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Evaluation of the effect of flexible demand and wave energy converters on the design of hybrid energy systems

机译:评估灵活的需求和波浪能转换器对混合能源系统设计的影响

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摘要

Many islands have high electricity prices due to the reliance on imported diesel. However, hybrid energy systems (HES) which combine renewable generation with backup generators and energy storage are becoming cost competitive. Diesel usually provides about 10% of the demand because most renewables are non-dispatchable and thus the complete decarbonisation requires massively oversized renewable generation and storage. By including renewables with different resource profiles and demand side management (DSM), the diesel consumption could be decreased without increasing storage and renewable generation capacities. Here a framework for the design and optimisation of HES using wind, wave and solar generation and DSM is introduced. For the Mediterranean it is shown that wave energy is not competitive but that DSM reduces the emissions and costs by 21 and 8%. In the North Sea, DSM has lower benefits because waves act as an energy store for the wind. Thus, the combination of wave energy converters (WECs) and wind turbines significantly reduces the need for backup generation and energy storage which leads to large reductions in costs (up to 40%) and emissions (up to 60%). DSM and WECs can both simultaneously reduce the cost and emissions of HES but need to be designed for the particular circumstances.
机译:由于依赖进口柴油,许多岛屿的电价很高。但是,将可再生能源与备用发电机和储能相结合的混合能源系统(HES)变得具有成本竞争力。柴油通常满足约10%的需求,因为大多数可再生能源都是不可调度的,因此完全脱碳需要大规模超大型可再生能源的发电和存储。通过包含具有不同资源配置和需求方管理(DSM)的可再生能源,可以在不增加存储量和可再生能源发电量的情况下减少柴油消耗。这里介绍了使用风能,波浪能和太阳能发电以及DSM设计和优化HES的框架。对于地中海地区,波浪能没有竞争力,但DSM的排放量和成本分别降低了21%和8%。在北海,DSM的收益较低,因为海浪充当风的能量存储。因此,波浪能转换器(WEC)和风力涡轮机的组合大大减少了对备用发电和能量存储的需求,从而大大降低了成本(最多40%)和排放量(最多60%)。 DSM和WEC可以同时降低HES的成本和排放,但需要针对特定​​情况进行设计。

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