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首页> 外文期刊>Journal of the Japan Petroleum Institute >Development of Streamline-based Heat Transport Model for Thermal Oil-recovery Simulation
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Development of Streamline-based Heat Transport Model for Thermal Oil-recovery Simulation

机译:基于流线的热力采油模拟传热模型的开发

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摘要

The streamline method was extended to thermal oil-recovery simulation by developing an appropriate heat transport model based on the streamline method for implemention into a thermal recovery simulator.The heat transport model consisted of convection from the flowing phases and diffusion terms of gravity,capillary force,and conduction.An operator splitting technique was applied to decouple the convective and diffusive parts for separate solution.The convective part,a non-linear one-dimensional hyperbolic equation,was solved by the implicit single-point upwind scheme along the streamlines.The diffusive part,a non-linear,mixed hyperbolic-parabolic equation modeling gravity,capillary force and conduction,was solved using finite-difference discretization over the three-dimensional grid.The pressures for defining streamlines were obtained by solving the fluid flow equations with a finite-difference Newton method considering the compressibility,depletion and capillary forces.Simulations of hot water-flooding in two-dimensional and three-dimensional heavy-oil reservoirs were conducted to verify the model.The simulation results were compared with those of a commercial thermal simulator,which demonstrated that the streamline approach is a viable alternative to conventional finite-difference methods for heat transport calculations within a thermal simulator.
机译:通过基于流线方法开发合适的热传输模型,将流线方法扩展到热油采收率模拟中,以实现到热采模拟器中。该热传输模型由流动相的对流和重力,毛细管力的扩散项组成运用算子分裂技术将对流和扩散部分解耦以得到单独的解。对流部分是非线性一维双曲方程,通过沿流线的隐式单点迎风方案求解。扩散部分是在三维网格上使用有限差分法求解的,是一个模拟重力,毛细作用力和传导的非线性混合双曲-抛物线方程。定义流线的压力是通过用考虑压缩性,耗竭性和毛细作用力的有限差分牛顿法在二维和三维稠油油藏中进行了注水,以验证该模型。将模拟结果与商业热模拟仪的模拟结果进行了比较,这表明流线型方法是常规有限元分析方法的可行替代方案。热仿真器中热传输计算的不同方法。

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