两种新建议的电力,制冷和气生产的比较,用于向使用改进的太阳能发电进化算法优化算法的可持续性计划迈进
Tao Hai1, Nasser M Abd El-Salam2, Teeba Ismail Kh3
1School of Computer and Information, Qiannan Normal University for Nationalities, Duyun, Guizhou, 558000, China; Key Laboratory of Complex Systems and Intelligent Optimization of Guizhou Province, Duyun, Guizhou, 558000, China; Institute for Big Data Analytics and Artificial Intelligence (IBDAAI), Universiti Teknologi MARA, 40450, Shah Alam, Selangor, Malaysia.
Chemosphere
|June 16, 2023
概括
本研究提出了清洁能源和资源生产的多代系统,为发展中国家面临全球变暖和化石燃料耗尽等环境挑战提供了可持续的解决方案.
科学领域:
- * 可持续的能源系统工程
- * 环境科学与环境政策
- *可再生能源技术的使用
背景情况:
- *发展中国家面临着关键的环境问题,包括臭氧层的枯竭,全球变暖和温室气体排放.
- * 需要一个可持续的,多代系统来生产清洁的,淡水,电力,热能和冷却.
- * 整合可再生能源和化石燃料需要进行比较分析以获得最佳性能.
研究的目的:
- * 设计和评估一个用于清洁,水和能源生产的多代系统.
- * 为了比较使用太阳能立体与启动燃烧室的系统性能.
- *分析能量和能量效率,并确定能量破坏的区域.
主要方法:
- * 兰金和布雷顿循环的整合,有机兰金循环 (ORC),闪光淡化和电解剂.
- *使用太阳能立体来输入可再生能源.
- *在不同启动模式和运行条件下对系统性能进行比较分析.
主要成果:
- * 实现了大约78.93%和47.56%的能量效率和能量效率.
- *确定了热交换器和性电解剂作为能量破坏的主要地点.
- * 已证明的气产量为0.04663公斤/秒,在最佳条件下可能达到1.28公斤/秒.
- * 布雷顿循环中15%的热效率提高,使气的产量从每秒0.040公斤上升到每秒0.0520公斤.
结论:
- * 拟议的多代系统为发展中国家的可持续资源生成提供了一个可行的解决方案.
- *优化系统组件,特别是布雷顿循环,显著提高的生产.
- * 该系统通过提供清洁能源和资源,有效地应对环境挑战.
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