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Utilizing Energy Efficiency Strategies to Achieve a Net-Zero Energy Commercial Building in the Hot-Arid Region of Mecca, Saudi Arabia

机译:利用能源效率策略在沙特阿拉伯麦加干旱地区实现零净能源商业建筑

摘要

This thesis demonstrates achieving a net-zero energy commercial building in the hot, arid region of Saudi Arabia. The development process uses three main concepts: evaluating and assessing selected existing commercial buildings, incorporating energy efficiency strategies, and implementing renewable energy source technologies. This study has been divided into five chapters: Introduction and Problem Statement, The Net-Zero Approach, Background of Saudi Arabia and Its Climatic Variations, Case Studies, and Project Development and Demonstration. Initially, an assessment of the Umm Al-Qura University administration building was conducted in two steps: 1) collecting building data and creating a building simulation in eQUEST software to obtain accurate performance prediction results and 2) implementing energy efficient strategies for both passive and active systems to mitigate energy use in commercial buildings located in hot, arid climates. Finally, embracing renewable energy sources through adopting Photovoltaic (PV) Panels will meet remaining energy needs after energy efficiency strategies have been applied. To summarize, the main focus is on designing energy efficiency strategies rather than focusing on technologies. After conducting this research, the following results were achieved in the simulation and calculation:ud1. The energy savings were beyond expectation at 150,036 kWh in remaining energy.ud2. A utility bill savings of more than half the cost of building operations.ud3. The simple payback on the entire solar panel system for the proposed design will be approximately 3.3 years.
机译:本文证明了在沙特阿拉伯炎热而干旱的地区实现零能耗的商业建筑。开发过程使用三个主要概念:评估和评估选定的现有商业建筑,纳入能效战略以及实施可再生能源技术。这项研究分为五个章节:绪论和问题陈述,网络归零法,沙特阿拉伯的背景及其气候变化,案例研究以及项目开发和演示。最初,对Umm Al-Qura大学行政大楼的评估分两个步骤进行:1)收集建筑物数据并在eQUEST软件中创建建筑物模拟以获得准确的性能预测结果,以及2)实施被动和主动节能策略减少炎热干旱气候下商业建筑能耗的系统。最后,采用能效策略后,通过采用光伏(PV)面板拥抱可再生能源将满足剩余的能源需求。总而言之,主要重点是设计节能策略,而不是技术。进行了这项研究之后,在仿真和计算中获得了以下结果: ud1。剩余能量150,036 kWh超出了预期的节能水平。 ud2。水电费节省了建筑物运营成本的一半以上。对于拟议的设计,整个太阳能电池板系统的简单投资回收期约为3.3年。

著录项

  • 作者

    Humaidan Omar Abdulmughni;

  • 作者单位
  • 年度 2017
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
  • 中图分类
  • 入库时间 2022-08-20 20:35:29

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