首页> 外文会议>ASME international heat transfer conference;IHTC14 >COMPUTATIONAL AND EXPERIMENTAL STUDY OF CONJUGATE HEAT TRANSFER FROM A FLAT PLATE WITH SHOWER HEAD IMPINGING JETS
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COMPUTATIONAL AND EXPERIMENTAL STUDY OF CONJUGATE HEAT TRANSFER FROM A FLAT PLATE WITH SHOWER HEAD IMPINGING JETS

机译:喷头撞击飞机平板的共轭传热计算与实验研究

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Computational and experimental conjugate heat transfer of flat circular disk is investigated with a constant heat flux imposed on its bottom surface and a shower head of air jets impinging on its top surface. The shower head consists of a central air jet surrounded by four neighboring perimeter jets. Measured temperature data at twelve locations within the plate are compared with the conjugate heat transfer result obtained at the same locations computationally by Shear Stress Transport (SST) k-ω turbulence model. Measurement and simulation results are in good agreement with each other. The spacing to orifice diameter ratio (H/d = 1 to 6), jet Reynolds number (7115 to 10674) and plate thickness (2.5 mm, 10 mm and 20 mm) are varied. The computationally obtained flow structure describes the complex interaction of the wall jets. Heat transfer rate is found to be independent of thickness of the impingement plate. Local variation of heat transfer rate with varying H/d is significant but its effect on the area weighted average heat transfer rate is very small. Shower head jets provide uniform temperature distribution with higher heat transfer rate in comparison with the single jet.
机译:研究了扁平圆盘的计算和实验共轭传热,其中恒定的热通量作用在其圆盘的底面上,而喷淋的喷淋头撞击在圆盘的顶面上。莲蓬头由一个中央空气喷嘴组成,周围环绕着四个周边喷嘴。将板内十二个位置处测得的温度数据与在相同位置通过剪切应力传输(SST)k-ω湍流模型计算得到的共轭传热结果进行比较。测量和仿真结果彼此吻合良好。间距与孔的直径比(H / d = 1至6),射流雷诺数(7115至10674)和板厚(2.5 mm,10 mm和20 mm)是可变的。通过计算获得的流动结构描述了壁流的复杂相互作用。发现传热速率与冲击板的厚度无关。随着H / d的变化,传热速率的局部变化是显着的,但是它对面积加权平均传热速率的影响很小。与单喷头相比,喷头喷头可提供均匀的温度分布,并具有更高的传热速率。

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