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首页> 外文期刊>American Journal of Mechanical Engineering >Analysis and Improvement of Material Selection for Process Piping System in Offshore Industry
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Analysis and Improvement of Material Selection for Process Piping System in Offshore Industry

机译:海洋工业过程管道系统选材的分析与改进

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Material failure mainly because of corrosion is a highly dangerous and expensive phenomenon in the offshore sector of the oil and gas industry, associated with severe negative consequences such as loss of asset, loss of production due to plant shutdown, loss of human life, and health, safety, and environment (HSE) problems (e.g. environmental pollution). Additionally, piping systems are produced in large numbers for the topside facilities in the oil and gas plants. Thus, the main aim of this paper is to introduce a novel approach for the piping material selection in the offshore industry to minimize the risk of piping corrosion and weight reduction with an optimum cost. The central focus of the study is to develop a material selection tool based on a systematic material selection approach and the existing literature, standards, and specifications. In this study, the optimal material selection strategy includes three well-known methods of screening: Cambridge material selector, value engineering (VE), and technique for order preference by similarity to ideal solution (TOPSIS). The proposed guideline is a practical reference for material and piping engineers in the offshore industry to select the best choice of material for a specific application. The main finding of this research is that 25% chromium super duplex stainless steel is the best choice of material for processing piping systems in offshore plants for non-sour process (hydrocarbon) services. Super duplex stainless steel provides a high corrosion resistance and mechanical strength with the advantage of weight reduction for the selected facilities. A method of piping cost analysis is introduced to validate super duplex stainless steel as the most economical option.
机译:主要由于腐蚀而导致的材料故障在石油和天然气工业的海上领域是一种非常危险且昂贵的现象,并伴随着严重的负面后果,例如资产损失,由于工厂停产而导致的生产损失,人员伤亡和健康,安全和环境(HSE)问题(例如环境污染)。另外,为石油和天然气工厂的上部设施大量生产了管道系统。因此,本文的主要目的是为海上工业中的管道材料选择引入一种新颖的方法,以最小的成本将管道腐蚀和减轻重量的风险降至最低。该研究的重点是基于系统的材料选择方法以及现有文献,标准和规范来开发材料选择工具。在这项研究中,最佳材料选择策略包括三种众所周知的筛选方法:剑桥材料选择器,价值工程(VE)和通过与理想解决方案相似的顺序进行偏好的技术(TOPSIS)。拟议的指南是海上行业的材料和管道工程师为特定应用选择最佳材料选择的实用参考。这项研究的主要发现是,含25%铬的超级双相不锈钢是用于海上工厂进行非酸性工艺(碳氢化合物)服务的管道系统加工材料的最佳选择。超级双相不锈钢具有较高的耐腐蚀性和机械强度,并具有减轻所选设备重量的优势。引入了管道成本分析方法,以验证超级双相不锈钢是最经济的选择。

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