Derleme
BibTex RIS Kaynak Göster

İklim Değişikliğinin Etkileri ve Entegre Su Yönetiminin Önemi

Yıl 2025, Cilt: 11 Sayı: 3, 346 - 360, 30.09.2025
https://doi.org/10.58626/memba.1744277

Öz

Dünya ölçeğinde hava modellerindeki kalıcı değişiklikler, su kaynakları üzerinde önemli etkileri olan iklim değişikliğinin ayırt edici bir özelliğidir. Aşırı hava olayları, değişen yağış modelleri ve artan sıcaklıklar su kaynaklarının miktarı ve kalitesi için tehlike oluşturmaktadır. Bu bağlamda, kuraklıklar su tedarik ağlarını ciddi şekilde bozarak tarımsal üretimi azaltmakta ve ekosistemlerin sağlığını tehlikeye atmaktadır. Özellikle sanayi, tarım ve içme suyu mevcudiyeti üzerinde olumsuz etkileri olan kuraklıklar sonucunda su kaynakları azalmaktadır. İklim değişikliği ve kuraklık olaylarının artan sıklığı, yaratıcı ve sürdürülebilir su yönetimi stratejilerine duyulan ihtiyacın altını çizmektedir. Bu bağlamda, su kaynaklarının verimli ve sürdürülebilir kullanımı için temel bir çerçeve entegre su kaynakları yönetimi veya IWRM tarafından sunulmaktadır. IWRM'nin amacı, su kaynakları yönetimine multidisipliner bir yaklaşım uygulayarak biyolojik sistemi korurken çeşitli su kullanım ihtiyaçlarını dengelemektir. Kuraklık dönemlerindeki artış, iklim değişikliğinin su kaynaklarını nasıl etkilediğine bir örnek teşkil etmekte ve entegre su kaynakları yönetiminin (IWRM) bu süreçteki işlevi araştırılmaktadır. Çalışmanın bulgularına göre, IWRM teknikleri insanların ve ekosistemlerin daha dirençli hale gelmesine yardımcı olurken, kurak dönemlerde su kaynaklarının daha etkin kullanımını kolaylaştırabilir. Sonuç olarak, entegre su kaynakları yönetiminin iklim değişikliğiyle mücadelede ne kadar önemli olduğu vurgulanmaktadır.

