首页> 外文期刊>Journal of international management >Building Envelope Thermal Mass and Its Effect on Spring and the Autumn Seasonal Transition Period
【24h】

Building Envelope Thermal Mass and Its Effect on Spring and the Autumn Seasonal Transition Period

机译:建立信封热质量及其对春季及秋季季节过渡期的影响

获取原文
获取原文并翻译 | 示例
       

摘要

Increases in fossil fuel usage and energy consumption have become important issues in most countries of the world. Recent statistics show that the building sector is the main contributor to the world total energy consumption, which makes it responsible for a significant amount of greenhouse gas emissions. Several studies have been carried out to design buildings focusing on reducing their energy consumption and improving occupants' comfort. This study focused on the impact of parameters influencing the seasonal transition periods (STPs) and annual energy consumption through numerical simulations in residential buildings. For this purpose, the thermal performance of six different wall constructions with similar U values under different ventilation rates was investigated. In addition, the effect on building heating and cooling loads during spring and autumn STPs in buildings with diurnal occupation patterns in hot, arid climates was studied. A small building located in Tehran, Iran, was selected as a case study model and simulated as the reference building. The results showed that Wall 4 with an effective surface mass of 249 kg/m(2) had the best performance in reducing energy consumption and had a significant effect on STPs. When Wall 2's ventilation rate reached 10 ach (air changes per hour), its impact on STPs was significant within the 60 days of the autumn transition period. The effect of natural ventilation on STPs was minimal for Wall 4. It was also found that a 5 ach ventilation rate was the most appropriate for this period.
机译:化石燃料使用量和能源消耗的增加成为世界大多数国家的重要问题。最近的统计数据显示,建筑业是世界总能源消耗的主要贡献者,这使其负责大量的温室气体排放。已经开展了几项研究,以设计旨在降低能源消耗并改善居住者的舒适度的建筑物。本研究专注于影响季节过渡期(STP)的参数的影响,并通过住宅建筑中数值模拟来实现年度能量消耗。为此目的,研究了具有在不同通风率下具有相似U值的六种不同壁结构的热性能。此外,研究了对春季和秋季STP期间建筑加热和冷却载荷的影响,在炎热,干旱气候下的昼夜占用模式中的建筑物。位于伊朗德黑兰的一座小型建筑物被选为案例研究模型,并被模拟为参考建筑。结果表明,具有249kg / m(2)的有效表面质量的壁4具有降低能量消耗的最佳性能,对STP具有显着影响。当墙壁2的通风率达到10 ACH(每小时空气变化)时,它对秋季过渡期的60天内对STP的影响显着。墙壁4对STP的自然通气对STP的影响很小。还发现,对于此期间,5 Ach通气率最合适。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号