Information and Mathematical Models of the Flow Part in the Problems of Optimal Design of a Turboblock

Riza Sherfedinov, Oleksandr Usatyi, O. Avdieieva
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Abstract

The issues of improving the structural-topological formation of the information model of the flow path of a steam turbine with the aim of using it in the problems of optimal design of turbine blocks are considered. A new hierarchical level "Compartment" has been added, which made it possible to link in a single information space the parameters of the frequency converter and the rest of the equipment of the turbine unit and made it possible to set and solve the problems of optimal design of turbine blocks. An improved one-dimensional model of the processes in the frequency converter, which allows simulating the course of processes in the frequency converter of a turbine from compartment to compartment (sub-section modeling of processes in the frequency converter with given steam parameters between the compartments). The improved mathematical model of the processes in the frequency converter is coordinated with the improved information model of the frequency converter and is one of the components of the optimal design subsystem of the “Turboagregat” CAD system. The performed test comparative calculations of the FC of steam turbine cylinders were carried out using algorithms created on the basis of two mathematical models: the original and the improved one. Good agreement was confirmed. Insignificant differences in thermogasdynamic parameters in the cross-sections between the rims of the inverter, obtained according to the original and improved models, are noted. Small deviations in the results are mainly caused by the need to use in the improved model the formulation of the problem with the given steam parameters in front of each compartment and the value of the mass flow rate to the head of each compartment. The fulfillment of the boundary conditions was ensured by a corresponding change in the effective angle of the nozzle grate of the first stage of each compartment.
涡轮缸体优化设计问题中流动部分的信息与数学模型
考虑了改进汽轮机流道信息模型的结构拓扑形式,以便将其应用于汽轮机组优化设计问题。在此基础上,增加了一个新的分层层次“隔室”,使变频器参数与汽轮机组其他设备参数在一个信息空间内联系起来成为可能,使汽轮机组优化设计问题的设定和解决成为可能。一种改进的变频器过程的一维模型,它允许从一个隔室到另一个隔室模拟汽轮机变频器过程的过程(在隔室之间给定蒸汽参数的变频器过程的分段建模)。改进后的变频器过程数学模型与改进后的变频器信息模型相协调,是“turboaggreat”CAD系统优化设计子系统的组成部分之一。采用在原模型和改进模型基础上建立的算法,对汽轮机汽缸FC进行了试验对比计算。良好的协议得到了确认。注意到,根据原始模型和改进模型获得的逆变器轮辋之间横截面的热气动力学参数差异不显著。结果的小偏差主要是由于需要在改进模型中使用给定每个隔间前面的蒸汽参数和每个隔间顶部的质量流量值的问题的公式。边界条件的满足是通过各隔室一级喷嘴栅有效角的相应变化来保证的。
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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