Summary
To exploit the natural gas in China, an analysis of the liquefied natural gas cycle has been made. The mixed refrigerant liquefied natural gas cycle (MRC) is considered comparatively more advanced and efficient. This kind of cycle realizes non-isothermal evaporation by using multi-component refrigerant, therefore, the loss of energy is reduced, and the efficiency is raised. A set of satisfactory programs adopting a modular method has been designed to calculate and then optimize the MRC process. Two processes are optimized. The application background of LNG in China is introduced.
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Details
- Original title: Thermodynamic analysis of the MRC process and its application in China.
- Record ID : 2000-1157
- Languages: English
- Source: 20th International Congress of Refrigeration: Refrigeration into the Third Millennium.
- Publication date: 1999/09/19
Links
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Indexing
- Themes: LNG and LPG
- Keywords: China; Liquefaction; Design; Process; Mixture; Natural gas; Thermodynamic cycle; Refrigerant; Heat exchanger
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Hybrid natural gas liquefaction process.
- Author(s) : AGRAWAL R., ROBERTS M. J.
- Date : 2004
- Languages : English
- Source: Annual proceedings of the Institute of Refrigeration. 2003-2004 [CD-ROM].
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Thermodynamic analysis and optimization of prop...
- Author(s) : SHI Y., GU A., WANG R., et al.
- Date : 2002/04/23
- Languages : English
- Source: Cryogenics 2002. Proceedings of the 7th Cryogenics Conference
- Formats : PDF
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An efficient multi-stage Brayton-JT cycle for l...
- Author(s) : CHANG H. M., CHUNG M. J., LEE S., et al.
- Date : 2011/06
- Languages : English
- Source: Cryogenics - vol. 51 - n. 6
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Micro-scale natural gas liquefaction plants.
- Author(s) : ARTECONI A., BRANDONI C., SANTORI G., et al.
- Date : 2011/08/21
- Languages : English
- Source: Proceedings of the 23rd IIR International Congress of Refrigeration: Prague, Czech Republic, August 21-26, 2011. Overarching theme: Refrigeration for Sustainable Development.
- Formats : PDF
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Design and optimization of natural gas liquefac...
- Author(s) : HE T. B., JU Y. L.
- Date : 2013/08
- Languages : English
- Source: Applied Thermal Engineering - vol. 57 - n. 1-2
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