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Adana İlinin İklim Direnci Kapasitesini Yükseltecek Uyum ve Azaltım Politikaları

Year 2024, Volume: 13 Issue: 2, 188 - 217, 30.12.2024
https://doi.org/10.47130/bitlissos.1469175

Abstract

Çalışma, tarım, sanayi ve turizm kenti olan Adana’nın sera gazı emisyon miktarını azaltmak ve kenti iklim krizlerine karşı daha dirençli hale getirecek stratejik planlara katkı sağlamak amacıyla hazırlanmıştır. Bu amacı gerçekleştirebilmek için ise Adana’nın küresel ısınma ve iklim değişikliğine karşı direnç kapasitesini yükseltecek uyum ve azaltım politikalarının neler olabileceği belirlenmeye çalışılmıştır. Çalışmada öncelikle direnç, dirençlilik, dirençli kent ve iklim dirençli kent kavramları içerik analizi yöntemiyle açıklanmıştır. Adana’nın fiziki yapısı, yerleşim biçimleri, iklim özellikleri, demografisi, ekonomik yapısı ve sağlık altyapısı doküman analizi yöntemiyle elde edilen nicel verilerle ortaya koyulmuştur. Daha sonra bölgenin küresel ısınma ve iklim değişikliğine karşı kırılgan yapısı çeşitli iklim projeksiyonları ve afet riski analizleri ile tartışılmıştır. Son olarak, belirlenen risklere karşı uygulanabilecek yeni nesil uyum ve azaltım politikaları farklı başlıklar altında açıklanmıştır.

