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国家自然科学基金(40642013)

作品数:3 被引量:73H指数:3
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淮北宿临矿区现今地温场的构造控制被引量:22
2009年
基于对淮北宿临矿区的地温场研究,分析了研究区现今地温场的分布特点,并据此揭示了研究区构造对现今地温场的控制作用.研究表明,宿临矿区地温场分布明显受构造控制,徐宿推覆构造上、下盘地温场差异明显,上盘地温梯度值明显低于下盘;背斜隆起区地温梯度高于向斜凹陷区域,童亭背斜为一整体地温梯度相对偏高的构造单元;研究区断裂对地温场分布有着重要影响,在大断裂交汇处、断裂密集处地温梯度也相对偏高.
谭静强琚宜文张文永侯泉林谭永杰
关键词:现今地温场
Behavior and mechanism of the adsorption/desorption of tectonically deformed coals被引量:26
2009年
The physical and chemical texture of tectonically deformed coals produced by various formational mechanisms are different from those of primary coals,thus resulting in major differences among the physical properties of the reservoirs of these coals. We have studied the adsorption/desorption be-havior of tectonically deformed coals by the use of isothermal adsorption/desorption experiments un-der equilibrium moisture condition. Experiments of isothermal adsorption/desorption of methane or multi-component gases have indicated that,the adsorption curves of coals with a low degree of tec-tonic deformation conform to the type of isothermal adsorption curve described by the Langmuir equation; the methane adsorption curves of coals with strong tectonic deformation cannot be de-scribed by the Langmuir equation. The adsorption/desorption process of methane and multi-compo-nent gases in the deformed coals is not consistent with primary coals,which form an effect of hys-teresis in different kinds of tectonically deformed coals. With the change of pore structure of tectoni-cally deformed coals at reservoir condition,the added adsorbed CH4 in the experiments is desorbed on the pore surface of coals during the pressure reduction process. Thus,the result shows that the ad-sorption volume in the process of desorbing is greater than that in adsorbing. Because of the defor-mation,structural change,and transformation of the adsorption potential field of coals,it is essential to form a new kind of isothermal adsorption curve and the hysteresis effect of the desorption process.
JU YiWenJIANG BOHOU QuanLinTAN YongJieWANG GuiLiangXIAO WenJiao
关键词:物理性质
煤储层甲烷稳定碳同位素与煤层气运移
<正>煤层气在煤层中有吸附气、游离气和水溶气3种状态;其间可以相互转化。煤层气的迁移机理也有几种:吸附气要先解吸才能从煤层中被带走(桑树勋等,2005;桑树勋等,2005),可能还通过盖层扩散、通过断层流动散失、水驱作用...
琚宜文林红李小诗侯泉林谭静强范俊佳
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