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首页> 外文期刊>ACI Materials Journal >Finite Element Analysis and Design of Electrically Conductive Concrete for Roadway Deicing or Snow-Melting System
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Finite Element Analysis and Design of Electrically Conductive Concrete for Roadway Deicing or Snow-Melting System

机译:巷道除冰融雪系统导电混凝土的有限元分析与设计

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摘要

The application problems of electrically conductive concrete in a deicing or snow-melting system have been the research focus of roadway transportation engineering in recent years. When a deicing or snow-melting system is working in practical situations, it may encounter many special problems. In this paper, by employing the finite element method, the relationship between the thermal conductivity of the electrically conductive concrete and the time of deicing, the effect of input power on the time of deicing, and the difference between deicing and the snow-melting is analyzed. The influence of wind on the time of deicing and the difference between the model with and without heat insulation layer are also studied. In addition, the power consumption analysis and relevant process design in dynamic snow-melting are also conducted. These computations and process design can play an important role in the design and application of deicing or snow-melting systems.
机译:导电混凝土在除冰或融雪系统中的应用问题已成为近年来道路运输工程的研究重点。当除冰或融雪系统在实际情况下工作时,可能会遇到许多特殊问题。本文采用有限元方法,研究了导电混凝土的导热系数与除冰时间,输入功率对除冰时间的影响以及除冰与融雪之间的关系。分析。还研究了风对除冰时间的影响以及带有和不带有隔热层的模型之间的差异。此外,还进行了动态融雪中的功耗分析和相关工艺设计。这些计算和过程设计可以在除冰或融雪系统的设计和应用中发挥重要作用。

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