Investigating a multi-generational energy system incorporating an OTEC cycle, solar collector, and wind turbine: Six E analysis, including energy, exergy, exergoenvironmental, exergoeconomic, emergoeconomic, and emergoenvironmental

IF 7.1 3区 材料科学 Q1 GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY
Hadi Kamfar , Abolfazl Shojaeian , Jaber Yousefi Seyf , Najmeh Hajialigol
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Abstract

In the context of increasing focus on renewable energy due to environmental degradation, population growth, and declining freshwater resources, this study examines a combined power generation and freshwater production system. The feasibility of integrating solar and wind energy systems is assessed using EES software, with sensitivity analysis identifying optimal input parameters for the organic cycle fluid. Results show that increasing solar collector area, solar radiation, pinch point temperature, and wind speed improves performance initially, but leads to higher exergy destruction, environmental impact, and economic costs. Therefore, identifying optimal values for each parameter is essential for overall system optimization. Exergoeconomic and exergoenvironmental analyses indicate that the lowest economic exergy coefficient is associated with closed heater equipment, while the lowest exergoenvironmental factor is linked to the Rankine condenser. The total economic cost, environmental impact, and energy-based cost and impact rates for January are reported as 373.1 ($/h), 2.184 ($/h), 3.962 × 1014 (Sej/h), and 4.022 × 1016 (Sej/h), respectively.

Abstract Image

研究包含OTEC循环、太阳能集热器和风力涡轮机的多代能源系统:六个E分析,包括能源、能源、能源环境、能源经济、新兴经济和新兴环境
由于环境退化、人口增长和淡水资源减少,人们越来越重视可再生能源,在这种背景下,本研究考察了一种联合发电和淡水生产系统。利用EES软件对太阳能和风能系统集成的可行性进行了评估,并通过灵敏度分析确定了有机循环流体的最佳输入参数。结果表明,增加太阳能集热器面积、太阳辐射、掐点温度和风速可以初步改善性能,但会导致更高的能量破坏、环境影响和经济成本。因此,确定每个参数的最优值对于整个系统优化至关重要。火用经济和火用环境分析表明,最低的经济火用系数与闭式加热器设备有关,而最低的火用环境系数与朗肯冷凝器有关。1月份的总经济成本、环境影响和能源成本和影响率分别为373.1 ($/h)、2.184 ($/h)、3.962 × 1014 (Sej/h)和4.022 × 1016 (Sej/h)。
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来源期刊
CiteScore
5.80
自引率
6.40%
发文量
174
审稿时长
32 days
期刊介绍: Materials Today Sustainability is a multi-disciplinary journal covering all aspects of sustainability through materials science. With a rapidly increasing population with growing demands, materials science has emerged as a critical discipline toward protecting of the environment and ensuring the long term survival of future generations.
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