APPLICATION ANALYSIS OF WANKEL EXPANDER FOR ORGANIC RANKINE CYCLE

被引:0
|
作者
Li P. [1 ]
Meng J. [2 ]
Wang W. [1 ]
Weng Y. [1 ]
机构
[1] School of Mechanical Engineering, Shanghai Jiao Tong University, Shanghai
[2] Shanghai Aerospace Equipment Manufacturer, Shanghai
来源
关键词
energy conversion; expander; leakage; organic Rankine cycle; solar energy; Wankel;
D O I
10.19912/j.0254-0096.tynxb.2021-1015
中图分类号
学科分类号
摘要
The operation mechanism of the Wankel expander in organic Rankine cycle are analyzed theoretically and the performance of the expander is simulated by developed thermodynamics model considering leakage among chambers. With R245fa as the working fluid,several thermodynamic parameters of the expander are discussed in a completed working cycle,and the structure parameters of chamber profile including shape factor,rotor profile,intake angle,eccentric distance and wheelbase coefficient are discussed as well. The results show that the Wankel expander can achieve a large expansion ratio,and all the discussed factors can take significant impacts on working performance induding mass flow rate, output power, expansion pressure ration, and volumetric efficiency. Therefore,it is necessary to select optimized parameters for satisfiing performance of the expander in future application. © 2023 Science Press. All rights reserved.
引用
收藏
页码:1 / 8
页数:7
相关论文
共 25 条
  • [1] GU Y J, XIE D., Performance analysis and comprehensive evaluation of organic Rankine cycle system driven by solar energy[J], Acta energiae solaris sinica, 39, 2, pp. 482-490, (2018)
  • [2] Al- DADAH R K,, MAHMOUD S,, Et al., Modelling and parametric analysis of small-scale axial and radial- outflow turbines for organic Rankine cycle applications[J], Applied energy, 190, pp. 981-996, (2017)
  • [3] WEI A P,, POPP T,, ZINN G,, Et al., A micro- turbine-generator-construction-kit (MTG-c-kit) for small-scale waste heat recovery ORC-plants[J], Energy, 181, pp. 51-55, (2019)
  • [4] QIU G Q, RIFFAT S., Expanders for micro-CHP systems with organic Rankine cycle[J], Applied thermal engineering, 31, 16, pp. 3301-3307, (2011)
  • [5] BAO J J, LI Z., A review of working fluid and expander selections for organic Rankine cycle[J], Renewable & sustainable energy reviews, 24, pp. 325-342, (2013)
  • [6] WANG H, PETERSON R B,, HERRON T., Experimental performance of a compliant scroll expander for an organic Rankine cycle[J], Proceedings of the institution of mechanical engineers, part A: journal of power and energy, 223, 7, pp. 863-872, (2009)
  • [7] QUOILIN S., Experimental characterization of a hermetic scroll expander for use in a micro-scale Rankine cycle[J], Proceedings of the institution of mechanical engineers,part A:journal of power & energy, 226, 1, pp. 126-136, (2011)
  • [8] ZHANG Y Q, XIA G D,, Et al., Performance study on single- screw expander in organic Rankine cycle system[J], Journal of mechanical engineering, 51, 16, pp. 156-163, (2015)
  • [9] BIANCHI M,, BRANCHINI L,, CASARI N,, Et al., Experimental analysis of a micro-ORC driven by piston expander for low-grade heat recovery[J], Applied thermal engineering, 148, pp. 1278-1291, (2018)
  • [10] APHORNRATANA S., Development of a sliding vane expander in a micro-scale ORC system for utilizing low-grade heat[J], Energy procedia, 138, pp. 817-822, (2017)