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Alternative hydronic pavement heating system using deep direct use of geothermal hot water

机译:使用深度直接使用地热水的替代氢化氢路面加热系统

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Researchers have studied and well documented several alternative snow-melting and de-icing systems. In addition to the snow-melting efficiency of such systems, they are considered to be more environmentally friendly than traditional mechanical or chemical de-icing procedures and more economical than some other alternative snow-melting methods. The most important factor for a hydronic heating system is the heat source. In western North Dakota, six aquifers have been identified in the Williston Basin that can provide geothermal hot water for direct use. Ancillary to these aquifers, co-production wells used in the oil industry may also provide hot water for use in a hydronic heating system. Given the availability of these aquifers and co-production wells, the focus of this study is the numerical analysis (using a finite element method) of a piped hydronic pavement heating system. The analysis results are examined in terms of available scenarios for the direct use of geothermal hot water that consider water temperature, volumetric flow rate, and the heat requirements for weather conditions in western North Dakota. This paper presents and discusses the results in terms of the temperatures of the heated pavement and the outlet temperatures of water after it has circulated through embedded pipes.
机译:研究人员已经研究过多次替代的雪融化和脱冰系统。除了这种系统的雪熔化效率之外,它们还被认为比传统的机械或化学脱模手术更环保,比其他一些替代的雪熔化方法更经济。氢化加热系统的最重要因素是热源。在北达科他州西部,威利斯龙盆地已经确定了六种含水层,可提供地热热水进行直接使用。对这些含水层的辅助,石油工业中使用的共同生产井还可提供用于水力加热系统的热水。鉴于这些含水层和合作井的可用性,本研究的重点是管道氢化路面加热系统的数值分析(使用有限元方法)。根据可用场景检查分析结果,用于直接使用考虑水温,体积流量和西北达科他州天气状况的热量要求的地热水。本文提出并讨论了通过嵌入式管道循环后加热路面的温度和水的出口温度方面的结果。

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