Kaynakça

  • Adamopoulos, I. P., Syrou, N. F., & Adamopoulou, J. P. (2024). Greece’s current water and wastewater regulations and the risks they pose to environmental hygiene and public health, as recommended by the European Union Commission. Eur J Sustain Dev Res, 8(2). https://doi.org/10.29333/ejosdr/14301.
  • Akhtar, N., Geyer, B., Rockel, B., Sommer, P.S., & Schrum, C. (2021). Accelerating deployment of offshore wind energy alter wind climate and reduce future power generation potentials. Scientific Reports, 11, Article 11826. https://doi.org/10.1038/s41598-021-91283-3.
  • Aküzüm, T., Çakmak, B., & Gökalp, Z. (2010). Türkiye’de su kaynakları yönetiminin değerlendirilmesi. Tarım Bilimleri Araştırma Dergisi, (1), 67-74.
  • Asit K. Biswas (2008) Integrated Water Resources Management: Is It Working? International Journal of Water Resources Development, 24:1, 5-22, https://doi.org/10.1080/07900620701871718
  • Bănăduc, D., Curtean-Bănăduc, A., Barinova, S., Lozano, V. L., Afanasyev, S., Leite, T., ... & Cianfanglione, K. (2024). Multi-interacting natural and anthropogenic stressors on freshwater ecosystems: Their current status and future prospects for 21st century. Water, 16(11), 1483. https://doi.org/10.3390/w16111483.
  • Brown, R. R., Keath, N., & Wong, T. (2008). Transitioning to water sensitive cities: historical current and future transition states. In International conference on urban drainage 2008 (pp. CD-Rom). Iwa Publishing.
  • Cardona-Almeida, C., & Suárez, A. (2024). Integrated Water Resources Management in Colombia: A Historical Perspective. Ambiente & Sociedade, 27, e01187. https://doi.org/10.1590/1809-4422asoc0118r7vu27L1OA.
  • Demirel, M.2021.Entegre havza yönetimi: büyük menderes havzasında su kirliliği ile mücadele. Paradigma akademi.Doğal Afetler Ve Çevre Dergisi, 10(1), 211-223. https://doi.org/10.21324/dacd.1359958
  • Duda, A. M., & Hirji, R. F. (2025). Mainstreaming integrated approaches to sustain lake and reservoir basin benefits in a changing climate. Water Policy, wp2025202. https://doi.org/10.2166/wp.2025.202.
  • Dunstone, N. J., Smith, D. M., Atkinson, C., Colman, A., Folland, C., Hermanson, L., ... & Scaife, A. A. (2024). Will 2024 be the first year that global temperature exceeds 1.5° C?. Atmospheric Science Letters, 25(9), e1254. https://doi.org/10.1002/asl.1254.
  • Elmadani, M., Kasmai Kiptulon, E., Klára, S., & Orsolya, M. (2024). Systematic Review of the Impact of Natural Resource Management on Public Health Outcomes: Focus on Water Quality. Resources, 13(9), 122. https://doi.org/10.3390/resources13090122.
  • Espinosa, L. A., & Portela, M. M. (2025). Red-Hot Portugal: Mapping the Increasing Severity of Exceptional Maximum Temperature Events (1980–2024). Atmosphere, 16(5), 514. https://doi.org/10.3390/atmos16050514. Feng, Y., Cheng, J., & Deng, Y. (2024). Study on agricultural water resource utilization efficiency under the constraint of carbon emission and water pollution. Environmental Research, 253, 119142. https://doi.org/10.1016/j.envres.2024.119142.
  • GRID-Arendal. (2025). Trends in global water use by sector. Retrieved on July 6, 2025 from https://www.grida.no/resources/5626.
  • Han, X., Boota, M. W., Soomro, S. E. H., Ali, S., Soomro, S. G. H., Soomro, N. E. H., ... & Tayyab, M. (2024). Water strategies and management: current paths to sustainable water use. Applied Water Science, 14(7), 154. https://doi.org/10.1007/s13201-024-02214-2.
  • Harmancıoğlu, N. B., Gül, A., & Fıstıkoğlu, O. Entegre Su Kaynakları Yönetimi.
  • Jain, S. K., & Singh, V. P. (2023). Water resources systems planning and management. Elsevier.
  • Jain, S., Srivastava, A., Khadke, L., Chatterjee, U., & Elbeltagi, A. (2024). Global-scale water security and desertification management amidst climate change. Environmental Science and Pollution Research, 31(49), 58720-58744. https://doi.org/10.1007/s11356-024-34916-0.
  • Jam, K., Noroozi, A., & Mosavi, S. H. (2025). A holistic view of sustainability in water resources management in the European Union: challenges and threats. Environment, Development and Sustainability, 27(1), 2083-2116. https://doi.org/10.1007/s10668-023-03956-w.
  • Kılıç, S. (2011). KÜRESEL İKLİM DEĞİŞİKLİĞİ SÜRECİNDE SU YÖNETİMİ. İstanbul Üniversitesi Siyasal Bilgiler Fakültesi Dergisi (39), 161-186.
  • Koç, C. (2024). Su Kaynakları Yönetiminin Geleceği, Su Güvenliği ve Ortaya Çıkan Sorunlar. Doğal Afetler ve Çevre Dergisi, 10(1), 211-223. https://doi.org/10.21324/dacd.1359958.
  • Kolahi, M., Davary, K., & Omranian Khorasani, H. (2024). Integrated approach to water resource management in Mashhad Plain, Iran: actor analysis, cognitive mapping, and roadmap development. Scientific Reports, 14(1), 162. https://doi.org/10.1038/s41598-023-50697-x.
  • Li, Q., Ye, A., Wada, Y., Zhang, Y., & Zhou, J. (2024). Climate change leads to an expansion of global drought-sensitive area. Journal of Hydrology, 632, 130874. https://doi.org/10.1016/j.jhydrol.2024.130874.
