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A new implicit fictitious domain method for the simulation of flow in complex geometries with heat transfer

机译:一种新的隐式虚拟域方法,用于模拟带有传热的复杂几何形状中的流动

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摘要

A numerical algorithm for the simulation of flow past immersed objects with heat transfer is proposed and validated which conforms with the ideas of the fictitious domain method. A momentum source term is added to account for the presence of the object and a heat source term is proposed to impose the Dirichlet boundary condition on the surface of the objects. The algorithm is an implicit fictitious domain based method where the entire fluid-immersed object domain assumed to be an incompressible fluid. The flow domain is constrained to be divergence free, whereas a rigidity constraint is imposed on the body domain. Heat transfer is similarly considered by assuming that the object domain is filled with a fluid with different thermal properties. The SIMPLE algorithm with a collocated grid arrangement is used for pressure-velocity coupling which is unconditionally stable. The algorithm is validated by considering stationary, forced motion and freely moving objects with both isothermal and freely variable temperature inside the object. Good agreement with previous numerical and experimental studies for all the test cases is observed.
机译:提出并验证了一种模拟流经浸没物体的传热数值算法,该算法符合虚拟域方法的思想。增加了动量源项以说明对象的存在,并提出了热源项以将Dirichlet边界条件强加于对象的表面。该算法是基于隐式虚拟域的方法,其中整个流体浸没对象域都假定为不可压缩流体。流动域被约束为无散度,而刚度约束则施加在主体域上。通过假设对象域充满了具有不同热特性的流体,也可以类似地考虑传热。具有并置网格排列的SIMPLE算法用于无条件稳定的压力-速度耦合。通过考虑物体内部等温和自由变化温度的静止,强制运动和自由移动的物体来验证算法。观察到与所有测试用例的先前数值和实验研究具有良好的一致性。

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