首页> 外文会议>ASME international mechanical engineering congress and exposition;IMECE2011 >ELECTRICAL POWER GRID DELIVERY DYNAMIC ANALYSIS: USING PRIME MOVER ENGINES TO BALANCE DYNAMIC WIND TURBINE OUTPUT
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ELECTRICAL POWER GRID DELIVERY DYNAMIC ANALYSIS: USING PRIME MOVER ENGINES TO BALANCE DYNAMIC WIND TURBINE OUTPUT

机译:电力输送动态分析:使用原动机发动机平衡动风轮机输出

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This paper presents an investigation into integrated wind + combustion engine high penetration electrical generation systems. Renewable generation systems are now a reality of electrical transmission. Unfortunately, many of these renewable energy supplies are stochastic and highly dynamic. Conversely, the existing national grid has been designed for steady state operation. The research team has developed an algorithm to investigate the feasibility and relative capability of a reciprocating internal combustion engine to directly integrate with wind generation in a tightly coupled Hybrid Energy System. Utilizing the Idaho National Laboratory developed Phoenix Model Integration Platform, the research team has coupled demand data with wind turbine generation data and the Aspen Custom Modeler reciprocating engine electrical generator model to investigate the capability of reciprocating engine electrical generation to balance stochastic renewable energy.
机译:本文提出了对集成的风力+内燃机高渗透发电系统的研究。现在,可再生发电系统已成为电力传输的现实。不幸的是,许多这些可再生能源供应是随机的且高度动态的。相反,现有的国家电网已被设计用于稳态运行。研究团队开发了一种算法,用于研究往复式内燃机在紧密耦合的混合能源系统中直接与风力发电集成的可行性和相对能力。研究团队利用爱达荷州国家实验室开发的Phoenix模型集成平台,将需求数据与风力涡轮机发电数据以及Aspen Custom Modeler往复式发动机发电机模型结合在一起,以研究往复式发动机发电平衡随机可再生能源的能力。

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