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Study on ventilation of indoor substation main transformer room based on COMSOL software

机译:基于COMSOL软件的室内变电站主变压器室通风研究

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To provide enough power for modern cities as well as elegant appearance of urban city, the indoor substation has been widely constructed. But the poor ventilation problem of main transformer room also appears. Although the traditional calculation method of air supply volume of ventilator is easy to use, the factor of air surrounding the transformer is not under consideration. So in this paper, a computational fluid dynamics (CFD) numerical model of the main transformer room is discussed, taking Guangzhou Xiancun indoor substation as research object. The COMSOL software is used to simulate the flow-thermal field of main transformer room. By Comparing simulation results with actual measurement results of outlet and radiator via infrared thermal imager, the validity of COMSOL simulation is proved. Based on it, two sets of fan are added to inlet and outlet of the model respectively to improve ventilation. We found that installing air supply fan in the bottom of the transformer room is the optimal method for ventilation, under the condition of same air speed and same sets of fan. This investigation is helpful to a better indoor substation design.
机译:为了提供现代城市没有足够的电力以及城市城市的美观大方,室内变电站已广泛建立。但也出现主变压器室的通风不良问题。尽管呼吸机的空气供给量的传统计算方法容易使用,围绕变压器的空气的因素不是正在考虑之中。因此,在本文中,计算流体动力学(CFD)的主变压器室的数值模型所讨论的,以广州显存室内变电站为研究对象。该软件COMSOL是用来模拟主变压器室的流热场。通过模拟结果与通过红外热成像仪出口和散热器的实际测量结果比较,COMSOL仿真的有效性证明。在此基础上,两套风扇被分别添加到模型中的入口和出口,以提高通风。我们发现在变压器室的底部,安装送气风机是用于通风的最佳方法,同样的空气速度和同一组风扇的条件下。本次调查有利于更好的室内变电站设计。

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