太阳能海水淡化辅助水加热系统的改良增强分析:能源矩阵和环境经济学

IF 6 2区 工程技术 Q2 ENERGY & FUELS
Ashok Kumar Singh
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引用次数: 0

摘要

对所提出的实验装置(蒸馏器辅助热水器增强真空管)进行了能源矩阵和环境经济学研究。拟议的研究发现,在相应的气象条件下,该装置的成本相当低,同时还具有生态回报和显著减少污染物的额外优势,使该装置切实可行,并具有适当的自我可持续性。建议的研究证实了 EATC 的 100% 利用率,以及定向和尖顶反射器的联合应用。此外,通过接线柜同时产生各自的产水量和热水,过多的水蒸气沉降规定成为现实。在 30° 水深的静止柜顶盖和真空圆柱管的作用下,建议的实验装置经过优化,可在显著的热虹吸速率(即每小时 55 公斤)下获得最热的水(99.6 °C)。相对于相关的太阳光吸收面积,日产量(12.4 千克)相当可观。根据能效和效费比计算的二氧化碳减排量和绿色收入分别为 131.97 吨、67.44 吨、1318.36 美元和 673.77 美元,环境经济效益相当可观。由于产量(蒸馏器和热水)、碳信用额、相对较高的减排量和较短的回报期,该实验装置被认为是可持续的和切实可行的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis for modified augmentation of solar desalination assisted water heating system: Energy-matrices and environ-economics
The presented experimental setup (distiller assisted water heater augmented vacuum tubes) has been examined for the energy matrices and environ-economics. The proposed research found considerably low-yielding cost with the added advantages of ecological returns as well as significant mitigates of pollutants for the respective meteorological conditions, and renders the projected setup practically applicable and suitably self-sustainable. The proposed research confirms the 100 % utilization of EATC along with the associative application of oriented and cusp reflectors. Further, the excessive vapor settlement provision approach made realistic through the junction cabinet to produce respective yield and hot water simultaneously. With the adequate water depth at 30° still cabinet top cover and vacuum cylindrical tubes, the suggested experimental setup is optimized to obtain the hottest water (∼99.6 °C) under the significant thermosiphon rate, i.e. ∼ 55 kg per hour. A significant daily basis yield (12.4 kg) was found relative to the relevant solar ray absorption area. The environ-economic findings as 131.97 tonnes, 67.44 tonnes, $1318.36, and $673.77 based on energetic and exergetic CO2 mitigations and green revenue, respectively are quite impressive. The experimental setup is reported as sustainable and practicable due to evident yield (distillery and hot water), carbon credits, relatively higher mitigates, and lower payoff period.
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来源期刊
Solar Energy
Solar Energy 工程技术-能源与燃料
CiteScore
13.90
自引率
9.00%
发文量
0
审稿时长
47 days
期刊介绍: Solar Energy welcomes manuscripts presenting information not previously published in journals on any aspect of solar energy research, development, application, measurement or policy. The term "solar energy" in this context includes the indirect uses such as wind energy and biomass
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