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COMBINED TURBINE EQUIPMENT PERFORMANCE

机译:涡轮机综合性能

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"Combined Turbine Equipment Performance" represents the combined performance of the Gas Turbine-Generator(s) and the Steam Turbine-Generator(s), while disregarding or holding the performance of the remaining equipment in the Power Plant at its design levels. The lack of established industry standards and methods addressing the manner in which combined turbine equipment performance should be determined has invited confusion and has created opportunities for technical errors to go undetected.This paper presents a method and the supporting theory by which the corrected performance of the turbine-generators within a combined cycle plant can be combined to gauge their combined performance levels for either contractual compliance or for diagnostic purposes. The Combined Turbine Equipment Performance methodology provided in this paper, allows the performance engineer to easily separate the performance contribution of each turbine generator from the overall plant performance. As such, this information becomes a powerful diagnostic tool in circumstances where a reconciliation of overall plant performance is desired.Individual (gas or steam) turbine performance can be determined by conducting a test in accordance with the respective test code (ASME PTC 22 or PTC 6.2). However, each of these test codes corrects the measured equipment performance to fundamentally different reference conditions. Where the gas turbine-generator measured performance is corrected primarily to ambient reference conditions, the steam turbine-generator measured performance is corrected to steam flows and other steam reference conditions. The simple mathematical addition of the corrected performance of each turbine ignores the well-known fact that the steam turbine-generator output in a combined cycle plant is impacted by the gas turbine exhaust conditions, in particular the gas turbine exhaust flow and temperature.The purpose of this paper is to provide a method for the determination of "Combined Turbine Equipment Performance", review the supporting theory, highlight the assumptions, and develop useful transfer functions for some commonly used combined cycle plant configurations, and bound the uncertainty associated with the methodology.
机译:“综合涡轮设备性能”表示燃气轮发电机和蒸汽涡轮发电机的综合性能,而忽略或保持发电厂中其余设备的性能处于设计水平。缺乏确定涡轮机设备综合性能的确定方法的行业标准和方法,这引起了混乱,并为无法发现技术错误创造了机会。本文提出了一种方法和支持理论,通过该方法和理论,可以校正涡轮机性能。可以将联合循环电厂内的涡轮发电机组合在一起,以评估它们的综合性能水平,以实现合同合规性或用于诊断目的。本文提供的组合式涡轮机设备性能方法论使性能工程师可以轻松地将每个涡轮发电机的性能贡献与整个工厂性能分开。这样一来,在需要协调工厂整体性能的情况下,此信息将成为功能强大的诊断工具。可以根据相应的测试代码(ASME PTC 22或PTC)进行测试,以确定单个(燃气或蒸汽)涡轮机的性能6.2)。但是,这些测试代码中的每一个都将测量的设备性能校正为根本不同的参考条件。在将燃气轮机发电机的测量性能主要校正为环境参考条件的情况下,将蒸汽轮机发电机的测量性能校正为蒸汽流量和其他蒸汽参考条件。对每个涡轮机的校正性能进行简单的数学加法运算,就忽略了众所周知的事实,即联合循环电厂中的蒸汽涡轮发电机输出会受到燃气轮机排气条件(特别是燃气轮机排气流量和温度)的影响。本文旨在提供一种确定“组合式涡轮机性能”的方法,回顾其支持理论,突出这些假设,并为一些常用的组合式循环工厂配置开发有用的传递函数,并限制与该方法相关的不确定性。

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