Academic literature on the topic 'Fixed sun-shading device'

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Journal articles on the topic "Fixed sun-shading device"

1

Mohd, Fadlullah Gimat, and Khairul Azhar Mat Sulaiman Mohd. "Effect on Thermal Performance by Different Types of Fixed Sun Shading Devices." International Journal of Engineering and Advanced Technology (IJEAT) 9, no. 3 (2020): 3713–18. https://doi.org/10.35940/ijeat.C6298.029320.

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An application of sun-shading device is one of the options to elevate the exterior façade appearance while keeping the thermal performance at the best for the indoor. This research aimed to evaluate the effectiveness of selected types of fixed passive sun-shading devices installed at three-story terrace shop houses in Malaysia. Most previous studies on this passive strategy have been conducted via software simulation, in which results were not validated by field measurement. Therefore, this research employed stationary experiment on actual building and meteorological condition using thr
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2

Jetto, Byan A., and Semih Göksel Yıldırım. "Revitalizing a Vernacular Architectural Element Through Sustainability: Contemporary Applications of Mashrabiya." ART/icle: Sanat ve Tasarım Dergisi 5, no. 1 (2025): 15–36. https://doi.org/10.56590/stdarticle.1517273.

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Purpose: Adequate natural lighting and thermal comfort, key components of sustainable spatial design, can be effectively managed using sunshades. There has been considerable interest in how mashrabiya, a traditional element of vernacular architecture that serves as a form of sun shading, is incorporated into contemporary designs. This study explores the integration of mashrabiya, a traditional architectural feature, into modern design practices, with a focus on sustainability. Conceptual Framework: Currently, there is a growing demand for sustainable solutions across various design fields, wit
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3

MARTOKUSUMO, Widjaja, M. Donny KOERNIAWAN, Heru W. POERBO, Nissa A. ARDIANI, and Susan H. KRISANTI. "ALGAE AND BUILDING FAÇADE REVISITED. A STUDY OF FAÇADE SYSTEM FOR INFILL DESIGN." JOURNAL OF ARCHITECTURE AND URBANISM 41, no. 4 (2017): 296–304. http://dx.doi.org/10.3846/20297955.2017.1411847.

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Buildings account for around 30 percent of the world’s total energy consumption and a similar percentage of the world’s greenhouse gas emissions the main cause of climate change. The building sector is a major energy consumer, and empirical research reveals that carbon-dioxide emissions from the building sector exceed those of the industry and transport sectors. Contextual juxtaposition has commonly been applied in designing a new building in the historic district. In the realm of design, such philosophy-based design approach requires objective measurements. When new glass building considered,
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4

Awan, Muhammad Ashar, Nazia Iftakhar, and Omer Shujat Bhatti. "TRANSFORMATION OF PASSIVE DESIGN ELEMENTS FOR ACHIEVING THERMAL COMFORT IN RESIDENTIAL BUILDINGS OF MANSEHRA CITY, PAKISTAN FROM 1990 TO 2019." Journal of Research in Architecture & Planning 33, no. 2 (2023): 19–34. http://dx.doi.org/10.53700/jrap3322023_2.

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Among the most evolving issues in recent years, there is growing concern over global warming throughout the world. The construction industry has been considered among the major contributors to global warming. The use of building envelope along with the heating, cooling, and lighting design, operations, and infrastructures are the prime factors of this contribution. Due to this reason, the thermal comfort of buildings has become a major concern in building design globally. The following research explored the building design elements used for thermal comfort in residential buildings of Mansehra
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5

Gimat, Mohd Fadlullah, Mohd Khairul Azhar Mat Sulaiman, Mohd Iskandar Abd Malek, and Mohd Farihan Irfan Mohd Nor. "Thermal Performance of Horizontal Fixed Sun Shading Device." International Journal of Sustainable Construction Engineering and Technology 14, no. 2 (2023). http://dx.doi.org/10.30880/ijscet.2023.14.02.021.

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Earlier investigations on passive cooling methods applied software modelling, and the findings were not confirmed through field measurement. Hence, this study applied a stationary experiment on a real structure and weather conditions employing horizontal sun shading (SDH). The purpose of this study was to compare the performance of fixed passive sun-shading devices put on to the bare façade of three-story terrace shophouses in Malaysia. The experiment findings revealed that SDH significantly improved the internal thermal environment by lowering the average monthly indoor air temperature (Ta) b
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6

"Effect on Thermal Performance by Different Types of Fixed Sun Shading Devices." International Journal of Engineering and Advanced Technology 9, no. 3 (2020): 3713–18. http://dx.doi.org/10.35940/ijeat.c6298.029320.

Full text
Abstract:
An application of sun-shading device is one of the options to elevate the exterior façade appearance while keeping the thermal performance at the best for the indoor. This research aimed to evaluate the effectiveness of selected types of fixed passive sun-shading devices installed at three-story terrace shop houses in Malaysia. Most previous studies on this passive strategy have been conducted via software simulation, in which results were not validated by field measurement. Therefore, this research employed stationary experiment on actual building and meteorological condition using three type
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7

Iqbal, Asifa, Humaira Nazir, and Muhammad Ashar Awan. "Design of external shading devices in Mansehra, Pakistan and their role in climate change." Frontiers in Energy Efficiency 1 (September 18, 2023). http://dx.doi.org/10.3389/fenef.2023.1244106.

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With the rising global temperatures, developing countries are one of the most adversely affected countries by climate change. Furthermore, changes in lifestyle and unsustainable ways of development have resulted in a shift away from passive strategies in the construction industry, which contribute to excessive energy consumption. This demands immediate action to use passive strategies and one of the most widely used passive strategies is shading devices, which can significantly lower the indoor temperature and give the structure the most efficient energy performance. Shading devices were a dom
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