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Stratum energy of coal-bed gas reservoir and their control on the coal-bed gas reservoir formation 被引量:9
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作者 WU CaiFang QIN Yong FU XueHai 《Science China Earth Sciences》 SCIE EI CAS 2007年第9期1319-1326,共8页
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 sy... 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 reser voir 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. 展开更多
关键词 coal-bed reservoir FLEXIBILITY energy coal-radix FLEXIBILITY energy GROUNDWATER FLEXIBILITY energy gas FLEXIBILITY energy coal-bed gas reservoir formation
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煤储层弹性能及其控藏效应:以沁水盆地为例 被引量:8
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作者 吴财芳 秦勇 《地学前缘》 EI CAS CSCD 北大核心 2012年第2期248-255,共8页
煤层气成藏的主控因素包括合适的压力系统、运移系统以及相应的能量作用机制,其实质是煤储层有效压力系统和有效运移系统时空配置关系。而煤储层弹性能正是有效压力系统与有效运移系统之间的联系和作用纽带。文中提出了不同相态物质的... 煤层气成藏的主控因素包括合适的压力系统、运移系统以及相应的能量作用机制,其实质是煤储层有效压力系统和有效运移系统时空配置关系。而煤储层弹性能正是有效压力系统与有效运移系统之间的联系和作用纽带。文中提出了不同相态物质的弹性能模型,建立了煤层气成藏效应三元判识标志,并探讨了沁水盆地三元判识标志的展布特征。三元判识标志包括煤储层裂隙发育程度系数ζ1、煤储层裂隙开合程度系数Δ、煤储层压力系统发育程度系数ζ2。其中ζ1、Δ可以定量表示煤储层有效运移系统,ζ2可以定量表示煤储层有效压力系统。依据三元判识标志,分析了煤储层弹性能控藏效应,并提出判别煤层气成藏类型的三元模式。研究认为:煤层气成藏效应类型可分为27种,其中8种类型有利于煤层气富集高产。而沁水盆地实际上只存在2种有利类型,即有效压力系统-有效运移系统类型和较有效压力系统-较有效运移系统类型,分别分布于盆地南部大宁—潘庄—樊庄地区、沁水—郑庄—樊庄以及中部的沁源—安泽之间。 展开更多
关键词 煤储层弹性能 有效压力系统 有效运移系统 成藏类型 沁水盆地
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