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王闯

所在单位:能动学院压缩机工程系
办公地点:逸夫工程馆324
联系方式:
职称:副教授
毕业院校:西安交通大学
博士生导师:否
硕士生导师:是
学科:动力工程及工程热物理
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祝贺课题组冯艺伟博士的工业制冷系统节能控制相关研究论文被期刊《Energy》收录
发布时间:2025-01-28    点击次数:

发布时间:2025-01-28

文章标题:祝贺课题组冯艺伟博士的工业制冷系统节能控制相关研究论文被期刊《Energy》收录

内容:

课题组冯艺伟博士的研究论文Operational Strategy of Thermal Energy Storage Tank in an Industrial multi-chiller System Based on Chilled Water Flow Difference Between Supply and Demand Sides被期刊《Energy》收录。论文摘要如下:

For refrigeration systems characterized by peak-valley load variations, integrating a small-scale thermal energy storage tank to deal with these fluctuations can achieve low investment and high energy savings. This study developed an operational strategy for a thermal energy storage tank that proactively identifies multiple local peak-valley load changes, achieving both global and localized peaks shifting. This strategy aims to enhance system robustness against demand side load uncertainties, and minimizes operational costs. The tank’s charging/discharging is comprehensively controlled based on chilled water flow difference between supply and demand sides, the number of operation chillers, and the tank’s internal temperature. Unlike a strategy that only considers global load peak-valley periods, this strategy increased the frequency of charging/discharging cycles and energy-saving rate. And compared to a strategy that operates based solely on the tank’s temperature limits, this strategy incorporates proactive identification of load peaks and valleys, allowing appropriate and flexible switching between charging and discharging, enhancing system robustness. Applied to a multi-chiller system with a 360 m3 tank in a fresh milk production facility, results showed a 2.22% energy-saving rate and an 8.86% reduction in cooling capacity fluctuation, indicate that this control strategy can improve robustness while reduce daily electricity cost.
Keywords: Thermal Energy Storage; multi-chiller system; energy-saving; system robustness; Global and local peaks shifting