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Nuclear powered heat pumps for near-term process heat applications

机译:用于近期过程热应用的核动力热泵

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摘要

There is a substantial market for nuclear energy in non-electric applications such as hydrogen production or water desalination. Among the Generation IV reactor concepts, the very high temperature reactor (VHTR) with a reactor outlet temperature close to 1000°C and a power conversion efficiency of approximately 50% is believed to be the most suitable concept for co-generation of process heat. Its high coolant exergy would enable centralized hydrogen production and other process heat applications. In this paper it is shown that a reactor with lower coolant outlet temperature or another near-term heat source can also meet the VHTR objectives which are high power conversion efficiency and capability to deliver high temperature process heat in the narrow temperature window required by thermochemical hydrogen production cycles. The approach was to separate the requirement for high temperature process heat production from the nuclear part of the plant, in other words the nuclear part of the power plant would run at acceptably low temperature while the high temperature heat production via a heat pump system would be limited to a conventional external circuit, thus avoiding nuclear constraints. The separation of these high temperature constraints from the reactor would avoid massive R&D requirements on materials, components and fuel with uncertain outcome thus unnecessarily delaying introduction of this otherwise very attractive reactor concept. We then show that the proposed technology is equally suitable for the generation of cold (e.g. for air conditioning) and for desalination of seawater.
机译:在非电力应用中,例如氢生产或水脱盐,核能市场很大。在第四代反应堆概念中,反应器出口温度接近1000°C,功率转换效率约为50%的超高温反应器(VHTR)被认为是最适合用于过程热联产的概念。其高的冷却剂火用能实现集中制氢和其他过程供热的应用。本文表明,具有较低冷却剂出口温度或其他近期热源的反应堆也可以满足VHTR目标,即高功率转换效率和在热化学氢所需的狭窄温度范围内传递高温过程热的能力。生产周期。方法是将高温过程热产生的需求与电厂的核部分分开,换句话说,发电厂的核部分将在可接受的低温下运行,而通过热泵系统产生的高温热将限于传统的外部电路,从而避免了核约束。将这些高温约束条件与反应堆分开可以避免对材料,组件和燃料的大量研发需求,并且结果不确定,因此不必要地延迟了这种原本非常吸引人的反应堆概念的引入。然后我们表明,所提出的技术同样适用于产生冷(例如用于空调)和海水淡化。

著录项

  • 来源
    《Nuclear Engineering and Design》 |2008年第9期|p.2272-2284|共13页
  • 作者

    A. Marmier; M.A. Fuetterer;

  • 作者单位

    European Commission Joint Research Centre, Institute for Energy, P.O. Box 2, NL- 7755 ZG Petten, The Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 原子能技术;
  • 关键词

  • 入库时间 2022-08-18 00:45:39

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