  • Liu, J., Zhao, Y., Chen, X., & Akarsha, S. (2024). Ecosystem-based management approaches for watershed conservation and geosustainability. Heliyon, 10(9).
  • Manhas, N. S. (2024). India–Afghanistan Relations and the Geopolitics of Water Scarcity. In Emerging Dynamics of India-Afghanistan Relations: Regional Cooperation vs Global Geopolitics (pp. 223-240). Singapore: Springer Nature Singapore. https://doi.org/10.1007/978-981-97-4707-8_13.
  • Mayaux, P. L., & Fernandez, S. (2024). Blinded like a state: Water scarcity and the quantification dilemma in Morocco. Geoforum, 155, 104093. https://doi.org/10.1016/j.geoforum.2024.104093.
  • Nilüfer Yazıcı, N. 2019. İklim Değişikliği ve Havza Yönetimi. Proceedings on 2nd International Conference on Technology and Science, November 14-16.
  • O’Brien, A., Townsend, K., Hale, R., Sharley, D., & Pettigrove, V. (2016). How is ecosystem health defined and measured? A critical review of freshwater and estuarine studies. Ecological Indicators, 69, 722-729. https://doi.org/10.1016/j.ecolind.2016.05.004.
  • Özkan, N. (2024). Potential status and sustainability of water resources in Turkey. Cataloging-In-Publication Data, 395.
  • PH, G. (1996). Water resources. Encyclopedia of climate, weather, 817-823.
  • Quitzow, R., Bersalli, G., Eicke, L., Jahn, J., Lilliestam, J., Lira, F., Marian, A., Süsser, D., Thapar, S., Weko, S., Williams, S., & Xue, B. (2021). The COVID-19 crisis deepens the gulf between leaders and laggards in the global energy transition. Energy Research & Social Science, 74, Article 101981. https://doi.org/10.1016/j.erss.2021.101981.
  • Sharma, K., Rajan, S., & Nayak, S. K. (2024). Water pollution: Primary sources and associated human health hazards with special emphasis on rural areas. In Water resources management for rural development (pp. 3-14). Elsevier. https://doi.org/10.1016/B978-0-443-18778-0.00014-3.
  • Sharma, K., Rajan, S., & Nayak, S. K. (2024). Water pollution: Primary sources and associated human health hazards with special emphasis on rural areas. In Water resources management for rural development (pp. 3-14). Elsevier. https://doi.org/10.1016/B978-0-443-18778-0.00014-3.
  • Sönmez, F. K., Kömüscü, A. Ü., Erkan, A., & Turgu, E. (2005). An analysis of spatial and temporal dimension of drought vulnerability in Turkey using the standardized precipitation index. Natural hazards, 35(2), 243-264.
  • Şeker, D. Z., Tanık, A., & Öztürk, Đ. 2009. CBS’NĐN HAVZA YÖNETĐMĐ ÇALIŞMALARINDA UYGULANMASI.
  • Tanık, A. (2017). ‘’Yağmur suyu toplama, biriktirme ve geri kazanımı’’, Su Kaynakları ve Kentler Konferansı, 25-27 Ekim 2017, Kahramanmaraş, 3-10.
  • Tapas, M. R., Etheridge, R., Finlay, C. G., Peralta, A. L., Bell, N., Xu, Y., & Lakshmi, V. (2024). A methodological framework for assessing sea level rise impacts on nitrate loading in coastal agricultural watersheds using SWAT+: A case study of the Tar-Pamlico River basin, North Carolina, USA. Science of The Total Environment, 951, 175523. https://doi.org/10.1016/j.scitotenv.2024.175523.
  • Turkish State Meteorological Service. (2021). The Ministry of Environment, Urbanisation and Climate Change. Retrieved on July 5, 2025 from http://www.emcc.mgm.gov.tr/files/State_of_the_Climate_in_Turkey_in_2022.pdf
  • Türkeş, M. (2012). Türkiye’de gözlenen ve öngörülen iklim değişikliği, kuraklık ve çölleşme. Ankara Üniversitesi Çevrebilimleri Dergisi, 4(2), 1-32. https://doi.org/10.1501/Csaum_0000000063.
  • Türkeş, M., & Yurtseven, N. (2025). Observed and projected geographical and temporal changes in the Köppen-Geiger climate types in Türkiye. Theoretical and Applied Climatology, 156(3), 1-21. https://doi.org/10.1007/s00704-024-05346-2.
  • Ugwu, C. N., Ugwu, O. P. C., Alum, E. U., Eze, V. H. U., Basajja, M., Ugwu, J. N., ... & Uti, D. E. (2025). Sustainable development goals (SDGs) and resilient healthcare systems: Addressing medicine and public health challenges in conflict zones. Medicine, 104(7), e41535. https://journals.lww.com/md-journal/fulltext/2025/02140/sustainable_development_goals__sdgs__and_resilient.8.aspx?context=latestarticles#:~:text=DOI%3A%2010.1097/MD.0000000000041535.
  • Varma, V. C., Rathinam, R., Suresh, V., Naveen, S., Satishkumar, P., Abdulrahman, I. S., ... & Kumar, J. A. (2024). Urban waste water management paradigm evolution: Decentralization, resource recovery, and water reclamation and reuse. Environmental Quality Management, 33(4), 523-540. https://doi.org/10.1002/tqem.22109.
  • Williamson, R. (2025). Dry spells, drought, and environmental crisis: The drought feature in Australian Women’s Weekly Magazine, 1939–2019. Environmental Communication, 19(2), 259-272. https://doi.org/10.1080/17524032.2024.2382472.
  • WMO. 2023. Climate change indicators reached record levels in 2023: WMO. Retrieved on July 10, 2025 from https://wmo.int/news/media-centre/climate-change-indicators-reached-record-levels-2023-wmo. World resources. (2001). People and ecosystems. Retrieved on July 16, 2025 from The Greatest Water Consumers | GRID-Arendal.

