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首页> 外文期刊>Solar Energy >Performance of laboratory scale packed-bed thermal energy storage using new demolition waste based sensible heat materials for industrial solar applications
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Performance of laboratory scale packed-bed thermal energy storage using new demolition waste based sensible heat materials for industrial solar applications

机译:实验室规模包装床热能储存的性能采用新型拆除废料的合理热材料进行工业太阳能应用

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Thermal energy storage (TES) is essential for cost-effective use of solar energy in industries. The most energy intensive processes in industry operate below 200 degrees C. This study tested a new sustainable and low-cost sensible thermal energy storage material (STESM) based on demolition wastes in a lab-scale packed bed TES system, specifically built to analyze its performance in industrial solar applications below 200 degrees C. This system was investigated both experimentally and numerically under different operating conditions. One-dimensional continuous phase model used verified that experimental results were in good agreement with numerical ones during charging and discharging steps. Performance of demolition waste STESM was compared with Therminol 66 synthetic oil as a liquid heat storage media. The maximum system energy efficiency of the packed-bed filled with demolition waste STESM was 67% at charging temperature of 150 degrees C and superficial fluid velocity of 0.95 mm s(-1), while it was 63% for Therminol 66. Packed bed TES system with demolition waste STESM showed good performance up to 180 degrees C in fully laminar flow regime (Rep 10) and Bi number 0.1. The material cost of demolition waste STESM is at least tenfold cheaper than the alternative natural rock based packing materials. Packed bed TES systems using demolition wastes can be recommended for low cost and sustainable solar applications in industry.
机译:热能存储(TES)对于在行业中使用太阳能的成本效益,是必不可少的。行业中最能集约化的过程在200摄氏度以下工作。本研究在实验室规模的填充床TES系统中测试了一种基于拆除废物的新的可持续和低成本的明智热储能材料(Stesm),专门构建以分析其工业太阳能应用中的性能低于200摄氏度。该系统在不同的操作条件下实验和数值进行了实验和数值。二维连续相模型验证了在充电和排出步骤期间与数值符合实验结果良好。将拆除废料斜率的性能与热门66合成油作为液体蓄热介质进行比较。填充拆除废物斜面的最大系统能量效率为150℃的充电温度和0.95mm S(-1)的浅表液体速度为67%,而热门66则为63%。填充床TES具有拆除废物斜视的系统在完全层流变(REP <10)和BI号<0.1中显示出良好的性能高达180℃。拆除废物斜片的材料成本比替代天然岩石的包装材料便宜至少为十倍。可以推荐使用拆除废物的包装床TES系统,以便在工业中低成本和可持续的太阳能应用。

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