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Simulation of Technogenic and Climatic Influences in Permafrost for Northern Oil Fields Exploitation

机译:北方油田剥削的永久冻土介绍和气候影响的仿真

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In this paper a mathematical model for simulation of thermal fields from wells located in permafrost area is considered, which takes into account basic physical, technological, and climatic factors that lead to a nonlinear boundary condition on the surface of the soil. To find the thermal fields a finite-difference method is used to solve the problem of Stefan type, and solvability of the corresponding difference problem is proved. Possibilities of the developed software are presented to carry out various numerical experiments and make long-term forecasts in simulations of thermal fields in the system "well - permafrost" with annual cycle of thawing/freezing the upper layers of the soil due to seasonal temperature changes, intensity of solar radiation and technical parameters of the wells. Comparison of numerical and experimental data are in good agreement (difference is about 5 %) due to, in particular, that the software adapts to the geographic location by using special iterative algorithm of determination of the parameters, included in the non-linear boundary condition on the soil surface.
机译:在本文中,考虑了一种用于仿真位于多年冻土区域的井中的热场的数学模型,这考虑了导致土壤表面上的非线性边界条件的基本物理,技术和气候因子。为了找到热场,用于解决斯特凡型问题的有限差分方法,并证明了相应差异问题的可解性。提出了开发软件的可能性,以进行各种数值实验,并在系统“井 - 永久冻土”中的热场模拟中进行长期预测,其由于季节性温度变化而导致土壤的上层循环/冻结地层,太阳辐射强度和井的技术参数。数值和实验数据的比较良好(差异约为5%),特别是通过使用特殊的迭代算法在非线性边界条件中包含的特殊迭代算法适应地理位置在土壤表面上。

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