Abstract
This paper introduces BUILDthermo, a groundbreaking approach that transforms the analysis of building heat dynamics through advanced algorithms and visualization techniques. By integrating microclimate data, building characteristics, and urban attributes, BUILDthermo provides holistic insights into the thermal conditions of building surroundings. Our innovative algorithm is rigorously developed and validated, delivering precise assessments and facilitating informed decision-making in urban development. With an intuitive interface, BUILDthermo empowers stakeholders to visualize and interpret building heat data effortlessly. Users can explore scenarios, evaluate design alternatives, and optimize outdoor environments for comfort and sustainability. The methodology details, including parameter considerations and algorithmic processes, are outlined. Case studies demonstrate the practical application and efficacy of BUILDthermo in real-world urban settings. As a significant advancement, BUILDthermo offers a powerful tool for urban planners, architects, and environmental engineers to create more livable and sustainable cities. This research contributes valuable insights to urban climate resilience and human-centric design.
Metadata
Item Type: | Conference or Workshop Item (Paper) |
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Creators: | Creators Email / ID Num. Adnan, Amira Shazlin amirashazlin@uitm.edu.my Che Ani, Adi Irfan adiirfan@ukm.edu.my Mohd Pahroraji, Mohamad Ezad Hafez ezad@uitm.edu.my Ayob, Mohd Asraf asraf808@uitm.edu.my Wahi, Noraziah noraziahwahi@uitm.edu.my |
Contributors: | Contribution Name Email / ID Num. Chief Editor Abdul Rahman, Zarinatun Ilyani UNSPECIFIED Editor Mohd Nasir, Nur Fatima Wahida UNSPECIFIED Editor Kamarudin, Syaza UNSPECIFIED Designer Ramlie, Mohd Khairulnizam UNSPECIFIED |
Subjects: | T Technology > TH Building construction > Environmental engineering of buildings. Sanitary engineering of buildings |
Divisions: | Universiti Teknologi MARA, Perak > Seri Iskandar Campus > Faculty of Architecture, Planning and Surveying |
Journal or Publication Title: | The 13th International Innovation, Invention & Design Competition 2024 |
Page Range: | pp. 22-26 |
Keywords: | Building; Building Heat Assessment; Building Heat Dynamic; Outdoor Thermal Comfort |
Date: | 2024 |
URI: | https://ir.uitm.edu.my/id/eprint/105203 |