Climate Change Impacts and the Importance of Integrated Water Management

Yıl 2025, Cilt: 11 Sayı: 3, 346 - 360, 30.09.2025
https://doi.org/10.58626/memba.1744277

Öz

Persistent changes in weather patterns on a worldwide scale are a hallmark of climate change, which has significant effects on water supplies. Extreme weather events, altered precipitation patterns, and rising temperatures pose a hazard to the quantity and quality of water supplies. In this regard, droughts seriously disturb water supply networks, which lowers agricultural output and jeopardizes the health of ecosystems. Water resources are reduced as a result of droughts, which have an especially negative effect on industry, agriculture, and the availability of drinking water. Climate change and the growing frequency of drought occurrences underscore the need for creative and sustainable water management strategies. In this regard, an essential framework for the efficient and sustainable use of water resources is offered by integrated water resources management, or IWRM. The goal of IWRM is to balance various water usage needs while preserving the biological system by implementing a multidisciplinary approach to water resources management. The rise in drought episodes serves as an example of how climate change is affecting water resources, and the function of integrated water resources management (IWRM) in this process is explored. According to the study's findings, IWRM techniques can help people and ecosystems become more resilient while facilitating more effective use of water resources during dry spells. As a result, it is stressed how crucial integrated water resources management is to combating climate change.

Etik Beyan

no harm was done to any living creature during the work.

Teşekkür

The authors would like to thank the editors and reviewers for their constructive suggestions during the review process.