References

  • Aydın, S., Şimşek, M., Çetinkaya, G., & Öztürk, M. Z. (2019). Erinç Yağış Etkinlik İndisi'ne göre belirlenen Türkiye iklim bölgelerinin rejim karakteristikleri. 1. İstanbul Uluslararası Coğrafya Kongresi Bildiri Kitabı (s. 752-760). İstanbul Üniversitesi.
  • Bamber, J. L. (2019). Ice sheet contributions to future sea-level rise from structured expert judgment. Proceedings of the National Academy of Sciences, 16(23), 11195–11200.
  • Baggio, G., Qadir, M., & Smakhtin, V. (2021). Freshwater availability status across countries for human and ecosystem needs. Science of the Total Environment, 792(50), 148230.
  • Brown, P. (2022). Human deaths from hot and cold temperatures and implications for climate change. The Breakthrough Institute, December, 2022.
  • Büken, M. E., & Yüceer, A. (2020). Adana ilinde iklim değişikliği etkileri değerlendirmesi. Ç.Ü. Fen ve Mühendislik Bilimleri Dergisi, 39(7), 99–114.
  • Carey, J. (2020). Core concept: Managed retreat increasingly seen as necessary in response to climate change. Proceedings of the National Academy of Sciences, 117(24), 1–4.
  • Çevre ve Şehircilik Bakanlığı. (2011). Strategic steps to adapt to climate change in Seyhan River Basin. Çevre Şehircilik ve İklim Değişikliği Başkanlığı, Ekim 2011, Ankara.
  • Edmond, C. (2019, August 23). Cape Town almost ran out of water. Here’s how it averted the crisis. World Economic Forum. https://www.weforum.org/agenda/2019/08/cape-town-almost-ran-out-of-water-heres-how-it-averted-the-crisis/
  • Estrada, F., Botzen, W. W., & Tol, R. S. (2017). A global economic assessment of city policies to reduce climate change impacts. Nature Climate Change, 7, 403–406.
  • Folke, C. (2006). Resilience: The emergence of a perspective for social-ecological systems analyses. Global Environmental Change, 16(3), 253–267.
  • Fujihara, Y., Simonovic, S. P., Topaloglu, F., Tanaka, K., & Watanabe, T. (2008). An inverse-modelling approach to assess the impacts of climate change in the Seyhan River basin, Turkey. Hydrological Sciences Journal, 53(6), 1121–1136.
  • Geymen, A., & Dirican, A. Y. (2016). İklim değişikliğine bağlı deniz seviyesi değişiminin coğrafi bilgi sistemleri kullanılarak analiz edilmesi. Harita Teknolojileri Elektronik Dergisi, 8(1), 65–74.
  • Global Cool Cities Alliance (GCCA). (2024). Unlock the benefits of reflective cool surfaces, energy savings. https://globalcoolcities.org/discover/unlock/unlock-energy-saving
  • Giorgi, F., & Lionello, P. (2008). Climate change projections for the Mediterranean region. Global and Planetary Change, 63, 90–104.
  • Güney, O. İ. (2013). Assessment of sea level rise impact on population and land use in the Mediterranean coast of Turkey. Journal of Applied Biological Sciences, 7(3), 56–60.
  • Gasparrini, A. (2017). Projections of temperature-related excess mortality under climate change scenarios. The Lancet Planetary Health, 1(9), 360–367. https://doi.org/10.1016/S2542-5196(17)30156-0
  • He, C., Liu, Z., Wu, J., Pan, X., Fang, Z., Li, J., & Bryan, B. A. (2021). Future global urban water scarcity and potential solutions. Nature Communications, 12, 4667. https://doi.org/10.1038/s41467-021-25026-3
  • Holling, C. S. (1973). Resilience and stability of ecological systems. Annual Review of Ecology and Systematics, 4, 1–23.
  • IPCC. (2023). Summary for policymakers. In Climate change 2023: Synthesis report. Contribution of Working Groups I, II, and III to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change [Core Writing Team, H. Lee & J. Romero (Eds.)]. IPCC. https://doi.org/10.59327/IPCC/AR6-9789291691647.001
  • IPCC. (2022). Summary for policymakers [H.-O. Pörtner, D. C. Roberts, E. S. Poloczanska, K. Mintenbeck, M. Tignor, A. Alegría, M. Craig, S. Langsdorf, S. Löschke, V. Möller, A. Okem (Eds.)]. In Climate change 2022: Impacts, adaptation, and vulnerability. Contribution of Working Group II to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change [H.-O. Pörtner, D. C. Roberts, M. Tignor, E. S. Poloczanska, K. Mintenbeck, A. Alegría, M. Craig, S. Langsdorf, S. Löschke, V. Möller, A. Okem, B. Rama (Eds.)]. Cambridge University Press. https://doi.org/10.1017/9781009325844.001
  • IPCC. (2014). Climate change 2014: Synthesis report. Contribution of Working Groups I, II, and III to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change [Core Writing Team, R. K. Pachauri & L. A. Meyer (Eds.)]. IPCC.
  • İRAP. (2021). AFAD Adana il afet risk azaltma planı. T.C. Adana Valiliği İl Afet ve Acil Durum Müdürlüğü.
  • Kirezci, E. (2020). Projections of global-scale extreme sea levels and resulting episodic coastal flooding over the 21st century. Scientific Reports, 10(1), 11629. https://doi.org/10.1038/s41598-020-67736-6
