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Semi-analytical solution of roof-on-grade attached underground engineering envelope

机译:屋顶上附着地下工程围护结构的半解析解

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Using a mathematical model of heat transfer of attached underground Engineering Envelope, the calculation area is divided into 13 rectangular blocks according to the Interzone Temperature Profile Estimation (ITPE) technology, and the solutions are obtained for all the parts using the technique of variable separation. During the solution, the Fourier coefficients are determined based on the continuity of the heat flux and boundary conditions. The influences of the temperature of earth surface and the heat transfer coefficient between air and wall on heat flow through the envelope has been quantitatively analyzed. The results show that the heat flux through the envelope is no longer monotonously increase or decrease with increase of the influencing factors. By analyzing the curve of r-value (the ratio of the flux through the roof to the overall flux through the engineering section including the floor and walls), it can be concluded that the heat flow between the first floor of the building and the engineering is the major reason and the shape of the engineering is another one.
机译:使用区域地下工程围护结构的传热数学模型,根据区域间温度分布估计(ITPE)技术将计算区域划分为13个矩形块,并使用变量分离技术为所有零件求解。在求解过程中,根据热通量的连续性和边界条件确定傅立叶系数。定量分析了地表温度和空气与墙壁之间的传热系数对通过外壳的热流的影响。结果表明,通过包封的热通量不再随影响因素的增加而单调增加或减少。通过分析r值的曲线(通过屋顶的通量与通过工程部分(包括地板和墙壁)的总通量之比),可以得出结论,建筑物一楼与工程之间的热流是主要原因,而工程的形状是另一个原因。

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