Kaynakça

  • Adamopoulos, I. P., Syrou, N. F., & Adamopoulou, J. P. (2024). Greece’s current water and wastewater regulations and the risks they pose to environmental hygiene and public health, as recommended by the European Union Commission. Eur J Sustain Dev Res, 8(2). https://doi.org/10.29333/ejosdr/14301.
  • Akhtar, N., Geyer, B., Rockel, B., Sommer, P.S., & Schrum, C. (2021). Accelerating deployment of offshore wind energy alter wind climate and reduce future power generation potentials. Scientific Reports, 11, Article 11826. https://doi.org/10.1038/s41598-021-91283-3.
  • Aküzüm, T., Çakmak, B., & Gökalp, Z. (2010). Türkiye’de su kaynakları yönetiminin değerlendirilmesi. Tarım Bilimleri Araştırma Dergisi, (1), 67-74.
  • Asit K. Biswas (2008) Integrated Water Resources Management: Is It Working? International Journal of Water Resources Development, 24:1, 5-22, https://doi.org/10.1080/07900620701871718
  • Bănăduc, D., Curtean-Bănăduc, A., Barinova, S., Lozano, V. L., Afanasyev, S., Leite, T., ... & Cianfanglione, K. (2024). Multi-interacting natural and anthropogenic stressors on freshwater ecosystems: Their current status and future prospects for 21st century. Water, 16(11), 1483. https://doi.org/10.3390/w16111483.
  • Brown, R. R., Keath, N., & Wong, T. (2008). Transitioning to water sensitive cities: historical current and future transition states. In International conference on urban drainage 2008 (pp. CD-Rom). Iwa Publishing.
  • Cardona-Almeida, C., & Suárez, A. (2024). Integrated Water Resources Management in Colombia: A Historical Perspective. Ambiente & Sociedade, 27, e01187. https://doi.org/10.1590/1809-4422asoc0118r7vu27L1OA.
  • Demirel, M.2021.Entegre havza yönetimi: büyük menderes havzasında su kirliliği ile mücadele. Paradigma akademi.Doğal Afetler Ve Çevre Dergisi, 10(1), 211-223. https://doi.org/10.21324/dacd.1359958
  • Duda, A. M., & Hirji, R. F. (2025). Mainstreaming integrated approaches to sustain lake and reservoir basin benefits in a changing climate. Water Policy, wp2025202. https://doi.org/10.2166/wp.2025.202.
  • Dunstone, N. J., Smith, D. M., Atkinson, C., Colman, A., Folland, C., Hermanson, L., ... & Scaife, A. A. (2024). Will 2024 be the first year that global temperature exceeds 1.5° C?. Atmospheric Science Letters, 25(9), e1254. https://doi.org/10.1002/asl.1254.
  • Elmadani, M., Kasmai Kiptulon, E., Klára, S., & Orsolya, M. (2024). Systematic Review of the Impact of Natural Resource Management on Public Health Outcomes: Focus on Water Quality. Resources, 13(9), 122. https://doi.org/10.3390/resources13090122.
  • Espinosa, L. A., & Portela, M. M. (2025). Red-Hot Portugal: Mapping the Increasing Severity of Exceptional Maximum Temperature Events (1980–2024). Atmosphere, 16(5), 514. https://doi.org/10.3390/atmos16050514. Feng, Y., Cheng, J., & Deng, Y. (2024). Study on agricultural water resource utilization efficiency under the constraint of carbon emission and water pollution. Environmental Research, 253, 119142. https://doi.org/10.1016/j.envres.2024.119142.
  • GRID-Arendal. (2025). Trends in global water use by sector. Retrieved on July 6, 2025 from https://www.grida.no/resources/5626.
  • Han, X., Boota, M. W., Soomro, S. E. H., Ali, S., Soomro, S. G. H., Soomro, N. E. H., ... & Tayyab, M. (2024). Water strategies and management: current paths to sustainable water use. Applied Water Science, 14(7), 154. https://doi.org/10.1007/s13201-024-02214-2.
