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Design of Hybrid Renewable Energy System for Near Zero Energy Building in Qatar

机译:卡塔尔近零能源建筑的混合可再生能源系统设计

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摘要

Environmental development is the fourth pillar of Qatar National Vision 2030, which has been launched to draw a clear roadmap for the future of Qatar. The vision is aiming towards a balance between developmental needs and the protection of Qatar's natural environment, including land, air and sea. As a contribution to the vision, this thesis is produced. People nowadays have awareness about renewable energy and its benefits. However, renewable energy sources are unpredictable and changeable with climate change. The best solution to overcome these challenges is to combine multiple renewable energy sources in one energy system. Combining multiple RE sources provides reliable system that meets the energy demand. It is very important in designing a hybrid system to optimally size the system components as sufficient enough to meet the load requirements with minimum total costs. In this thesis, an optimal sizing of a hybrid renewable energy system for an existing building is proposed. The aim is to maximize the renewable energy ratio of the building and to minimize the total net present worth of cost as well as CO2 emission. The proposed hybrid renewable energy system (HRES) consists of solar panels, wind turbines and waste energy management plant. Furthermore, a connection to the National grid is provided, where the proposed system can buy and sell from and to the grid. In this study a year collected data are used to calculate hourly power of PV panels, wind turbines and waste boilers for the whole year. Different designs with different combination of renewable energy sources are generated to match the demand of an existing building. The design with low considerable cost and low considerable CO2 emission id considered the optimal solution.
机译:环境发展是卡塔尔《 2030年国家愿景》的第四大支柱,旨在为卡塔尔的未来制定清晰的路线图。该愿景旨在在发展需求与保护卡塔尔的自然环境(包括土地,空气和海洋)之间取得平衡。作为对愿景的贡献,提出了本论文。如今,人们对可再生能源及其好处有了认识。但是,随着气候变化,可再生能源是不可预测的且易变的。克服这些挑战的最佳解决方案是将多个可再生能源整合到一个能源系统中。组合多个可再生能源可提供满足能源需求的可靠系统。在设计混合系统时,以最小的总成本将系统组件的大小优化到足以满足负载要求非常重要。本文提出了一种针对现有建筑物的混合可再生能源系统的最佳尺寸。目的是使建筑物的可再生能源比例最大化,并使成本和CO2排放的总净现值最小化。拟议的混合可再生能源系统(HRES)由太阳能电池板,风力涡轮机和废物能源管理厂组成。此外,还提供了与国家电网的连接,所建议的系统可以在该电网上进行买卖。在本研究中,一年收集的数据用于计算全年的光伏电池板,风力涡轮机和废锅炉的小时功率。生成具有不同可再生能源组合的不同设计以匹配现有建筑物的需求。成本低,二氧化碳排放量低的设计被认为是最佳解决方案。

著录项

  • 作者

    Fetais, Mai.;

  • 作者单位

    Qatar University (Qatar).;

  • 授予单位 Qatar University (Qatar).;
  • 学科 Engineering.;Alternative Energy.
  • 学位 M.S.
  • 年度 2017
  • 页码 83 p.
  • 总页数 83
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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