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Use of Hydration Heat and Solar Energy in Prefabricated Concrete Production Lines

机译:采用预制混凝土生产线的水化热量和太阳能

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The paper analyses the thermal energy requirements of an industrial production line for prefabricated concrete parts using measurements and tests. The goal is to significantly reduce the energy demand and reduce the temperature level in order to be able to integrate solar thermal process heat, and the first-time use of the hydration heat. The final production line, optimized on the basis of the research results, is presented, as well as a simulation study, which shows, that economically interesting solar thermal process heat production costs can be achieved through an optimized overall concept. Regarding the export of this production technology to countries with hot and dry climates it is also aspired, to cover the additional required cooling load by means of solar thermal driven chillers. This option should also be examined by system simulations. These simulations put also emphasis on the development of cost- effective system concepts, which allow the integration of solar thermal process heat and/ or cold.
机译:本文分析了使用测量和测试预制混凝土零件的工业生产线的热能要求。目标是显着降低能量需求并降低温度水平,以便能够整合太阳能热处理热量,并首次使用水化热量。提出了最终生产线,在研究结果的基础上进行了优化,以及仿真研究,其显示经济上有趣的太阳能热处理热量生产成本可以通过优化的整体概念来实现。关于该生产技术的出口到具有炎热和干燥气候的国家也渴望,通过太阳能热驱动冷却器覆盖额外的所需冷却负荷。还应通过系统仿真检查此选项。这些模拟还强调开发成本效益的系统概念,这允许太阳能热处理和/或冷的整合。

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