Please use this identifier to cite or link to this item: https://repository.sustech.edu/handle/123456789/28499
Title: Energy Consumption Performance Using Window-to-Wall Ratio Factor in a Hot, Dry Climate in Office Buildings: A Case Study in Khartoum City, Sudan
Authors: Saad, Mofida M
El Kheir, , Osman M
Fadlallah, Qrrad
Keywords: Building energy efficiency
Cooling energy demand
Energy simulation
Hot arid climate
Office buildings
Passive design strategies
Window-to-wall ratio
Issue Date: 4-Apr-2026
Publisher: Sudan University of Science and Technology
Citation: Saad, Mofida M. Energy Consumption Performance Using Window-to-Wall Ratio Factor in a Hot, Dry Climate in Office Buildings: A Case Study in Khartoum City, Sudan/ Mofida M. Saad, Osman M. El Kheir, and Qrrad Fadlallah.- Journal of Engineering and Computer Sciences.- Vol 24,No2. – 2026.- article
Abstract: This study investigates energy consumption in office buildings, which are among the most energy-intensive building types and significantly contribute to overall energy demand and associated environmental impacts. The research aims to evaluate the role of energy‐efficient design strategies, with particular emphasis on the window‐to‐wall ratio (WWR), in reducing cooling energy consumption in office buildings located in Khartoum City. Three contemporary office buildings were selected as case studies. The adopted methodology integrates parametric building modeling and energy simulation using Rhino, Grasshopper for Rhino, and DIVA to assess the influence of different WWR configurations on building energy performance. Simulation results were analyzed using descriptive statistical methods to identify trends and performance variations. The findings reveal that WWR was not sufficiently considered during the early design stages of the investigated buildings, leading to increased solar heat gains, higher indoor thermal loads, and consequently elevated cooling energy demand. The study demonstrates that appropriate control of WWR can play a critical role in improving energy performance in office buildings situated in hot, arid climates. The results underline the importance of integrating energy efficiency considerations at the design stage and provide evidence-based guidance for architects and decision-makers to support the adoption of passive design strategies in similar climatic contexts
URI: https://repository.sustech.edu/handle/123456789/28499
ISSN: 1858-6783
Appears in Collections:Volume 24 No. 2



Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.