Dynamic model for the orbiting scroll based on the pressures in scroll chambers – Part II: Investigations on scroll compressors and model validation

International Journal of Refrigeration - Tập 36 - Trang 1850-1865 - 2013
Jianguo Qiang1, Bin Peng1, Zhenquan Liu1
1School of Mechano-Electronic Engineering, Lanzhou University of Technology, 287, Langongping Road, Lanzhou 730050, China

Tài liệu tham khảo

Bush, J.W., Haller, D.K., Galante, C.R., 1992. General stability and design specification of the back-pressure supported axially compliant orbiting scroll. In: Proceedings of International Compressor Engineering Conference, Purdue, USA, pp. 853–860. Chen, 2002, Mathematical modeling of scroll compressor-part I: compression process modeling, Int. J. Refrigeration, 25, 731, 10.1016/S0140-7007(01)00071-8 Gu, Z.L., Feng, S.Y., Yu, Y.Z., 1997. Study on the characteristics of scroll compressor with multiple spirals. In: Proceedings of the 1997's International Compressor Technique Conference, Chengdu, China, pp. 205–208. Li, C., Liu, Z.Q., 2004. The study of characteristics with smaller overturning moment for scroll compressor. In: Proceedings of International Compressor Engineering Conference, Purdue, USA, No. C034. Liu, 2009 Morishita, E., Sugihara, M., Inaba, T., Nakamura, T., 1984. Scroll compressor analytical model. In: Proceedings of International compressor Engineering Conference, Purdue, USA, pp. 487–495. Qiang, 2007, Load model for involute scroll teeth based on tooth root bending fatigue strength, J. Eng. Therm. Energy Power, 22, 615 Qiang, 2013, Dynamic model for orbiting scroll based on pressures in scroll chambers-part I: analytical modeling, Int. J. Refrigeration, 36, 1830, 10.1016/j.ijrefrig.2013.02.004 Shu, H.T., Peracchio, A.A., 1992. Dynamics of orbiting scroll with axial compliance, part 1: simulation of orbited axial motion. In: Proceedings of International Compressor Engineering Conference, Purdue, USA, pp. 861–870.