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Sensitivity Analysis of Parameters Governing the Recovery of Methane from Natural Gas Hydrate Reservoirs

机译:天然气水合物储层甲烷回收控制参数的敏感性分析

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Naturally occurring gas hydrates are regarded as an important future source of energy and considerable efforts are currently being invested to develop methods for an economically viable recovery of this resource. The recovery of natural gas from gas hydrate deposits has been studied by a number of researchers. Depressurization of the reservoir is seen as a favorable method because of its relatively low energy requirements. While lowering the pressure in the production well seems to be a straight forward approach to destabilize methane hydrates, the intrinsic kinetics of CH4-hydrate decomposition and fluid flow lead to complex processes of mass and heat transfer within the deposit. In order to develop a better understanding of the processes and conditions governing the production of methane from methane hydrates it is necessary to study the sensitivity of gas production to the effects of factors such as pressure, temperature, thermal conductivity, permeability, porosity on methane recovery from naturally occurring gas hydrates. A simplified model is the base for an ensemble of reservoir simulations to study which parameters govern productivity and how these factors might interact.
机译:天然存在的天然气水合物被认为是重要的未来能源,目前正投入大量精力来开发经济上可行的资源回收方法。许多研究人员已经研究了从天然气水合物矿床中回收天然气的方法。储层降压由于其相对较低的能量需求而被视为一种有利的方法。降低生产井中的压力似乎是使甲烷水合物失稳的直接方法,但CH 4 -水合物分解和流体流动的内在动力学会导致复杂的质量和传热过程。存款。为了更好地理解控制由甲烷水合物生产甲烷的过程和条件,有必要研究天然气生产对压力,温度,导热系数,渗透率,孔隙率等因素对甲烷回收率的影响的敏感性。来自天然存在的气体水合物。简化模型是整个油藏模拟研究的基础,以研究哪些参数控制着产能以及这些因素如何相互作用。

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