首页> 外文会议>ASME Turbo Expo vol.4; 20050606-09; Reno-Tahoe,NV(US) >THERMOECONOMIC ANALYSIS AND OPTIMIZATION OF A GAS TURBINE COGENERATION UNIT BY A SYSTEMS APPROACH
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THERMOECONOMIC ANALYSIS AND OPTIMIZATION OF A GAS TURBINE COGENERATION UNIT BY A SYSTEMS APPROACH

机译:燃气轮机发电系统的热经济学分析与优化

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摘要

It is important to design and operate energy conversion systems such as gas turbine cogeneration ones optimally from the thermoeconomic viewpoint. However, an energy conversion system has a complex network structure, and it takes much time to create its model for the thermoeconomic analysis and optimization. In this paper, a systems approach is presented for the performance analysis and optimization of mechanical systems with network structures, and it is applied to the thermoeconomic analysis and optimization of a gas turbine cogeneration unit. The system modeling for the performance analysis is conducted by a building block approach. Static and dynamic problems for the performance analysis are formulated as sets of nonlinear algebraic and differential algebraic equations, and are solved by the Newton-Raphson method and a hierarchical combination of the Runge-Kutta and Newton-Raphson methods, respectively. The performance optimization is conducted to determine design and operation conditions which optimize performance criteria. This problem is formulated as a nonlinear programming one and is solved by a global optimization method. In the application, the cycle analysis is conducted to determine mass flow rates, pressures, and temperatures, which is followed by the exergy and cost analyses to determine exer-gy flow rates and efficiencies, and capital costs, respectively. In addition, design and operation conditions are determined to maximize the exergy efficiency or minimize the annual total cost based on the results of the cycle, exergy, and cost analyses. Through a numerical study, it turns out that the proposed systems approach enables one to conduct the thermoeconomic analysis and optimization efficiently.
机译:从热经济学的角度来看,优化设计和运行诸如燃气轮机热电联产系统之类的能量转换系统非常重要。但是,能量转换系统具有复杂的网络结构,并且需要花费大量时间来创建其模型以进行热经济分析和优化。本文提出了一种系统方法,对具有网络结构的机械系统进行性能分析和优化,并将其应用于燃气轮机热电联产机组的热经济分析和优化。用于性能分析的系统建模是通过构建块方法进行的。用于性能分析的静态和动态问题被公式化为非线性代数和微分代数方程组,分别通过Newton-Raphson方法和Runge-Kutta方法和Newton-Raphson方法的层次组合进行求解。进行性能优化以确定确定性能标准的设计和操作条件。该问题被表述为非线性规划问题,并通过全局优化方法解决。在该应用中,进行循环分析以确定质量流量,压力和温度,然后进行能值和成本分析,分别确定能效流量和效率以及资本成本。另外,基于循环,能值和成本分析的结果,确定设计和操作条件以最大化能值效率或最小化年度总成本。通过数值研究,结果表明,所提出的系统方法使人们能够有效地进行热经济分析和优化。

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