Performance evaluation of irreversible Stirling and Ericsson heat pump cycles

被引:24
|
作者
Kaushik, SC
Tyagi, SK
Bose, SK
Singhal, MK
机构
[1] Indian Inst Technol, Ctr Energy Studies, New Delhi 110016, India
[2] SSV PG Coll, Dept Phys, Ghaziabad, Uttar Pradesh, India
关键词
internal and external irreversibilities; Stirling and Ericsson heat pumps; optimum performance; heating load; power input; Lagrangian multiplier;
D O I
10.1016/S1290-0729(01)01297-2
中图分类号
O414.1 [热力学];
学科分类号
摘要
This communication presents the performance evaluation of irreversible Stirling and Ericsson Heat Pumps Cycles including external and internal irreversibilities along with finite heat capacities of external reservoirs. The external irreversibility is due to finite temperature difference between working fluid and external (source/sink) reservoirs fluid while the internal irreversibilities are due to regenerative heat loss and other entropy generation in the cycle. The heating load is maximized for the given power input. The heating coefficient of performance, the heat transfers to and from the heat pumps and the working fluid temperatures at these conditions have been evaluated. The effect of different parameters (reservoirs temperature, the various effectivenesses and irreversibility parameter), on the performance of these cycles have been studied. It is found that the effect of internal irreversibility parameter is more pronounced than that of other external irreversibility parameters. (C) 2002 Editions scientifiques et medicales Elsevier SAS. All rights reserved.
引用
收藏
页码:193 / 200
页数:8
相关论文
共 50 条
  • [21] Parametric analysis on the performance of a revolutionary rotary Ericsson heat pump/engine
    Zhang, Wenbin
    Benson, Chris
    Cunningham, Andrew
    Riffat, Saffa
    INTERNATIONAL JOURNAL OF LOW-CARBON TECHNOLOGIES, 2019, 14 (01) : 36 - 43
  • [22] Optimization of the irreversible stirling heat engine
    Erbay, LB
    Yavuz, H
    INTERNATIONAL JOURNAL OF ENERGY RESEARCH, 1999, 23 (10) : 863 - 873
  • [23] Finite-time exergoeconomic performance analysis and optimisation for generalised irreversible combined heat pump cycles
    Ma, Kang
    Chen, Lingen
    Sun, Fengrui
    Wu, Chih
    INTERNATIONAL JOURNAL OF AMBIENT ENERGY, 2011, 32 (02) : 78 - 86
  • [24] Performance characteristics of a gas engine driven stirling heat pump
    Yagyu, S
    Fujishima, I
    Fukuyama, Y
    Morikawa, T
    Obata, N
    Corey, J
    Isshiki, N
    Satoh, I
    35TH INTERSOCIETY ENERGY CONVERSION ENGINEERING CONFERENCE & EXHIBIT (IECEC), VOLS 1 AND 2, TECHNICAL PAPERS, 2000, : 85 - 91
  • [25] Performance analysis of irreversible quantum Stirling cryogenic refrigeration cycles and their parametric optimum criteria
    Lin, Bihong
    Chen, Jincan
    PHYSICA SCRIPTA, 2006, 74 (02) : 251 - 258
  • [26] Performance analysis of an irreversible cogeneration heat pump cycle
    Göktun, S
    INTERNATIONAL JOURNAL OF ENERGY RESEARCH, 1998, 22 (14) : 1299 - 1304
  • [27] Performance analysis of an irreversible cogeneration heat pump cycle
    I. T. Ü. Maritime Faculty, Department of Marine Engineering, 81716 Tuzla-Istanbul, Turkey
    Int J Energy Res, 14 (1299-1304):
  • [28] General thermodynamic performance of irreversible absorption heat pump
    Zhao Xiling
    Fu Lin
    Zhang Shigang
    ENERGY CONVERSION AND MANAGEMENT, 2011, 52 (01) : 494 - 499
  • [29] Optimum performance of an irreversible Stirling cryocooler
    Wu, Feng
    Chen, Lingen
    Wu, Chih
    Sun, Fengrui
    Li, Qing
    International Journal of Ambient Energy, 1999, 20 (01) : 39 - 44
  • [30] Carnot, Stirling, and Ericsson stochastic heat engines: Efficiency at maximum power
    Contreras-Vergara, O.
    Sanchez-Salas, N.
    Valencia-Ortega, G.
    Jimenez-Aquino, J. I.
    PHYSICAL REVIEW E, 2023, 108 (01)