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Investigation of Peak Load Reduction Strategies in Residential Buildings in Cooling Dominated Climates

机译:冷却主导气候下住宅建筑物峰值减载策略研究

摘要

This investigation of peak load reduction strategies in residential buildings contributes to the global international efforts in reducing energy consumption and is related directly to energy efficiency in residential and commercial buildings. Work reported here involves computer aided building energy simulation of energy efficient and non-energy efficient residential homes coupled with empirical energy consumption data gathered from monitoring an array of energy efficient residential homes. The latter have been implemented for peak load reduction strategies. In addition non-energy efficient residential homes have been monitored to compare performance to the energy efficient homes. This study demonstrates the crucial importance of energy efficiency and peak load reduction strategies in sustaining the energy needs of the southwest US region using Las Vegas for the actual setting. It provides the largest energy consumption data set examined, specifically peak consumption, from energy efficient and non-energy efficient homes at this location. The study demonstrates the peak load reduction benefits of a variety of strategies, namely roof-integrated PV panels, energy efficient building envelope, and substation battery storage. The study focuses on the month of August 2011 and shows how the load reduction can reach 75% at peak times during that month using the computer aided energy simulation. Moreover, the study compares the recorded electrical consumption data from the collection of energy efficient and non-energy efficient residential homes and proves the simulation results in reaching the 75% reduction in electrical consumption at peak times. The study also tries to marry the gathered electrical consumption data of the energy efficient and non-energy efficient homes with the computer simulation model. This is done to reach an actual representative model which behaves similarly to the average of the group of energy and non-energy efficient homes. The benefit of the energy efficient strategies in reducing the load in peak times is emphasized.
机译:这项针对住宅建筑物峰值负荷降低策略的研究有助于全球范围内降低能耗的努力,并且与住宅和商业建筑物的能源效率直接相关。此处报告的工作涉及对节能和非节能住宅的计算机辅助建筑能耗模拟,以及从监测一系列节能住宅收集的经验能耗数据。后者已针对峰值负载减少策略实施。此外,还对非节能住宅进行了监控,以将性能与节能住宅进行比较。这项研究表明,使用拉斯维加斯作为实际环境,能源效率和峰值负荷减少策略对于维持美国西南地区的能源需求至关重要。它提供了从该位置的高能效和非高能效住宅检查的最大能耗数据集,尤其是峰值能耗。这项研究证明了各种策略降低峰值负荷的好处,即屋顶集成光伏面板,节能建筑围护结构和变电站电池存储。这项研究的重点是2011年8月,并显示了如何使用计算机辅助能源模拟在当月的高峰时段将负荷降低达到75%。此外,该研究还比较了从节能住宅和非节能住宅收集的记录的用电量数据,并证明了模拟结果,在高峰时间可将用电量减少75%。该研究还试图将收集到的节能和非节能房屋的电力消耗数据与计算机仿真模型相结合。这样做是为了获得一个实际的代表性模型,该模型的行为类似于节能和非节能房屋组的平均值。强调了节能策略在减少高峰时段负载方面的优势。

著录项

  • 作者

    Atallah Fady;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
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