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首页> 外文期刊>Brazilian journal of chemical engineering >Integral transform solution of natural convection in a square cavity with volumetric heat generation
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Integral transform solution of natural convection in a square cavity with volumetric heat generation

机译:体积热产生的方腔内自然对流的积分变换解

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The generalized integral transform technique (GITT) is employed to obtain a hybrid numerical-analytical solution of natural convection in a cavity with volumetric heat generation. The hybrid nature of this approach allows for the establishment of benchmark results in the solution of non-linear partial differential equation systems, including the coupled set of heat and fluid flow equations that govern the steady natural convection problem under consideration. Through performing the GITT, the resulting transformed ODE system is then numerically solved by making use of the subroutine DBVPFD from the IMSL Library. Therefore, numerical results under user prescribed accuracy are obtained for different values of Rayleigh numbers, and the convergence behavior of the proposed eigenfunction expansions is illustrated. Critical comparisons against solutions produced by ANSYS CFX 12.0 are then conducted, which demonstrate excellent agreement. Several sets of reference results for natural convection with volumetric heat generation in a bi-dimensional square cavity are also provided for future verification of numerical results obtained by other researchers.
机译:使用广义积分变换技术(GITT)获得具有体积热量产生的腔体中自然对流的混合数值分析解决方案。这种方法的混合性质允许在非线性偏微分方程系统的解决方案中建立基准测试结果,包括控制所考虑的稳态自然对流问题的热流体耦合方程组。通过执行GITT,然后通过使用IMSL库中的子例程DBVPFD对生成的转换ODE系统进行数值求解。因此,对于不同的瑞利数值,可以获得用户指定精度下的数值结果,并说明了所提出的本征函数展开的收敛行为。然后与ANSYS CFX 12.0产生的解决方案进行了关键比较,这表明了极好的一致性。还提供了几组关于二维方腔中自然对流和体积热产生的参考结果,以供将来验证其他研究人员获得的数值结果。

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