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ForeCasting the maximum depths of Corrosion of heat exChanger elements in designing the heat exChanger- a mathematiCal model

机译:在设计换热器时预测换热器元件的最大腐蚀深度-数学模型

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The paper presents the system of aCtivities that aim at foreCasting the maximum depths of Corrosion of heat exChanger elements. The developed examples of algorithms ConCern estimation of the maximum depths of Corrosion on both sides of Condenser pipek and shell in the ship's steam turbine. The aim of this partiCular foreCasting in designing heat exChangers is introduCtion of the estimated depth values of Corrosion of their elements in order to CalCulate struCtural strength of heat exChangers. Conseauently, the aim of verifiCation is to CheCk CorreCtness of designing aCtivities within foreCasting the maximum depths of Corrosion of heat exChangers elements. And then, to CheCk definite models that were applied in this foreCasting. The paper refers to the method of designing heat exChangers of the teChniCal power system desCribed in the work fJJ. The presented foreCasting along with its algorithms are supplements to the papers [2, 3].
机译:本文介绍了旨在预测热交换器元件最大腐蚀深度的活动系统。开发的算法示例ConCern估算了船用蒸汽轮机中冷凝器移液管和壳体两侧的最大腐蚀深度。设计换热器的这一特殊预测的目的是介绍其元件腐蚀的估计深度值,以便计算换热器的结构强度。因此,验证的目的是为了确保在设计热交换器元件的最大腐蚀深度之内的设计活动的准确性。然后,对于在此预测中应用的CheCk确定模型。本文引用了工作中描述的技术电力系统换热器的设计方法。提出的预测及其算法是对论文的补充[2,3]。

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