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Modelling of Snow Cover Thickness Influence on the Railway Construction Temperature Regime under Variable Weather Conditions

机译:雪覆盖厚度对可变天气条件下铁路建设温度制的影响

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This article presents results of the modelling of temperature regimes of railway construction layers in application of the SV HEAT software. In one case, ambient air temperature affects the railway construction in presence of a snow cover and in another case - without it. Temperature changes in railway construction layers were modelled pursuant to the data of the Lithuanian Hydrometeorological Service of January-February 2015 in Vilnius region and the conducted field experimental studies. Ambient air temperature, moisture content in layers and snow cover thickness were assessed. Properties of the materials used to install railway construction layers were identified in the laboratory. Moisture content and temperature in construction layers were measured using sensors installed in the experimental field stand (DRETM II) set up in Slovakia. Modelling results have shown that the greatest temperature difference with a snow cover layer on the top railway construction and without it is 1.2 °C. These data revealed that a snow cover carried out the function of a thermal insulation layer. The railway construction with a snow cover had a lower freezing depth (difference of 0.5 cm). With increasing distance from the top of the ballast layer, the temperature of construction layers with a snow cover approaches the temperature of the construction without a snow cover, i.e. temperatures tend to approximate.
机译:本文介绍了在应用SV热软件应用中铁路施工层的温度制度建模的结果。在一种情况下,环境空气温度在雪覆盖和另一个案例中存在铁路建筑 - 没有它。铁路建设层的温度变化是根据维尔纽斯1月至2015年1月至2015年1月至2015年1月 - 2月的水质服务和进行的现场实验研究的数据建模的。环境空气温度,评估层和散层厚度的水分含量。在实验室中确定了用于安装铁路建筑层的材料的性质。使用安装在斯洛伐克的实验田间支架(DRETM II)中安装的传感器测量施工层中的水分含量和温度。建模结果表明,顶部铁路施工中的雪覆盖层最大的温差和没有它为1.2°C。这些数据显示,雪盖进行了隔热层的功能。具有雪覆盖的铁路建筑具有较低的冷冻深度(0.5厘米的差异)。随着距离镇流器层顶部的距离增加,带雪覆盖的施工层的温度接近施工的温度而没有雪盖,即温度倾向于近似。

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