  • Kulp, S. A., & Strauss, B. H. (2019). New elevation data triple estimates of global vulnerability to sea-level rise and coastal flooding. Nature Communications, 10, 4844. https://doi.org/10.1038/s41467-019-12808-z
  • Kuzma, S., & Luo, T. (2020). The number of people affected by floods will double between 2010 and 2030. World Resources Institute. https://www.wri.org/insights/number-people-affected-floods-will-double-between-2010-and-2030
  • Lawrence, J. (2020). Implementing pre-emptive managed retreat: Constraints and novel insights. Current Climate Change Reports, 6, 66–80. https://doi.org/10.1007/s40641-020-00161-z
  • MGM. (2024a). İllere ait genel istatistik verileri. Meteoroloji Genel Müdürlüğü. https://mgm.gov.tr/veridegerlendirme/il-ve-ilceler-istatistik.aspx?m=ADANA
  • MGM. (2024b). Meteoroloji Genel Müdürlüğü Ortalama Yağış Verileri. Meteoroloji Genel Müdürlüğü. https://mgm.gov.tr/veridegerlendirme/yagis-raporu.aspx?b=m&ysclid=luqx8676wz40011872
  • MGM. (2024c). Meteorolojik kuraklık haritası, Şubat 2022-Şubat 2024. Meteoroloji Genel Müdürlüğü. https://www.mgm.gov.tr/veridegerlendirme/kuraklik-analizi.aspx
  • MGM. (2013). Yeni senaryolarla Türkiye için iklim değişikliği senaryoları. Meteoroloji Genel Müdürlüğü.
  • OECD. (2020). Incorporating resilience to sea-level rise in urban building codes. OECD. https://www.oecd.org/stories/ocean/incorporating-resilience-to-sea-level-rise-in-urban-building-codes-0808492b
  • OECD. (2018). Indicators of resilience cities. Regional development working papers 2018/02. https://dx.doi.org/10.1787/6f1f6065-en
  • OGM. (2024). Adana orman varlığı. Adana Orman Bölge Müdürlüğü. www.ogm.gov.tr
  • Sapkota, M., Arora, M., Malano, H., Moglia, M., Sharma, A., George, B., & Pamminger, F. (2015). An overview of hybrid water supply systems in the context of urban water management: Challenges and opportunities. Water, 7(1), 153–174. https://doi.org/10.3390/w7010153
  • Sharifi, A., & Yamagata, Y. (2016). Principles and criteria for assessing urban energy resilience: A literature review. Renewable and Sustainable Energy Reviews, 60, 1654–1677.
  • Singh, G., Johir, M. A. H., Kandasamy, J., Vigneswaran, S., Kus, B., & Naidu, R. (2012). Stormwater harvesting and stormwater reuse. In Encyclopedia of Sustainability Science and Technology (pp. 10095–10117). https://doi.org/10.1007/978-1-4419-0851-3_266
  • TDK. (2024). Türk Dil Kurumu Sözlüğü. 2024.
  • TÜİK. (2024a). Adrese dayalı nüfus kayıt sistemi. 6 Şubat 2024.
  • TÜİK. (2024b). Nüfus istatistikleri portalı. nip.tuik.gov.tr. Erişim adresi: https://nip.tuik.gov.tr
  • UK Met Office. (2021). One billion face heat-stress risk from 2°C rise. Met Office. https://www.metoffice.gov.uk/about-us/press-office/news/weather-and-climate/2021/2c-rise-to-put-one-in-eight-of-global-population-at-heat-stress-risk
  • UN. (2024). Population. https://www.un.org/en/global-issues/population
  • UN DESA. (2022). World population prospects 2022: Summary of results. United Nations publication. Sales No. E.22.XIII.3. New York.
  • UNDRR. (2021). GAR Special Report on Drought 2021. Geneva.
  • UN-Habitat. (2015). Local governments pocket guide to resilience. United Nations Human Settlements Programme, December 2015.
  • World Economic Forum. (2019). The global risks report 2019. In partnership with Marsh & McLennan Companies and Zurich Insurance Group. http://wef.ch/risks2019
  • Van Dongeren, A., Ciavola, P., Viavattene, C., De Kleermaeker, S., Martinez, G., Ferreira, O., Costa, C., & McCall, R. (2014). RISC-KIT: Resilience-increasing strategies for coasts – toolkit. In A. N. Green & J. A. G. Cooper (Eds.), Proceedings of the 13th International Coastal Symposium (Durban, South Africa), Journal of Coastal Research, Special Issue, No. 66.
  • Van Loon, A. F., & Van Lanen, H. A. J. (2013). Making the distinction between water scarcity and drought using an observation-modeling framework. Water Resources Research, 49(3), 1–20. https://doi.org/10.1002/wrcr.20147 Wells, K. (2023, October 19). Europe faces dynamic changes in risk landscape as €1bn losses surge: Munich Re, Reinsurance News.
  • WMO. (World Meteorological Organization). (2023). Drought. https://wmo.int/about-us/world-meteorological-day/wmd-2020/drought
  • WMO. (World Meteorological Organization). (2021). State of climate services. https://library.wmo.int/records/item/57630-2021-state-of-climate-services-water#.YV9AIkbMK3L
  • Yılmaz, E. (2015). Landsat görüntüleri ile Adana yüzey ısı adası. Coğrafi Bilimler Dergisi, CBD, 13(2), 115–138.

