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ECONOMIC OPTIMIZATION OF INLET AIR FILTRATION FOR GAS TURBINES

机译:燃气轮机入口空气过滤的经济优化

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Selecting the appropriate level of filtration for a gas turbine helps to minimize overall unit costs and maximize net revenue. When selecting a filter type and configuration, one must consider the initial costs, operational costs, and ongoing maintenance costs for both the filter and corresponding impacts on unit performance. Calculations are complex, and a fully functional framework is needed to properly account for all aspects of the life cycle and provide an opportunity to optimize filter selection and water wash scenarios for specific plant operating conditions. Decisions can generally be based on several different criteria. For instance, one may wish to minimize maintenance costs, maximize revenue, minimize fuel consumption, etc. For criteria that can be expressed in monetary terms, Life Cycle Cost Analysis (LCCA) is a means to simultaneously consider all criteria and reduce them to a single parameter for optimization using present value arithmetic. To be practically applied, the analysis must include all the significant inputs that would have an impact on the relative comparison between alternatives, while excluding minor inputs that would unduly add to complexity. This paper provides an integrated, quantitative, and transparent approach to life cycle cost analysis for gas turbine inlet filtration. Most prior art tends to focus either on how to perform the life cycle cost analysis (with simplified assumptions on the impact of filtration on performance), or on a specific technical aspect of filtration such as filter efficiency and performance, the impact of dust on compressor blading and fouling, or the impact of fouling on overall gas turbine performance. Many of these studies provide useful insight into specific aspects of gas turbine degradation due to fouling, but make simplifying assumptions that can lead to inaccuracies in application. By heavily leveraging prior work, this paper provides the reader with an overview of all aspects of the functionality required to perform such a life cycle analysis for gas turbine filtration. This work also serves as a technical summary of the underlying physics models that lead to the development of EPRI's Air Filter Life-Cycle Optimizer (AFLCO) software. The software tool provides a method to account for the influence of gas turbine type, operating conditions, load profile, filtration choices, and wash type and frequency on overall life-cycle costs. The AFLCO tool is focused on guiding the user to make optimum filter selections and water wash scheduling, accounting for all the significant parameters that affect the economic outcome. Revenue and cost quantities are considered simultaneously to determine the net present value of gross revenue minus filtration and water wash costs over a multiple year analysis period. The user defines the scenarios and the software displays the net present value (NPV) and present value difference between the scenarios. The preferred configuration from an LCCA perspective is that which yields the highest present value for net revenue. The user can iterate on multiple scenarios to seek further increases in NPV. The paper provides relevant example case studies to illustrate how LCCA evaluations of inlet air filters and water wash frequency can be applied to optimize gas turbine economic performance. The intent of the paper is to provide the user with a summary of prior work that can be integrated to provide a more holistic, complete life cycle cost analysis and describes the framework used within the AFLCO software. The underlying technical analysis in this paper can be applied to any life cycle cost analysis.
机译:选择过滤的适当水平的燃气轮机有助于减少整体的单位成本,并最大限度地提高收入净额。当选择一个过滤器类型和配置,必须考虑的初始成本,操作成本,以及两者的过滤器维护成本和设备上的性能相应的影响。计算是复杂的,并且需要一个全功能的框架,以正确地考虑的生命周期的各个方面,并提供了一个机会,以用于特定植物的操作条件优化滤波器选择和水洗涤方案。决策一般都可以基于几个不同的标准。举例来说,一个可能希望维护成本降到最低,最大限度地提高收入,降低燃油消耗,等等。可以用货币来表示的标准,寿命周期成本分析(LCCA)是同时考虑所有标准并减少他们的一种手段用于使用本值算术优化单个参数。实际应用于,分析必须包括所有会对方案之间的相对比较的影响,同时排除次要输入,会不适当地增加复杂性的显著投入。本文提供了一个集成的,定量,和透明的方式寿命周期成本分析燃气涡轮机入口过滤。大多数现有技术的倾向或者集中在如何(关于性能过滤的影响使用简化的假设)执行的生命周期成本分析,或对过滤的特定技术方面,如过滤器的效率和性能,灰尘对压缩机的影响叶片和结垢,或污垢上整体燃气涡轮性能的影响。许多这样的研究有助于了解由于结垢燃气轮机退化的具体方面,但要简化假设,可导致应用程序错误。通过利用大量现有工作,本文提供的功能性的全部方面的概述读者需要执行这样的用于燃气涡轮机的过滤生命周期分析。这项工作也作为底层物理模型的技术概要铅到电科院的空气过滤器生命周期优化(AFLCO)软件的开发。该软件工具提供了一种用于燃气涡轮机的类型,操作条件下,负荷分布,过滤的选择,以及洗类型和频率对整体寿命周期成本的影响到帐户的方法。该AFLCO工具的重点是引导用户做出最佳的过滤选项和水洗调度,占所有影响经济成果显著参数。收入和成本的数量同时考虑来确定在一年多分析时段总收入减去过滤和水洗成本的净现值。用户定义的场景和软件显示的场景之间的净现值(NPV)和当前值的差异。从LCCA透视优选配置是其产生用于净收入最高现值。用户可以遍历多个方案,以寻求NPV进一步增加。本文提供了相关实施例的案例研究来说明入口空气过滤器和水洗涤频率的LCCA评价如何可以应用于优化燃气涡轮机的经济性能。本文的目的是提供与以前的工作的总结,可以集成,以提供更全面,完整的生命周期成本分析,并介绍了AFLCO软件中使用的框架的用户。本文的基本的技术分析,可以适用于任何生命周期成本分析。

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