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RISK ANALYSIS AND PLASTIC DUCT DESIGN

机译:风险分析和塑料管道设计

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摘要

First Order Second Moment (FOSM) analysis techniques, employed in the development of limit state design codes, allow designers to account for the variations and random nature of the material properties and load effects inherent in the design of engineered structures. A generated non-linear equation is used in conjunction with an existing design formula to model the load-deformation behaviour to failure of a flexible plastic duct in free-air compression. The duct was modelled as if it were subjected to the BS EN 50086 : 1994 parallel plate compression test load of 450N at which the internal vertical diametral strain (VDS) must not exceed 5%. The duct was modelled with a pre-determined internal diameter and wall thickness. The statistics of those random variables considered were modelled using normal and lognormal distributions. Duct reliability was evaluated by imposing a deformation due to an applied vertical load and calculating the reliability under assumed random variations in the pipe diameter, pipe wall thickness and material modulus of elasticity. The FOSM analysis provided a more rational description of duct behaviour.
机译:极限状态设计代码的开发中采用的第一阶第二矩(FOSM)分析技术使设计人员可以考虑工程结构设计中固有的材料特性和载荷效应的变化和随机性。将生成的非线性方程式与现有设计公式结合使用,以对自由空气压缩中的柔性塑料管道的载荷-变形行为进行建模。对管道进行建模,就好像它经受了450N的BS EN 50086:1994平行板压缩测试载荷时,内部垂直径向应变(VDS)不得超过5%。用预定的内径和壁厚对管道进行建模。使用正态和对数正态分布对所考虑的那些随机变量的统计数据进行建模。通过在施加的垂直载荷下施加变形并在假定的管道直径,管道壁厚和材料弹性模量的随机变化下计算可靠性,来评估管道可靠性。 FOSM分析提供了更合理的风管行为描述。

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