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Numerical Analysis of Steady and Transient Natural Convection in an Enclosed Cavity

机译:封闭腔中稳态瞬态自然对流的数值分析

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The paper presents the numerical simulation of natural convection heat transfer of air inside an enclosed cavity which can be helpful to find out the critical width of insulation in air insulated walls seen in residential buildings and industrial furnaces. Natural convection between two walls having different temperatures have been simulated using ANSYS FLUENT 12.0 in both steady and transient conditions. To simulate different heat transfer and fluid flow conditions, Rayleigh number ranging from 10~3 to 10~5 has been maintained (i.e. Laminar flow.) In case of steady state analysis, the CFD predictions were in very good agreement with the reviewed literature. Transient simulation process has been performed by using User Defined Functions, where the temperature of the hot wall varies with time linearly. To obtain and compare the heat transfer properties, Nusselt number has been calculated at the hot wall at different conditions. The buoyancy driven flow characteristics have been investigated by observing the flow pattern in a graphical manner. The characteristics of the system at different temperature differences between the wall has been observed and documented.
机译:本文介绍了在封闭腔内的空气中的自然对流传热的数值模拟,这有助于找出住宅建筑和工业炉中的空气绝缘壁中的绝缘突出宽度。在稳定和瞬态条件下,使用ANSYS流畅的12.0模拟了具有不同温度的两个壁之间的自然对流。为了模拟不同的传热和流体流动条件,RAYLEIGH数量从10〜3到10〜5的范围(即层流。)在稳态分析的情况下,CFD预测与审查的文献非常好。通过使用用户定义的功能进行了瞬态仿真过程,其中热壁的温度随时间变化而线性。为了获得和比较传热性质,在不同条件下的热壁上已经计算了篮板。通过以图形方式观察流动模式,已经研究了浮力驱动的流动特性。已经观察并记录了系统在壁之间不同温度差的系统的特性。

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