  • Harmancıoğlu, N. B., Gül, A., & Fıstıkoğlu, O. Entegre Su Kaynakları Yönetimi.
  • Jain, S. K., & Singh, V. P. (2023). Water resources systems planning and management. Elsevier.
  • Jain, S., Srivastava, A., Khadke, L., Chatterjee, U., & Elbeltagi, A. (2024). Global-scale water security and desertification management amidst climate change. Environmental Science and Pollution Research, 31(49), 58720-58744. https://doi.org/10.1007/s11356-024-34916-0.
  • Jam, K., Noroozi, A., & Mosavi, S. H. (2025). A holistic view of sustainability in water resources management in the European Union: challenges and threats. Environment, Development and Sustainability, 27(1), 2083-2116. https://doi.org/10.1007/s10668-023-03956-w.
  • Kılıç, S. (2011). KÜRESEL İKLİM DEĞİŞİKLİĞİ SÜRECİNDE SU YÖNETİMİ. İstanbul Üniversitesi Siyasal Bilgiler Fakültesi Dergisi (39), 161-186.
  • Koç, C. (2024). Su Kaynakları Yönetiminin Geleceği, Su Güvenliği ve Ortaya Çıkan Sorunlar. Doğal Afetler ve Çevre Dergisi, 10(1), 211-223. https://doi.org/10.21324/dacd.1359958.
  • Kolahi, M., Davary, K., & Omranian Khorasani, H. (2024). Integrated approach to water resource management in Mashhad Plain, Iran: actor analysis, cognitive mapping, and roadmap development. Scientific Reports, 14(1), 162. https://doi.org/10.1038/s41598-023-50697-x.
  • Li, Q., Ye, A., Wada, Y., Zhang, Y., & Zhou, J. (2024). Climate change leads to an expansion of global drought-sensitive area. Journal of Hydrology, 632, 130874. https://doi.org/10.1016/j.jhydrol.2024.130874.
  • Liu, J., Zhao, Y., Chen, X., & Akarsha, S. (2024). Ecosystem-based management approaches for watershed conservation and geosustainability. Heliyon, 10(9).
  • Manhas, N. S. (2024). India–Afghanistan Relations and the Geopolitics of Water Scarcity. In Emerging Dynamics of India-Afghanistan Relations: Regional Cooperation vs Global Geopolitics (pp. 223-240). Singapore: Springer Nature Singapore. https://doi.org/10.1007/978-981-97-4707-8_13.
  • Mayaux, P. L., & Fernandez, S. (2024). Blinded like a state: Water scarcity and the quantification dilemma in Morocco. Geoforum, 155, 104093. https://doi.org/10.1016/j.geoforum.2024.104093.
  • Nilüfer Yazıcı, N. 2019. İklim Değişikliği ve Havza Yönetimi. Proceedings on 2nd International Conference on Technology and Science, November 14-16.
  • O’Brien, A., Townsend, K., Hale, R., Sharley, D., & Pettigrove, V. (2016). How is ecosystem health defined and measured? A critical review of freshwater and estuarine studies. Ecological Indicators, 69, 722-729. https://doi.org/10.1016/j.ecolind.2016.05.004.
  • Özkan, N. (2024). Potential status and sustainability of water resources in Turkey. Cataloging-In-Publication Data, 395.
  • PH, G. (1996). Water resources. Encyclopedia of climate, weather, 817-823.
  • Quitzow, R., Bersalli, G., Eicke, L., Jahn, J., Lilliestam, J., Lira, F., Marian, A., Süsser, D., Thapar, S., Weko, S., Williams, S., & Xue, B. (2021). The COVID-19 crisis deepens the gulf between leaders and laggards in the global energy transition. Energy Research & Social Science, 74, Article 101981. https://doi.org/10.1016/j.erss.2021.101981.
  • Sharma, K., Rajan, S., & Nayak, S. K. (2024). Water pollution: Primary sources and associated human health hazards with special emphasis on rural areas. In Water resources management for rural development (pp. 3-14). Elsevier. https://doi.org/10.1016/B978-0-443-18778-0.00014-3.
