Analysis for Selecting Mixed Refrigerant Composition Based on Raw Natural Gas in Propane Pre-Cooled Mixed Refrigerant Liquefaction Process
|更新时间:2025-07-09
|
Analysis for Selecting Mixed Refrigerant Composition Based on Raw Natural Gas in Propane Pre-Cooled Mixed Refrigerant Liquefaction Process
Vol. 44, Issue 2, Pages: 108-112(2010)
作者机构:
西安交通大学能源与动力工程学院,西安,710049
作者简介:
基金信息:
DOI:
CLC:TE6
Online First:10 February 2010,
Published:2010
稿件说明:
移动端阅览
Analysis for Selecting Mixed Refrigerant Composition Based on Raw Natural Gas in Propane Pre-Cooled Mixed Refrigerant Liquefaction Process[J]. 2010, 44(2): 108-112.
DOI:
Analysis for Selecting Mixed Refrigerant Composition Based on Raw Natural Gas in Propane Pre-Cooled Mixed Refrigerant Liquefaction Process[J]. 2010, 44(2): 108-112.DOI:
Analysis for Selecting Mixed Refrigerant Composition Based on Raw Natural Gas in Propane Pre-Cooled Mixed Refrigerant Liquefaction Process
the mixed refrigerant composition in propane pre-cooled mixed refrigerant(PPMR)process for liquefying natural gas is investigated under three kinds of high and low pressures of mixed refrigerant. It is found that the choice of mixed refrigerant composition depends on the specific heat(C
p
)property of raw natural gas
while the high and low pressures of mixed refrigerant influence its composition and flowrate. Based on this
the energy consumption of PPMR process is compared for the above eighteen cases
and it is shown that the specific heat property of raw natural gas plays a key role in reducing the whole system energy consumption rather than the high and low pressures of mixed refrigerant or its composition. For a certain
feed natural gas
the composition and pressure of mixed refrigerant should be selected appropriately to avoid the unnecessary increase of energy consumption.
关键词
Keywords
references
BAILOUT N C, PRICE B C. Comparison of present day peakshaving liquefaction technologies[C]∥8th Topical Conference on Natural Gas Utilization. Washington DC, USA: American Chemical Society, 2008: 101-118.
MOKHATAB S,ECONOMIDES M J. Process selection is critical to onshore LNG economics[J]. World Oil, 2006, 227(2): 95-96.
WILKES M A. Floating LNG liquefaction facilities using the optimized cascade process[C]∥8th Topical Conference on Natural Gas Utilization. Washington DC, USA: American Chemical Society, 2008: 91.
SHI Y, GU A, WANG R, et al. Optimization analysis of peakshaving cycle to liquefy natural gas[C]∥ICEC 20: Proceedings of the Twentieth International Cryogenic Engineering Conference. Oxon, England: Elsevier Science, Ltd., 2005: 741-744.
HOADLEY A F A, REMELJEJ C W. An exergy analysis of small-scale liquefied natural gas(LNG)liquefaction processes[J]. Energy, 2006, 31(12): 1669-1683.
YANG X D, GU A Z, XI W K, et al. Comparison study on small-scale LNG plants in China[C]∥8th Topical Conference on Natural Gas Utilization. Washington, DC, USA: American Chemical Society, 2008: 128-136.
SHI Yumei, WANG Rongshun, GU Anzhong. Influence of parameters on C3/MRC process performance of natural gas liquefaction(1)[J]. Natural Gas Industry, 2004, 24(2): 88-90.
SHI Yumei, WANG Rongshun, GU Anzhong. Influence of parameters on C3/MRC process performance of natural gas liquefaction(2)[J]. Natural Gas Industry, 2004, 24(3): 111-114.