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Improving the deteriorations of historic buildings through building materials

Yıl 2025, Cilt: 16 Sayı: 3, 797 - 804
https://doi.org/10.24012/dumf.1671361

Öz

Historic buildings may need various interventions to adapt to changing conditions and maintain their existence. The problems identified in the buildings should be addressed in an innovative framework and should be eliminated without harming the historical texture and the environment. In this study, the problems and needs of historical buildings over the years are discussed and solutions are proposed to eliminate them on the scale of building materials. Recent studies in five different categories, namely humidity and dampness, energy performance, thermal comfort, environmental impacts, and indoor air quality, were examined. This study has an awareness-raising approach in terms of examining the effects of the use of new materials on the natural environment as well as the historical environment.

Kaynakça

  • [1] A.L., Webb, “Energy retrofits in historic and traditional buildings: A review of problems and methods”, Renewable and Sustainable Energy Reviews, vol.77, pp. 748-759, 2017.
  • [2] B.M. Feilden, “Conservation of Historic Buildings”, 3rd ed., Londra, Architectural Press, 2003. [Online]. Available: https://www.academia.edu/
  • [3] A. Buda, E.J.P. Hansen, A. Rieser, E. Giancola, V.N. Pracchi, S. Mauri, V. Marincioni, V. Gori, K. Fouseli, C.S.P. Lopez, A. Lo Faro, A. Egusquiza, F. Haas, E. Leonardi and D. Herrera-Avellanosa, “Conservation-Compatible Retrofit Solutions in Historic Buildings: An Integrated Approach”, Sustainability, vol.13, no.5, 2021. DOI: 10.3390/su13052927
  • [4] B. Sayın, “Tarihi yığma yapıların malzeme özelliklerinin belirlenmesi ve uygulama önerileri”, Dicle Üniversitesi Mühendislik Fakültesi, vol. 7, no. 3, pp. 387-398, 2016.
  • [5] P.B. Lourenço, E. Luso, and M.G. Almeida, “Defects and moisture problems in buildings from historical city centres: a case study in Portugal”, Building and Environment, vol.41, no.2, pp.223-234, 2006.
  • [6] M. Michette, R. Lorenz, and C. Ziegert, “Clay barriers for protecting historic buildings from ground moisture intrusion”, Heritage Science, vol.5, no.31, 2017.
  • [7] L. Fusade, H. Viles, C. Wood, and C. Burns, “The effect of wood ash on the properties and durability of lime mortar for repointing damp historic buildings”, Construction and Building Materials, vol.212, pp. 500-513, 2019.
  • [8] F. Rosso, A.L. Pisello, V.L. Castaldo, M. Ferrero and F. Cotana, “On Innovative Cool-Colored Materials for Building Envelopes: Balancing the Architectural Appearance and the Thermal-Energy Performance in Historical Districts”, Sustainability, vol. 9, 2017.
  • [9] M. De Vita, P. D’Antonio, Beccarelli and P. Berardinis, “Energy performance of film membranes in the retrofitting of Architectural Heritage: an Italian case study,” in Proc. of the TensiNet Symposium, Politecnico di Milano, Milan, Italy, 2019, pp. 624-633.
  • [10] C.M.M. Gonzalez, A.L.L. Rodriguez, R.S. Medina and J.R. Jaramillo, “Effects of future climate change on the preservation of artworks, thermal comfort and energy consumption in historic buildings”, Applied Energy, vol. 276, 2020.
  • [11] M. Alwetaishi, A. Balabel, A. Abdelhafiz, U. Issa, I. Sharaky, A. Shamseldin, M. Al-Surf, M., Al-Harthi and M. Gadi, “User Thermal Comfort in Historic Buildings: Evaluation of the Potential of Thermal Mass, Orientation, Evaporative Cooling and Ventilation”, Sustainability, vol. 12, 2020.
  • [12] E. Baccega and M. Bottarelli, “Granular PCM-Enhanced Plaster for Historical Buildings: Experimental Tests and Numerical Studies”, Energies, vol. 15, 2022.
  • [13] A. Ayat, H. Bouzerd, T. Ali-Boucetta, A. Navarro and M.L. Benmalek, “Valorisation of waste glass powder and brick dust in air-lime mortars for restoration of historical buildings: Case study theatre of Skikda (Northern Algeria)”, Construction and Building Materials, vol. 315, 2022.
  • [14] F. Colmenero-Fonseca, A. Salas-Montoya, A. Preciado, J. Palomino-Bernal and J. Carcel-Carrasco, “Case Study on the Application of New Technologies forConstruction Waste Management in a Historic Building inJalisco, Mexico”, Advances in Civil Engineering, Wiley, vol. 2024.
  • [15] Y. Takva, Ç. Takva ve Z.Y. İlerisoy, “Sustainable Adaptive Reuse Strategy Evaluation for Cultural Heritage Buildings”, International Journal of Built Environment and Sustainability, vol.10, no.2, pp.25-37, 2023.
  • [16] K. Kertsmik, E. Arumagi, J. Hallik ve T. Kalamees, “Low carbon emission renovation of historical residential buildings”, Energy Reports, vol. 11, pp. 3836-3847, 2024.
  • [17] M.J. Jafari, A.A. Khajevandi, S.A.M. Najarkola, M.S. Yekaninejad, M.A. Pourhoseingholi, L. Omidi and S. Kalantary, “Association of Sick Building Syndrome with Indoor Air Parameters”, Tanaffos, vol. 14, no. 1, pp. 55-62, 2015.
  • [18] Y. Zhang, P. K. Hopke and C. Mandin, “History and Perspective on Indoor Air Quality Research”, Handbook of Indoor Air Quality, Springer, Singapore, 2022.
  • [19] S. M. Khoshnava, R. Rostami, R. M. Zin, D. Streimikiene, A. Mardani and M. Ismail, “The Role of Green Building Materials in Reducing Environmental and Human Health Impacts”, International Journal of Environmental Research and Public Health, vol. 17, 2020.
  • [20] W. Tsai, “Overview of Green Building Material (GBM) Policies and Guidelines with Relevance to Indoor Air Quality Management in Taiwan”, Environments, vol. 5, no. 4, 2018.
  • [21] A. Steinemann, P. Wargocki and B. Rismanchi, “Ten questions concerning green buildings and indoor air quality”, Building and Environment, vol. 112., pp. 351-358., 2017.

