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首页> 外文期刊>Journal of Performance of Constructed Facilities >Effects of Changing Surrounding Conditions on the Thermal Analysis of the Moste Concrete Dam
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Effects of Changing Surrounding Conditions on the Thermal Analysis of the Moste Concrete Dam

机译:周围环境变化对莫斯特混凝土坝热分析的影响

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This paper deals with the heat transfer analysis of the 63-year-old and 60-m-high Moste concrete arch-gravity dam, located in Northwest Slovenia. The analysis was performed after a new sophisticated monitoring system had been established, making it possible to perform continuous measurements of the temperatures of the concrete, water, and dam surroundings, i.e., air temperatures and amount of solar insolation. An equation defining nonlinear and nonstationary heat conduction in the case of a two-dimensional space, for a homogeneous isotropic solid whose thermal conductivity is independent of temperature, was solved numerically by means of the finite-element method, taking into account appropriate boundary conditions. The latter involved the effects of changing conditions in the surroundings (i.e., shading, convection, and solar radiation) during the analyzed period of 15 consecutive clear days in the summer. The results show that the measured and calculated temperatures of the concrete at different locations, and at different depths, were in very good agreement. (C) 2015 American Society of Civil Engineers.
机译:本文对位于斯洛文尼亚西北部的63岁,高60 m的莫斯特混凝土拱坝进行了传热分析。在建立了新的复杂监控系统后进行分析,从而可以连续测量混凝土,水和大坝周围的温度,即空气温度和日照量。考虑到适当的边界条件,通过有限元法对二维空间中热导率与温度无关的均质各向同性固体定义了非线性和非稳态热传导的方程。在分析的夏季连续15个晴天期间,后者涉及周围环境变化的影响(即阴影,对流和太阳辐射)。结果表明,在不同位置,不同深度的混凝土的测量和计算温度非常吻合。 (C)2015年美国土木工程师学会。

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