Thermal Stress Analysis in Structural Elements of HRSG Casing

H. Shin, D. Kim, Hyungjun Ahn, Sangmin Choi, G. Myoung
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引用次数: 2

Abstract

Heat recovery steam generators (HRSGs) are arranged at the tail end of gas turbines in co mb ined cycle power plants (CCPPs), and are designed to withstand the hot gas environment approaching 600℃. In addition to higher thermal to power efficiency, CCPPs show superior response characteristics compared to those of other conventional steam power plants. For that reason, frequent load changes on the system, which som etimes include daily start and stop (DSS) operation, would impose additional burden on the structural elements. The main objective o f this work is to analy ze the thermal stress conditions as related to the observed failure on the structural elements of HRSG casing, and to find root causes of failure of mechanical integrity. To achieve this goal, field measurements were performed to record temperatures of wall and stiffener of the casing fro m a real plant in operation. To consider the effect of hot gas on the casing, computational fluid dynamic (CFD) analysis of gas flow inside the HRSG with appropriate wall conditions using FLUENT V12. Thermal stress analysis on the thin wall of the casing and stiffeners of HRSG was conducted with the temperature data from the CFD results, using ANSYS Workbench V12. Su mmarizing the computational results, some limited ideas were presented which would be useful to prevent damages.
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HRSG套管结构构件热应力分析
热回收蒸汽发生器(HRSGs)安装在联合循环电厂的燃气轮机尾部,其设计可承受接近600℃的高温气体环境。除了更高的热电效率外,与其他传统蒸汽发电厂相比,CCPPs表现出更好的响应特性。因此,系统上频繁的负载变化,有时包括每日启动和停止(DSS)操作,会给结构元件带来额外的负担。本工作的主要目的是分析HRSG套管结构元件失效相关的热应力条件,寻找机械完整性失效的根本原因。为了实现这一目标,我们进行了现场测量,记录了实际工厂中套管壁和加强筋的温度。为了考虑热气体对套管的影响,采用FLUENT V12软件对不同壁面条件下HRSG内的气体流动进行了CFD分析。利用ANSYS Workbench V12软件,利用CFD结果得到的温度数据,对HRSG薄壁套管和加强筋进行了热应力分析。在总结计算结果的基础上,提出了一些有局限性的防止损伤的思路。
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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