Impact of roof shading on building energy performance in warm & humid climatic places of India

Kuladeep Kumar Sadevi, Avlokita Agrawal
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Abstract

With the rise in awareness of energy efficient buildings and adoption of mandatory energy conservation codes across the globe, significant change is being observed in the way the buildings are designed. With the launch of Energy Conservation Building Code (ECBC) in India, climate responsive designs and passive cooling techniques are being explored increasingly in building designs. Of all the building envelope components, roof surface has been identified as the most significant with respect to the heat gain due to the incident solar radiation on buildings, especially in tropical climatic conditions. Since ECBC specifies stringent U-Values for roof assembly, use of insulating materials is becoming popular. Along with insulation, the shading of the roof is also observed to be an important strategy for improving thermal performance of the building, especially in Warm and humid climatic conditions. This study intends to assess the impact of roof shading on building’s energy performance in comparison to that of exposed roof with insulation. A typical office building with specific geometry and schedules has been identified as base case model for this study. This building is simulated using energy modelling software ‘Design Builder’ with base case parameters as prescribed in ECBC. Further, the same building has been simulated parametrically adjusting the amount of roof insulation and roof shading simultaneously. The overall energy consumption and the envelope performance of the top floor are extracted for analysis. The results indicate that the roof shading is an effective passive cooling strategy for both naturally ventilated and air conditioned buildings in Warm and humid climates of India. It is also observed that a fully shaded roof outperforms the insulated roof as per ECBC prescription. Provision of shading over roof reduces the annual energy consumption of building in case of both insulated and uninsulated roofs. However, the impact is higher for uninsulated roofs (U-Value of 3.933 W/m2K), being 4.18% as compared to 0.59% for insulated roofs (U-Value of 0.33 W/m2K).While the general assumption is that roof insulation helps in reducing the energy consumption in tropical buildings, it is observed to be the other way when insulation is provided with roof shading. It is due to restricted heat loss during night.
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印度温暖潮湿气候地区屋顶遮阳对建筑能源性能的影响
随着节能建筑意识的提高和强制性节能法规在全球范围内的采用,建筑的设计方式正在发生重大变化。随着节能建筑规范(ECBC)在印度的推出,气候响应设计和被动式冷却技术在建筑设计中得到越来越多的探索。在所有的建筑围护结构组件中,屋顶表面被认为是最重要的,特别是在热带气候条件下,由于入射太阳辐射对建筑物的热增益。由于ECBC对屋顶组件规定了严格的u值,因此绝缘材料的使用越来越受欢迎。除了隔热,屋顶的遮阳也被认为是改善建筑热性能的重要策略,特别是在温暖潮湿的气候条件下。本研究旨在评估屋顶遮阳对建筑能源性能的影响,比较暴露的屋顶与保温材料。具有特定几何形状和时间表的典型办公楼已被确定为本研究的基本案例模型。该建筑使用能源建模软件“Design Builder”进行模拟,基本情况参数符合ECBC规定。此外,对同一栋建筑进行了模拟,同时参数化地调整了屋顶隔热和屋顶遮阳的数量。提取顶层的总能耗和围护结构性能进行分析。结果表明,在印度温暖潮湿的气候条件下,屋顶遮阳对于自然通风和空调建筑都是一种有效的被动冷却策略。还可以观察到,根据ECBC规定,完全遮阳的屋顶优于隔热屋顶。在隔热和非隔热屋顶的情况下,在屋顶上提供遮阳可以减少建筑物每年的能源消耗。然而,非隔热屋顶的影响更大(u值为3.933 W/m2K),为4.18%,而隔热屋顶的影响为0.59% (u值为0.33 W/m2K)。虽然一般的假设是屋顶隔热有助于减少热带建筑的能源消耗,但当提供屋顶遮阳的隔热材料时,观察到的情况正好相反。这是由于夜间热量损失有限。
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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