Holistic Approach to Ecological Design Parameters of Building and Landscape Design on Outdoor Thermal Comfort in Hot, Humid Climate

IF 0.3 4区 艺术学 0 ARCHITECTURE
Prostor Pub Date : 2023-06-29 DOI:10.31522/p.31.1(65).4
Yelda Durgun Şahin, Ceren Altunkasa
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引用次数: 1

Abstract

In this study, academic staff residential buildings were studied as part of a university campus located in a hot and humid climate zone in Türkiye. Within the scope of the study, the energy efficient architectural and landscape design decisions of the buildings built in 1976 were examined. The aim was to determine the energy performance of buildings built about 50 years ago and to quantify the effect of changing landscape conditions on thermal comfort. In this aim, the outdoor thermal comfort level was determined by creating microclimate simulations for the hottest day and time of the year. Microclimatic analyses were performed with ENVI-met software and thermal comfort was evaluated with two metrics, average PMV and ASHRAE scale. The energy performance of the buildings was determined using ecological design parameters. An approach to global environmental problems is the use of ecological design principles, including architectural and landscape design principles. It is important to consider both architectural design criteria and landscape design criteria when discussing ecological design in the built environment. Architectural and landscape design decisions for hot and humid climate regions together increased energy efficiency by 51.1% to 75.5%. It was found that although the plant design improves energy performance in buildings by that range value, it improved outdoor thermal comfort by 15% to 22%. As a result, the study evaluated climate-balanced plant design with building energy performance in order to improve outdoor thermal comfort.
湿热气候下建筑与景观室外热舒适生态设计参数的整体探讨
在这项研究中,作为土耳其湿热气候区大学校园的一部分,对教职员工住宅楼进行了研究。在研究范围内,对1976年建造的建筑的节能建筑和景观设计决策进行了审查。其目的是确定大约50年前建造的建筑的能源性能,并量化景观条件变化对热舒适性的影响。为此,通过为一年中最热的一天和时间创建小气候模拟来确定室外热舒适度水平。使用ENVI met软件进行小气候分析,并使用两个指标(平均PMV和ASHRAE量表)评估热舒适性。建筑的能源性能是使用生态设计参数确定的。解决全球环境问题的方法是使用生态设计原则,包括建筑和景观设计原则。在讨论建筑环境中的生态设计时,同时考虑建筑设计标准和景观设计标准是很重要的。湿热气候地区的建筑和景观设计决策将能源效率提高了51.1%至75.5%。研究发现,尽管工厂设计将建筑物的能源性能提高了该范围值,但它将室外热舒适性提高了15%至22%。因此,该研究评估了气候平衡的工厂设计与建筑能源性能,以提高室外热舒适性。
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
Prostor
Prostor ARCHITECTURE-
自引率
66.70%
发文量
10
审稿时长
12 weeks
期刊介绍: The journal PROSTOR publishes scientific papers from all branches of architecture and urban planning as well as texts from other fields of science (art history, archaeology, ethnology, sociology, geography, civil engineering, geodesy, forestry, design...) if their content relates to architectural issues.
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