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Stratum energy of coal-bed gas reservoir and their control on the coal-bed gas reservoir formation

机译:煤层气藏地层能量及其对煤层气藏形成的控制

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Stratum energy of coal-bed gas reservoir, including coal-radix flexibility energy, groundwater flexibility energy and gas flexibility energy (hereinafter "three energy"), depends on the energy homeostasis system, the core process of which is the effective transfer of energy and the geological selective process. Combining with the mechanics experimentations of coal samples, different flexibility energy has been analyzed and researched quantificationally, and a profound discussion to their controls on the coal-bed gas reservoir formation has been made. It is shown that when gas reservoir is surrounded by edge water and bottom water, the deposited energy in the early phase of forming gas reservoir is mostly coal-radix and gas flexibility energy, but the effect of groundwater flexibility energy increases while water-body increases. The deposited energy in the middle and later phase of forming gas reservoir is mostly gas flexibility energy, which is greater than 80% of all deposited energy. In the whole process, larger groundwater body exerts greater influences on gas accumulation. The paper indicated that higher stratum energy is more propitious to forming coal-bed gas reservoir. And higher coal-radix flexibility energy and gas flexibility energy are more propitious to higher yield of gas reservoirs, while higher groundwater flexibility energy is more propitious to stable yield of gas reservoirs. Therefore, the key to evaluating the coal-bed gas reservoir formation is the stratum energy of coal-bed gas reservoir.
机译:煤层气储集层的地层能量,包括煤基柔性能,地下水柔性能和气体柔性能(以下简称“三能”),取决于能量稳态系统,其核心过程是能量的有效传递和传递。地质选择过程。结合煤样的力学实验,对不同的挠性能量进行了定量分析研究,并对它们对煤层气成藏的控制进行了深入的探讨。结果表明,当气藏被边缘水和底水包围时,形成气藏早期的沉积能量主要为煤层气和气态柔性能,但随着水体的增加,地下水柔性能的作用增大。 。形成气藏中后期的沉积能量大部分为气体柔性能量,大于全部沉积能量的80%。在整个过程中,更大的地下水体对天然气成藏的影响更大。文章指出,较高的地层能量更有利于形成煤层气藏。较高的煤-基挠性能和气态挠性能更有利于气藏的高产,而较高的地下水挠性能更有利于气藏的稳定产。因此,评价煤层气藏形成的关键是煤层气藏的地层能。

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