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基于等温吸附曲线煤储层评价指标的建立 被引量:1
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作者 张云峰 《石油化工应用》 CAS 2021年第7期90-95,共6页
云南YW煤层气区块9号煤层平均含气量虽然较高,达9.7 cm^(3)/g,但由于地质构造复杂,经多年勘探评价,仍未取得突破,单井产气量仅50~300 m^(3)/d。基于等温吸附曲线,从煤层气成藏要素-吸附气体、煤储层介质及外部围岩环境的角度,通过数学... 云南YW煤层气区块9号煤层平均含气量虽然较高,达9.7 cm^(3)/g,但由于地质构造复杂,经多年勘探评价,仍未取得突破,单井产气量仅50~300 m^(3)/d。基于等温吸附曲线,从煤层气成藏要素-吸附气体、煤储层介质及外部围岩环境的角度,通过数学推导、计算及实验数据的统计分析,筛选并定义了三个煤储层评价指标-含气指数(GBI)、构造煤指数(TDCI)和保存压力(PP)。采用该指标体系对云南YW区块9号煤层进行了评价,结果表明:含气指数较高区域(GBI>0.6)位于区块中部,但该区域主要为碎粒和糜棱结构的煤体结构,容易造成气体运移通道堵塞,导致现有单井产气量不高;仅在北部原生-碎裂结构分界线附近较适宜部署,实际有利区非常有限。因此,该指标体系为构造复杂煤层气区块的储层评价提供了一种新思路。 展开更多
关键词 煤层气 等温吸附曲线 煤储层评价 含气指数 构造煤 保存压力
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Ice-Shielding Models for Self-Preservation of Gas Hydrates 被引量:4
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作者 Tsutomu Uchlda Toshimitsu Sakurai Takeo Hondoh 《Journal of Chemistry and Chemical Engineering》 2011年第8期691-705,共15页
The self-preservation of methane hydrate is a key process in its engineering applications because the hydrate can survive for a significant period under atmospheric pressure and moderate temperature. Some experiments ... The self-preservation of methane hydrate is a key process in its engineering applications because the hydrate can survive for a significant period under atmospheric pressure and moderate temperature. Some experiments have predicted that the shielding ice formed on the hydrate surface after initial dissociation of the hydrate plays an important role in the self-preservation effect. We propose ice-shielding models of gas hydrates to investigate the dissociation rates quantitatively, including the self-preservation process, at temperatures below the ice-melting point and at atmospheric pressure. Three general models are constructed for two temperature ranges The rate-determining process for the lower temperature range is hydrate dissociation, and those for the higher range are gas diffusion through ice or hydrate layers, which depend on the thickness of the shielding-ice layer. Our models suggest that the extent of self-preservation depends on temperature, original hydrate size, and guest substances, which can explain the experimental results. 展开更多
关键词 SELF-PRESERVATION gas hydrate dissociation kinetics gas diffusion in solid.
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