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Study on identification method of tight sand gas and water in the Su54 Region of Sulige gas field

机译:苏里格气田SU54区紧砂煤气与水鉴定方法研究

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The phenomenon of "low-resistivity" gas reservoir and "high-resistivity" water reservoir exist side by side, rapid changes of longitudinal resistivity of the water reservoir and gas and water mixed reservoir in the Su 54 area of Sugeli gas field which caused gas-water identification difficulty. First, the genesis of low-resistivity gas reservoir in tight sand had been analysed. And then, the crossplot acoustic-resistivity method, multiple discriminant analysis method and support vector machine method had been used on gas-water identification method in research. Finally, the gas testing and production dynamic data had been used to verify. The study results show that: the additional conductivity of clay minerals in tight sand reservoir and mud invasion is the main reason for the low-resistivity gas reservoir. And the three gas-water identification methods based on gas testing and production dynamic data made a better recognition effect in practical application; especially the gas-water recognition precision of support vector machine method reaches 93%. This study provides a new thought for the gas-water identification of tight sand gas reservoir.
机译:“低电阻率”气体储层和“高电阻率”水库的现象存在于侧面,苏格里气田苏54面积的水库和天然气和水混合水库纵向电阻率的快速变化。 - 水识别难度。首先,分析了紧密砂中的低电阻率气体储层的成因。然后,在研究中使用了交叉表声 - 电阻率法,多种判别分析方法和支持向量机方法。最后,用于验证气体测试和生产动态数据。研究结果表明:紧身砂储层和泥浆侵入中粘土矿物的额外电导率是低电阻率气体储层的主要原因。基于天然气测试和生产动态数据的三种气体水识别方法在实际应用中对识别效果更好;特别是支持载体机制的气体识别精度达到93%。本研究为紧身砂储层的天然气鉴定提供了新的思路。

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