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International Conference on Advances in Computational Modeling and Simulation Flow Visualization and Wind Uplift Analysis of a Suspended Solar Water Heater

机译:悬挂太阳能热水器的计算建模和仿真流动可视化和风隆起分析国际会议

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Typhoon is one of the major natural disasters in Taiwan. The solar water heater system installed in the house roof has the most serious damage caused by typhoon invasion. Because the wind blows into the backward of the solar water heater system, the heat collecter is damaged by the stronger wind pressure gradient induced between the upper and lower. This study was using CFD (Computational Fluid Dynamics) method to investigate the flowfield over a suspended and ground solar water heater during the wind speed about 30m/s, and compared the results with the experimental data for validation. Simulations of 60% solar water collector model with different tilt angles and 40% model with different guiding plate were also done in this study to investigate the effect of the guide plate. The result shows that the 3D flowfield effect is clear, and 2D model can not simulated the flowfield. The heat collector erected away from the ground can be reduced to the uplift, and the separation bubbles are induced behind the bucket of the heat collector surface. The cornner vortices generated and interacted from the collector-side, and the separation bubbles is extending in spanwise. The larger tilt angle of the solar collector causes the larger pressure difference in the leading edge. The guiding plate avoids the inflow directly hit the bottom of the solar collector, and it can efficiently reduce the leading edge pressure difference. Nevertheless, when the cross-sectional area of the guiding plate increase, the uplift force acted on heat collector decreases and the drag force would be increased.
机译:台风是台湾的主要自然灾害之一。安装在房屋屋顶的太阳能热水器系统具有由台风入侵引起的最严重的损坏。由于风吹进入太阳能热水器系统的落后,因此热量收集器受到上部和下部之间引起的强风压梯度损坏。本研究采用CFD(计算流体动力学)方法来研究悬挂和地面太阳能热水器在风速约为30m / s的情况下,并将结果与​​实验数据进行比较以进行验证。在该研究中还进行了不同倾斜角度和40%模型的60%太阳能集热器模型的模拟,研究了导板的效果。结果表明,3D流场效应清晰,2D模型无法模拟流场。从地面竖立的热集电极可以减小到隆起,并且分离气泡被引起在热集电极表面的铲斗后面。生成并从集电极侧产生和相互作用的玉米涡流,并且分离气泡始线延伸。太阳能收集器的较大倾斜角度导致前沿的压力差。引导板避免了直接击中太阳能收集器的底部的流入,并且可以有效地降低前缘压力差。然而,当引导板的横截面积增加时,作用在加热收集器上的隆起力减小并且将增加牵引力。

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