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A preliminary study of the gas hydrate stability zone in a gas hydrate potential region of China

机译:中国天然气水合物潜在地区天然气水合物稳定区的初步研究

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摘要

Due to its significance for gas hydrate accumulation, the gas hydrate stability zone (GHSZ) is an essential condition for successful gas hydrate exploration and is usually controlled by three main factors: gas components, geothermal gradient, and permafrost thickness. Based on the core and conventional log data of gas hydrate potential region, the CSMHYD program was adopted to simulate the influences of above three factors on the thickness of the GHSZ. When the gas components of the gas hydrate were CH4, C2H6, and C3H8, with the CH4 percentage ranging from 50% to 100%, the average GHSZ thickness can reach 1000?m according to the forward simulation results. When the gas hydrate was composed of CH4 and one of C2H6, C3H8, H2S, and CO2, the influence order of the above four gases on the thickness of GHSZ is as follows: H2S?>?C2H6?>?C3H8?>?CO2. Under the gas components of 90% CH4, 5% C2H6, and 5% C3H8, the thickness of GHSZ decreased rapidly as the geothermal gradient increased following an exponential relation with a correlation of 99.92% and increased slowly as permafrost thickness increased following a linear relation with a correlation of 99.9%. In addition, the thickness of a gas hydrate favorable reservoir was determined by comprehensive log methods as 500?m. We conclude that a reservoir within 500?m below the permafrost layer is favorable for gas hydrate reservoir formation.
机译:由于其对天然气水合物积累的重要性,天然气水合物稳定区(GHSZ)是成功的天然气水合物勘探的必要条件,通常由三个主要因素控制:气体成分,地热梯度和永久冻土厚度。基于天然气水合物潜在地区的核心和常规日志数据,采用CSMHYD程序模拟上述三个因素对GHSZ厚度的影响。当气体水合物的气体组分是CH 4,C 2 H 6和C3H8时,CH 4百分比范围为50%至100%,平均GHSZ厚度可根据前向仿真结果达到1000μm。当气体水合物由CH 4和C 2 H 6,C 3 H 2,H 2 S和CO 2中的一种组成时,上述四种气体的影响顺序如下:H2S?>?C2H6?>?C3H8?>?CO2 。在90%CH 4,5%C 2 H6和5%C3H8的气体组分下,随着在线性关系的指数关系随着99.92%的相关性而增加,GHSz的厚度随着线性关系而增加而随着PERMAFRost厚度在线性关系的增加而增加,因此GEMOTERMAL梯度增加相关性为99.9%。另外,通过综合原木方法为500μm,测定气水合物有利储存器的厚度。我们得出结论,在多年冻土层下方500μm内的储存器有利于气体水合物贮存器形成。

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