A thermodynamic analysis of a novel high efficiency reciprocating internal combustion engine - the isoengine

被引:18
|
作者
Coney, MW
Linnemann, C
Abdallah, HS
机构
[1] RWE Inn Plc, Swindon SN5 6PB, Wilts, England
[2] Air Liquide, F-94503 Champigny sur Marne, France
关键词
D O I
10.1016/j.energy.2004.05.014
中图分类号
O414.1 [热力学];
学科分类号
摘要
A novel concept for a high efficiency reciprocating internal combustion engine (the isoengine) is described and its cycle is analysed. The highly turbocharged engine configuration, which is intended primarily for on-site and distributed power generation, has a predicted electrical output of 7.3 MW. It has the option for co-generation of up to 3.2 MW of hot water at 95 degreesC supply temperature. The maximum net electrical plant efficiency is predicted to be about 60% on diesel fuel and 58% on natural gas. The key to the high electrical efficiency is the quasi-isothermal compression of the combustion air in cylinders, which are separate from the power cylinders. This achieves a significant saving in compression work and allows the recovery of waste heat back into the cycle, mainly from the exhaust gas by means of a recuperator. The construction of a first 3 MWe Prototype isoengine has been completed and its testing has begun. Relevant test results are expected in the near future. (C) 2004 Elsevier Ltd. All rights reserved.
引用
收藏
页码:2585 / 2600
页数:16
相关论文
共 50 条
  • [1] Thermodynamic analysis of internal combustion engine
    Svida, David
    RECENT ADVANCES IN MECHATRONICS, 2007, : 566 - 570
  • [2] Experimental test and thermodynamic analysis on scaling-down limitations of a reciprocating internal combustion engine
    Shang, Huichao
    Zhang, Li
    Chen, Bin
    Chen, Xi
    SCIENCE PROGRESS, 2020, 103 (03)
  • [3] Thermal Activation of the Combustion Chamber of a Reciprocating Internal Combustion Engine
    SROKA Zbigniew
    SADLAK Zbigniew
    Journal of Thermal Science, 2018, 27 (05) : 449 - 455
  • [4] PIV measurements during combustion in a reciprocating internal combustion engine
    Reuss, DL
    Rosalik, M
    LASER TECHNIQUES APPLIED TO FLUID MECHANICS, 2000, : 441 - 456
  • [5] Thermal Activation of the Combustion Chamber of a Reciprocating Internal Combustion Engine
    Zbigniew Sroka
    Zbigniew Sadlak
    Journal of Thermal Science, 2018, 27 : 449 - 455
  • [6] Thermal Activation of the Combustion Chamber of a Reciprocating Internal Combustion Engine
    Sroka, Zbigniew
    Sadlak, Zbigniew
    JOURNAL OF THERMAL SCIENCE, 2018, 27 (05) : 449 - 455
  • [7] Investigation of aqueous ethanol combustion in the reciprocating internal combustion engine
    M. D. Garipov
    R. Yu. Sakulin
    K. N. Garipov
    R. F. Zinnatullin
    Russian Aeronautics (Iz VUZ), 2012, 55 (1) : 36 - 40
  • [8] Simulation of fluid flow in a high compression ratio reciprocating internal combustion engine
    Sridhar, G
    Paul, PJ
    Mukunda, HS
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART A-JOURNAL OF POWER AND ENERGY, 2004, 218 (A6) : 403 - 416
  • [9] Study on combustion stability of a miniature reciprocating piston internal combustion engine
    Gang Zhi, Tang
    Wang, Shuai Bin
    Li, Zhang
    Hui Chao, Shang
    JOURNAL OF MICROMECHANICS AND MICROENGINEERING, 2020, 30 (07)
  • [10] Analysis of the effects of wall temperature swing on reciprocating internal combustion engine processes
    Andruskiewicz, Peter
    Najt, Paul
    Durrett, Russell
    Biesboer, Scott
    Schaedler, Tobias
    Payri, Raul
    INTERNATIONAL JOURNAL OF ENGINE RESEARCH, 2018, 19 (04) : 461 - 473