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首页> 外文期刊>Journal of nuclear engineering and radiation science >Exploring Synergy Among New Generation Technologies-Small Modular Reactor, Energy Storage, and Distributed Generation: A Strong Case for Remote Communities
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Exploring Synergy Among New Generation Technologies-Small Modular Reactor, Energy Storage, and Distributed Generation: A Strong Case for Remote Communities

机译:探索新一代技术 - 小型模块化反应器,储能和分布式发电的协同作用:远程社区的强大案例

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摘要

With a steady rise in power demand in the remote communities in Canada, utilities are looking for new options to provide a reliable supply of electricity. While distributed generation is a promising option, scaling and firming up the capacity of distributed generators is essential. Alternatively, small modular reactors (SMRs) can be used as a prime local source of electricity for remote feeders provided they are flexible enough to respond to the fluctuations in demand. Electrical energy storage (EES) can be used as a buffer to absorb fluctuations in demand and generation, and as a critical back-up for the SMR onsite power supply system by replacing the diesel-generator sets. The synergy of SMREES-distributed generation can be an all-inclusive alternative with win-win situation for both the utility and remote communities. This paper discusses the technical feasibility of the proposed synergy using an example of an existing remote feeder in Saskatchewan, Canada. The integral pressurized water reactor is considered along with the photovoltaic (PV) generation in an existing remote feeder in Northwest Saskatchewan to estimate the plant load factor (LF) of the SMR with and without the PV generation and EES. The results quantify the benefit of having EES to support the SMR in hosting more PV generation in remote communities. EES when used in support of the SMR to host 60% PV penetration, the plant load factor improves by as much as 5%.
机译:随着加拿大偏远社区的电力需求稳步上升,公用事业公司正在寻找新的选择,以提供可靠的电力供应。虽然分布式发电是一种很有前途的选择,但扩大和巩固分布式发电机的容量至关重要。或者,小型模块化反应堆(SMR)可以用作远程馈线的主要本地电源,前提是它们足够灵活,能够响应需求的波动。电能存储(EES)可以用作缓冲,以吸收需求和发电量的波动,并通过更换柴油发电机组,作为SMR现场供电系统的关键备份。SMREES分布式发电的协同效应可以是一种包容各方的替代方案,对公用事业和远程社区都是双赢的。本文以加拿大萨斯喀彻温省现有的远程馈线为例,讨论了所提出的协同效应的技术可行性。在萨斯喀彻温省西北部的一个现有远程馈线中,将整体压水反应堆与光伏(PV)发电一起考虑,以估算SMR的电厂负荷系数(LF),包括光伏发电和EES,以及不包括光伏发电和EES的情况。结果量化了EES支持SMR在偏远社区托管更多光伏发电的好处。EES用于支持SMR以承载60%的光伏穿透时,电厂负荷系数提高了5%。

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