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Thermodynamic analysis and combined cycle research on recoverable pressure energy in natural gas pipeline 被引量:2

Thermodynamic analysis and combined cycle research on recoverable pressure energy in natural gas pipeline
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摘要 Current research and ways of capturing mechanical energy are discussed in this paper. By the aid of the comprehensive thermodynamic analysis and Aspen simulation tool, the amount of a vailable work that can be produced from capturing the pressure energy has been calculated. Based on the comprehensive thermodynamic analysis, two systems have been proposed to capture pressure energy of natural gas to generate electricity. In this study, the expression of exergy is given which can be used in evaluating purposes. A problem with this multidisciplinary study is the complicated boundary condition. In conclusion, a technical prospect on recoverable natural gas pressure energy has been presented based on total energy system theory. Current research and ways of capturing mechanical energy are discussed in this paper. By the aid of the comprehensive thermodynamic analysis and Aspen simulation tool, the amount of a vailable work that can be produced from capturing the pressure energy has been calculated. Based on the comprehensive thermodynamic analysis, two systems have been proposed to capture pressure energy of natural gas to generate electricity. In this study, the expression of exergy is given which can be used in evaluating purposes. A problem with this multidisciplinary study is the complicated boundary condition. In conclusion, a technical prospect on recoverable natural gas pressure energy has been presented based on total energy system theory.
作者 郑斌 刘俊德
出处 《Journal of Beijing Institute of Technology》 EI CAS 2011年第1期65-70,共6页 北京理工大学学报(英文版)
基金 Supported by Tianjin Institute of Urban Construction(03046)
关键词 natural gas pressure energy thermodynamic analysis exergy analysis power genera-tion combined cycle total energy system natural gas pressure energy thermodynamic analysis exergy analysis power genera-tion combined cycle total energy system
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