首页> 外文会议>ASME International Conference on Energy Sustainability;ASME Heat Transfer Conference >EFFECTS OF BAFFLE WIDTH ON HEAT TRANSFER TO AN IMMERSED COIL HEAT EXCHANGER: EXPERIMENTAL OPTIMIZATION
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EFFECTS OF BAFFLE WIDTH ON HEAT TRANSFER TO AN IMMERSED COIL HEAT EXCHANGER: EXPERIMENTAL OPTIMIZATION

机译:挡板宽度对沉浸式换热器传热的影响:实验优化

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In this work, we investigate the effects of the width of an annular baffle region on natural convection heat transfer to an immersed, coiled heat exchanger in an otherwise quiescent sensible hot water storage tank. In experiments, the coiled heat exchanger sits in an annular region created by the tank wall and a straight, cylindrical baffle. The width of this baffle region is 1.5, 2, 3, or 4 times the heat exchanger diameter, These experiments are compared to each other and to corresponding control experiments with no baffle. In general, all baffles create considerable benefits over their respective control experiments, consistent with past studies. The considered metrics of heat transfer rate, fraction of energy discharged from the tank, and heat exchanger outlet temperature show that heat transfer is improved slightly by narrowing the baffle region. For example, relative to their respective controls, the energy extracted from the tank after 30 min of discharge in the 1.5D, 2D, 3D and AD experiments is 23.2%, 20.8%, 18.1%, and 14.7% higher, respectively. This improvement in natural convection heat transfer as the baffle region narrows is attributed to the increasing thermal stratification observed in experiments with increasingly narrow baffle regions.
机译:在这项工作中,我们研究了环形挡板区域的宽度对自然对流热传递到沉入式盘管式换热器的影响,该对流换热器位于其他情况下为显热的热水储罐中。在实验中,盘管式换热器位于由罐壁和笔直的圆柱形挡板形成的环形区域中。该挡板区域的宽度是热交换器直径的1.5倍,2倍,3倍或4倍。将这些实验相互比较,并与没有挡板的相应对照实验进行比较。通常,与过去的研究一致,所有折流板都比其各自的对照实验产生了可观的收益。考虑的传热速率,从储罐中排出的能量比例和热交换器出口温度的度量标准表明,通过缩小挡板区域可以略微改善传热。例如,相对于它们各自的控件,在1.5D,2D,3D和AD实验中放电30分钟后从储罐中提取的能量分别高出23.2%,20.8%,18.1%和14.7%。随着对流板区域变窄,自然对流传热的这种改善归因于在对越来越窄的对流板区域进行的实验中观察到的热分层增加。

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