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A Thermal Simulation of the Influence of Volcanic Fluids on Source Rock

机译:火山岩流体对烃源岩影响的热模拟

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In ihc Songliao Basin, Cretaceous Yingcheng volcanic rock is an important natural gas reservoir. Volcanic rocks and source rocks interspersed in the fault depressions represent ideal places for studying the interactions between volcanic fluids and source rock. Thermal simulations for this study include the dry system and the fluid system. The characteristics of the gas yield and gas composition were analyzed under four temperature gradients: 300℃, 350℃, 400℃, and 450℃. The results of the experiment showed that in both systems, the gas yield increases with an increase in temperature. The gas compositions are similar, containing H_2, CO, CO_2, and gaseous C_1-C_5 hydrocarbons. Compared with the dry system, the gas yield of the volcanic fluid to mudstone system has a critical temperature between 350℃ and 450℃. When the temperature is below the critical temperature, the gas yield increases, and vice versa. The generation of CO_2 is promoted by the volcanic fluids, but the generation of H_2 and C_1-C_5 series gaseous hydrocarbons is simultaneously restrained. In the fluid system, the content of Ib and gaseous C_1-C_5 hydrocarbons is lower, but CO_2 content is greater than in the dry system. This can explain the fact that a huge amount of CO_2 gas is present as a reservoir in the Songliao Basin.
机译:在松辽盆地,白垩统营城火山岩是重要的天然气藏。散布在断层凹陷中的火山岩和烃源岩是研究火山流体与烃源岩相互作用的理想场所。这项研究的热模拟包括干式系统和流体系统。在300℃,350℃,400℃和450℃四个温度梯度下分析了天然气的产量和组成特征。实验结果表明,在两种系统中,气体产率均随温度的升高而增加。气体组成相似,包含H_2,CO,CO_2和气态C_1-C_5烃。与干式系统相比,火山岩流体进入泥岩系统的出气临界温度在350℃至450℃之间。当温度低于临界温度时,气体产率增加,反之亦然。火山流体促进了CO_2的生成,但同时抑制了H_2和C_1-C_5系列气态烃的生成。在流体系统中,与干式系统相比,Ib和气态C_1-C_5烃的含量较低,但CO_2的含量较高。这可以解释以下事实:松辽盆地中存在大量的CO_2气藏。

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