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首页> 外文期刊>International Journal of Oil, Gas and Coal Technology: IJOGCT >Study on the wellbore flow and phase transition during formation H2S invasion
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Study on the wellbore flow and phase transition during formation H2S invasion

机译:硫化氢侵入过程中井筒流动和相变研究

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摘要

Considering the special physical properties of hydrogen sulphide (H2S) and its phase transition in the wellbore, a mathematical model for wellbore flow and heat transfer during formation H2S invasion was established. Heat transfer and pressure were calculated along with H2S physical properties parameters, and a solution method of the model was proposed. The results indicate that liquid H2S transforms into gas state during its rising process in the annulus when choke pressure is low; the flow above phase transition point is two-phase flow while the flow below phase transition point is single-phase flow in the annulus. The paper exhibits the results and the reasons of the bottom-hole pressure and the depth of phase transition varying with different H2S influx rate, injection rate, choke pressure, and land surface temperature. The study is of certain significance for improving the safety during the exploration of acidic oil and gas reservoirs.
机译:考虑到硫化氢(H2S)的特殊物理特性及其在井筒中的相变,建立了H2S侵入过程中井筒流动和传热的数学模型。计算了传热和压力以及硫化氢的物理性质参数,并提出了模型的求解方法。结果表明,当cho气压力较低时,液态硫化氢在环空上升过程中转变为气态。相变点以上的流动是两相流,而相变点以下的流动是环空中的单相流。本文介绍了结果和原因,即不同的H2S入流速率,注入速率,阻塞压力和地表温度会导致井底压力和相变深度的变化。该研究对于提高酸性油气藏勘探安全性具有一定意义。

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