a wired net-work. Sensors can be located, or relocated, to optimize system performance; increase cus-tomer comfort; and adapt to changing floor plans. Many wireless technologies and productsare available in the current BAS industry, and a number of companies are paid to
3、developwireless technologies for BAS applications. It is likely that wireless BASs will be popular inBAS installations in the very near future; however, many aspects regarding the technologystill need to be addressed.CURRENT WIRELESS TECHNOLOGIES ASSOCIATED TO BASSThere are many short-range wireless
4、 communications technologies available now in informa-tion technologies, automation, and other mobile data communication fields. The wireless tech-nologies related to the BAS applications include ZigBee technologies, 802.11 compliant(WiFi) technologies, Bluetooth technologies, and other proprietary
5、technologies.ZigBee TechnologiesThe ZigBee Alliance developed a network specification that is built upon the IEEE 802.15.4radio. The standard was approved in December 2004 and adds logical network, security, andapplication software. The standard was created to address the market need for a cost-effe
6、ctive,standards-based, wireless networking solution that supports low-power consumption, low datarates, security, and reliability (Raimo 2007). Potential applications include home automation,building automation, and automated meter reading, as well as industrial monitoring and control.The range of t
7、he ZigBee device is about 100 to 300 ft for typical buildings, which makes itwell-suited for building automation applications. ZigBee defines multiple network topologies, or configurationsstar, mesh, or cluster tree,which is a combination of the star and mesh topologies. The most suitable topology v
8、aries byShengwei Wang is a professor in the Department of Building Services Engineering, The Hong Kong PolytechnicUniversity, Hong Kong.2008, American Society of Heating, Refrigerating and Air-Conditioning Engineers, Inc. (www.ashrae.org). Published in HVAC accepted March 26, 2008An analysis of the
9、ventilation effectiveness of a prototype personalized ventilation system ofworking places named PERMICS-LOS1 (Personal Microclimate System) was made, based onmeasurements of the air velocity field and of tracer gas concentrations using the decay method.The emphasis of the analysis was mainly on an e
10、xperimental verification of a parameter basedon the relative decrease of tracer gas concentration in the first minute of system operation dC(1)and on local ventilation efficiency using the local air-change index L. A system analysis wasmade for several different operating regimes of personalized ven
11、tilation, where changes in airquantity and the direction of supplied air in the breathing zone were applied. The results of theexperimental analysis were statistically evaluated, compared, and included in the existing data-base of previous research for use as supplementary values. The performed anal
12、ysis has con-firmed previous findings as well as the connection between the dC(1) parameter and ventilationeffectiveness parameters, especially with the local air-change index.INTRODUCTIONIndoor air quality and the importance of providing a healthy and comfortable indoor environ-ment for occupants h
13、ave been drawing more and more attention (Butala et al. 2001a). Mostareas within buildings space in which fresh air is normally supplied by mixing ventilation or dis-placement ventilation systems can be polluted by various indoor air contaminants before the airis inhaled by the occupants. People hav
14、e also become more aware of sick building syndrome(SBS) (USEPA 1991) and building-related health complaints, which represent significant healthproblems, such as headaches, allergies, and fatigue. The main cause of SBS is a poorly ventilated working area (WHO 1984), which depends onseveral influencin
15、g parameters, such as the type of ventilation and HVAC system, the hygienicquality of the inlet air, and classical physical factors in the environment. The parameters interactto influence peoples health conditions and feeling. SBS has a significant economic impact thatis manifested in decreased prod
16、uctivity and absence from work, as well as the consequentlyhigher health care costs of employees (USEPA 1989; Wargocki et al. 1999, 2000). On this basis, a new approach based on the philosophy of excellence for future air-conditionedenvironments was proposed by Fanger (2001). He suggested narrowing
17、the air-conditioned spacefrom the whole room space to the local space within the occupants breathing zone, and proposed anovel personalized air (PA) system that would gently serve a small amount of cool, clean air closeto or directly into the breathing zone of each individual without causing a draft
18、.Simon Muhi is an HVAC specialist at Sineco, Ljubljana, Slovenia. Mitja Mazej is a researcher and Vincenc Butala isan associate professor in the Faculty of Mechanical Engineering, University of Ljubljana, Slovenia.2008, American Society of Heating, Refrigerating and Air-Conditioning Engineers, Inc.
19、(www.ashrae.org). Published in HVAC Muhi and Butala2002, 2004; Butala and Novak 1997), conclusions similar to Fangers proposal were presented(Muhi and Butala 2006). There is a need for more qualitative ventilation or air-conditioningsystems for workplaces. New systems with a personalized inlet of fr
20、esh air will allow local reg-ulation of key indoor environment parameters. This concept of a properly designed personalizedventilation system makes it possible to achieve high local ventilation efficiency with a verysmall fresh airflow rate and satisfactory thermal comfort parameters for each occupa
21、nt. Researchers of the personalized ventilation applications evaluated performances of differentair terminal devices under many operating regimes in terms of flow rate, temperature of person-alized air, and space air temperature, using an index named the “personal exposure effective-ness” (Melikov e
22、t al. 2002; Naiping and Kianlei 2004; Niu et al. 2007; Sekhar et al. 2005).Proper design and orientation of an air terminal device and the temperature of personalized airhave a great impact on achieving very high rates of personal air in inhaled air (Bolashikov et al.2003), and the most critical fac
23、tor in improving the efficiency of personal air distribution is thelocation of an air terminal device (Kaczmarczyk et al. 2006; Jeong 2003; Faulkner et al. 2004).However, it was also found that in some special cases personalized ventilation did not ensurebetter inhaled air quality due to the influen
24、ce of the location of pollutant sources and the back-ground air-conditioning system (Cermak and Melikov 2003; Melikov et al. 2003). The resultsshowed that personalized ventilation will always be able to improve the inhaled air quality inspaces with a mixing ventilation concept, but that the improvem
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