Tarihi yapılarda tespit edilen sorunların yapı malzemeleri üzerinden iyileştirilmesi

Yıl 2025, Cilt: 16 Sayı: 3, 797 - 804
https://doi.org/10.24012/dumf.1671361

Öz

Tarihi yapılar günümüz şartlarına uyum sağlayabilmeleri ve varlıklarını sürdürebilmeleri adına çeşitli müdahalelere ihtiyaç duyabilmektedir. Bu süreçte yapılarda tespit edilen sorunların yenilikçi bir çerçevede ele alınarak tarihi dokuya ve çevreye zarar vermeden giderilmesi gerekir. Bu çalışmada yıllar içerisinde tarihi yapılarda görülen aksaklıklar ve ihtiyaçlar ele alınarak bunların yapı malzemesi ölçeğinde giderilmesine yönelik çözüm önerileri sunulmuştur. Çalışmanın metodolojisine göre, nem sorunu, enerji performansı, termal konfor, çevresel etkiler ve iç mekân hava kalitesi olarak belirlenen beş farklı kategoride son on yılda literatüre kazandırılmış olan çalışmalar incelenmiştir. Bu çalışma, yeni malzeme ve teknoloji kullanımının tarihi çevre kadar doğal çevreye olan etkilerinin de incelenmesi açısından bilinçlendirici bir yaklaşıma sahiptir.

Etik Beyan

Hazırlanan makalede etik kurul izni alınmasına gerek yoktur. Hazırlanan makalede herhangi bir kişi/kurum ile çıkar çatışması bulunmamaktadır.

