根据通过半平面边界的热流大小和裂纹上的温度和热流跳变大小确定靠近半平面边界的倾斜直线裂纹均匀半平面内的温度

IF 0.1 Q4 CONSTRUCTION & BUILDING TECHNOLOGY Russian Journal of Building Construction and Architecture Pub Date : 2023-05-15 DOI:10.36622/vstu.2023.2.58.002
A.S. Ryabenko, K.A. Sklyarov, O.A. Kutsigina
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引用次数: 0

摘要

问题的陈述。在已知通过半平面边界的热流强度以及裂纹上的温度和热流跳变的情况下,研究了具有接近半平面边界的有限直线裂纹的均匀半平面内温度的确定问题。结果。本文建立了一个数学模型,描述了在已知通过半平面边界的热流强度以及裂纹上的温度和热流跳变的情况下,具有接近半平面边界的直线裂纹的均匀半平面中热量的平稳分布。证明了所提模型的数学正确性;展示了一种构造模型解的技术,以及一整类相关问题;得到了表示模型解的公式。结论。本文所得到的公式可以用来研究有裂纹的材料内部,包括裂纹附近的温度分布,以及确定裂纹的存在对热分布的影响。
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Determination of the Temperature in a Homogeneous Half-Plane with an Inclined Rectilinear Crack Approaching the Boundary of the Half-Plane According to the Magnitude of the Heat Flux Through the Boundary of the Half-Plane and the Magnitude of the Temperature and Heat Flux Jumps on the Crack
Statement of the problem. The study is devoted to determining the temperature in a homogeneous half-plane with a finite rectilinear crack approaching the boundary of the half-plane, provided that the magnitude of the heat flux through the boundary of the half-plane as well as the jumps in temperature and heat flux on the crack are known. Results. A mathematical model is set forth that describes the stationary distribution of heat in a homogeneous half-plane with a rectilinear crack approaching the boundary of the half-plane, for the case when the magnitude of the heat flux through the boundary of the half-plane and the jumps in temperature and heat flux on the crack are known. The mathematical correctness of the proposed model is proved; a technique for constructing a solution to the model, as well as a whole class of related problems, is shown; a formula for representing the solution of the model is obtained. Conclusions. The formula obtained in the article can be used to study the temperature distribution in a material with a crack, including in the vicinity of a crack, as well as to determine what effect the presence of a crack has on the heat distribution.
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来源期刊
Russian Journal of Building Construction and Architecture
Russian Journal of Building Construction and Architecture CONSTRUCTION & BUILDING TECHNOLOGY-
自引率
50.00%
发文量
28
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