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Energy Complexes Consisting of Hydro and Nuclear Power Plants with Low Power Nuclear Reactors

机译:具有低功率核反应堆的水力和核电站的能源综合体

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An algorithm for creating the electrical part of an energy complex consisting of power units of a low-power nuclear power plant and a hydroelectric power plant (HPP) has been developed. As an example, the results of various options for the development of an energy complex, suiting Kenya conditions, are presented: a low power nuclear plant having two power units with modular SVBR-100 reactors and a liquid-metal coolant-lead-bismuth alloy-of 100 MW, the creation of which is completed by the Russian State Nuclear Energy Corporation Rosatom, and a hydro power plant having two hydro-generators each with a capacity of 30 MW. As a result of the project implementation, the parameters and types of the main equipment of the energy complex (generators, transformers, hydro turbines) have been determined, the options for the power output scheme of the energy complex and schemes of the auxiliaries have also been proposed. The calculation of short-circuit currents has been performed and the types and parameters of the necessary modern electro-technical equipment for the energy blocks have been determined. The possibility of creating promising energy complexes with hydro and nuclear power plants with low-power nuclear reactors has been justified.
机译:已经开发了一种用于创建由低功率核电厂和水力发电厂(HPP)的动力单元组成的能源综合体的电气部分的算法。例如,介绍了适合肯尼亚条件的开发能源综合体的各种选择的结果:一个低功率核电站,具有两个带有模块化SVBR-100反应堆的动力单元和液态金属冷却剂-铅-铋合金-100兆瓦,由俄罗斯国家核能公司Rosatom完成,一个水力发电厂由两台水轮发电机组成,每台水轮发电机的容量为30兆瓦。项目实施的结果是,确定了能源综合体主要设备(发电机,变压器,水轮机)的参数和类型,还为能源综合体的功率输出方案和辅助方案提供了选择被提出。已经进行了短路电流的计算,并且已经确定了用于能量块的必要现代电子技术设备的类型和参数。用低功率核反应堆与水力和核电厂建立有前景的能源综合体的可能性已得到证明。

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