石油化工设备技术 ›› 2026, Vol. 47 ›› Issue (1): 61-65.doi: 10.3969/j.issn.1006-8805.2026.01.010

• 检维修技术 • 上一篇    

高含硫气田天然气处理装置中液力透平能量回收效率提升研究

陈 杰,刘 畅,王智勇,谷卓然   

  1. 中石化广元天然气净化有限公司,四川 广元 628400
  • 收稿日期:2025-02-10 修回日期:2025-09-23 接受日期:2025-12-31 出版日期:2026-01-15 发布日期:2026-01-21
  • 作者简介:陈杰,女,2020年毕业于西南石油大学化学工程技术专业,硕士研究生,现从事天然气净化专业相关工作,中石化广元天然气净化有限公司设备副主任师,工程师。

Study on Improving the Energy Recovery Efficiency of Hydraulic Turbines in Natural Gas Processing Units for High-Sulfur Gas Fields

Chen Jie, Liu Chang, Wang Zhiyong, Gu Zhuoran   

  1. SINOPEC Guangyuan Natural Gas Purification Co., Ltd., Guangyuan, Sichuan, 628400
  • Received:2025-02-10 Revised:2025-09-23 Accepted:2025-12-31 Online:2026-01-15 Published:2026-01-21

摘要: 某天然气净化联合装置使用液力透平作为贫溶剂泵的节能设备,由于原料气管网压力和溶剂循环量等诸多因素影响,该透平未能在理想工况下运行,存在能量回收效率不高、实际效率与理论值偏差较大的问题,造成各套联合装置贫溶剂泵(P-101A)的耗电量有所差异。文章从人、机两方面入手,对液力透平的运行情况进行了仔细的分析和研究,确认进出透平的富液流量、P-101A出口流量和总动水头值(TDH)是影响其运行效率的主要原因。针对上述原因,从有效性、可实施性、经济性等方面着手,制定出切实有效的对策和实施方案,使得单套联合装置液力透平的能量回收效率比优化前提高了13.40%,达到了预期目标,有效节约了联合装置能耗。

关键词: 天然气净化, 液力透平, 能量回收效率, 耗电量

Abstract: A hydraulic turbine (HT-101) is employed as an energy-saving device for the lean solvent pump (P-101A) in a natural gas purification complex. However, due to fluctuations in raw gas pipeline pressure, solvent circulation rates and other influencing factors, HT-101 ope-rates under suboptimal conditions, resulting in low energy recovery efficiency and a significant deviation between actual and theoretical efficiency. Consequently, this causes variations in power consumption among P-101A pumps within the complex. This paper conducted a comprehensive analysis and study on the operational performance of the hydraulic turbine from both human and equipment perspectives. It has identified that the rich solvent flow entering and exiting the turbine, the P-101A outlet flow rate and the total dynamic head value (TDH) are the primary factors affecting its operating efficiency. Aiming at the above reasons, effective countermeasures and implementation plans were formulated from the perspectives of effectiveness, feasibility, and economic viability. As a result, the energy recovery efficiency of hydraulic turbine in the single combined unit has been improved by 13.40% compared to pre-optimization levels, achieving the expected targets and reducing the energy consumption of the complex effectively.

Key words: natural gas purificationlhydrodynamic turbinelenergy recovery efficiencylpower consumption