  • Sharma, K., Rajan, S., & Nayak, S. K. (2024). Water pollution: Primary sources and associated human health hazards with special emphasis on rural areas. In Water resources management for rural development (pp. 3-14). Elsevier. https://doi.org/10.1016/B978-0-443-18778-0.00014-3.
  • Sönmez, F. K., Kömüscü, A. Ü., Erkan, A., & Turgu, E. (2005). An analysis of spatial and temporal dimension of drought vulnerability in Turkey using the standardized precipitation index. Natural hazards, 35(2), 243-264.
  • Şeker, D. Z., Tanık, A., & Öztürk, Đ. 2009. CBS’NĐN HAVZA YÖNETĐMĐ ÇALIŞMALARINDA UYGULANMASI.
  • Tanık, A. (2017). ‘’Yağmur suyu toplama, biriktirme ve geri kazanımı’’, Su Kaynakları ve Kentler Konferansı, 25-27 Ekim 2017, Kahramanmaraş, 3-10.
  • Tapas, M. R., Etheridge, R., Finlay, C. G., Peralta, A. L., Bell, N., Xu, Y., & Lakshmi, V. (2024). A methodological framework for assessing sea level rise impacts on nitrate loading in coastal agricultural watersheds using SWAT+: A case study of the Tar-Pamlico River basin, North Carolina, USA. Science of The Total Environment, 951, 175523. https://doi.org/10.1016/j.scitotenv.2024.175523.
  • Turkish State Meteorological Service. (2021). The Ministry of Environment, Urbanisation and Climate Change. Retrieved on July 5, 2025 from http://www.emcc.mgm.gov.tr/files/State_of_the_Climate_in_Turkey_in_2022.pdf
  • Türkeş, M. (2012). Türkiye’de gözlenen ve öngörülen iklim değişikliği, kuraklık ve çölleşme. Ankara Üniversitesi Çevrebilimleri Dergisi, 4(2), 1-32. https://doi.org/10.1501/Csaum_0000000063.
  • Türkeş, M., & Yurtseven, N. (2025). Observed and projected geographical and temporal changes in the Köppen-Geiger climate types in Türkiye. Theoretical and Applied Climatology, 156(3), 1-21. https://doi.org/10.1007/s00704-024-05346-2.
  • Ugwu, C. N., Ugwu, O. P. C., Alum, E. U., Eze, V. H. U., Basajja, M., Ugwu, J. N., ... & Uti, D. E. (2025). Sustainable development goals (SDGs) and resilient healthcare systems: Addressing medicine and public health challenges in conflict zones. Medicine, 104(7), e41535. https://journals.lww.com/md-journal/fulltext/2025/02140/sustainable_development_goals__sdgs__and_resilient.8.aspx?context=latestarticles#:~:text=DOI%3A%2010.1097/MD.0000000000041535.
  • Varma, V. C., Rathinam, R., Suresh, V., Naveen, S., Satishkumar, P., Abdulrahman, I. S., ... & Kumar, J. A. (2024). Urban waste water management paradigm evolution: Decentralization, resource recovery, and water reclamation and reuse. Environmental Quality Management, 33(4), 523-540. https://doi.org/10.1002/tqem.22109.
  • Williamson, R. (2025). Dry spells, drought, and environmental crisis: The drought feature in Australian Women’s Weekly Magazine, 1939–2019. Environmental Communication, 19(2), 259-272. https://doi.org/10.1080/17524032.2024.2382472.
  • WMO. 2023. Climate change indicators reached record levels in 2023: WMO. Retrieved on July 10, 2025 from https://wmo.int/news/media-centre/climate-change-indicators-reached-record-levels-2023-wmo. World resources. (2001). People and ecosystems. Retrieved on July 16, 2025 from The Greatest Water Consumers | GRID-Arendal.
Toplam 43 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Hidrobiyoloji
Bölüm Araştırma Makaleleri
Yazarlar

