在节能建筑中使用百叶窗、日光照明和间歇泉温度设置来减少电力消耗和价格模式

IF 1 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
Godwin Norense Osarumwense Asemota;Nelson M. Ijumba
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引用次数: 1

摘要

根据建筑结构、用途和能源消耗模式,每年在商业建筑的电气照明上的支出超过600亿美元。因此,本文的重点是开发节能建筑,通过集成的节能设计过程将能耗降至最低。这可以作为设计能够降低能源需求的建筑的实用指南和减少能源消耗的策略。在这项研究中,预测分析被用于研究百叶窗、采光和间歇泉温度设置如何降低电力消耗和定价模式。一个专家法官小组被用来验证5点Likert量表住宅电力负荷管理问卷,该问卷用于收集调查数据,用于纳米比亚温得和克郊区的统计分析。这项研究的主要目标是研究如何使用百叶窗、日间照明和间歇泉温度设置来节省能源、减少电力消耗以及可持续增长和发展的成本。这项调查的结果表明,15个电价跳跃的完美高斯直方图证实了15个四向逐步相互作用效应。最佳0.5 Quetelet曲线指数提供了普通公民对负担得起的电力的能效意识、教育和行为调整。雌性通常设定更高的间歇泉温度,是更高的能源消耗者。百叶窗在夏季可减少50%的电力消耗,在冬季可减少25%,白天照明可减少25%。这些是解决不断增长的电力消耗和定价模式问题的成本最低且最优的解决方案。采用本文的发现或结果可以提供更优化和可持续的能源消耗,从而减轻电网压力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Using blinds, day-lighting, and geyser temperature settings to reduce electricity consumption and pricing patterns in energy-efficient buildings
Depending on the building architecture, usage, and energy consumption patterns, over US$ 60 billion was expended annually on electric lighting in commercial buildings. Therefore, the paper focuses on the development of energy-efficient buildings that minimize energy consumption through integrated energy-efficient design processes. This can serve as a practical guide to design buildings that can lower the energy requirements and a strategy to reduce energy consumption. In this study, predictive analytics were used to examine how blinds, daylighting, and geyser temperature settings can reduce electricity consumption and pricing patterns. A panel of expert judges was used to validate the 5-point Likert scale residential electricity load management questionnaire used to gather survey data for the statistical analysis in a Windhoek suburb, Namibia. The main goal of this study was to investigate how blinds, day-lighting, and geyser temperature settings can be used to save energy, reduce electricity consumption, and costs for sustainable growth and development. The results from this investigation indicate a perfect Gaussian histogram of 15 electricity price jumps confirming 15 four-way stepwise interaction effects. Optimal 0.5 Quetelet curve index offers average citizen energy efficiency awareness, education, and behavior modification for affordable electricity. Females generally set hotter geyser temperatures and are higher energy consumers. Blinds reduce electricity consumption by 50% in summer, 25% in winter, and day-lighting by 25%. These were the least cost and optimal solutions to the rising electricity consumption and pricing patterns problem. Adopting the findings or the outcomes of this paper could provide more optimal and sustainable energy consumption thereby reducing pressure on the power grid.
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来源期刊
SAIEE Africa Research Journal
SAIEE Africa Research Journal ENGINEERING, ELECTRICAL & ELECTRONIC-
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29
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