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Adsorption heat storage for combined heat and power units in industrial batch processes

机译:用于工业批量流程中的混合热量和动力装置的吸附热量

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The use of adsorption heat storage for industrial heat supply with cogeneration is investigated in experiment and simulation. As an example of an industrial batch process, beer brewing is considered. The feasibility of adsorption heat storage was demonstrated in lab-scale experiments. Based on these experiments, a dynamic model is developed and successfully calibrated to measurement data. Thereby, a reliable description of the dynamic behavior of the adsorption heat storage is achieved. The model is used to study and benchmark the performance of the adsorption heat storage combined with cogeneration for batch process heat supply. As benchmark, heat storage based on a phase change material (PCM) and a peak boiler are considered. The study shows that adsorption heat storage has the potential to increase energy efficiency significantly. The key is the availability of low grade heat at times of unloading and of low grade heat demand when charging the storage.
机译:实验和仿真中研究了用于工业热源的吸附热量。作为工业批处理过程的一个例子,考虑了啤酒酿造。在实验室规模实验中证明了吸附热储存的可行性。基于这些实验,开发并成功校准了动态模型以测量数据。因此,实现了吸附热存储器的动态行为的可靠描述。该模型用于研究和基准吸附蓄热器与批量处理热源的发电机的性能。作为基准,考虑基于相变材料(PCM)和峰值锅炉的蓄热。该研究表明,吸附蓄热具有显着提高能量效率的潜力。关键是在卸载和降低储存时卸载和低级热需求的低等级热量。

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