Ertan Karahanlı 0000-0002-3202-271X

Cengiz Mutlu 0000-0002-9741-4167

Yayımlanma Tarihi 30 Eylül 2025
Gönderilme Tarihi 16 Temmuz 2025
Kabul Tarihi 22 Eylül 2025
Yayımlandığı Sayı Yıl 2025 Cilt: 11 Sayı: 3

Kaynak Göster

APA Karahanlı, E., & Mutlu, C. (2025). Climate Change Impacts and the Importance of Integrated Water Management. MEMBA Su Bilimleri Dergisi, 11(3), 346-360. https://doi.org/10.58626/memba.1744277
AMA Karahanlı E, Mutlu C. Climate Change Impacts and the Importance of Integrated Water Management. MEMBA Su Bilimleri Dergisi. Eylül 2025;11(3):346-360. doi:10.58626/memba.1744277
Chicago Karahanlı, Ertan, ve Cengiz Mutlu. “Climate Change Impacts and the Importance of Integrated Water Management”. MEMBA Su Bilimleri Dergisi 11, sy. 3 (Eylül 2025): 346-60. https://doi.org/10.58626/memba.1744277.
EndNote Karahanlı E, Mutlu C (01 Eylül 2025) Climate Change Impacts and the Importance of Integrated Water Management. MEMBA Su Bilimleri Dergisi 11 3 346–360.
IEEE E. Karahanlı ve C. Mutlu, “Climate Change Impacts and the Importance of Integrated Water Management”, MEMBA Su Bilimleri Dergisi, c. 11, sy. 3, ss. 346–360, 2025, doi: 10.58626/memba.1744277.
ISNAD Karahanlı, Ertan - Mutlu, Cengiz. “Climate Change Impacts and the Importance of Integrated Water Management”. MEMBA Su Bilimleri Dergisi 11/3 (Eylül2025), 346-360. https://doi.org/10.58626/memba.1744277.
JAMA Karahanlı E, Mutlu C. Climate Change Impacts and the Importance of Integrated Water Management. MEMBA Su Bilimleri Dergisi. 2025;11:346–360.
MLA Karahanlı, Ertan ve Cengiz Mutlu. “Climate Change Impacts and the Importance of Integrated Water Management”. MEMBA Su Bilimleri Dergisi, c. 11, sy. 3, 2025, ss. 346-60, doi:10.58626/memba.1744277.
Vancouver Karahanlı E, Mutlu C. Climate Change Impacts and the Importance of Integrated Water Management. MEMBA Su Bilimleri Dergisi. 2025;11(3):346-60.

Menba Kastamonu Üniversitesi Su Ürünleri Fakültesi Dergisi olarak 2013'te kurulan dergimiz,
MEMBA Su Bilimleri Dergisi olarak yayın hayatına devam etmektedir.
-----------
MEMBA Su Bilimleri Dergisi, Kastamonu Üniversitesi tarafından yayımlanan, uluslararası, hakemli ve açık erişimli bilimsel bir dergidir. Dergi, sucul bilimler ve su kaynaklarına ilişkin temel ve uygulamalı bilimsel araştırmaların yayımlanmasını teşvik etmeyi, disiplinler arası bilimsel iletişimi güçlendirmeyi ve bu alandaki bilgi birikimini artırmayı amaçlamaktadır. Dergi yılda dört sayı olarak( Mart, Haziran, Eylül, Aralık aylarında) Türkçe ve İngilizce orjinal makaleler, kısa notlar, teknik notlar, raporlar ve derlemelere yer verir.

MEMBA Su Bilimleri Dergisi
TRDizin, SOBIAD, ASCI, CAB Direct, Google Scholar, Paperity, Asosindex, Academic Journal Index, CNKI Scholar
dizinlerinde taranmaktadır.
----------
Dergimize makale yükleme sırasında intihal benzerlik raporu yüklemek zorunlu ve bu raporun intihal benzerlik oranının % 30'un altında olması gerekmektedir. Bu raporu yazarlar makale yükleme sırasında göndermelidir.
Dergimize yüklenen Türkçe ve İngilizce makalelerde Türkçe ve İngilizce özetlerin bulunması zorunludur.