The Strategy of Implementing Energy Efficiency Standards and Labels for Domestic Air Conditioners in Libya

Salah M Alabani, Ibrahim. H. Tawil
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引用次数: 2

Abstract

The residential sector in Libya has grown over the past decade in the construction of residential buildings due to the increase in the population. Moreover, the increase in the level of income has contributed to the increase in the purchase of household appliances, which leads to increased demand for energy. Energy consumption in the household sector accounted for 31% of total energy consumption during 2010, and the share of air conditioners in this sector consumed 18.35%. To reduce energy consumption and improve energy efficiency in this sector, policies should be considered to apply energy efficiency standards and markers to household electrical appliances, as they are considered one of the most successful programs used in the world. Countries are implementing such programs to reduce energy consumption in the domestic sector. This paper presents the possibility of implementing such programs to introduce the importance of energy efficiency standards and labeling programs for home appliances in Libya. The calculations required to design such programs show the energy savings that can be achieved during cooling loads in the summer period of 4 months July, August, September). A strategic plan has been developed during 10-year (2020-2030) to estimate the expected savings of energy consumed and to identify possible obstacles and difficulties by gradually increasing the energy efficiency ratio for comestic air conditioners in two stages, from EER10 to EER11 in the first stage is then raised to EER12 as the second stage.
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利比亚实施家用空调能效标准和能效标签的战略
由于人口的增加,利比亚的住宅部门在过去十年中在住宅建筑的建设中有所增长。此外,收入水平的提高促进了家用电器购买的增加,这导致对能源的需求增加。2010年,家庭部门的能源消耗占总能源消耗的31%,其中空调在该部门的份额为18.35%。为了减少能源消耗和提高能源效率,应该考虑将能效标准和标志应用于家用电器的政策,因为这被认为是世界上最成功的项目之一。各国正在实施此类计划,以减少国内部门的能源消耗。本文提出了实施此类方案的可能性,以介绍利比亚家用电器能效标准和标签方案的重要性。设计此类程序所需的计算表明,在夏季4个月(7月、8月、9月)的冷却负荷期间可以实现的节能。制定了一项为期10年(2020-2030年)的战略计划,通过分两个阶段逐步提高家用空调的能效比,估计预期的能源消耗节约,并确定可能存在的障碍和困难,第一阶段从EER10提高到EER11,第二阶段提高到EER12。
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