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CNG压缩机节能技术与试验分析
引用本文:梁政,李双双,田家林,朱小华,梅庆刚,张力文.CNG压缩机节能技术与试验分析[J].天然气工业,2013,33(2):95-98.
作者姓名:梁政  李双双  田家林  朱小华  梅庆刚  张力文
作者单位:1.石油天然气装备教育部重点实验室·西南石油大学;2.中国石油西南油气田公司销售分公司
基金项目:四川省教育厅成果转化重大培育项目"压缩天然气站高效运行关键基础技术研究",石油天然气装备教育部重点实验室资助项目
摘    要:压缩机是CNG加气站的主要耗能单元,但目前我国CNG技术起步较晚、研究不够深入,导致CNG加气站工艺流程不尽合理、CNG压缩机整体性能不够优良,系统运行能耗高、效率低。为此,针对CNG压缩机效率低、能耗高的问题,开展了压缩机能耗影响关键参数分析和节能技术研究。结合CNG压缩机工艺提出了对压缩缸级间回气进行冷却、分离的节能技术改造方案,完成了L-12/5-250型CNG压缩机第二、四级级间回气管线加装冷却器的节能技术改造,并进行了系统的现场能耗测试。在不改变冷却系统和CNG压缩机系统其他设备及参数的条件下,对比测试了原料气进气压力分别为0.35、0.38、0.40 MPa时关闭和开启第二、四级级间冷却器工况下压缩机的运行参数和能耗数据,得到对应节能比分别为3.87%、4.04%、3.96%,节能效果良好,验证了该节能改造技术的可行性。

关 键 词:CNG  压缩机  能耗  节能技术改造  级间冷却  可行性

An experimental study of technical measures for energy saving of CNG compressors
Liang Zheng,Li Shuangshuang,Tian Jialin,Zhu Xiaohua,Mei Qinggang,Zhang Liwen.An experimental study of technical measures for energy saving of CNG compressors[J].Natural Gas Industry,2013,33(2):95-98.
Authors:Liang Zheng  Li Shuangshuang  Tian Jialin  Zhu Xiaohua  Mei Qinggang  Zhang Liwen
Affiliation:1.Key Laboratory of Oil and Gas Equipment of Ministry of Education∥Southwest Petroleum University, Chendu, Sichuan 610500, China; 2.Natural Gas Sales Division of Southwest Oil & Gasfield Company, PetroChina, Chengdu, Sichuan 610017, China
Abstract:For lack of intensive studies and advanced techniques, unreasonable flow process and poor performance of CNG compressors have resulted in high energy consumption and low working efficiency, which have restricted the development of CNG filling stations in China. In view of this, this paper aims to study how to improve the efficiency and reduce the energy consumption of a CNG compressor, which is the most energy consumption unit of a CNG filling station. Thus, a study was made on what key parameters have impact on the efficiency of a compressor and what technical measures should be taken. Based on the compressing process, the transformation schemes were presented of cooling and separating the return gas between the stages of pipe loops. In a pilot test performed on an L-12/5-250 compressor, a cooler was installed in the intersage line between the second and the fourth pipe loops and the evaluation test was also made subsequently on the energy saving effect. Only when the intake pressure of inlet feed gas was adjusted at 0.35, 0.38, 0.40 MPa respectively and with no any other changes ever done on the same compressor, the operating parameters and energy consumption data were recorded and compared between two working conditions when the installed cooler was on and off. As a result, the energy consumption of the compressor with the cooler on was saved by 3.87%, 4.04%, 3.96% accordingly, which verifies the feasibility of the above transformation schemes.
Keywords:
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