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首页> 外文期刊>International journal of engineering research in Africa >Numerical Investigation of Fluid-Structure Thermal Coupling under the Transient Flow Effect
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Numerical Investigation of Fluid-Structure Thermal Coupling under the Transient Flow Effect

机译:瞬态流动效应下流体结构热耦合的数值研究

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This work is based on a numerical study of the fluid-structure thermal coupling in a concrete slab intended for habitable heating. A rectangular cross-section pipe in which a hot fluid flow is installed in this concrete slab. The Navier-Stokes equations that govern this flow have been solved numerically. To this end, these equations have been discretized by an implicit finite difference method. The systems of algebraic equations thus obtained have been solved by the Gauss and Thomas algorithms. The conduction equation in the concrete slab was solved using the same methodology as that of flow. In fact, we have based on an algorithm that makes an unsteady solid medium interact with a fluid medium consisting of permanent states series while ensuring the equality of fluxes and temperatures on the common interface between both media at every moment. The numerical simulation of heat transfer and the thermal behavior of the heating slab were analyzed for different parameters influencing thermal diffusion. The results obtained by the numerical model adopted for the control of the fluid-structure coupling are in good agreement with those of the literature results.
机译:这项工作基于用于可居住加热的混凝土板中的流体结构热耦合的数值研究。在该混凝土板中安装热流体流量的矩形横截面管。管理该流量的Navier-Stokes方程在数值上进行了解决。为此,通过隐含的有限差分方法离散化这些方程。由此获得的代数方程系统已经通过高斯和托马斯算法解决。使用与流动的相同方法求解混凝土板中的导通方程。事实上,我们基于一种算法,该算法使不稳定的固体介质与由永久态系列组成的流体介质相互作用,同时确保每时每刻都在两个媒体之间的公共接口上的平等和温度。分析了热传导的传热和加热板的热行为的数值模拟,影响热扩散的不同参数。通过用于控制流体结构耦合的数值模型获得的结果与文献结果吻合良好。

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