ASHRAE IJHVAC 1-2-1995 International Journal of Heating Ventilating Air-Conditioning and Refrigerating Research《供暖 通风 空调和制冷研究的国际期刊 第1卷第2号 1995年4月》.pdf
《ASHRAE IJHVAC 1-2-1995 International Journal of Heating Ventilating Air-Conditioning and Refrigerating Research《供暖 通风 空调和制冷研究的国际期刊 第1卷第2号 1995年4月》.pdf》由会员分享,可在线阅读,更多相关《ASHRAE IJHVAC 1-2-1995 International Journal of Heating Ventilating Air-Conditioning and Refrigerating Research《供暖 通风 空调和制冷研究的国际期刊 第1卷第2号 1995年4月》.pdf(80页珍藏版)》请在麦多课文档分享上搜索。
1、International Journal of Heating,Ventilating, Air-conditioning and Refrigerating Research I ! Volume 1, Number 2, April 1995 1894-95 1 1994-95 International Journal of Heating, Ventilating, Air-conditioning and Refrigerating Research Editor Raymond Cohen, Ph.D P.E., Professor of Mechanical Engineeri
2、ng and Herrick Professor of Engineering, Purdue University, U.S.A. Associate Editors Arthur E. Bergles, Ph.D P.E., John A. Clark and Edward T. Crossan Professor of Engineering. Department of Mechanical Engineering, Aeronautical Engineering and Mechanics, Rensselaer Polytechnic Institute. U.S.A. Univ
3、ersity of Oxford, United Kingdom Fire Research Laboratory, National Institute of Standards and Technology, U.S.A. Arthur L. Dexter, D.Phi1 C.Eng University Lecturer, Department of Engineering Science, David A Didion, D.Eng., P.E., Leader, Thermal Machinery Group, Building and Ralph Goldman, Ph.D., S
4、enior Consultant, Arthur D. Little, Inc., U.S.A. Hugo Hens. Dr.Ir., Professor, Department of Civil Engineering, Laboratory of Building Physics, Katholieke Universiteit. Belgium Kea-IChi Kimura, Dr. Eng., Professor. Department of Architecture, Waseda University and President, Society of Heating, Air-
5、conditioning and Sanitary Engineers of Japan, Japan Universitt Hannover, Germany Universit de Liege, Belgium University of Wisconsin-Madison, U.S.A. University of California, Santa Barbara, U.S.A. Horst Kruse, Dr.-Ing., Professor, Institut fr Kltetechnik und Angewandte Wrmetechnik. Jean J. Lebrun, P
6、h.D., Professor, Laboratoire de Thermodynamique, John W. Mitchell. Ph.D., P.E., Professor, Mechanical Engineering. Dale E. kborg, Ph.D Professor, Chemical Engineering, Policy Committee Ronald J. Kessner. chair Frank M. Coda Eugene Stamper Fritz W. Steimle W. Stephen Comstock Raymond Cohen Editorial
7、Assistant Jenny OtletJakovljevic PubWher Rank M. Coda Publishing Director W. Stephen Comstock AS- Editorial and Publishing Services Staff Robert A. Parsons, Handbook Editor Nancy F. Thysell Adele J. Brandstrom Christina D. Tate Susan Boughadou 81995 by the American Society of Heating, Refrigerating
8、and Alr-Conditioning Engineers. Inc 1791 Tuille Circle, Atlanta. Georgia 30329. All rights resewed. Second class postage paid at Atlanta. Georgla. and additional mailing offices. WAC by which we do not mean to encourage mummified museum pieces-quite the contrary. But we do want to empha- 97 I intere
9、sted to get some feedback from our readers concerning their own research. ASHRAE TITLEUIJHVAC 1-2 95 0759650 0515458 663 98 HVACBrR RESmcn size that papers should be written to the strictest standards, not only scientifically sig- nificant and accurate, and lucid and logically expressed, but also fu
10、lly documented to ensure that the material presented will be accessible and coherent for anyone wishing to continue the research. Thus, many papers intended primarily to stimulate discus- sion and debate at meetings, or which are purely state-of-the-art reports, or single case studies would not qual
11、ify, even though they may be appropriate for publications in other journals, such as ASHRAE Journal and ASHRAE Transactions. For an idea about topics of interest, I refer you to the editorial in the first issue which noted a number of “hot topics.” In terms of subject matter, certainly ALL research
