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Evaluation of occupancy-based temperature controls on energy performance of KSA residential buildings

机译:基于占用的温度控制对KSA住宅建筑能量性能的评价

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The paper describes the potential energy efficiency and demand response benefits of occupancy-based temperature controls applicable to residential buildings for the Kingdom of Saudi Arabia (KSA). Specifically, various spatial and temporal temperature controls are evaluated to account for spatial and temporal occupancy patterns associated to typical living styles of Saudi households. The analysis results show that the benefits of occupancy-based temperature settings can be significant when at least two thermal zones controlled by different thermostats exist within the same housing unit. Specifically, occupancybased thermostat settings can save up to 38.7% of total annual electricity consumption for a dwelling located in Riyadh. Moreover, when the indoor temperature settings are adjusted spatially, a reduction of up to 34.7% in peak demand can result for most KSA regions. Using a bottom-up analysis approach, it is found that when scaling up to the entire KSA housing stock, the adoption of smart thermostats has the potential to reduce annual electricity use by 48 TWh/year or over 30% of the national residential sector energy consumption. (c) 2020 Elsevier B.V. All rights reserved.
机译:本文介绍了适用于沙特阿拉伯王国(KSA)的住宅楼宇的占用温度控制的潜在能效和需求响应效益。具体地,评估各种空间和时间温度控制,以考虑与沙特家庭的典型生活方式相关的空间和时间占用模式。分析结果表明,当由不同恒温器控制的至少两个热区域存在于同一壳体单元内时,基于占用温度设置的益处可能是显着的。具体而言,占用的恒温器设置可节省高达位于利雅得的住宅的每年电力消耗的38.7%。此外,当空间上调整室内温度设置时,最高需求的降低高达34.7%可导致大多数KSA区域。使用自下而上的分析方法,发现当缩放整个KSA住房库存时,采用智能恒温器的采用有可能减少48年/年或超过国家住宅部门能源的年度电力使用消费。 (c)2020 Elsevier B.v.保留所有权利。

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