利用亲生物设计增强印度尼西亚三宝垄市城市公园的复原力

N. S. Ristianti, Santy Paulla Dewi, Retno Susanti, Rina Kurniati, Naily Syafira Zain
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摘要

亲生物设计(Biophilic design)是一种创建具有复原力和可持续发展的城市的方法,它通过在城市空间中融入自然适应性和美学吸引力,建造连接人与自然的复原力建筑。亲生物设计能够改善气候适应能力和心理健康。印度尼西亚爪哇岛的三宝垄市是一座水泥森林大都市,它将从亲生物设计的应用中受益。虽然在公共区域修建了多个城市公园,但某些设计元素仍然极为简单。例如,植被环境极少,无法引起人们对社区体育活动的足够兴趣。因此,人与自然之间的联系十分有限,这表明亲生物设计的缺失。因此,本研究旨在调查亲生物设计在城市公共空间中的应用,以促进恢复力。本研究采用定量方法和分析工具。通过问卷调查和实地观察收集数据。研究调查了城市公园对心理健康的影响、气候适应能力、对城市公园设计元素的需求以及城市公园的设计。研究发现,从 2011 年到 2021 年,有三个公园的地表温度上升幅度最大,这表明应考虑在这些地方融入亲生物设计元素。这些公园一半以上的使用者都喜欢亲生物设计元素,这些元素能有效降低气温,与周围自然融为一体,促进平静、成本效益和有益身心健康。利用这些亲生物元素,公园的平均气温可降低约 0.5 °C。
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Using Biophilic Design to Enhance Resilience of Urban Parks in Semarang City, Indonesia
Biophilic design is an approach for creating resilient, sustainable cities by constructing resilient buildings that connect humans and nature by integrating natural adaptation and aesthetic appeal in urban spaces. Biophilic design enables improved climate resilience and mental health. Semarang City in Java, Indonesia is a concrete jungle metropolis that will benefit from the application of biophilic design. Although several urban parks are constructed in public areas, certain design elements remain extremely simple. For example, the vegetated-setting contextminimal and unable to generate sufficient interest in community physical activities. Hence, the connection between humans and nature is limited, which demonstrates the lack of biophilic design. Thus, the study aims to investigate the use of biophilic design in urban public spaces by promoting resilience. This research uses a quantitative method and analytical tools. Questionnaires and field observations were used to collect data. The study investigated the effectiveness of urban parks on mental health, climate resilience, need for urban park design elements, and the design of urban parks. The study identified three parks with the highest increases in land surface temperatures from 2011 to 2021, which indicates that incorporating biophilic design elements into these locations should be considered. More than half of the users at these parks preferred biophilic design elements, which are effective in lowering air temperature, blending with the surrounding nature, and promoting calming, cost-effective, and beneficial mental and physical health. Using these biophilic elements, the average temperature of the parks could be decreased by approximately 0.5 °C.
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