首页> 外文期刊>Numerical Heat Transfer, Part B. Fundamentals: An International Journal of Computation and Methodology >Study of mixed-convection heat transfer from an impinging jet to a solid wall using a finite-element method-application to cooktop modeling
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Study of mixed-convection heat transfer from an impinging jet to a solid wall using a finite-element method-application to cooktop modeling

机译:有限元法研究从射流到固体壁的混合对流传热-在炉灶面建模中的应用

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The mixed-convection flow from a hot vertical impinging jet on a colder horizontal disc has been studied. The geometry is analogous to a conventional burning gas cooktop. A numerical simulation of the system has been carried out using the finite-element method to study the dependence of fluid flow and heat transfer on the geometric, thermal, and fluid flow parameters. Results show that heat transfer efficiency versus several parameters such as inlet velocity magnitude and flue gas temperature has an optimum value, in which heat transfer efficiency is maximum. With thermal conductivity of the solid wall, velocity angle, and solid wall diameter heat transfer efficiency has increasing behavior. Finally, with solid wall height and solid wall thickness, heat transfer efficiency has diminishing behavior.
机译:研究了来自较热的垂直撞击射流在较冷的水平圆盘上的混合对流。该几何形状类似于常规的燃烧气体灶台。已经使用有限元方法对系统进行了数值模拟,以研究流体流动和传热对几何,热学和流体流动参数的依赖性。结果表明,传热效率与进气速度大小和烟道气温度等几个参数具有最佳值,其中传热效率最大。随着固体壁的导热性,速度角和固体壁直径的传热效率增加。最后,对于坚固的壁高和坚固的壁厚,传热效率会降低。

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