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Engrained experience—a comparison of microclimate perception schemata and microclimate measurements in Dutch urban squares

机译:丰富的经验-荷兰城市广场中微气候感知图式和微气候测量值的比较

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摘要

Acceptance of public spaces is often guided by perceptual schemata. Such schemata also seem to play a role in thermal comfort and microclimate experience. For climate-responsive design with a focus on thermal comfort it is important to acquire knowledge about these schemata. For this purpose, perceived and “real” microclimate situations were compared for three Dutch urban squares. People were asked about their long-term microclimate perceptions, which resulted in “cognitive microclimate maps”. These were compared with mapped microclimate data from measurements representing the common microclimate when people stay outdoors. The comparison revealed some unexpected low matches; people clearly overestimated the influence of the wind. Therefore, a second assumption was developed: that it is the more salient wind situations that become engrained in people’s memory. A comparison using measurement data from windy days shows better matches. This suggests that these more salient situations play a role in the microclimate schemata that people develop about urban places. The consequences from this study for urban design are twofold. Firstly, urban design should address not only the “real” problems, but, more prominently, the “perceived” problems. Secondly, microclimate simulations addressing thermal comfort issues in urban spaces should focus on these perceived, salient situations.Electronic supplementary materialThe online version of this article (doi:10.1007/s00484-009-0262-z) contains supplementary material, which is available to authorized users.
机译:公共空间的接受通常以感知图式为指导。这种图式似乎也在热舒适性和微气候体验中起作用。对于注重热舒适性的适应气候的设计,重要的是要获得有关这些图解的知识。为此,对三个荷兰城市广场的感知和“真实”微气候情况进行了比较。人们被问到他们对长期小气候的看法,这导致了“认知小气候图”。将这些数据与代表人在户外时常见的小气候的测量结果映射的小气候数据进行比较。比较显示出一些意想不到的低匹配;人们显然高估了风的影响。因此,提出了第二个假设:人们记忆中已经根深蒂固的是更显着的风势。使用大风天的测量数据进行的比较显示出更好的匹配。这表明这些更加突出的情况在人们围绕城市发展的小气候模式中发挥了作用。这项研究对城市设计的影响是双重的。首先,城市设计不仅应解决“实际”问题,而且应更突出地解决“感知”问题。其次,解决城市空间热舒适性问题的微气候模拟应关注这些明显的突出情况。电子补充材料本文的在线版本(doi:10.1007 / s00484-009-0262-z)包含补充材料,授权使用用户。

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