Adaptation and Mitigation Policies Proposed to Increase The Climate Resilience Capacity of Adana Province

Year 2024, Volume: 13 Issue: 2, 188 - 217, 30.12.2024
https://doi.org/10.47130/bitlissos.1469175

Abstract

This study was prepared to contribute to the strategic plans aimed at reducing the greenhouse gas emissions of Adana which is an agricultural, industrial and tourism city and to make the city more resilient to climate crises. In order to achieve this aim, an attempt was made to determine possible adaptation and mitigation policies that could be used to increase Adana's resistance capacity against global warming and climate change. In the study, first of all, the concepts of resilience, resistivity, resilient city and climate-resilient city were explained using the content analysis method. Adana's physical structure, settlement patterns, climate characteristics, demography, economic structure and health infrastructure were studied with quantitative data obtained by document analysis method. Then, the vulnerable nature of the region against global warming and climate change was discussed with various climate projections and disaster risk analyses. Finally, new generation adaptation and mitigation policies that can be applied against the identified risks are explained.

References

  • Aydın, S., Şimşek, M., Çetinkaya, G., & Öztürk, M. Z. (2019). Erinç Yağış Etkinlik İndisi'ne göre belirlenen Türkiye iklim bölgelerinin rejim karakteristikleri. 1. İstanbul Uluslararası Coğrafya Kongresi Bildiri Kitabı (s. 752-760). İstanbul Üniversitesi.
  • Bamber, J. L. (2019). Ice sheet contributions to future sea-level rise from structured expert judgment. Proceedings of the National Academy of Sciences, 16(23), 11195–11200.
  • Baggio, G., Qadir, M., & Smakhtin, V. (2021). Freshwater availability status across countries for human and ecosystem needs. Science of the Total Environment, 792(50), 148230.
  • Brown, P. (2022). Human deaths from hot and cold temperatures and implications for climate change. The Breakthrough Institute, December, 2022.
  • Büken, M. E., & Yüceer, A. (2020). Adana ilinde iklim değişikliği etkileri değerlendirmesi. Ç.Ü. Fen ve Mühendislik Bilimleri Dergisi, 39(7), 99–114.
  • Carey, J. (2020). Core concept: Managed retreat increasingly seen as necessary in response to climate change. Proceedings of the National Academy of Sciences, 117(24), 1–4.
  • Çevre ve Şehircilik Bakanlığı. (2011). Strategic steps to adapt to climate change in Seyhan River Basin. Çevre Şehircilik ve İklim Değişikliği Başkanlığı, Ekim 2011, Ankara.
  • Edmond, C. (2019, August 23). Cape Town almost ran out of water. Here’s how it averted the crisis. World Economic Forum. https://www.weforum.org/agenda/2019/08/cape-town-almost-ran-out-of-water-heres-how-it-averted-the-crisis/
  • Estrada, F., Botzen, W. W., & Tol, R. S. (2017). A global economic assessment of city policies to reduce climate change impacts. Nature Climate Change, 7, 403–406.
  • Folke, C. (2006). Resilience: The emergence of a perspective for social-ecological systems analyses. Global Environmental Change, 16(3), 253–267.
  • Fujihara, Y., Simonovic, S. P., Topaloglu, F., Tanaka, K., & Watanabe, T. (2008). An inverse-modelling approach to assess the impacts of climate change in the Seyhan River basin, Turkey. Hydrological Sciences Journal, 53(6), 1121–1136.
  • Geymen, A., & Dirican, A. Y. (2016). İklim değişikliğine bağlı deniz seviyesi değişiminin coğrafi bilgi sistemleri kullanılarak analiz edilmesi. Harita Teknolojileri Elektronik Dergisi, 8(1), 65–74.
