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September 28, 2025Journal of Chinese Architecture and Urbanism2 citationsOpen Access

Energy savings from the shading performance of devices in highly glazed multi-story office buildings in the tropical climates of China and India

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CCC. ChandrasekaranKSKumudhavalli SasidharAMA. Madhumathi

Key Points

  • Cooling load savings range from 6% to 14% in tropical climates with optimized shading systems.
  • Energy simulation across four cities shows varying shading fraction impacts on building efficiency.
  • A custom Dynamo script quantifies hourly shaded areas to evaluate energy savings accurately.
  • Higher mean temperatures in Indian cities lead to greater cooling savings than those in Chinese counterparts.

Abstract

Rapid urbanization in China and India has led to the widespread development of high-rise office buildings with highly glazed faades in tropical climates, increasing the need for energy-efficient design strategies. Exterior shading systems can significantly enhance building energy performance by regulating solar heat gain in cooling-dominated climates. However, a systematic strategy is required to evaluate the energy-saving potential of such systems during the design phase. This study investigates the impact of shading fraction (SF) on space cooling load through simulation-based methods in two major tropical climate zones of Asia. Two Kppen climate types are examined: humid subtropical (Cwa), represented by Hong Kong (China) and New Delhi (India); and tropical wet and dry (Aw), represented by Haikou (China) and Chennai (India). The tools employed include Revit for geometry modeling, Dynamo for shaded area calculation, and E-Quest for energy simulation. A custom Dynamo script was developed to calculate the hourly shaded area of horizontal and vertical fins by varying fin depth. These were categorized into five SF levels (4595%) at 10% intervals for four orientations and four representative seasonal days. Hourly cooling energy demand for each SF case was compared to a base model without shading. Results show cooling load savings ranging from 6% to 14% across locations: Chennai (914%), New Delhi (713%), Hong Kong (613%), and Haikou (814%). Despite identical climate classifications, Indian cities showed higher savings due to higher mean monthly temperatures. These findings offer valuable guidance for climate-responsive shading design in highly glazed tropical buildings.

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Cite This Study

Chandrasekaran et al. (2025) studied this question.

synapsesocial.com/papers/68d90bc941e1c178a14f7381https://doi.org/10.36922/jcau025120026
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