首页> 外文会议>ASME Pressure Vessels and Piping Conference >Seismic and Concurrent Load Design Criteria for Buried High Density Polyethylene Pipe in ASME BPVC Section III, Division 1, Applications: Part II - Piping Soil Interaction Design Basis Criteria
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Seismic and Concurrent Load Design Criteria for Buried High Density Polyethylene Pipe in ASME BPVC Section III, Division 1, Applications: Part II - Piping Soil Interaction Design Basis Criteria

机译:ASME BPVC部分III,第1款,应用中的埋藏高密度聚乙烯管的地震和并发负荷设计标准,应用:第II部分 - 管道土壤互动设计基准标准

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The commercial Light Water Reactors operating within the United States have been in service from about 20 to 35 years. These plants include buried Service Water piping systems primarily made from low carbon steel. This piping at several plants has been subject to aging over the years, resulting in degradation and corrosion that may require replacement of the piping. Due to the advantageous cost and durability of High Density Polyethylene (HDPE) piping (as demonstrated in other commercial industries), the nuclear power industry has expressed interest in replacing steel buried Service Water Piping in Nuclear Power Stations with HDPE Pipe. To assist in this effort EPRI has funded and supported the work summarized in this paper to develop design criteria for HPDE Pipe. The paper provides design criteria for High Density Polyethylene (HDPE) pipe made from PE 3408 resin. It also provides the technical basis for the proposed criteria. This paper deals primarily with the design of the piping in relation to its interface with the soil in which it is buried. The criteria primarily is derived from current analysis methodology for steel and concrete buried pipe while incorporating changes required to account for the properties and behavior of HDPE pipe. The proposed analysis methodology described herein has evolved into a proposed ASME Boiler and Pressure Vessel Code, Section III, Division 1, Design Code Case for consideration by the Section III, Subcommittee on Nuclear Power.
机译:在美国运营的商业轻水反应堆已在大约20至35岁以上。这些植物包括主要由低碳钢制成的埋地使用水管道系统。多年来,几个植物的这种管道一直受到老化,导致可能需要更换管道的降解和腐蚀。由于高密度聚乙烯(HDPE)管道的有利成本和耐久性(如在其他商业行业中所示),核电行业对HDPE管道替换核电站的核电站替换钢埋存水管。为了协助这项努力,EPRI资助并支持本文总结的工作,以开发HPDE管道的设计标准。本文提供了由PE 3408树脂制成的高密度聚乙烯(HDPE)管的设计标准。它还为拟议标准提供技术基础。本文主要涉及管道的设计与其与其埋地的土壤的界面有关。该标准主要来自钢和混凝土埋地管的电流分析方法,同时结合所需的变更,以考虑HDPE管道的性质和行为。本文所述的所提出的分析方法已经演变为拟议的ASME锅炉和压力容器编码,第III部分,第1款,核电部分小组委员会的第三节,核电部分。

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