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Warming of Monolithic Structures in Winter

机译:在冬季加温整体结构

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The present work attempts to develop a mathematical model for calculating the heat transfer coefficient of the fence of monolithic structures erected in winter. The urgency and, at the same time, the practical significance of the research lies in the fact that to date no simple, effective tool has been developed to ensure the elimination of the unfavorable thermally stressed state of a structure's concrete from maximum equalization of temperatures across its cross-section. The main problem for concrete is a high temperature which leads to a sharp decrease in the quality of erected structures due to developing cracks. This paper based on the well-known Newton's law and its differential equation demonstrates the formula of concrete cooling and the analysis of its proportionality coefficient. Based on the literature analysis, it is established that the proportionality coefficient is determined by the thermophysical properties of concrete, the size and shape of the structure, and the intensity of its heat exchange with the surrounding medium. A limitation was used on the temperature gradient over the section of the monolithic structure to derive a formula for calculating the reduced heat transfer coefficient of a concrete fence. All mathematical calculations are given for cooling monolithic constructions in the form of plates. At the end of the work an example is given for the calculation of the required reduced heat transfer coefficient for the fence ensuring compliance with the permissible concrete temperature gradient.
机译:本工作尝试来开发的数学模型用于计算在冬季竖立整体结构的栅栏的传热系数。的紧迫性,并在同一时间,即迄今为止没有简单,有效的工具已经发展到确保来自全国各地气温的最大均衡结构的混凝土不利的热应力状态的消除研究的谎言在事实的现实意义其横截面。混凝土的主要问题是高的温度,这导致在由于显影裂纹竖立结构的质量急剧下降。本文基于公知的牛顿定律及其微分方程演示混凝土冷却的公式和其比例系数的分析。基于该文献的分析,它被建立,所述比例系数是由混凝土的热物理性质,尺寸和结构的形状,并与周围的介质进行热交换的强度来确定。的限制,使用上的温度梯度在单片结构的部分以导出公式用于计算混凝土栅栏的降低热传递系数。所有数学计算,给出了在板的形式冷却单片结构。在工作结束时给出一个例子用于栅栏确保遵守允许混凝土温度梯度所需要的降低的传热系数的计算。

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