"Analysis of Building Energy Consumption Due to Transparent and Opaque Materials Used in Exterior Walls"
الموضوعات :
Space Ontology International Journal
Maryam Mirashk-Daghiyan
1
,
Atefeh Dehghan- Touran poshti
2
,
Azadeh Shahcheraghi
3
,
Hadi Kaboli
4
1 - Department of Art and Architecture, West Tehran Branch, Islamic Azad University, Tehran, Iran
2 - Department of Art and Architecture, West Tehran Branch, Islamic Azad University, Tehran, Iran
3 - Associate professor, Department of Art and Architecture, Science and Research Branch, Islamic Azad University, Tehran, Iran.
4 - Department of Architecture, Damavand Branch, Islamic Azad University, Damavand, Iran
تاريخ الإرسال : 09 الجمعة , جمادى الثانية, 1442
تاريخ التأكيد : 10 الثلاثاء , ذو الحجة, 1442
تاريخ الإصدار : 24 الأربعاء , محرم, 1443
الکلمات المفتاحية:
Optimization,
energy consumption,
Transparent materials,
Opaque materials,
ملخص المقالة :
Opaque and transparent material are always influential factors in regulating the temperature in buildings. The variables considered in this research are transparent material as the type of windows and non-transparent material as covered materials on exterior layer of external walls on a case study in a hypothetical building in Tehran. Engineering details of Base model is chosen according to approval Tehran construction engineering organization. Six different types of windows including single layer, argon, air double glazed and triple layers with or without LOW-E cover and 11 common types of materials including ceramic, aluminum composite tile, polished and ordinary travertine, granite, black And white marble, refractory brick, red brick, 3 cm yellow brick, concrete are studied and their energy consumption calculated by simulation in honeybee and ladybug. Interaction of opaque and transparent material is investigated. Different results are compared with using Colibri and through the design-explorer website. Assortment of opaque material is introduced due to type of windows for optimizing energy consumption. The results show that energy consumption is diminished about 13% when double glazed air LOW-E and polished travertine are used compared to the base model.
المصادر:
Abravesh, Mahdiyeh; Mohammad Kari, Behrouz; Heydari, Shahin;. (2016). "Andazegiri khavas tashashoi shishehaye posheshdar va barrasi tasirat anha bar etlaf energy [Measurement of Radiative Properties of Coated Glazing Systems and Evaluation of their Influence on Energy Consumption]". Modares Mechanical Engineeringng, Vol. 15, No. 8, 402-410.
Anwari, E. A. (2017). Parametric study of energy simulation in the early stages of design for medium-height residential buildings in hot and dry climates of Iran. Tehran.
Arabzadeh, Sanaz; Kazemzadeh Hanani, Siamak. (2005). "Barrasi parametrhay moaser dar masraf energy dar bakhsh maskoni dar iran [Investigation of effective parameters in energy consumption in the residential sector in Iran]. Fourth Conference on Fuel Consumption Optimization in Buildings. Tehran: https://civilica.com/doc/2678.
ASHREA-Project-Committee-140. (2019). Standard Method of Test for the Evaluation of Building Energy Analysis Computer Programs. Retrieved from ASHREA: http://sspc140.ashraepcs.org/index.php
Babaharra, O., Choukairy, K., Khallaki, K., & Mounir, S. H. (2021). Numerical study of the types of glazing on annual consumption loads and comparison with thermal regulations. AIP Conference Proceedings, 2345, p. 020007.
Bakmohammadi, P., & Noorzai, E. (2020). Optimization of the design of the primary school classrooms in terms of energy and daylight performance considering occupants’ thermal and visual comfort. Energy Reports, 6, 1590-1607.
Cannavale, A., Martellotta, F., Cossari, P., Gigli, G., & Ayr, U. (2018). Energy savings due to building integration of innovative solid-state electrochromic devices. Applied Energy, 225, 975–985.
Fallahnia, Mahsa; Zarei, Samira; Sharifi, Seyed Najmeh; Keshani, Rasa;. (2015). "Barrasi tasir jense masaleh nama bar mizan masraf energy dar sakhtemanhay maskoni shiraz [Investigating the effect of facade materials on energy consumption in residential buildings in Shiraz]". Annual International Conference on Civil Engineering, Architecture and Urban Planning. Shiraz: https://civilica.com/doc/588016.
Gijón-Rivera, M., Álvarez, G., Beausoleil-Morrison, I., & Xamán, J. (2011). Appraisal of thermal performance of a glazed office with a solar control coating: Cases in Mexico and Canada. Building and Environment, 46, 1223–1233.
Hong, J., Shen, Q., & Xue, F. (2016). A multi-regional structural path analysis of the energy supply chain in China's construction industry. Energy Policy, 92, 56–68.
Jalili Sadr Abadi, S., & Bolboli, S. (2017). "Barrasi jaygah masaleh dar namay shahri ba estefade az roykard paydar tosee shahri va bahregiri az narmafzare Ecotech [Evaluation of Position of Materials Used in the Urban Facades Approach to Sustainable Urban Development]". Naqshejahan, No 7(2), 49-57.
KiranKumar, G., Saboor, S., & Babu, T. A. (2017). Thermal analysis of wall and window glass materials for cooling load reduction in green energy building design. Materials Today: Proceedings, 4, 9514–9518.
Lindberg, R., Binamu, A. and Teikari, M. (2004). Five-year data of measured weather, energy consumption, and time-dependent temperature varioations whithin different exterior wall structures. Energy and Buildings, Vol. 36, 495-501.
Lobaccaro, G., Fiorito, F., Masera, G., & Poli, T. (2012). District geometry simulation: a study for the optimization of solar façades in urban canopy layers. Energy Procedia, 30, 1163–1172.
M. G. Ignjatovic, B. D. Blagojevic, B. V. Stojanovic, M. M. Stojiljkovic. (2012). Influence of glazing types and ventilation principles in double skin façade on delivered heating and cooling energy during heating season in an office building. Thermal Science, Vol. 16, No.2, 461-469.
Marefat, Mehdi; Zolfaghari, Seyad Alireza; Omidvar, Amir;. (2006). "Tarahi monaseb nama va posteh sakhteman, raveshi moaser baray jologiri az rokhdad mayan dar systemhay sarmayeshi tabeshi saghf[Proper design of the facade of a building, effective way to prevent condensation in the radiant cooling systems of the roof]". Iranian Journal of Energy, Year 10, Issue 26, 75-82.
Mohajerani, A., & Einifar, A. (2019). Recognition of Tehran Conventional Housing Space Organization, a case study of apartment buildings in a row up to 6 floors, northern subspecies. Journal of Fine Arts - Architecture and Urban Planning, Volume 24, Number1.
Prager, C., Kohl, M., Heck, M. and Herkel, S. (2006). The influence of the IR reflection of painted facades on the energy balance of a building. Energy and Buildings, Vol. 38, 1369-1379.
Producer of the Office of National Building Regulations. (2010). "moghararate meli sakhteman, mabhase 19,[Topic 19 Energy saving]". Tehran: nashre tosee Iran.
Shan, Ming; Hwang, Bon-gang. (2018). Green building rating systems: Global reviews of practices and research efforts. Sustainable cities and society, 39, 172–180.
Zolfaghari, S., Saadat Nasab, M., & Norouzi Jajarm, E. (2014). "arzyabi mizan tasir namay sakhteman bar masraf energy salane dar eghlimhay mokhtalef iran[Assessing the impact of the exterior of the building on annual energy consumption in different climates of Iran]". Iranian Journal of Energy, Volume 17, Number 4, 69-80.