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INTEGRATING ISOLATION VALVE SPECIFICATIONS INTO SUPERCRITICAL POWER PLANT PIPING DESIGN SPECIFICATIONS

机译:将隔离阀门规格集成到超临界电厂管道设计规范中

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Clean and cost effective super critical power plants (SCPP) require "whistle clean" conditions, low emissions, low noise, higher velocities and flow rates. A majority of the specification packages for valves are developed by experienced piping engineers, assigned to EPCs and the valve section comprises a relatively small element where references to industrial standards like ASME B16.34 or ANSI B31.1 are made for design and stress parameters. The specific valve data sheets then provide some more information as to operating and boundary conditions for the specific valves. With the increasing prevalence of SCPP requirements, the current specifications made available by EPCs, make it somewhat enigmatic for valve designers and manufacturers to address the concerns of the power plant designers and engineers. This is in terms of valve bores, pressure drops, velocities, thermal fatigue, lowered valve weights and acceptable sound levels that are intrinsic to valve design, sizing and optimization. This paper presents some specific examples where flows, velocities, pipe ID and valve bore are compared to enable a better integration of piping characteristics in relationship to safe valve design, without unnecessarily over- specifying. In addition, suggestions have been made for an understanding of the relatively newer piping and valve materials for high temperature, high pressure applications, where alternative design methods would enable lower costs and greater resilience to thermal binding and fatigue.
机译:清洁且经济高效的超级关键发电厂(SCPP)需要“哨声清洁”条件,低排放量,低噪音,更高的速度和流速。大多数用于阀门的规格包装由经验丰富的管道工程师开发,分配到EPCS,阀部分包括相对较小的元件,其中对设计和应力参数进行了对等工业标准的引用。然后,具体的阀数据表然后提供关于特定阀门的操作和边界条件的更多信息。随着SCPP要求的普遍性越来越多,EPC提供的现有规格,使阀门设计师和制造商提供了一些神秘的宗旨,以解决电厂设计师和工程师的担忧。这就是阀门孔,压降,速度,热疲劳,降低阀重和可接受的声音,这些阀门设计,尺寸和优化。本文介绍了一些具体的示例,其中流动,速度,管道ID和阀门孔,以便能够更好地集成与安全阀设计的关系中的管道特性,而不会不必要地过度指定。此外,已经了解有关高温,高压应用的相对较新的管道和阀门材料的建议,其中替代的设计方法可以降低成本和更大的弹性束缚和疲劳。

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