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A prediction model for water breakthrough time in high-sulfur gas reservoir with edge water

机译:含边缘水的高硫气藏水突破时间的预测模型

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The water coning phenomenon leads to decrease the wellhead pressure with moving of water into gas production zone, which is regarded as one of most serious problems during gas production. It has been shown that water breakthrough time plays an important role in analyzing the water coning phenomenon and production of water. However, the existing prediction models of water breakthrough time are very scarce and need to be discussed. In this work, a novel model for water breakthrough time in high-sulfur gas reservoir with edge water is developed based on flow law and sulfur precipitation model in porous media. The effect of irreducible water saturation, residual gas saturation, and the distance between gas well and edge water, sulfur saturation and gas non-Darcy flow on water breakthrough time was involved in this model. The validity of the proposed model is verified by comparing the existing models available. A good trend is found between them. In addition, the influence of the distance between gas well and edge water, sulfur saturation and gas non-Darcy flow on water breakthrough time was detail discussed further.
机译:随着水进入产气区,水锥现象导致井口压力降低,这被认为是产气期间最严重的问题之一。结果表明,水的突破时间在分析水锥化现象和产水中起着重要作用。但是,现有的突水时间预测模型非常稀缺,需要讨论。在这项工作中,基于流动规律和多孔介质中的硫沉淀模型,开发了一种新的边缘水高硫气藏水突破时间模型。该模型涉及不可减少的水饱和度,残余气体饱和度,气井与边缘水之间的距离,硫饱和度和气体非达西流动对水突破时间的影响。通过比较现有的可用模型来验证所提出模型的有效性。他们之间发现了一个良好的趋势。此外,还详细讨论了气井与边缘水之间的距离,硫饱和度和非达西气流对水突破时间的影响。

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