Araştırma Makalesi

Assessment of Insulation Thickness and Window Thermal Transmittance Effects on Peak Heating and Cooling Loads in Residential Buildings

Cilt: 9 Sayı: 3 15 Mayıs 2026
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Assessment of Insulation Thickness and Window Thermal Transmittance Effects on Peak Heating and Cooling Loads in Residential Buildings

Öz

Enhancement of building envelope components is a primary strategy for mitigating thermal loads; however, the relative contribution of insulation thickness and window thermal transmittance to peak heating and cooling demand in hot climates has not been sufficiently quantified. This study investigates the sensitivity of peak heating and cooling loads to variations in wall insulation thickness and window U-value for a reference residential building located in southeastern Türkiye. A parametric framework was established by considering five insulation thickness levels (0–10 cm) and three window thermal transmittance values, generating fifteen simulation scenarios under identical occupancy schedules and thermostat setpoints. Peak heating and cooling loads were determined for each configuration to evaluate the influence of envelope modifications on maximum heating and cooling system capacity requirements. The results indicate a substantial reduction in peak heating load, reaching approximately 46% between the baseline (uninsulated, high U-value) case and the best-performing configuration. In contrast, peak cooling load exhibited a comparatively moderate reduction of about 20% under the same conditions. Furthermore, the incremental benefit of increasing insulation thickness diminished beyond 8 cm, particularly for cooling demand. Although reductions in window thermal transmittance contributed to overall performance improvement, their effect was more pronounced when combined with higher insulation levels. The findings demonstrate that, under hot climate conditions, envelope improvements exert a significantly greater impact on peak heating demand than on peak cooling demand, offering quantitative guidance for residential heating and cooling system sizing.

Anahtar Kelimeler

Etik Beyan

This study does not involve experiments on humans or animals; therefore, ethical committee approval was not required.

Kaynakça

  1. Alaili, K., Tedjditi, A. K., Moutaouakil, E. M., & Outzourhit, A. (2025). Optimizing building envelope design across various French climates: A multi-objective approach using NSGA II and RMP method. Building Simulation, 18. https://doi.org/10.1007/s12273-025-1280-4
  2. Albatayneh, A., Tayara, T., Jaradat, M., Al-Omary, M., Hindiyeh, M., Alterman, D., & Ishbeytah, M. (2021). Optimum building design variables in a warm Saharan Mediterranean climate zone. International Journal of Photoenergy, 2021, 1–13. https://doi.org/10.1155/2021/6672260
  3. Altun, A. F. (2022). Determination of optimum building envelope parameters of a room concerning window-to-wall ratio, orientation, insulation thickness and window type. Buildings, 12(3). https://doi.org/10.3390/buildings12030383
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  5. Dyussembekova, N., Temirgaliyeva, N., Umyshev, D., Shavdinova, M., Schuett, R., & Bektalieva, D. (2022). Assessment of energy efficiency measures’ impact on energy performance in the educational building of Kazakh-German University in Almaty. Sustainability, 14(16), 9813. https://doi.org/10.3390/su14169813
  6. Er, A., Çakıcı, F. Z., & Arslan Selçuk, S. (2023). Increasing the energy performance of existing buildings in cold climate regions. Periodica Polytechnica Architecture. https://doi.org/10.3311/ppar.20968
  7. Erdoğan, A. (2012). Malatya'da örnek bir binada enerji simülasyonu [Yüksek lisans tezi, İnönü Üniversitesi].
  8. Erdoğan, A., & Canbazoğlu, S. (2015). Farklı mimari durumların enerji tüketimi ve çevresel etkileri üzerine bir araştırma. Mühendislik ve Teknoloji Bilimleri Dergisi, 3(2), 51–60.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Makine Mühendisliği (Diğer)

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

15 Mayıs 2026

Gönderilme Tarihi

4 Mart 2026

Kabul Tarihi

7 Nisan 2026

Yayımlandığı Sayı

Yıl 2026 Cilt: 9 Sayı: 3

Kaynak Göster

APA
Taçgün, E. (2026). Assessment of Insulation Thickness and Window Thermal Transmittance Effects on Peak Heating and Cooling Loads in Residential Buildings. Black Sea Journal of Engineering and Science, 9(3), 1163-1172. https://doi.org/10.34248/bsengineering.1902837
AMA
1.Taçgün E. Assessment of Insulation Thickness and Window Thermal Transmittance Effects on Peak Heating and Cooling Loads in Residential Buildings. BSJ Eng. Sci. 2026;9(3):1163-1172. doi:10.34248/bsengineering.1902837
Chicago
Taçgün, Ekrem. 2026. “Assessment of Insulation Thickness and Window Thermal Transmittance Effects on Peak Heating and Cooling Loads in Residential Buildings”. Black Sea Journal of Engineering and Science 9 (3): 1163-72. https://doi.org/10.34248/bsengineering.1902837.
EndNote
Taçgün E (01 Mayıs 2026) Assessment of Insulation Thickness and Window Thermal Transmittance Effects on Peak Heating and Cooling Loads in Residential Buildings. Black Sea Journal of Engineering and Science 9 3 1163–1172.
IEEE
[1]E. Taçgün, “Assessment of Insulation Thickness and Window Thermal Transmittance Effects on Peak Heating and Cooling Loads in Residential Buildings”, BSJ Eng. Sci., c. 9, sy 3, ss. 1163–1172, May. 2026, doi: 10.34248/bsengineering.1902837.
ISNAD
Taçgün, Ekrem. “Assessment of Insulation Thickness and Window Thermal Transmittance Effects on Peak Heating and Cooling Loads in Residential Buildings”. Black Sea Journal of Engineering and Science 9/3 (01 Mayıs 2026): 1163-1172. https://doi.org/10.34248/bsengineering.1902837.
JAMA
1.Taçgün E. Assessment of Insulation Thickness and Window Thermal Transmittance Effects on Peak Heating and Cooling Loads in Residential Buildings. BSJ Eng. Sci. 2026;9:1163–1172.
MLA
Taçgün, Ekrem. “Assessment of Insulation Thickness and Window Thermal Transmittance Effects on Peak Heating and Cooling Loads in Residential Buildings”. Black Sea Journal of Engineering and Science, c. 9, sy 3, Mayıs 2026, ss. 1163-72, doi:10.34248/bsengineering.1902837.
Vancouver
1.Ekrem Taçgün. Assessment of Insulation Thickness and Window Thermal Transmittance Effects on Peak Heating and Cooling Loads in Residential Buildings. BSJ Eng. Sci. 01 Mayıs 2026;9(3):1163-72. doi:10.34248/bsengineering.1902837

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