首页> 外文会议>ASME Pressure Vessels amp;amp;amp; Piping Conference >DECAY OF EXCITATION LOAD FROM HEAT RECOVERY STEAM GENERATORS (HRSG) TO ATTACHED PIPING SYSTEM AS A FUNCTION OF PIPE SUPPORTS LOCATIONS
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DECAY OF EXCITATION LOAD FROM HEAT RECOVERY STEAM GENERATORS (HRSG) TO ATTACHED PIPING SYSTEM AS A FUNCTION OF PIPE SUPPORTS LOCATIONS

机译:从热回收蒸汽发生器(HRSG)衰变的激励负载作为管道支撑位置的函数

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Construction of combined cycle gas turbine (CCGT) plants, which are combination of a simple cycle gas turbine (Brayton cycle) and a steam power cycle (Rankine cycle), have increased in recent years due to their high efficiency, low emissions, relative compact size, and minimal delivery time, among other advantages. One key component of CCGT is a heat recovery steam generator (HRSG). The HRSG is basically a heat exchanger composed of a series of preheaters (economizers), evaporator, reheaters, and superheaters. Combustion gas from gas turbine is used as an energy source for steam generation in the HRSG. Due to high mass flowrate of combustion turbine exhausts gas and injection of water to reduce NOx contents, high vibration and severe noise are created. The noise induces acoustic resonance in the HRSG duct cavities. The high vibration together with the acoustic resonance creates large forces. These forces have been attributed to excitation mechanisms including fluid elastic instability, random turbulence excitation, and periodic wake shedding. Some of the forces are transmitted to the attached pipes. Integrity of the piping system to withstand the forces depends on rigid and variable pipe supports. It is therefore paramount to determine the load induced into the supports to design them adequately. The purpose of this paper is to provide relative magnitude of loads experienced at various pipe supports as a function of distance from the HRSG (load decay). This knowledge is expected to help support designers to optimize material allocation to ensure pipe system integrity at optimum cost.
机译:联合循环燃气涡轮机(CCGT)植物,其是一个简单循环燃气轮机(布雷顿循环)和蒸汽动力循环(Rankine循环)的组合的结构,近年来已经增加,由于它们的高效率,低排放量,相对紧凑的大小,和最小的交货时间,除了其它优点之外。 CCGT的一个关键组件是一个热回收蒸汽发生器(HRSG)。该HRSG基本上是一系列预热器(省煤器),蒸发器,再热器,过热器和的构成的热交换器。从燃气涡轮机的燃烧气体被用作在HRSG中产生蒸汽的能量源。由于燃气轮机排出气体和水喷射的高质量流量降低NOx含量,高振动和严重的噪声被创建。噪声引起的HRSG导管腔声谐振。具有声共振的高振动共同创造大部队。这些部队已被归因于激励机制,包括流体弹性不稳定,随机扰动激励,并定期唤醒脱落。一定力量传输到连接管道。管道系统承受的力的完整性取决于刚性和可变管道支撑。因此,最重要,以确定感应到载体上的负载,以充分设计它们。本文的目的是提供在不同的管道支架经历作为距离从HRSG(负载衰变)的函数的负载的相对大小。这方面的知识将有助于支持设计人员优化原料配置,以确保在最佳的成本管系统的完整性。

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