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Urban form and function as building performance parameters

机译:城市形态和功能作为建筑性能参数

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The climate in cities differs significantly from those found in the surrounding area. These differences results from modifications of the Earth's surface that alters the disposition of "natural energy balance" at a micro-scale and the concentration of activities that results in anthropogenic emissions that change the composition of the atmosphere. These urban effects have distinctive temporal and spatial properties with different impacts on building energy performance depending on their purpose which are rarely accounted for. This paper examines performance implications of a change-of-use (from office to residential) in the context of the UK government's proposal to encourage regeneration and to meet housing needs. However, the diurnal occupation and activity patterns of these uses are distinct. For office buildings, with daytime occupation, focus is on the diurnal heating cycle driven by solar energy gains to which internal energy sources must be added. For residential buildings occupation and activity are primarily associated with the diurnal cooling period, and lower levels of activity that results in a primary heating need. This paper highlights the link between the timing of the urban climate effects, the urban setting and energy performance in a typical city street, where buildings are currently designed for commercial use. It employs London's current and projected climate to simulate heating and cooling demands. By studying the role of urban form and its implications on the suitability of a buildings function we find that a 'form first' approach should be considered in the early design stages over the standard 'fabric first' approach.
机译:城市的气候与周围地区的气候有很大不同。这些差异是由于地球表面的改变(微观尺度上改变了“自然能量平衡”的配置)以及活动的集中而引起的,这些活动导致了人为排放,从而改变了大气的成分。这些城市效应具有独特的时空特征,根据其用途,对建筑能源性能的影响各不相同,这很少被考虑。本文在英国政府鼓励再生和满足住房需求的提议的背景下,研究了用途变更(从办公室到住宅)对性能的影响。但是,这些用途的日间职业和活动模式是不同的。对于有白天工作的办公楼,重点是日光加热周期,该周期是由太阳能获取驱动的,必须添加内部能源。对于住宅建筑物,占用和活动主要与昼夜冷却时间有关,而较低水平的活动会导致主要的供热需求。本文重点介绍了典型城市街道中城市气候影响的时间,城市环境与能源性能之间的联系,在该城市街道中,建筑物目前设计为商业用途。它利用伦敦当前和预计的气候来模拟供热和制冷需求。通过研究城市形态的作用及其对建筑物功能适合性的影响,我们发现在设计的早期阶段应考虑采用“形式优先”的方法,而不是标准的“织物优先”的方法。

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