The influence of temperature changes on the integrity of tanks for storage of petroleum products and toxic substances

T. Hlova, M. Semerak, B. Hlova
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Abstract

The round plate elements are widely used in engineering and power plants, as well as in the oil, chemical and construction industries. When the temperature changes due to technogenic and natural factors, they are deformed and there are temperature stresses, which are often the cause of their destruction. The magnitude of deformations and stresses depends on the magnitude and temperature gradient, as well as the physical and mechanical characteristics of the metal and the conditions of fixing the structural elements. It is shown that the greatest temperature stresses occur on the side surface of a cylindrical construction. The non-stationary temperature field in the round lamellar elements of engineering constructions, which changes with time, is investigated. Modeling the process of heating the round plates, the boundary conditions of the second kind are taken into account. Using the Laplace transformation, we obtained analytical expressions to study the temperature field and temperature deformations. The stress-strain state of round lamellar constructions with clamped edges due to a non-stationary temperature field is determined.This article proposes the methodology of research of a non-stationary stress-strain state in a cylindrical plate at heating on a side surface. The obtained results allow estimating the stress state at each point of the construction depending on the radius and physical and mechanical characteristics of the material from which the construction is made. The researches have shown that the temperature stresses that occur in plate constructions vary depending on the radius and time. The analysis of graphical researches shows that the destruction of the tank can occur by achieving a critical value of tangential stresses. The sharpest change of the tangential and radial stresses occurs at the initial moment of temperature action.
温度变化对石油产品和有毒物质储罐完整性的影响
圆板元件广泛应用于工程和发电厂,以及石油、化工和建筑行业。当由于工艺和自然因素引起温度变化时,它们会变形并存在温度应力,这往往是它们破坏的原因。变形和应力的大小取决于大小和温度梯度,以及金属的物理和机械特性以及固定结构元件的条件。结果表明,最大的温度应力发生在圆柱形结构的侧面。研究了工程结构中圆形层状构件随时间变化的非稳态温度场。在模拟圆板加热过程时,考虑了第二类边界条件。利用拉普拉斯变换,得到了研究温度场和温度变形的解析表达式。确定了边缘夹紧的圆形片层结构在非稳态温度场作用下的应力应变状态。本文提出了圆柱板在侧面加热时的非稳态应力-应变状态的研究方法。所获得的结果可以根据构造材料的半径和物理和机械特性来估计构造每个点的应力状态。研究表明,板状结构的温度应力随半径和时间的变化而变化。图形研究分析表明,当切向应力达到临界值时,储罐就会发生破坏。切向应力和径向应力的最大变化发生在温度作用的初始时刻。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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