Evaluation of energy flexibility potential of a typical thermal zone in Dubai

Q2 Social Sciences
Ali Saberi Derakhtenjani, J. D. Barbosa, Edwin Rodriguez-Ubinas
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引用次数: 1

Abstract

With increased worldwide adoption of renewables, such as wind and solar, power grids face challenges with the inherent variability in renewables production. Energy flexibility is an essential part of the holistic solution toward this variable production. Buildings are the largest consumers of energy around the globe. However, they also have the ability to become energy flexible. This article investigates the potential energy flexibility of a building zone with typical thermal properties in compliance with the Dubai building code, located in Dubai, where the dominant energy load is cooling. The cooling load is provided through a convective air conditioning system, which is typi- cal in Dubai, and the control strategy is based on the zone air temperature setpoint. Modulating the zone air temperature can result in significant changes in the cooling load, thus providing a certain amount of energy flexibility through the building thermal mass, which can then be used to shift and reduce the peak demand. We evaluated the effect of three strategies on the thermal zone, utilizing two energy flexibility indicators, the available structural energy storage capacity ( C ADR ) and the storage efficiency ( η ADR ). It is found that on a typical day in July, the analyzed zone can reach up to 570 Wh/m 2 of flexibility and achieve up to 3 h of load shifting, depending on the strategy utilized. and quantification of the an The of strategies typical in July was evaluated. Two energy flexibility indicators, were utilized for the
迪拜典型热区能源柔性化潜力评价
随着风能和太阳能等可再生能源在全球范围内的应用越来越多,电网面临着可再生能源生产内在可变性的挑战。能源灵活性是应对这种多变生产的整体解决方案的重要组成部分。建筑是全球最大的能源消耗者。然而,它们也有能力变得灵活。本文研究了符合迪拜建筑规范的具有典型热性能的建筑区域的潜在能量灵活性,该建筑位于迪拜,主要能源负荷是冷却。冷负荷采用迪拜典型的对流空调系统,控制策略基于区域空气温度设定点。调节区域空气温度可以导致冷负荷的显著变化,从而通过建筑热质量提供一定数量的能源灵活性,然后可以用来转移和减少峰值需求。利用可用结构储能容量(C ADR)和储能效率(η ADR)两个能量弹性指标,评价了三种策略对热区的影响。研究发现,在7月的一个典型日子里,根据所采用的策略,所分析的区域可以达到高达570 Wh/ m2的灵活性,并实现高达3小时的负载转移。并对7月份的典型策略进行了量化评价。两个能源灵活性指标,用于
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Energy Production and Management
International Journal of Energy Production and Management Social Sciences-Sociology and Political Science
CiteScore
2.20
自引率
0.00%
发文量
24
审稿时长
26 weeks
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