  • Global Cool Cities Alliance (GCCA). (2024). Unlock the benefits of reflective cool surfaces, energy savings. https://globalcoolcities.org/discover/unlock/unlock-energy-saving
  • Giorgi, F., & Lionello, P. (2008). Climate change projections for the Mediterranean region. Global and Planetary Change, 63, 90–104.
  • Güney, O. İ. (2013). Assessment of sea level rise impact on population and land use in the Mediterranean coast of Turkey. Journal of Applied Biological Sciences, 7(3), 56–60.
  • Gasparrini, A. (2017). Projections of temperature-related excess mortality under climate change scenarios. The Lancet Planetary Health, 1(9), 360–367. https://doi.org/10.1016/S2542-5196(17)30156-0
  • He, C., Liu, Z., Wu, J., Pan, X., Fang, Z., Li, J., & Bryan, B. A. (2021). Future global urban water scarcity and potential solutions. Nature Communications, 12, 4667. https://doi.org/10.1038/s41467-021-25026-3
  • Holling, C. S. (1973). Resilience and stability of ecological systems. Annual Review of Ecology and Systematics, 4, 1–23.
  • IPCC. (2023). Summary for policymakers. In Climate change 2023: Synthesis report. Contribution of Working Groups I, II, and III to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change [Core Writing Team, H. Lee & J. Romero (Eds.)]. IPCC. https://doi.org/10.59327/IPCC/AR6-9789291691647.001
  • IPCC. (2022). Summary for policymakers [H.-O. Pörtner, D. C. Roberts, E. S. Poloczanska, K. Mintenbeck, M. Tignor, A. Alegría, M. Craig, S. Langsdorf, S. Löschke, V. Möller, A. Okem (Eds.)]. In Climate change 2022: Impacts, adaptation, and vulnerability. Contribution of Working Group II to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change [H.-O. Pörtner, D. C. Roberts, M. Tignor, E. S. Poloczanska, K. Mintenbeck, A. Alegría, M. Craig, S. Langsdorf, S. Löschke, V. Möller, A. Okem, B. Rama (Eds.)]. Cambridge University Press. https://doi.org/10.1017/9781009325844.001
  • IPCC. (2014). Climate change 2014: Synthesis report. Contribution of Working Groups I, II, and III to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change [Core Writing Team, R. K. Pachauri & L. A. Meyer (Eds.)]. IPCC.
  • İRAP. (2021). AFAD Adana il afet risk azaltma planı. T.C. Adana Valiliği İl Afet ve Acil Durum Müdürlüğü.
  • Kirezci, E. (2020). Projections of global-scale extreme sea levels and resulting episodic coastal flooding over the 21st century. Scientific Reports, 10(1), 11629. https://doi.org/10.1038/s41598-020-67736-6
  • Kulp, S. A., & Strauss, B. H. (2019). New elevation data triple estimates of global vulnerability to sea-level rise and coastal flooding. Nature Communications, 10, 4844. https://doi.org/10.1038/s41467-019-12808-z
  • Kuzma, S., & Luo, T. (2020). The number of people affected by floods will double between 2010 and 2030. World Resources Institute. https://www.wri.org/insights/number-people-affected-floods-will-double-between-2010-and-2030
  • Lawrence, J. (2020). Implementing pre-emptive managed retreat: Constraints and novel insights. Current Climate Change Reports, 6, 66–80. https://doi.org/10.1007/s40641-020-00161-z
  • MGM. (2024a). İllere ait genel istatistik verileri. Meteoroloji Genel Müdürlüğü. https://mgm.gov.tr/veridegerlendirme/il-ve-ilceler-istatistik.aspx?m=ADANA
  • MGM. (2024b). Meteoroloji Genel Müdürlüğü Ortalama Yağış Verileri. Meteoroloji Genel Müdürlüğü. https://mgm.gov.tr/veridegerlendirme/yagis-raporu.aspx?b=m&ysclid=luqx8676wz40011872
