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An easy method to design gas/vapor relief system with rupture disk

机译:设计带有破裂盘的气体/蒸汽释放系统的简便方法

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Tank discharge gas/vapor flow problems are frequently encountered in both practice and design. To perform this type of design calculation, the first step is to identify whether the flow is choked or not through a trial-and-error solution of an equation for adiabatic flow with friction from a reservoir through a pipe. Developing a direct method without any trial-and-error to identify a choking condition would be helpful for expediting the flow calculations. This paper presents an easy and quick method to identify the choking of gas flow for an emergency relief system consisting of a rupture disk and vent piping. This greatly simplifies the design calculations. The proposed method for validating the venting adequacy of existing ERS circumvents the iteration calculation and the use of Lapple charts. Three case studies for the design of vent piping for rupture disks support the proposed method. (c) 2015 Elsevier Ltd. All rights reserved.
机译:在实践和设计中都经常遇到储罐排气/蒸汽流动问题。为了执行这种类型的设计计算,第一步是通过绝热方程式的反复试验解法来确定流体是否被阻塞,该方程式是绝热流体在储层中通过管道的摩擦。开发一种没有任何反复试验来确定窒息状况的直接方法,将有助于加快流量计算。本文提出了一种简便,快速的方法来识别由破裂盘和排气管组成的紧急救援系统的气流阻塞。这大大简化了设计计算。所提出的用于验证现有ERS的通风充足性的方法避免了迭代计算和Lapple图的使用。针对破裂盘排气管设计的三个案例研究支持了该方法。 (c)2015 Elsevier Ltd.保留所有权利。

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