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Matching of Gas Turbines and Centrifugal Compressors - Oil and Gas Industry Practice

机译:燃气轮机与离心式压缩机的匹配 - 石油和天然气工业实践

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Gas turbine driven centrifugal compressors are widely used in the oil and gas industry. In evaluating the optimum selection of gas turbine drivers for centrifugal compressors, one of the main objectives should be to verify proper integration and matching of the centrifugal compressor to its gas turbine driver. Gas turbines are of standard designs, while centrifugal compressors are specifically designed to meet customer requirements. The purchaser should clearly specify process requirements and define possible operating scenarios for the entire life of the gas turbine driven centrifugal compressor train. Process requirements defined by the purchaser, will be used by the compressor designer to shape the aero-thermodynamic behavior of the compressor and characterize compressor performance. When designing a centrifugal compressor to be driven by a specific gas turbine, other design requirements are automatically introduced to centrifugal compressor design. Off-design performance, optimum power turbine speeds at site conditions as well as optimum power margin required for a future-oriented design must all be considered. Design and off-design performance of the selected gas turbine at site conditions influences the final selection of a properly matched centrifugal compressor design. In order to evaluate different designs and select the most technically viable solution, the purchaser should have a clear understanding of the factors influencing a proper match for a centrifugal compressor and its gas turbine driver. This paper discusses criteria for evaluating the most efficient combination of a centrifugal compressor and its gas turbine driver as an integral package from a purchaser's viewpoint. It also addresses API standard requirements on gas turbine driven centrifugal compressors.
机译:燃气轮机驱动的离心式压缩机广泛用于石油和天然气工业中。在评估离心压缩机的燃气轮机驱动器的最佳选择时,主要目标之一应该验证离心式压缩机对其燃气轮机驱动器的适当集成和匹配。燃气轮机具有标准设计,而离心式压缩机专门设计用于满足客户要求。买方应清楚地指定流程要求,并定义燃气轮机驱动离心式压缩机列车的整个寿命的可能的操作场景。压缩机设计人员将使用购买者定义的工艺要求,以塑造压缩机的气动热力学行为并表征压缩机性能。在设计由特定燃气轮机驱动的离心式压缩机时,其他设计要求将自动引入离心式压缩机设计。缺口性能,现场条件下的最佳动力涡轮机速度以及未来面向设计所需的最佳功率余量必须考虑。在现场条件下所选燃气轮机的设计和偏移设计性能影响了匹配的离心压缩机设计的最终选择。为了评估不同的设计并选择最具技术上可行的解决方案,购买者应该清楚地了解影响离心式压缩机及其燃气轮机驱动器的适当匹配的因素。本文讨论了评估离心式压缩机及其燃气轮机驱动器中最有效组合的标准,作为来自购买者的观点的整体包装。它还解决了燃气轮机驱动离心式压缩机上的API标准要求。

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