  • MGM. (2024c). Meteorolojik kuraklık haritası, Şubat 2022-Şubat 2024. Meteoroloji Genel Müdürlüğü. https://www.mgm.gov.tr/veridegerlendirme/kuraklik-analizi.aspx
  • MGM. (2013). Yeni senaryolarla Türkiye için iklim değişikliği senaryoları. Meteoroloji Genel Müdürlüğü.
  • OECD. (2020). Incorporating resilience to sea-level rise in urban building codes. OECD. https://www.oecd.org/stories/ocean/incorporating-resilience-to-sea-level-rise-in-urban-building-codes-0808492b
  • OECD. (2018). Indicators of resilience cities. Regional development working papers 2018/02. https://dx.doi.org/10.1787/6f1f6065-en
  • OGM. (2024). Adana orman varlığı. Adana Orman Bölge Müdürlüğü. www.ogm.gov.tr
  • Sapkota, M., Arora, M., Malano, H., Moglia, M., Sharma, A., George, B., & Pamminger, F. (2015). An overview of hybrid water supply systems in the context of urban water management: Challenges and opportunities. Water, 7(1), 153–174. https://doi.org/10.3390/w7010153
  • Sharifi, A., & Yamagata, Y. (2016). Principles and criteria for assessing urban energy resilience: A literature review. Renewable and Sustainable Energy Reviews, 60, 1654–1677.
  • Singh, G., Johir, M. A. H., Kandasamy, J., Vigneswaran, S., Kus, B., & Naidu, R. (2012). Stormwater harvesting and stormwater reuse. In Encyclopedia of Sustainability Science and Technology (pp. 10095–10117). https://doi.org/10.1007/978-1-4419-0851-3_266
  • TDK. (2024). Türk Dil Kurumu Sözlüğü. 2024.
  • TÜİK. (2024a). Adrese dayalı nüfus kayıt sistemi. 6 Şubat 2024.
  • TÜİK. (2024b). Nüfus istatistikleri portalı. nip.tuik.gov.tr. Erişim adresi: https://nip.tuik.gov.tr
  • UK Met Office. (2021). One billion face heat-stress risk from 2°C rise. Met Office. https://www.metoffice.gov.uk/about-us/press-office/news/weather-and-climate/2021/2c-rise-to-put-one-in-eight-of-global-population-at-heat-stress-risk
  • UN. (2024). Population. https://www.un.org/en/global-issues/population
  • UN DESA. (2022). World population prospects 2022: Summary of results. United Nations publication. Sales No. E.22.XIII.3. New York.
  • UNDRR. (2021). GAR Special Report on Drought 2021. Geneva.
  • UN-Habitat. (2015). Local governments pocket guide to resilience. United Nations Human Settlements Programme, December 2015.
  • World Economic Forum. (2019). The global risks report 2019. In partnership with Marsh & McLennan Companies and Zurich Insurance Group. http://wef.ch/risks2019
  • Van Dongeren, A., Ciavola, P., Viavattene, C., De Kleermaeker, S., Martinez, G., Ferreira, O., Costa, C., & McCall, R. (2014). RISC-KIT: Resilience-increasing strategies for coasts – toolkit. In A. N. Green & J. A. G. Cooper (Eds.), Proceedings of the 13th International Coastal Symposium (Durban, South Africa), Journal of Coastal Research, Special Issue, No. 66.
  • Van Loon, A. F., & Van Lanen, H. A. J. (2013). Making the distinction between water scarcity and drought using an observation-modeling framework. Water Resources Research, 49(3), 1–20. https://doi.org/10.1002/wrcr.20147 Wells, K. (2023, October 19). Europe faces dynamic changes in risk landscape as €1bn losses surge: Munich Re, Reinsurance News.
  • WMO. (World Meteorological Organization). (2023). Drought. https://wmo.int/about-us/world-meteorological-day/wmd-2020/drought
  • WMO. (World Meteorological Organization). (2021). State of climate services. https://library.wmo.int/records/item/57630-2021-state-of-climate-services-water#.YV9AIkbMK3L
  • Yılmaz, E. (2015). Landsat görüntüleri ile Adana yüzey ısı adası. Coğrafi Bilimler Dergisi, CBD, 13(2), 115–138.
There are 50 citations in total.

