首页> 外文期刊>Tunnelling and underground space technology >The potential influence of building optimization and passive design strategies on natural ventilation systems in underground buildings: The state of the art
【24h】

The potential influence of building optimization and passive design strategies on natural ventilation systems in underground buildings: The state of the art

机译:建筑物优化和被动设计策略对地下建筑物自然通风系统的潜在影响:最新技术

获取原文
获取原文并翻译 | 示例
           

摘要

Most of the underground buildings rely on mechanical ventilation system for achieving an acceptable indoor thermal comfort level. In order to alleviate the greenhouse effect, it is essential to incorporate a passive system in an underground building to reduce the overall building energy consumption. From the perspective of the indoor occupant, the Indoor Environmental Quality (IEQ) should be maintained at a reasonable level as well if the passive system is used in a building ventilation system. The above problem could be addressed by devising an integrated design procedure that combines both underground building simulation and design optimization methods. The review of this topic, however, is rather scarce in the open literature. Thus, this review paper assesses existing scientific literatures that address the potential influence of building optimization and passive design strategy on the control of IEQ level. The topics covered in this review paper are histories and design considerations of underground buildings, consideration factors required, concept of building ventilation system, IEQ level assessments reported by buildings' occupants, critical element in building optimization and passive design strategy in the underground building. From the current review, we have found that integrating both optimization approach and passive design strategy into building performance simulation is a promising technique in improving the IEQ level of the underground building. Moreover, the adoptions of soil and natural ventilation can effectively reduce the energy consumption in underground conditioning system. Indeed, there are several important factors that should be taken into account while designing an underground building. Also, there are a few passive designs that can improve thermal comfort and reduce energy consumption in underground buildings. All in all, the primary target of this paper is to assist building engineers and designers in designing an energy-efficient underground building. Meanwhile, the acceptable IEQ level could be maintained.
机译:大多数地下建筑依靠机械通风系统来达到可接受的室内热舒适水平。为了减轻温室效应,必不可少的是在地下建筑中加入无源系统以减少整体建筑能耗。从室内居住者的角度来看,如果将被动系统用于建筑物通风系统,则室内环境质量(IEQ)也应保持在合理水平。可以通过设计一个集成了地下建筑模拟和设计优化方法的集成设计程序来解决上述问题。然而,在公开文献中对该主题的评论很少。因此,这篇综述文章评估了现有的科学文献,这些文献探讨了建筑优化和被动设计策略对IEQ水平控制的潜在影响。本文的主题包括地下建筑物的历史和设计考虑,所需的考虑因素,建筑物通风系统的概念,建筑物占用者报告的IEQ评估,建筑物优化的关键要素以及地下建筑物的被动设计策略。从当前的审查中,我们发现将优化方法和被动设计策略集成到建筑物性能模拟中是提高地下建筑物的IEQ水平的有前途的技术。此外,采用土壤和自然通风可以有效减少地下调节系统的能耗。确实,在设计地下建筑时应考虑几个重要因素。另外,有一些被动设计可以改善地下建筑物的热舒适性并减少能耗。总而言之,本文的主要目标是协助建筑工程师和设计师设计节能地下建筑。同时,可以维持可接受的IEQ水平。

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