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Numerical investigations of thermal performance enhancement in phase change energy storage system effective for solar adsorption cooling systems

机译:太阳能吸附冷却系统相变储能系统热性能增强的数值研究

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Solar cooling systems requires an uninterrupted heat input for their continued operation. Thermal energy storage systems using phase change material (PCM) has the ability to deliver heat near isothermally and are effective for solar cooling applications. But these high energy dense storage systems exhibits poor thermal performance due to the low thermal conductivity of PCMs and are bulky. The main objective of this study is to design a phase change energy storage system (PCES) unit with different fin configurations, and to select a proper PCM for solar adsorption cooling systems (SAC). It projects the Preference Selection Index (PSI) method as the effective way to select the PCMs, and the result suggests the commercial PCM SavE-HS89 as a potential candidate among the different materials considered. This study also numerically investigates the thermal performance of different fins shapes, namely, positively tapered, negatively tapered and straight fins; among these the negatively tapered fins are found to be capable of compensating the slow melting process at the bottom region of the storage unit. It has been found that the negatively tapered fin improves the thermal performance of the PCES unit by reducing the melting time by up to 13 and 36 in comparison with the conventional straight fin and positively tapered fin, respectively. A case study of actual plant data of a SAC with different fin shapes shows that the storage system with the desirable configuration can save up to 46 of heat storage cost as compared to PCES without fin.
机译:太阳能冷却系统需要不间断的热量输入才能持续运行。使用相变材料 (PCM) 的热能存储系统具有在近等温位置传递热量的能力,并且对太阳能冷却应用非常有效。但是,由于相变材料的导热系数低,这些高能量密度存储系统表现出较差的热性能,并且体积庞大。本研究的主要目的是设计具有不同翅片配置的相变储能系统(PCES)单元,并为太阳能吸附冷却系统(SAC)选择合适的相变相变系统(PCES)。它预测偏好选择指数 (PSI) 方法是选择相变材料的有效方法,结果表明商业 PCM SavE-HS89 是所考虑的不同材料中的潜在候选者。本研究还对不同鳍片形状的热性能进行了数值调查,即正锥形、负锥形和直鳍片;其中,发现负锥形翅片能够补偿存储单元底部区域的缓慢熔化过程。研究发现,与传统的直锥翅片和正锥翅片相比,负锥翅片分别将熔化时间缩短了13%和36%,从而提高了PCES装置的热性能。对具有不同翅片形状的 SAC 的实际工厂数据的案例研究表明,与不带翅片的 PCES 相比,具有理想配置的存储系统可以节省高达 46% 的储热成本。

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