Details

Primary Language Turkish
Subjects Environmental Geography, Environmental Politics
Journal Section Araştırma Makaleleri
Authors

Mehmet Akalın 0000-0002-5170-7503

Early Pub Date December 27, 2024
Publication Date December 30, 2024
Submission Date April 16, 2024
Acceptance Date November 5, 2024
Published in Issue Year 2024 Volume: 13 Issue: 2

Cite

APA Akalın, M. (2024). Adana İlinin İklim Direnci Kapasitesini Yükseltecek Uyum ve Azaltım Politikaları. Bitlis Eren Üniversitesi Sosyal Bilimler Dergisi, 13(2), 188-217. https://doi.org/10.47130/bitlissos.1469175
AMA Akalın M. Adana İlinin İklim Direnci Kapasitesini Yükseltecek Uyum ve Azaltım Politikaları. Bitlis Eren Üniversitesi Sosyal Bilimler Dergisi. December 2024;13(2):188-217. doi:10.47130/bitlissos.1469175
Chicago Akalın, Mehmet. “Adana İlinin İklim Direnci Kapasitesini Yükseltecek Uyum Ve Azaltım Politikaları”. Bitlis Eren Üniversitesi Sosyal Bilimler Dergisi 13, no. 2 (December 2024): 188-217. https://doi.org/10.47130/bitlissos.1469175.
EndNote Akalın M (December 1, 2024) Adana İlinin İklim Direnci Kapasitesini Yükseltecek Uyum ve Azaltım Politikaları. Bitlis Eren Üniversitesi Sosyal Bilimler Dergisi 13 2 188–217.
IEEE M. Akalın, “Adana İlinin İklim Direnci Kapasitesini Yükseltecek Uyum ve Azaltım Politikaları”, Bitlis Eren Üniversitesi Sosyal Bilimler Dergisi, vol. 13, no. 2, pp. 188–217, 2024, doi: 10.47130/bitlissos.1469175.
ISNAD Akalın, Mehmet. “Adana İlinin İklim Direnci Kapasitesini Yükseltecek Uyum Ve Azaltım Politikaları”. Bitlis Eren Üniversitesi Sosyal Bilimler Dergisi 13/2 (December 2024), 188-217. https://doi.org/10.47130/bitlissos.1469175.
JAMA Akalın M. Adana İlinin İklim Direnci Kapasitesini Yükseltecek Uyum ve Azaltım Politikaları. Bitlis Eren Üniversitesi Sosyal Bilimler Dergisi. 2024;13:188–217.
MLA Akalın, Mehmet. “Adana İlinin İklim Direnci Kapasitesini Yükseltecek Uyum Ve Azaltım Politikaları”. Bitlis Eren Üniversitesi Sosyal Bilimler Dergisi, vol. 13, no. 2, 2024, pp. 188-17, doi:10.47130/bitlissos.1469175.
Vancouver Akalın M. Adana İlinin İklim Direnci Kapasitesini Yükseltecek Uyum ve Azaltım Politikaları. Bitlis Eren Üniversitesi Sosyal Bilimler Dergisi. 2024;13(2):188-217.