Polish Journal of Chemical Technology, Volume (17), No (2), Year (2015-6) , Pages (119-125)

Title : ( Thermodynamic analysis of medium pressure reciprocating natural gas expansion engines )

Authors: Mahmood Farzaneh-Gord , Soheil Izadi , Seyed Iman Pishbin , Hamideh Sheikhani , Mahdi Deymi-Dashtebayaz ,

Citation: BibTeX | EndNote

Abstract

Natural gas pressure has to be reduced from medium pressure of 1.724 MPa (250 psia) to lower pressure of 0.414 MPa (60 psia) at Town Border pressure reduction Station (TBS). Currently, the pressure reduction is carried out by throttling valves while considerable amount of pressure energy is wasted. One of the equipment which could be used to recover this waste energy is the reciprocating expansion engine. The purpose of this research is to simulate one-sided reciprocating expansion engine thermodynamically for TBS pressure range. The simulation is based on first law of thermodynamics, conversation of mass and ideal gas assumptions. The model could predict in-cylinder pressure and in-cylinder temperature at various crank angles. In addition, the effects of the engine geometrical characteristics, such as intake and exhaust port area and ports timing on the Indicated work per cycle output are investigated.

Keywords

, Expansion engine, thermodynamic, first law, optimization, ideal gas model.
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@article{paperid:1070444,
author = {Farzaneh-Gord, Mahmood and Soheil Izadi and Seyed Iman Pishbin and Hamideh Sheikhani and Mahdi Deymi-Dashtebayaz},
title = {Thermodynamic analysis of medium pressure reciprocating natural gas expansion engines},
journal = {Polish Journal of Chemical Technology},
year = {2015},
volume = {17},
number = {2},
month = {June},
issn = {1509-8117},
pages = {119--125},
numpages = {6},
keywords = {Expansion engine; thermodynamic; first law; optimization; ideal gas model.},
}

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%0 Journal Article
%T Thermodynamic analysis of medium pressure reciprocating natural gas expansion engines
%A Farzaneh-Gord, Mahmood
%A Soheil Izadi
%A Seyed Iman Pishbin
%A Hamideh Sheikhani
%A Mahdi Deymi-Dashtebayaz
%J Polish Journal of Chemical Technology
%@ 1509-8117
%D 2015

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