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Innovative model of trigeneration system generating desalinated water, hot and cold by using low grade heat recovery from nuclear reactor set in cascade of sorption devices

机译:利用吸附装置级联装置中的核反应堆中的低品位热量回收来产生冷热水的三联产系统的创新模型

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The paper introduces an innovative conceptual model of a trigeneration system based on implementation of sorption devices in cascade configuration: absorption heat pumps and adsorption chillers connected with thermal energy storage, for recovering useless heat from secondary cooling circuit of a research nuclear reactor. Proposed trigeneration source provides building with useful heat for the purposes of heating system with thermal energy storage and cold for air-conditioning purposes. Also, desalinated water covering technological demand is produced. Useful heat is produced by an absorption heat pump, cold and desalinated water by adsorption chiller/desalinator. For the described trigeneration system calculations based on commercially available equipment (lithium-bromate absorption heat pumps and silica-gel adsorption chillers with desalination option) and required heat/cold/desalinate demand have been carried out. Operational data collected from an existing installation extended by introducing thermal energy storage to the system was used to simulate the heat demand during the year. 5-year operational data from the “MARIA” research nuclear reactor located at the National Center for Nuclear Research in ?wierk, Poland was used to simulate low source variations for the absorption heat pump operation. The results of model implementation demonstrate a series of promising effects on many levels of system operation, including production of desalinated water on a large scale and significant reduction of: (I) energy usage (by 40% when considering only heating scenario), (II) nuclear fuel consumption, (III) heat delivery losses.
机译:本文介绍了一种三级发电系统的创新概念模型,该模型基于以串联配置的吸附装置的实现:吸收热泵和与热能储存器连接的吸附冷却器,用于从研究型核反应堆的二次冷却回路中回收无用的热量。拟议的三代热源为建筑物提供有用的热量,以用于具有热能存储的供暖系统,并为空调提供冷。而且,生产了满足技术需求的淡化水。有用的热量由吸收式热泵,吸附式冷却器/脱盐器产生的冷水和淡化水产生。对于所述的三代发电系统,已经进行了基于可商购设备(溴化锂吸收式热泵和带脱盐功能的硅胶吸附式冷却器)的计算以及所需的热/冷/脱盐需求。从现有安装中收集的运行数据(通过将热能存储扩展到系统中)被用于模拟一年中的热量需求。位于波兰菲维克国家核研究中心的“ MARIA”研究核反应堆的5年运行数据用于模拟吸收热泵运行的低源变化。模型实施的结果证明了对许多系统操作水平的一系列令人鼓舞的影响,包括大规模生产淡化水和显着减少了:(I)能源使用(仅考虑供暖方案时能耗降低了40%),(II )核燃料消耗,(III)热量传递损失。

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