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Finite Element Modeling of Thermal Mechanical Coupling in Thermal Recovery Wells

机译:热采井中热力耦合的有限元建模

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In thermal recovery wells, the temperature of heat steam is very high and casing is heated during steam injection process, which has become the main reason of casing failure. Therefore, it is very important to analyze the thermal mechanical coupling in thermal recovery wells. Finite element modeling of thermal mechanical coupling for thermal recovery wells is analyzed as basis of ADINA. Three-dimensional finite element model is investigated; geometry model is constructed with native and parasolid method in ADINA. The casing is modeled by native method and strata are modeled by parasolid method, casing are subtracted and merged with strata by Boolean Operation. Gravity and displacement loads are defined in structure model, and temperature load in thermal model.In thermal model, all materials are treated as heat conduction material. Thermal-mechanical coupling is calculated with the thermo-mechanical coupled analysis solver in ADINA. According to the calculating results of thermal-mechanical coupling, the mechanism of casing damage is analyzed. Finally, some advice is proposed to prolong the casing life of thermal recovery wells.
机译:在热采井中,蒸汽注入过程中热蒸汽温度很高,套管被加热,这已成为套管故障的主要原因。因此,分析热采井中的热力机械耦合非常重要。作为ADINA的基础,对热采井热力耦合的有限元建模进行了分析。研究了三维有限元模型;在ADINA中使用本机和准实体方法构造几何模型。用本机方法对套管进行建模,用准固体方法对地层进行建模,通过布尔运算减去套管并将其与地层合并。在结构模型中定义了重力和位移载荷,在热模型中定义了温度载荷。在热模型中,所有材料都被视为导热材料。热力耦合是使用ADINA中的热力耦合分析求解器来计算的。根据热力耦合的计算结果,分析了套管损伤的机理。最后,提出一些建议以延长热采井的套管寿命。

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