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Snow melting on the road surface driven by a geothermal system in the severely cold region of China

机译:在中国严重寒冷地区的地热系统驱动的路面上的雪融化

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Snow on roads may cause serious problems such as increasing traffic fatalities, reducing road capacity, and expanding maintenance costs, therefore, snow melting systems are usually essential in this case. A ground source heat pump snow melting system was designed and implemented in the severely cold region of China (Harbin). The experimental conditions were at the snowfall of around 3 cm and the ambient temperatures of -5.9 similar to -4.8 degrees C. The heating characteristics, road surface temperature, snow free area ratio, and system per- formances were investigated. The results showed that the supplied fluid temperature could climb to the set value in 30 min, then fluctuated within 1.3 degrees C. The preheating stage, rapid heating stage, and slow heating stage illustrated the road heating process. The starting stage, rapid melting stage, and slow melting stage demonstrate the snow melting process. The critical value of the snow free area ratio between rapid and slow melting stages was around 0.60. The average COP (coefficient of performance) for the heat pump and the whole system in the whole process were 2.49 and 2.04, respectively. This study provided references for the further optimization and simulation of the hydronic snow melting system in severely cold regions.
机译:道路上的雪可能导致严重的问题,例如增加交通事故,降低道路容量,并扩大维护成本,因此,雪熔融系统通常在这种情况下是必不可少的。在中国(哈尔滨)的严重寒冷地区设计和实施了一个地源热泵雪融化系统。实验条件在大约3厘米的降雪处,与-5.9的环境温度类似于-4.8℃。调查了加热特性,道路表面温度,雪地比率和系统性能。结果表明,所提供的流体温度可以在30分钟内爬到设定值,然后在1.3摄氏度内波动。预热阶段,快速加热阶段和缓慢加热阶段的速度下降。起始阶段,快速熔化阶段和缓慢熔化阶段展示了雪熔化过程。快速和缓慢熔化阶段之间的无雪面积比的临界值约为0.60。热泵和整个过程中整个系统的平均COP(性能系数)分别为2.49和2.04。该研究提供了引用在严重寒冷地区的进一步优化和模拟水力雪熔融系统的参考。

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