The double carbon strategy and new energy tech advancements have led to increased integration of associated gas power generation in oilfield grids. However, this process is random and uncontrollable, causing reactive power impact and voltage stability issues. This paper explores three reactive power compensation strategies: static reactive power generators, TCRs, and a combination of TCR with SVG. The comparative analysis shows that the TCR-SVG combination has a quick response time of 25ms, maintains voltage THD at 3.21%, and limits power losses to 5%. The paper suggests an integrated approach for optimizing reactive power to mitigate harmonic distortion, enhancing safety, stability, and power quality in associated gas power systems.

错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Transient Voltage Optimisation of Distributed Oilfield Associated Gas Power Generation for Grid Connection

  • Siyu He,
  • Longzhen Wang,
  • Yifeng Sun,
  • Chang Liu,
  • Yijun Jiang,
  • Qinyue Tan

摘要

The double carbon strategy and new energy tech advancements have led to increased integration of associated gas power generation in oilfield grids. However, this process is random and uncontrollable, causing reactive power impact and voltage stability issues. This paper explores three reactive power compensation strategies: static reactive power generators, TCRs, and a combination of TCR with SVG. The comparative analysis shows that the TCR-SVG combination has a quick response time of 25ms, maintains voltage THD at 3.21%, and limits power losses to 5%. The paper suggests an integrated approach for optimizing reactive power to mitigate harmonic distortion, enhancing safety, stability, and power quality in associated gas power systems.