Mathematical model of a three-stage vacuum ejector system

Pub Date : 2024-07-12 DOI:10.24425/ather.2024.150876
R. Matysko
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引用次数: 0

Abstract

This paper presents a mathematical model of a vapour vacuum system, which is a crucial component of steam power plants of critical importance for energy efficiency. This system consists of three stages, with each stage containing a steam ejector and a gas phase separator in the form of an interstage heat exchanger. The primary purpose of this system is to remove inert gases and maintain the appropriate level of vacuum in the power plant condenser. The presented mathematical model can be used to analyse the operation of the vacuum system in a steady state. Preliminary pressure calculations in various components of the vacuum system show the influence of additional measurement orifice resistance on the vacuum drop in the condenser, which can reduce the efficiency of the entire energy system. It is worth noting that the presented model can be used as a tool for analysing elements of the vacuum system in energy systems.
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三级真空喷射系统的数学模型
本文介绍了蒸汽真空系统的数学模型,该系统是蒸汽发电厂的重要组成部分,对提高能源效率至关重要。该系统由三级组成,每一级都包含一个蒸汽喷射器和一个以级间热交换器形式存在的气相分离器。该系统的主要目的是去除惰性气体,并在发电厂冷凝器中保持适当的真空度。所提出的数学模型可用于分析真空系统在稳定状态下的运行情况。真空系统各组件的初步压力计算显示,额外的测量孔阻对冷凝器中的真空降有影响,这会降低整个能源系统的效率。值得注意的是,该模型可用作分析能源系统中真空系统元件的工具。
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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