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Performance of Latent Heat Solar Thermal Energy Storage system using various Heat Transfer Fluids

机译:使用各种传热流体的潜热太阳能热能存储系统性能

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In the present work the thermal performance of Phase Change Material (PCM) based solar thermal energy storage system under the influence of different heat transfer fluids (HTF) have been investigated. Water, Ethylene Glycol-water and Copper nanofluid are selected as HTF. Paraffin is used as PCM and encapsulated in cylindrical capsules. The thermal energy storage (TES) tank acts as a storage unit consisting PCM capsules packed in three beds surrounded by water, which acts as sensible heat storage (SHS) material. HTF circulated by a pump transfers heat from solar flat plate collector (FPC) to the TES tank. 25% ethylene glycol -75% water HTF is prepared by mixing ethylene glycol (EG) with water. Copper-distilled water nanofluids (0.3% by weight) are prepared using prolonged sonication with sodium dodecyl benzene sulphonate (SDBS) as the surfactant. Various performance parameters such as charging time, instantaneous heat stored, cumulative heat stored and system efficiency are studied for various HTFs. It is found that the charging time is reduced by 33.3% for copper nanofluid and 22.2% for ethylene glycol-water mixture HTFs. It is also observed that there is an increase in system efficiency and cumulative heat stored with reference to charging time for these HTFs when compared with conventional HTF 1 i.e. water.
机译:在本工作中,研究了相变材料(PCM)太阳能热能存储系统的热性能,在不同传热流体(HTF)的影响下。选择水,乙二醇 - 水和铜纳米流体作为HTF。石蜡用作PCM并封装在圆柱形胶囊中。热能存储(TES)罐充当存储单元,该存储单元将PCM胶囊组成,该PCM胶囊包装在由水包围的三张床中,其用作可明智的蓄热(SHS)材料。由泵循环的HTF将从太阳能平板收集器(FPC)传递到TES罐的热量。通过将乙二醇(例如)用水混合来制备25%乙二醇-75%水HTF。使用延长的超声氧化钠苯磺酸钠(SDB)作为表面活性剂,使用延长的超声处理来制备铜蒸馏水纳米流体(0.3重量%)。研究了各种性能参数,例如充电时间,瞬时热存储,累积热存储和系统效率,用于各种HTF。发现铜纳米流体的充电时间减少了33.3%,对于乙二醇 - 水混合物HTF的22.2%。还观察到,与常规HTF1 I.水相比,在参考这些HTF的充电时间储存的系统效率和累积热量增加。

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