12、topics of interest to ASHRAE are appropriate. For additional information about the various ASHRAE publications, I refer you to the one page flier “Publications Overview for Authors Submitting Manuscripts,” which is available from ASHRAE headquarters. It states that the monthly ASHRAE Journal is inte
13、nded for a broad cross-section of readers. In general, therefore, research papers intended for those researchers working in great depth on a specific topic would not qualify for the ASHRAE Journal. Of course, The interruionul Journal of HVAC Ayub, Bush, and Haller 1992; Tojo et al. 1992). refrigeran
14、t liquid is even deliberately injected into the gas pockets to decrease the discharge gas tempera- ture under high compression ratios and thereby to extend the operating range of such compressors. Liquid refrigerant entering compressor cylinders has been a concern for a long time. However, not enoug
15、h has been achieved from the viewpoint of mathematical modeling. An extensive literature review was done in this area, but no satisfactory thermodynamic model for simulating compressor cylinder processes was found. Simpson and Lis (1988) measured cylinder pressures during compressor liquid ingestion
16、 in reciprocating com- pressors and presented an empirical approach for predicting the maximum cylinder pressure in terms of compressor power, bore size, and stroke length. Singh. Nieter, and Prater (1986) applied the polytropic equation to simulate compressor cylinder pressure, but the polytropic i
17、ndex in their model is considered as a variable and can be chosen arbitrarily. It is necessary to develop a mathematical model to predict the instanta- neous values of the refrigerant when liquid enters the cylinder. The effects on compres- sor performance made by liquid entering the cylinder can be
18、 studied with this model by simulating the thermodynamic process of compressing the liquid and vapor mixture. Slugging problems are detrimental to compressors. Under extreme conditions, the compressor cylinder pressures could be as high as ten times the peak pressures under normal operations (Singh,
19、 Nieter. and Prater 1986). due to the incompressibility of Zheji Liu is a senior analysis engineer in the Department of Test and Analysis for Waker Manufacturing, Grass Lake, Michigan. Werner Soedel is a professor of mechanical engineering at Purdue University, West Lafayette, Indiana. 99 HVAC ) 1 d
20、V V( hg-hidmc +- -p-+- m,da mC p-ug-uI - da The derivative of the total internal energy with respect to rotation angle is 113) 1151 dT Substituting Equation 116) into the energy balance Equation (11, and solving for gives: where and V c x=- - u -u1 u -u1 9 9 (191 Equations (2) and (17) can be integr
21、ated to determine the temperature and the mass of the refrigerant inside the cylinder control volume. All the other terms in those two equations either are known or can be determined whenever Tand m, are obtained. Computer Simulation As mentioned earlier, ail the variables with subscripts g or 1 are
22、 only functions of temperature. In order to numerically solve the highly nonlinear differential Equations ASHRAE TITLE*IJHVAC 1-2 95 W 0757650 05L5Yb3 T20 VOLUME 1, NUMBER 2. APRIL 1995 103 (221 and (171, we need to know those functions. Different refrigerants have different func- tions of temperatu
23、re for the variables. The following relations are obtained from a numerical interpolation (sometimes called curve-fitting) of the published data from ASHRAE (1985) for saturated liquid and saturated vapor of R-22, which are valid for refrigerant R-22 in the state of saturation from T = 45F to T = +
24、195F. where z stands for each of those mentioned variables. The results of the numerical inter- polations corresponding to each property are listed in the appendix. Similarly, the results are shown in the appendix for curve fitting processing of the data obtained from numerical differentiation with
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