首页> 外文期刊>Indian Journal of Science and Technology >CFD Analysis of Thermal Performance in Isosceles Right Triangle Rib Roughness on the Absorber Plate Solar Air Heater
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CFD Analysis of Thermal Performance in Isosceles Right Triangle Rib Roughness on the Absorber Plate Solar Air Heater

机译:吸收板太阳能空气加热器等腰直角肋肋粗糙度热性能的CFD分析

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Objective: This paper provides analytical investigation of flow and roughness parameters on average heat transfer and flow friction characteristics of an artificial roughness solar air heater having isosceles right triangle ribs on the absorber plate. Methods/Statistical Analysis: Artificial roughness having isosceles right triangle geometry is developed for breaking laminar sub-layer. In CFD simulation different parameter like Reynolds no-3593 to 15000, duct aspect ratio=5:1, relative roughness pitch (P/e) i.e. 3.33-40(12 values) and relative roughness height (e/D) i.e. 0.015-0.045(3 values) taken. Findings: In all cases the average Nusselt number tends to increase as Reynolds number increases. The average friction factor has been found to be 3.45 times over the smooth duct. It has been observed that the average friction factor tends to decrease as the Reynolds number increases. Increment in Thermal performance obtained for Maximum thermohydraulic performance is obtained for relative roughness pitch of 5 and relative roughness height 0.045. Applications/ Improvements: The applications of solar air heaters are space heating and drying. Recent time solar air heater is very important in rolling agriculture purpose, heating and cooling of the room and industrial applications.
机译:目的:本文对吸收板上具有等腰直角三角形肋的人造粗糙度太阳能空气加热器的平均传热和流动摩擦特性进行了流量和粗糙度参数的分析研究。方法/统计分析:开发了具有等腰直角三角形几何形状的人造粗糙度,用于破坏层状子层。在CFD模拟中,不同的参数(例如雷诺3593号至15000),风道纵横比= 5:1,相对粗糙度间距(P / e)(即3.33-40(12个值))和相对粗糙度高度(e / D)(即0.015-0.045) (3个值)。结果:在所有情况下,平均雷塞尔数都倾向于随雷诺数的增加而增加。已经发现,光滑管道上的平均摩擦系数是3.45倍。已经观察到,随着雷诺数增加,平均摩擦系数趋于减小。相对粗糙度间距为5且相对粗糙度高度为0.045时,可获得最大热工液压性能的热性能增量。应用/改进:太阳能空气加热器的应用是空间加热和干燥。最近的时间,太阳能空气加热器在滚动农业目的,房间的加热和冷却以及工业应用中非常重要。

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