首页> 外文期刊>Energy >Enhancement in free cooling potential through PCM based storage system integrated with direct evaporative cooling (DEC) unit
【24h】

Enhancement in free cooling potential through PCM based storage system integrated with direct evaporative cooling (DEC) unit

机译:通过与直接蒸发冷却(DEC)单元集成的基于PCM的存储系统,增强了自然冷却的潜力

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

The present work reports the enhancement in free cooling potential using a modified cooling system compared to the conventional free cooling system. The proposed modified system is a novel pilot scale model packed with spherically encapsulated phase change material in a cylindrical tank along with water spray nozzles (direct evaporative cooling unit) at the inlet of the tank. The experiments were conducted in Bangalore, a city located in south India that possesses moderate/temperate climate throughout the year. Considering the local ambient conditions, an organic phase change material with the phase transition temperature range of 25.6-27.1 degrees C was used in the present study. Significant reduction in total charging duration and enhancement in heat transfer rate was achieved through the hybrid cooling system. The reduction in charging duration of 28.7% and 34.8% was observed for the proposed hybrid cooling system at heat transfer fluid (HTF) inlet velocities of 2 and 1.5 m/s respectively. It is observed from the results that in the experiments conducted with conventional free cooling system at 1 m/s HTF velocity, thephase change material (PCM) placed in the last two rows of the storage tank did not reach its end freezing temperature even after 10 h of experimentation due to the low heat transfer rate, whereas in the experiments conducted with the modified free cooling system, the storage tank is completely charged at all HTF velocities. It is construed from the results that the integration of evaporative cooling unit along with phase change material based free cooling system aids the chosen phase change material to completely solidify at a faster rate and augments the thermal performance of the storage unit. The proposed system can be operated as a single stand-alone cooling system to meet the cooling demand of the buildings or it can be integrated with the mechanically operated HVAC systems to achieve energy efficiency in the overall cooling system. (C) 2017 Elsevier Ltd. All rights reserved.
机译:与传统的自然冷却系统相比,本工作报告了使用改进的冷却系统后自然冷却潜力的增强。提出的改进系统是一种新型的中试规模模型,在圆柱状储罐中装有球形封装的相变材料,并在储罐的入口处装有喷水喷嘴(直接蒸发冷却装置)。实验是在印度南部城市班加罗尔进行的,该市全年气候温和。考虑到当地的环境条件,本研究中使用的相变温度范围为25.6-27.1摄氏度的有机相变材料。通过混合冷却系统,总充电时间显着减少,传热速率大大提高。在传热流体(HTF)入口速度分别为2和1.5 m / s的情况下,建议的混合冷却系统的充电持续时间减少了28.7%和34.8%。从结果可以看出,在使用传统的自然冷却系统以1 m / s HTF速度进行的实验中,放置在储罐最后两排中的相变材料(PCM)甚至在10℃后仍未达到最终冷冻温度。由于传热率低,因此需要进行h小时的实验,而在使用改进的自然冷却系统进行的实验中,储罐在所有HTF速度下均已充满。从结果可以理解,蒸发冷却单元与基于相变材料的自由冷却系统的集成有助于选择的相变材料以更快的速度完全固化并增强存储单元的热性能。拟议的系统可以作为单个独立的制冷系统运行,以满足建筑物的制冷需求,也可以与机械操作的HVAC系统集成在一起,以实现整个制冷系统的能源效率。 (C)2017 Elsevier Ltd.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号