A three-dimensional fluid-structure interaction model for the working process of the automotive air conditioning compressors is proposed and its internal work process and the motion of the valve plate are analyzed to solve the problems of valve fracture in automotive air conditioning compressors. Experiments on an automotive air conditioning compressor are performed to validate the model
and the results show a reasonable agreement and that the average loss of the suction pressure is 0.046 MPa
the average loss of the discharge pressure is 0.11 MPa
and the volumetric efficiency is 64.98% when the suction pressure is 0.18 MPa
the discharge pressure is 1.5 MPa and the rotation speed is 2 000 r/min. Take the delay shut-off of valve or not as the selection principle
the results also show that an optimal thickness of the suction valve plate is 0.281 mm
and when the thickness of the valve plate exceeds the optimal value
the shut-off time of the valve is delayed with the increasing of the thickness. These results are opposite to the traditional theory that increasing the thickness of the valve leads to forward shut-off and provide a guidance to the design and optimization of reed valves used in small refrigeration compressors.
WANG Feng. Study on the reed valve of piston refrigeration compressor [J]. Fluid Machinery, 2010, 39(1): 42-51.
GLEN P J R, WILLIAM P H. Optical measurement of discharge valve modal parameters for a rolling piston refrigeration compressor [J]. Measurement, 2003, 33(1): 75-84.
BULIGAN G, PAONE N, REVEL G M, et al. Valve lift measurement by optical techniques in compressors [C]∥Sixteenth International Compressor Engineering Conference. Purdue, IN, USA: Purdue University, 2002: 5-13.
LUDU A, BETTO A, REGNER G. Endoscope video of compressor valve motion and pressure measurement assist simulations for design improvement [C]∥Fifteenth International Compressor Engineering Conference. Purdue, IN, USA: Purdue University, 2000: 443-450.
HABING R A. An experimental method for validating compressor valve vibration theory [J]. Journal of Fluids and Structures, 2006, 2(5): 683-679.
LIN Mei, YAO Jun, PAN Shulin. Establishment of three mathematical models and comparison for the reed valves [J]. Chinese Journal of Applied Mechanics, 1997, 14(1): 118-123.
ZHENG Chuanxiang, LI Rong, WANG Liang, et al. Fluid-structure interaction analysis and optimization study of suction valves in small refrigeration compressors [J]. Chinese Journal of Engineering Design, 2014, 21(1): 69-74.
李蓉. 制冷压缩机过程模拟及节能技术开发研究 [D]. 杭州: 浙江大学, 2014.
KIM J, WANG S, PARK S, et al. Valve dynamic analysis of a hermetic reciprocating compressor [C]∥Eighteenth International Compressor Engineering Conference. Purdue, IN, USA: Purdue University, 2006: 1-9.
CHOI Y S, LEE J H, JEONG W B, et al. Dynamic behavior of valve system in linear compressor based on fluid-structure interaction [J]. Journal of Mechanical Science and Technology, 2010, 24(7): 1371-1377.
ADINA Research and Development, Inc. Theory and modeling guide [M]. Watertown, USA: ADINA Research and Development, Inc. 2005: 8.
NAGATA S, NOZAKI T, AKIZAWA T. Analysis of dynamic behavior of suction valve using strain gauge in reciprocating compressor [C]∥Twentieth International Compressor Engineering Conference. Purdue, IN, USA: Purdue University, 2010: 1273.
QIU Ying, LI Hongqi, LÜ Yadong. Analysis of suction and discharge valve noise in a hermetic reciprocating compressor by using jet noise theory [J]. Fluid Machinery, 2007, 35(1): 25-28.