FEA on Grey Cast Iron Assets: A Case Study on Penstocks in the Waste Water System

IF 1.9 Q3 MANAGEMENT Infrastructure Asset Management Pub Date : 2021-12-07 DOI:10.1680/jinam.21.00019
W. Khor, J. Farrow, M. Mulheron, D. Jesson
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引用次数: 1

Abstract

Penstocks have been used in the water industry for flow control since the Victorian expansion and consolidation of clean and waste water networks. However, the Victorians were the first to use grey cast iron (GCI) castings to manufacture large scale penstocks. Most of these ageing assets are still in operation, however engineering assessments are necessary to determine a structure’s fitness-for-service. Even today, penstocks in the sewer system tend to be made from GCI, due to ease of manufacturing, resistance to corrosion and cost. One characteristic property of grey cast iron is the graphite flake structure in the material, contributing to its low toughness, inconsistency in material strength and brittle behaviour, despite exhibiting slight hardening properties. Finite element analysis (FEA), is a numerical method which allows the analysis of complex structures by splitting it into finite parts and solving them with a computer processor. Despite the versatility of FEA, appropriate considerations and assumptions are necessary due to the difficulty to obtain data from inspection and unique material behaviour of GCI. The article shows concerns for an analysis of GCI penstocks using FEA, which extends into the application of fracture mechanics approaches for defect assessments.
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灰口铸铁资产的有限元分析:以污水系统压力管为例
自维多利亚时代清洁和废水管网的扩张和巩固以来,压力管已用于水工业的流量控制。然而,维多利亚时代是第一个使用灰铸铁(GCI)铸件制造大型压力管的时代。这些老化的资产大部分仍在运行,但工程评估是确定结构是否适合服务的必要条件。即使在今天,由于易于制造,耐腐蚀和成本低,下水道系统中的压力管往往由GCI制成。灰口铸铁的一个特点是材料中的石墨片状结构,这导致其韧性低,材料强度不一致和脆性行为,尽管表现出轻微的硬化性能。有限元分析(FEA)是一种数值方法,它允许将复杂结构分解成有限的部分,并通过计算机处理器求解它们。尽管FEA具有多功能性,但由于难以从检测中获得数据和GCI的独特材料行为,因此需要适当的考虑和假设。本文展示了对使用有限元分析的GCI压力容器的分析,它扩展到应用断裂力学方法进行缺陷评估。
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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来源期刊
CiteScore
2.70
自引率
14.30%
发文量
18
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