首页> 外文会议>IIR conference on phase-change materials and slurries for refrigeration and air conditioning >SUPERCOOLING STABILITY OF SODIUM ACETATE TRIHYDRATE COMPOSITES IN MULTIPLE HEAT STORAGE UNITS
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SUPERCOOLING STABILITY OF SODIUM ACETATE TRIHYDRATE COMPOSITES IN MULTIPLE HEAT STORAGE UNITS

机译:多重蓄热单元中醋酸钠三水合物复合材料的过冷稳定性

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Keeping sodium acetate trihydrate (SAT) in supercooled state can be utilized to store heat loss free over longperiods. The main risk with this technology is that the SAT may crystalize spontaneously and release the storedheat before desired.A test rig with 10 marketed heat storage units with water and 35 kg sodium acetate trihydrate composite wasbuilt and multiple heating and cooling cycles were carried out with the units. It was monitored if the sodiumacetate trihydrate remained supercooled in the 3 days storage period or if the solidification startedspontaneously. The units were charged with an inlet temperature of 87°C, and then discharged with inlettemperatures of 14°C, 22°C, 28°C or 35°C. Spontaneous solidifications occurred more frequently duringdischarge in the test cycles with lower discharge temperatures compared to higher inlet temperatures.
机译:将醋酸钠Trihydrate(SAT)保持在过冷状态下可用于储存远长的热损失期间。本技术的主要风险是SAT可以自发结晶并释放存储的在所需之前加热。具有10个具有水和35kg醋酸钠三水合物复合材料的试验台用单元进行构建和多重加热和冷却循环。它是监测钠醋酸三水合物在3天的储存期内仍然过冷,或者凝固开始自发地。单位的入口温度为87°C,然后用入口排出温度为14℃,22℃,28℃或35℃。在此期间更频繁地发生自发凝固与更高的入口温度相比,在具有较低放电温度的试验周期中放电。

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