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Determination of optimum insulation thickness on different wall orientations in a hot climate

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Akademik Birimler

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Arslan, Erhan
Karagöz, İrfan

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Fırat, S.
Kinuthia, J.
Abu, A. Tair

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Springer

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Özet

In recent years, alternative and renewable energy sources have become essential and their use in this direction is increasing. When these energy sources are used, energy saving is also assessed. The main objective of this work is to determine the optimum insulation thickness according to the cooling requirement of a building in a hot climate. During the summer period different wall directions has been evaluated in Bursa. For the optimum insulation thickness in all wall directions, firstly total solar radiation, cooling transmission load and then cost analysis are performed. While solar radiation was calculated, factors such as declination angle, geometric factor, sun clock angle, altitude, ground reflectance and latitude angle were taken into account. The differences in cooling transmission load for insulated and uninsulated walls were observed. The heat transfer coefficient was determined according to inside and outside air-film thermal resistances and total thermal resistance of the wall without the insulation. In addition to these, the volumes, thicknesses, thermal conductivities and costs of the thermal insulation materials are also considered. When cost analysis is performed, PWF is calculated and also interest rate, inflation rate, cost of insulation materials and electrical cost were taken into account. Depending on the location of the building, insulation material which should be used for minimum cost and maximum efficiency and the required properties of this insulation material have been determined.

Açıklama

Bu çalışma, 15-17, Mart 2017 tarihlerinde [Arabistan]’da düzenlenen 3. International Sustainable Buildings Symposium (ISBS) Kongresi‘nde bildiri olarak sunulmuştur.

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Konusu

Science & technology - other topics, Engineering, Optimum thickness of insulation, Cooling transmission load solar radiation, Cost analysis, Cost accounting, Cost benefit analysis, Energy conservation, Heat resistance, Heat transfer, Insulating materials, Renewable energy resources, Solar radiation, Thermal conductivity, Transmissions, Walls (structural partitions), Cooling requirements, Cost analysis, Insulation materials, Optimum insulation thickness, Optimum thickness, Renewable energy source, Thermal insulation materials, Transmission loads, Thermal insulation

Alıntı

Arslan, E. ve Karagöz, İ. (2018). ''Determination of optimum insulation thickness on different wall orientations in a hot climate''. ed, S. Fırat vd. Lecture Notes in Civil Engineering, Proceedings of 3. International Sustainable Buildings Symposium (ISBS 2017), 7, 145-157.

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