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水合物顶气体油藏的特性是通过三维热能油藏模拟器来模拟的。该模型对水合物相位特性、油藏内的热体流动和压缩以及水合物顶进行描述;可以对油井产量进行计算,对油井构造进行评估,并且可以对实验数据进行匹配;它能够显示出水合物顶的潜在的自封特性。使用水平井和分离气水化合物的各种方式,对固态水合物顶采油的一系列生产情况的调查研究表明,有过多的产出水分以及对水处理设施的需求。在气水化合物的开采过程中应用数据查询程序,获取气水化合物储层的油层参数。这些参数包括相对相应渗透率、热能量以及水合物饱和层的热传导率、压缩参数以及储层中水合物的形成和分解速率。
The characteristics of the hydrate top gas reservoir are modeled by a three-dimensional thermal reservoir simulator. The model describes the phase behavior of hydrates, the flow and compression of heat flow in the reservoir, and the top of the hydrate; it can calculate well production, evaluate well structure, and match experimental data; it can show hydration Potential self-styled properties. Using various methods of horizontal wells and gas-water separations, a series of studies on a range of production scenarios for solid-liquid hydrate top oil production have shown that there is excessive output of water and the need for water treatment facilities. In the process of gas and water compound mining data query program to obtain gas and water reservoir parameters of the reservoir. These parameters include relative permeability, thermal energy, and thermal conductivity of hydrate saturated layers, compression parameters, and formation and decomposition rates of hydrates in the reservoir.