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A powerful visualization technique for electricity supply and demand at industrial sites with combined heat and power and wind generation

机译:一种强大的可视化技术,结合了热电和风力发电,可用于工业现场的电力供需

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摘要

The combination of wind generation and combined heat and power (CHP) on an industrial site brings significant design and operational challenges. The stochastic nature of wind power affects the flows of electricity imported and exported to and from the site. Economies of scale favor larger wind turbines, but at the same time it is also desirable to minimize the amount of electricity exported from the site to avoid incurring increased network infrastructure usage charges. Therefore the optimum situation is to maximize the proportion of the site load served by on-site generation. This paper looks at a visualization technique for power flows on an industrial site, which can be used to size on-site generators. The technique is applied to a test case, demonstrating how a simple combined heat and power control scheme can support the integration of on-site wind power. The addition of such CHP control has a small impact on the CHP unit but can greatly increase the proportion of wind generation consumed on-site. This visualization technique allows the comparison of different generation mixes and control schemes in order to arrive at the optimal mix from a technical and economic viewpoint.
机译:工业现场的风力发电与热电联产(CHP)的结合带来了重大的设计和运营挑战。风能的随机性会影响到现场的进出电流。规模经济有利于更大的风力涡轮机,但与此同时,也希望使从站点输出的电量最小化,以避免引起网络基础设施使用费用的增加。因此,最佳情况是使现场发电所服务的现场负荷的比例最大化。本文着眼于工业现场潮流的可视化技术,可用于确定现场发电机的尺寸。该技术应用于测试案例,演示了简单的热电联产控制方案如何支持现场风电的集成。增加这样的热电联产控制对热电联产机组影响不大,但可以大大增加现场消耗的风力发电比例。这种可视化技术可以比较不同代的混合气和控制方案,以便从技术和经济角度获得最佳混合气。

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