首页> 外文会议>ASME Turbomachinery Technical Conference and Exposition >PERFORMANCES OF GAS TURBINES IN OIL GAS APPLICATIONS: SIMPLE THERMODYNAMIC METHODS HELP PREDICT MAJOR TRENDS
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PERFORMANCES OF GAS TURBINES IN OIL GAS APPLICATIONS: SIMPLE THERMODYNAMIC METHODS HELP PREDICT MAJOR TRENDS

机译:油气应用中燃气轮机的性能:简单的热力学方法有助于预测主要趋势

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摘要

While reliability stays the most critical requirement for power generation in the Oil & Gas sector, energy effectiveness is becoming an increasingly important topic. Gas turbines are efficient and flexible tools both in electrical and mechanical drive applications as they cope with the multiple energy demand profiles of this sector. Aeroderivative gas turbines boast fast response and fast O&M procedures which fits with the exploitation of hydrocarbon fields. Heavy duty machines are robust and very popular in refinery utilities or as large mechanical drivers. However, it is sometimes desirable to boost GT performances: operators of the Oil & Gas sector may need to increase power output or wish to improve efficiency, especially during part load operation where the latter is degraded. While a number of commercial hardware, service and software products cover these needs, the operators may want to keep their own control on their production tools. To that end resorting to simple thermodynamic considerations enables rule-of-thumb evaluations of the impact of cycle changes on GT performances but this possibility is often unexploited. This joint paper is intended to provide the energy community, especially the engineers of the Oil & Gas sector, with some basic methods for the estimation/anticipation of gas turbine performance changes.
机译:虽然可靠性在石油和天然气行业中发电的最关键要求,但能源效率正成为一个越来越重要的话题。燃气轮机在电气和机械驱动应用中是高效且柔性的工具,因为它们应对该扇区的多种能量需求配置文件。 AeroDerivativativative燃气轮机拥有快速响应和快速的O&M程序,其符合烃场的开发。重型机器在炼油厂或大型机械驱动器中非常流行。然而,有时希望加强GT性能:石油和天然气部门的操作员可能需要增加功率输出或希望提高效率,特别是在后者降低的部分负载操作期间。虽然许多商业硬件,服务和软件产品涵盖了这些需求,但操作员可能希望在其生产工具上保留自己的控制。为此,诉诸简单的热力学考虑,使得经拇指的规则进行循环变化对GT性能的影响,但这种可能性通常是未开发的。这份联合论文旨在为能源社区,特别是石油和天然气部门的工程师提供,具有一些基本方法,用于估计/预期燃气轮机性能变化。

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