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Dissociation and subsidence of hydrated sediment: coupled models

机译:水合沉积物的解离和沉降:耦合模型

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Thermal dissociation of hydrated sediment by a pumped hot fluid is modeled. A radial heat flow from the hot pipe is assumed. The coordinate system is cylindrical. Three components (hydrate, methane and water) and three phases (hydrate, gas, and aqueous-phase) are considered in the simulator. The intrinsic kinetics of hydrate formation or dissociation is considered using the Kim-Bishnoi model. Mass transport, including two-phase flow, molecular diffusions and heat transfer involved in formation or dissociation of hydrates are included in the governing equations, which are discretized with finite volume difference method and are solved in an explicit manner. The strength deterioration of the hydrate bed as a result of dissociation is investigated with a geo-mechanical model. The way in which dissociation affects the bed strength is determined by plugging in the porosity and saturation change as a result of dissociation into the sediment collapse equations. A mechanism to measure the pore pressure changes occurring due to dissociation is developed. The rate of collapse as dissociation proceeds is determined and the model thus enables the definition of a safety envelope for gas hydrate drilling.
机译:模拟了泵送的热流体对水合沉积物的热分解。假定来自热管的径向热流。坐标系是圆柱的。在模拟器中考虑了三种成分(水合物,甲烷和水)和三相(水合物,气相和水相)。使用Kim-Bishnoi模型考虑水合物形成或分解的内在动力学。控制方程中包括质量传递,包括两相流,分子扩散和水合物形成或离解涉及的热传递,并用有限体积差法将其离散化,并以明确的方式求解。利用地质力学模型研究了由于解离而导致水合物床的强度下降。解离作用影响床层强度的方式是通过将孔隙度和饱和度的变化作为沉积物塌陷方程的解结来确定的。开发了一种测量由于解离而发生的孔隙压力变化的机制。确定解离过程中的坍塌率,因此该模型可以定义天然气水合物钻井的安全范围。

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