Kaynakça

  • [1] A.L., Webb, “Energy retrofits in historic and traditional buildings: A review of problems and methods”, Renewable and Sustainable Energy Reviews, vol.77, pp. 748-759, 2017.
  • [2] B.M. Feilden, “Conservation of Historic Buildings”, 3rd ed., Londra, Architectural Press, 2003. [Online]. Available: https://www.academia.edu/
  • [3] A. Buda, E.J.P. Hansen, A. Rieser, E. Giancola, V.N. Pracchi, S. Mauri, V. Marincioni, V. Gori, K. Fouseli, C.S.P. Lopez, A. Lo Faro, A. Egusquiza, F. Haas, E. Leonardi and D. Herrera-Avellanosa, “Conservation-Compatible Retrofit Solutions in Historic Buildings: An Integrated Approach”, Sustainability, vol.13, no.5, 2021. DOI: 10.3390/su13052927
  • [4] B. Sayın, “Tarihi yığma yapıların malzeme özelliklerinin belirlenmesi ve uygulama önerileri”, Dicle Üniversitesi Mühendislik Fakültesi, vol. 7, no. 3, pp. 387-398, 2016.
  • [5] P.B. Lourenço, E. Luso, and M.G. Almeida, “Defects and moisture problems in buildings from historical city centres: a case study in Portugal”, Building and Environment, vol.41, no.2, pp.223-234, 2006.
  • [6] M. Michette, R. Lorenz, and C. Ziegert, “Clay barriers for protecting historic buildings from ground moisture intrusion”, Heritage Science, vol.5, no.31, 2017.
  • [7] L. Fusade, H. Viles, C. Wood, and C. Burns, “The effect of wood ash on the properties and durability of lime mortar for repointing damp historic buildings”, Construction and Building Materials, vol.212, pp. 500-513, 2019.
  • [8] F. Rosso, A.L. Pisello, V.L. Castaldo, M. Ferrero and F. Cotana, “On Innovative Cool-Colored Materials for Building Envelopes: Balancing the Architectural Appearance and the Thermal-Energy Performance in Historical Districts”, Sustainability, vol. 9, 2017.
  • [9] M. De Vita, P. D’Antonio, Beccarelli and P. Berardinis, “Energy performance of film membranes in the retrofitting of Architectural Heritage: an Italian case study,” in Proc. of the TensiNet Symposium, Politecnico di Milano, Milan, Italy, 2019, pp. 624-633.
  • [10] C.M.M. Gonzalez, A.L.L. Rodriguez, R.S. Medina and J.R. Jaramillo, “Effects of future climate change on the preservation of artworks, thermal comfort and energy consumption in historic buildings”, Applied Energy, vol. 276, 2020.
  • [11] M. Alwetaishi, A. Balabel, A. Abdelhafiz, U. Issa, I. Sharaky, A. Shamseldin, M. Al-Surf, M., Al-Harthi and M. Gadi, “User Thermal Comfort in Historic Buildings: Evaluation of the Potential of Thermal Mass, Orientation, Evaporative Cooling and Ventilation”, Sustainability, vol. 12, 2020.
  • [12] E. Baccega and M. Bottarelli, “Granular PCM-Enhanced Plaster for Historical Buildings: Experimental Tests and Numerical Studies”, Energies, vol. 15, 2022.
  • [13] A. Ayat, H. Bouzerd, T. Ali-Boucetta, A. Navarro and M.L. Benmalek, “Valorisation of waste glass powder and brick dust in air-lime mortars for restoration of historical buildings: Case study theatre of Skikda (Northern Algeria)”, Construction and Building Materials, vol. 315, 2022.
  • [14] F. Colmenero-Fonseca, A. Salas-Montoya, A. Preciado, J. Palomino-Bernal and J. Carcel-Carrasco, “Case Study on the Application of New Technologies forConstruction Waste Management in a Historic Building inJalisco, Mexico”, Advances in Civil Engineering, Wiley, vol. 2024.
  • [15] Y. Takva, Ç. Takva ve Z.Y. İlerisoy, “Sustainable Adaptive Reuse Strategy Evaluation for Cultural Heritage Buildings”, International Journal of Built Environment and Sustainability, vol.10, no.2, pp.25-37, 2023.
  • [16] K. Kertsmik, E. Arumagi, J. Hallik ve T. Kalamees, “Low carbon emission renovation of historical residential buildings”, Energy Reports, vol. 11, pp. 3836-3847, 2024.
  • [17] M.J. Jafari, A.A. Khajevandi, S.A.M. Najarkola, M.S. Yekaninejad, M.A. Pourhoseingholi, L. Omidi and S. Kalantary, “Association of Sick Building Syndrome with Indoor Air Parameters”, Tanaffos, vol. 14, no. 1, pp. 55-62, 2015.
  • [18] Y. Zhang, P. K. Hopke and C. Mandin, “History and Perspective on Indoor Air Quality Research”, Handbook of Indoor Air Quality, Springer, Singapore, 2022.
  • [19] S. M. Khoshnava, R. Rostami, R. M. Zin, D. Streimikiene, A. Mardani and M. Ismail, “The Role of Green Building Materials in Reducing Environmental and Human Health Impacts”, International Journal of Environmental Research and Public Health, vol. 17, 2020.
  • [20] W. Tsai, “Overview of Green Building Material (GBM) Policies and Guidelines with Relevance to Indoor Air Quality Management in Taiwan”, Environments, vol. 5, no. 4, 2018.
  • [21] A. Steinemann, P. Wargocki and B. Rismanchi, “Ten questions concerning green buildings and indoor air quality”, Building and Environment, vol. 112., pp. 351-358., 2017.
Toplam 21 adet kaynakça vardır.

Ayrıntılar

Birincil Dil Türkçe
Konular Mimari Mühendislik
Bölüm Makaleler
Yazarlar

Ebru Kılıç Bakırhan 0000-0003-0650-8297

Erken Görünüm Tarihi 30 Eylül 2025
Yayımlanma Tarihi 10 Ekim 2025
Gönderilme Tarihi 7 Nisan 2025
Kabul Tarihi 29 Temmuz 2025
Yayımlandığı Sayı Yıl 2025 Cilt: 16 Sayı: 3

Kaynak Göster

IEEE E. Kılıç Bakırhan, “Tarihi yapılarda tespit edilen sorunların yapı malzemeleri üzerinden iyileştirilmesi”, DÜMF MD, c. 16, sy. 3, ss. 797–804, 2025, doi: 10.24012/dumf.1671361.
DUJE tarafından yayınlanan tüm makaleler, Creative Commons Atıf 4.0 Uluslararası Lisansı ile lisanslanmıştır. Bu, orijinal eser ve kaynağın uygun şekilde belirtilmesi koşuluyla, herkesin eseri kopyalamasına, yeniden dağıtmasına, yeniden düzenlemesine, iletmesine ve uyarlamasına izin verir. 24456