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Research on method of anti-condensation in RMU based on finite element analysis

机译:基于有限元分析的RMU防结露方法研究

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Condensation problems in outdoor RMU exist widely at the area which has a hot and humid climate such as the south of China, resulting in the corrosion of the equipment in the RMU. Once the switch operation mechanism corrodes, it would cause the switch to act abnormally. What is worse, the insulation performance of the equipment will be reduced. Improving the ability of natural ventilation is a safe, widely adaptable and energy-saving method to prevent the condensation in RMU. In this paper, considering the physical structure of RMU, the operating conditions of the equipment and the influence factors of ventilation and heat dissipation, a 3D flow field model is established. Then the flow fields about the model are analyzed with the software ANSYS. The results shows that, the original inlet shape is not conducive to the effect of ventilation of the RMU; the original size of RMU is too small to affect the capacity of ventilation. And the capacity of ventilation can be improved by optimizing the shape of the inlet; in addition, proper widening and heightening the size of the RMU can also enhance the effect of ventilation.
机译:在中国南部等气候炎热潮湿的地区,室外RMU的冷凝问题普遍存在,导致RMU中设备的腐蚀。开关操作机构一旦腐蚀,将导致开关动作异常。更糟糕的是,设备的绝缘性能会降低。改善自然通风的能力是一种安全,广泛适用且节能的方法,可防止RMU中发生冷凝。本文结合RMU的物理结构,设备的运行条件以及通风散热的影响因素,建立了3D流场模型。然后使用软件ANSYS分析有关模型的流场。结果表明,原来的进气口形状不利于RMU的通风效果。 RMU的原始尺寸过小,不会影响通风量。通过优化进气口的形状可以提高通风能力;另外,适当扩大和增大RMU的尺寸也可以增强通风效果。

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