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Experimental study on utilization of heat pipe heat exchanger for energy conservation of air conditioning system in a hospitals and its techno-economic feasibility

机译:医院空调系统节能利用的实验研究及其技术经济可行性

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With its growing economy and population, the need of energy for facilities in Indonesia increases, particularly in a hospital. Energy needs for the air conditioning system in the hospital is very large, so that the effort to use energy efficiently becomes very important. The purpose of this study is to investigate the influence of heat pipe heat exchanger (HPHE) applied to the ducting of air conditioning system to effectiveness and energy recovery. This study will also focus on economic analysis to determine the feasibility of HPHE applied in the air conditioning system. The HPHE used in this research is varied in 1, 2, and 3 modules which consists of 12 heat pipes each module are arranged in staggered configuration. Air inlet temperature in the evaporator section is varied of 28, 30, 35, and 40°C, and air inlet velocity varied of 1.5, 2.0, 2.5 m/s. Material, production, and installation cost of HPHE in 1, 2, and 3 modules are calculated and compared with electricity energy saving to know how long of time to recover the investment of HPHE. The results show that the maximum effectiveness of 40.25 % obtained at 3 modules of HPHE, with air inlet temperature of 40°C, and the inlet air velocity of 1.5 m/s. It is also found that a maximum heat recovery of 400.54 Watts and annual cost saving of IDR 1.410.205 per year is found when the inlet temperature of 40°C, air velocity of 2.5 m/s, and with three modules installed into the ducting of the air conditioning system. With energy saving of IDR 723,190 per year on air inlet temperature 40°C and air velocity 2.5 m/s, HPHE with 1 module has a shorter payback period than HPHE with 2 and 3-modules.
机译:随着经济增长和人口,印度尼西亚设施的能源需求增加,特别是在医院。医院空调系统的能源需求非常大,因此努力使用能源有效地变得非常重要。本研究的目的是探讨热管热交换器(HPHE)对空调系统的管道的影响,以实现有效性和能量回收。本研究还将重点关注经济分析,以确定应用空调系统中HPHE的可行性。本研究中使用的HPHE在1,2和3个模块中变化,该模块由12个热管组成,每个模块布置在交错的配置中。蒸发器部分中的空气入口温度为28,30,35和40℃,空气入口速度为1.5,2.0,2.5m / s。 HPHE在1,2和3个模块中的材料,生产和安装成本进行了计算,并与电能节能相比,以了解恢复HPHE投资的时间有多长。结果表明,40.25%在3个HPHE中获得的最大有效性,空气入口温度为40°C,入口空气速度为1.5米/秒。还发现,当入口温度为40°C,空气速度为2.5米/秒时,每年的IDR 1.410.205的最大热回收率为400.54瓦和每年的年度成本节省。空调系统。通过每年IDR 723,190的空气入口温度为40°C和空气速度为2.5米/秒,带有1个模块的HPHE具有比HPHE更短的回收率,具有2和3个模块。

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