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Conceptual design and preliminary performance analysis of a hybrid nuclear-solar power system with molten-salt packed-bed thermal energy storage for on-demand power supply

机译:具有按需供电的熔融盐填充床热能存储的混合核能-太阳能系统的概念设计和初步性能分析

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In support of more efficient utilization of solar and nuclear energy in power generation, the present work proposes a conceptual design of a hybrid nuclear-solar power system (HNSPS) for on-demand power supply, based on a parallel thermal integration of small modular reactors with commercialized molten-salt concentrating solar power tower plants. A cost-effective thermal energy storage system is employed as a thermal coupling and a heat dispatcher to coordinate both nuclear heat and solar heat with power demands. The overall configuration and operation strategy of the hybrid system are elaborated. A numerical model of the hybrid system is developed based on the circulation of molten-salt. Using the model, a 7-day performance analysis of the hybrid system with different considerations are conducted. Effects of key design parameters on system performances are investigated by a parametric study. A customized evaluation parameter, named as "design score", is defined to assess the suitability of the designed configurations. The performance analysis shows that the integration of nuclear power with concentrating solar power allows the system to be less dependent on heat dispatch to achieve required power regulations, comparing to a standalone CSP plant with an equivalent power capacity. The parametric study indicates that a higher heat generation utilization of the hybrid system requires a larger TES and a smaller heliostats field, while a higher power supply efficiency of the hybrid system is accompanied with a larger TES, a larger heliostats field, and a higher nuclear power capacity proportion. The optimum design configuration of a 200 MWe HNSPS is estimated to have a nuclear power capacity proportion of 50%, a theoretical thermal energy storage duration of 14.8 h, and a heliostats field with a solar multiple of 1.27. This configuration can completely satisfy the power demand without any heat generation curtailment during the 7-day operation. The obtained results allow the HNSPS to be considered as a promising non-carbon-emitting power generation system for on-demand power supply.
机译:为了支持在发电中更有效地利用太阳能和核能,本工作基于小型模块化反应堆的并行热集成,提出了一种用于按需供电的混合核太阳能系统(HNSPS)的概念设计。商业化的熔融盐浓缩太阳能塔设备。采用经济高效的热能存储系统作为热耦合器和热量分配器,以将核能和太阳能与电力需求进行协调。阐述了混合动力系统的总体配置和运行策略。基于熔融盐的循环,建立了混合系统的数值模型。使用该模型,对具有不同考虑因素的混合动力系统进行了7天的性能分析。通过参数研究研究了关键设计参数对系统性能的影响。定义了一个定制的评估参数,称为“设计评分”,以评估设计配置的适用性。性能分析表明,与具有等效功率容量的独立CSP电厂相比,核能与聚光太阳能的集成使系统更少依赖热量分配来实现所需的功率规定。参数研究表明,混合系统的更高的热利用率需要更大的TES和更小的定日镜场,而更高的电力供应效率伴随着更大的TES,更大的定日镜场和更高的核能。功率容量比例。估计200 MWe HNSPS的最佳设计配置具有50%的核电容量比例,14.8 h的理论热能存储持续时间和太阳倍数为1.27的定日镜场。这种配置可以在7天运行期间完全满足电力需求,而不会减少任何热量产生。获得的结果使HNSPS被认为是一种有希望的按需供电的非碳排放发电系统。

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