ASHRAE IJHVAC 14-5-2008 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 14-5-2008 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 14-5-2008 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(190页珍藏版)》请在麦多课文档分享上搜索。
1、 VOLUME 14, NUMBER 5 HVAC Jung et al.2000). Isobutane (R-600a) has dominated the European refrigerator/freezer sector for the pastdecade and is being used even in Japan and Korea, while propane (R-290) and propylene(R-1270) are used for heat-pumping applications in Europe (IEAHPC 2002). It is well k
2、nownthat hydrocarbons offer low cost, availability, compatibility with the conventional mineral oil,and environmental friendliness.As shown in Table 1, ASHRAE recently released a list of many environmentally friendlyrefrigerants (ASHRAE 2007). Most of them contain hydrocarbons and dimethyl ether (DM
3、E,RE170) as the primary components. Hydrocarbons and DME have very low GWP, typically lessthan 3, as compared to 1300 and 1700 of HFC134a and HCFC22, respectively. Due to climatechange all over the world, refrigerants with low GWP are in great demand these days and arecertainly good candidates for f
4、uture use. Furthermore, unlike pure hydrocarbons, these newrefrigerants are claimed to be “drop-in” replacements, with little change in the system in therefrigeration conversion process.Typically, refrigeration and air-conditioning applications are classified according to predomi-nant refrigerants,
5、such as HFC134a(CFC12), HCFC22, and R-404A(CFC502). Even thoughCFCs have been phased out completely in the developed countries, they are still being used inDongsoo Jung is a professor in the Department of Mechanical Engineering, Inha University, Incheon, Korea.2008, American Society of Heating, Refr
6、igerating and Air-Conditioning Engineers, Inc. (www.ashrae.org). Published in HVAC however, it is not being used inEuropean countries and cannot be used in new equipment produced after 2010 in the UnitedStates. This means that virtually all countries have to use environmentally safe refrigerants int
7、wo years. Some HFC alternatives have been used to replace HCFC22 over the past decade.European countries, however, are reluctant to use man-made chemicals for their refrigerationequipment and prefer using natural (or low global warming) fluids. R-431A and R-433A arepossible alternatives for HCFC22.
8、One residential air-conditioner manufacturer tested R-431Ain one of its commercial products and observed that R-431A had a 10% increase in COP with asimilar capacity as compared to HCFC22 (Song 2008).Finally, R-404A(CFC502) is used in low-temperature and transport refrigeration equipment.Once again,
9、 the world needs, if possible, non-HFC solutions in this area as well. The situation inthis application is quite similar to that of HCFC22. R-432A, R-433A, and R-433C may be goodalternatives in this application. Even though hydrocarbon- and DME-based new “drop-in” refrigerants offer high energy effi
10、-ciency with significantly less global warming, they have one common problemflammability.For hermetic systems, such as domestic refrigerators and water purifiers, flammability is not aserious problem, and refrigerators charged with isobutane (R-600a) have been predominant inthe world market except i
11、n the United States over the past several decades. As for residential andmobile air conditioners, however, flammable refrigerants have generated severe resistance fromthe manufacturers. The whole world is now faced with energy and environmental problems andis in need of a long-term global solution.
12、At this time, pure and mixed hydrocarbons and DMErefrigerants seem to be the best solution to the refrigeration industry as long as the flammabilityissue is tackled properly. One of the ways to overcome the flammability is the use of a secondary loop system by whichthe refrigerant is isolated to the
13、 outside of the working environment. Then the refrigerant will beseen as natural gas supplied to the kitchen for cooking. In fact, this system has already been wellexplained for mobile air conditioners with a prototype manufactured and demonstrated in anactual car by one of the worlds largest automo
14、bile manufacturers (Hill 2007). We live in an innovative technology age, and it is believed that the flammability issue can beovercome with the present engineering art and design technology. The one issue that remains,however, is the need to change our mindset. Unless there is a change in the way we
15、 think, wemay try in vain to develop more and more man-made chemicals but fail to solve this globalproblem. Are we ready for a change to utilize our natural resources to overcome the globalenergy and environmental problems with present technology in the refrigeration industry? Itmay be true that tom
16、orrows solution is here already in our hands today.634 HVAC accepted May 12, 2008A combination of factorsnotably environmental concerns about global warming and ozonedepletion due to refrigerants and the increasing demand for electronics and optoelectroniccoolingled to renewed activity in alternativ
17、e cooling technologies. Currently, thermoelec-tric cooling is considered a popular cooling technology. This paper provides a critical reviewof thermoelectric technology and assesses its potential applications in air conditioning andrefrigeration. The first part of this paper is devoted to the basic
18、concept of thermoelectrics,with an overview of current thermoelectric materials and devices. The second part is a gen-eral overview of the applications of thermoelectric technology, with an emphasis on thoserelated to air conditioning and refrigeration.INTRODUCTIONBecause of environmental concerns s
19、uch as global warming, ozone depletion, and a lack ofenergy efficiency, it is necessary to investigate alternative cooling technologies to the refrigera-tion that uses refrigerants 1. Thermoelectric cooling and heat pumping are alternatives thathave recently attracted attention. Thermoelectric devic
20、es are solid-state devices in which elec-trons or holesequivalent to refrigerants in traditional vapor-compression systemscarry elec-tricity and thermal energy under an electric field 28. Therefore, they have many inherent,attractive features such as a long life and no moving parts, and they dont em
21、it toxic gases, arelightweight, are low-maintenance, and are very reliable. In the past decade, there has been rapiddevelopment when it comes to the fundamental theory, materials, and devices related to thermo-electrics. This paper provides a critical review of thermoelectric technology and assesses
22、 itspotential applications in air conditioning and refrigeration. It should be noted that the informa-tion in this paper is influenced by the research focus of the present authors and reflects theirassessment of the field.The remainder of this paper is structured as follows: the next section provide
23、s the fundamen-tals of thermoelectric technology, and then the potential application of thermoelectric technol-ogy to air conditioning and refrigeration will be discussed. FUNDAMENTALS OF THERMOELECTRIC TECHNOLOGYIn this section, thermoelectric effects will be discussed first, then the overview of t
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