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首页> 外文期刊>Energy Conversion & Management >A comparative study on energetic, exergetic and environmental performance assessments of novel M-Cycle based air coolers for buildings
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A comparative study on energetic, exergetic and environmental performance assessments of novel M-Cycle based air coolers for buildings

机译:新型基于M-Cycle的建筑空气冷却器的能量,能量和环境性能评估的比较研究

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摘要

In this study, three various novel air coolers based on M-Cycle are evaluated using energy and exergy analyses based efficiency assessments along with environmental impact and sustainability parameters. The M-Cycle systems are considered to cool a building room air white their inlet air parameters are same, but outlet cooled air parameters are different. Systems I and III draw electricity directly taken from an electric grid in the building while System II, which is stand alone system, produces and draws electricity from its solar PV panels. In the energy analysis, wet bulb effectiveness, cooling capacity, Coefficient of Performance (energetic COP) and Primary Energy Ratio (PER) are found. In the exergy analysis, exergy input and output rates, exergy loss rate, exergy destruction rate, Exergetic Coefficient of Performance (COP_(ex)), Primary Exergy Ratio (PE_xR) and exergy efficiency are obtained for six different dead state temperatures changing between 10 ℃ and 35 ℃. Also, sustainability assessments of the systems are obtained using sustainability index (SI) tool for these various dead state temperatures. Finally, environmental assessments of the systems are calculated from their greenhouse gas (GHG) emissions (gCO_2/kW h) due to their electricity consumptions. Maximum exergy efficiencies and sustainability assessments are found to be 35.13% and 1.5415 for System III and 34.94% and 1.5372 for System II, respectively. GHG emissions of the systems are calculated to be 2119.68 gCO_2/day, 153.6gCO_2/day and 3840gCO_2/day for Systems I, II and III respectively. So, System II becomes a good choose to prevent the global warming and to attain sustainable future.
机译:在这项研究中,使用基于能量和火用分析的效率评估以及环境影响和可持续性参数对基于M-Cycle的三种新型空气冷却器进行了评估。 M-Cycle系统被认为是将建筑物的空气冷却为白色,其进气参数相同,但出口冷却空气参数不同。系统I和III直接从建筑物的电网中汲取电能,而系统II是独立系统,其太阳能PV板产生并汲取电能。在能量分析中,找到了湿球效率,冷却能力,性能系数(高能COP)和一次能量比(PER)。在(火用)分析中,对于六个在10到10之间变化的死态温度,获得了(火用)输入和输出率,(火用)损失率,(火用)破坏率,(火用)性能系数(COP_(ex)),一次(火用)比(PE_xR)和(火用)效率。 ℃和35℃。同样,使用可持续性指数(SI)工具针对这些各种死态温度获得系统的可持续性评估。最后,根据系统的电力消耗,根据其温室气体(GHG)排放量(gCO_2 / kW h)计算系统的环境评估。系统III的最大火用效率和可持续性评估分别为35.13%和1.5415,系统II的最大火用效率和可持续性评估分别为34.94%和1.5372。系统I,II和III的系统温室气体排放量分别为2119.68 gCO_2 /天,153.6gCO_2 /天和3840gCO_2 /天。因此,System II成为防止全球变暖和实现可持续未来的好选择。

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