364
Views
3
CrossRef citations to date
0
Altmetric
Original Articles

Modeling and Analysis of Scroll Compressor Conversion into an Expander for Rankine Cycles

, &

References

  • Bush, J.W. and W.B. Beagle. 1992. Derivation of general relationship governing the conjugacy of scroll profiles. In Proceedings of International Compressor Engineering Conference at Purdue, Purdue: Ray W. Herrick Laboratories, Purdue University, pp. 1079–88.
  • Chen, Y., N.P. Halm, E.A. Groll, and J.E. Braun. 2002. Mathematical modeling of scroll compressors-part I: compression process modeling. International Journal of Refrigeration 25:731–50.
  • Declaye S., S. Quoilin, L. Guillaume, and V. Lemort 2013. Experimental study on an open-drive scroll expander integrated into an ORC (Organic Rankine Cycle) system with R245fa as working ?uid. Energy 55:173–183.
  • Demirkaya G., D. Yogi Goswami, E. Stefanakos, M.M. Rahman. 2010. Analysis of a combined cycle for low-grade heat sources. International Journal of Energy Research 35:1145–1157.
  • Halm, N.P. (1997). Mathematical Modeling of Scroll Compressors. MSc Thesis, Purdue: Purdue University.
  • Hamut H.S., I. Dincer, and G. F. Naterer 2013. Performance assessment of thermal management systems for electric and hybrid electric vehicles. Int. J. Energy Res. 37:1–12.
  • Hirano, T., N. Matsumura, and K. Takeda. 1988. Development of high efficiency scroll compressors for air conditioners. In Proceedings of International Compressor Engineering Conference at Purdue, Purdue: Ray W. Herrick Laboratories, Purdue University, pp.65–74.
  • Hogerwaard J., I. Dincer, and C. Zamfirescu 2013. Analysis and assessment of a new organic Rankine based heat engine system with/without cogeneration. Energy 62:300–310.
  • Husband, W. W. and A. Beyene 2008. Low-grade heat-driven Rankine cycle, a feasibility study. International Journal of Energy Research 32:1373–1382.
  • Lemort, V., S. Quoilin, C. Cuevas, and J. Lebrun. 2009. Testing and modeling a scroll expander integrated into an Organic Rankine Cycle. Applied Thermal Engineering 29:3094–3102.
  • Li, M., Y. Ma, H. Guan, and L. Li. 2004. Development and experimental study of CO2 expander in CO2 refrigeration cycles. International Journal of Green Energy 1:89–99.
  • Peterson R.B., H. Wang, and T. Herron. 2008. Performance of a small-scale regenerative Rankine cycle employing a scroll expander. Proceedings of the Institution of Mechanical Engineers, Part A: Journal of Power and Energy 222:271–282.
  • Quoilin, S. 2007. Experimental study and modeling of a low temperature Rankine cycle for small scale cogeneration. MSc Thesis, Liege, Belgium: University of Liege.
  • Roy, J.P., M.K. Mishra, and A. Mishra. 2011. Parametric optimization and performance analysis of a regenerative organic rankine cycle using low-grade waste heat for power generation. International Journal of Green Energy 8:173–96.
  • Wang, B., X. Li, and W. Shi. 2005. A general geometrical model of scroll compressors based on discretional initial angles of involute. International Journal of Refrigeration 28:958–66.
  • Winandy, E., C.O. Saavedra, and J. Lebrun. 2002. Experimental analysis and simplified modelling of a hermatic scroll refrigeration compressor. Applied Thermal Engineering 22:107–120.
  • Xiaojun, G.L., Z. Liansheng, S. Yuanyang, and S. Pengcheng. 2004. Research on a scroll expander used for recovering work in a fuel cell. International Journal of Thermodynamics 7:1–8.
  • Yanagisawa, T.M., Y. Fukuta, T. Ogi, and T. Hikichi. 2001. Performance of an oil-free scroll type air expander. In Proceedings of the ImechE Conference: Transactions on compressors and their systems, New York: John Wiley and Sons, pp. 167–74.
  • Yuanyang, Z.L., S. Liansheng, and S. Pengcheng. 2006. Thermodynamic simulation of scroll compressor/expander module in automotive fuel cell engine. Journal of Automobile Engineering 220:571–7.
  • Zamfirescu C., I. Dincer, M. Stern, and W. R. Wagar. 2012. Exergetic, environmental and economic analyses of small-capacity concentrated solar-driven heat engines for power and heat cogeneration. International Journal of Energy Research 36:397–408.
  • Zamfirescu C., G. F. Naterer, and I. Dincer. 2013. Water splitting with a dual photo-electrochemical cell and hybrid catalysis for enhanced solar energy utilization. Int. J. Energy Res. 37:1175–1186.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.