Derleme
BibTex RIS Kaynak Göster
Yıl 2024, Cilt: 8 Sayı: 2, 34 - 51

Öz

Kaynakça

  • [1] Intergovernmental Panel on Climate Change: IPCC (2018). Global Warming of 1.5°C. Retrieved from https://www.ipcc.ch/sr15/
  • [2] Cüce, H., & Uğur, O. (2021). Evaluation of Greenhouse Gas Emissions from Highway Transportation in Nevşehir Province in the Initial Period of Covid-19 Epidemic. Black Sea Journal of Science, 11(1), 118-134.
  • [3] Saha, A., & Nath, K. (2019). Renewable Energy Integration in Disaster Management: A Review. Renewable and Sustainable Energy Reviews, 104, 253-265.
  • [4] Sachs, J., Kroll, C., Lafortune, G., Fuller, G., & Woelm, F. (2022). Sustainable development report 2022. Cambridge University Press.
  • [5] United Nations Development Programme: UNDP (2017). Integrating Energy Efficiency into Disaster Risk Reduction.
  • [6] International Energy Agency: IEA (2020). Energy Efficiency 2020: Analysis and Outlooks to 2040.
  • [7] Bashir, M. F., Inglesi-Lotz, R., Razi, U., & Shahzad, L. (2024). Economic complexity, greenfield investments, and energy innovation: policy implications for sustainable development goals in newly industrialised economies. Environmental Science and Pollution Research, 31(24), 36013-36027.
  • [8] Rogelj, J., Popp, A., Calvin, K. V., Luderer, G., Emmerling, J., Gernaat, D., ... & Tavoni, M. (2018). Scenarios towards limiting global mean temperature increase below 1.5 C. Nature climate change, 8(4), 325-332.
  • [9] Qiu, L., Wang, X., & Wei, J. (2023). Energy security and energy management: The role of extreme natural events. Innovation and Green Development, 2(2), 100051.
  • [10] Ribeiro, D., Mackres, E., Baatz, B., Cluett, R., Jarrett, M., Kelly, M., & Vaidyanathan, S. (2015, October). Enhancing community resilience through energy efficiency. Washington, DC, USA: American Council for an Energy-Efficient Economy.
  • [11] Lee, C. C., Wang, C. W., Ho, S. J., & Wu, T. P. (2021). The impact of natural disaster on energy consumption: International evidence. Energy Economics, 97, 105021.
  • [12] Jacobson, M. Z., & Delucchi, M. A. (2011). Providing all global energy with wind, water, and solar power, Part II: Reliability, system and transmission costs, and policies. Renewable Energy, 39(1), 117-121.
  • [13] Sovacool, B. K., & Brown, M. A. (2010). Twelve metropolitan carbon footprints: A preliminary comparative global assessment. Renewable and Sustainable Energy Reviews, 14(1), 217-245.
  • [14] McCollum, D. L., Zhou, W., Bertram, C., De Boer, H. S., Bosetti, V., Busch, S., ... & Riahi, K. (2018). Energy investment needs for fulfilling the Paris Agreement and achieving the Sustainable Development Goals. Nature Energy, 3(7), 589-599.
  • [15] International Labour Organization: ILO (2019). World Employment and Social Outlook: Trends 2019. Retrieved from [https://www.ilo.org/sites/default/files]
  • [16] Halldórsson, Á., & Kovács, G. (2010). The sustainable agenda and energy efficiency: Logistics solutions and supply chains in times of climate change. International Journal of Physical Distribution & Logistics Management, 40(1/2), 5-13.
  • [17] Cüce, H. Climate Change-Related Natural Disasters: Environmental Effects and Sustainable Monitoring. International Journal of Environmental Trends (IJENT), 7(2), 113-125.
  • [18] Lee, C. K., & Kim, J. (2019). A review on the renewable energy for disaster management systems in Korea. Renewable and Sustainable Energy Reviews, 104, 33-41.
  • [19] Kibert, C. J., Thiele, L. P., & Powell, K. R. (2016). Sustainable Construction: Green Building Design and Delivery. John Wiley & Sons.
  • [20] Creutzig, F., Agoston, P., Goldschmidt, J. C., Luderer, G., Nemet, G., & Pietzcker, R. C. (2017). The underestimated potential of solar energy to mitigate climate change. Nature Energy, 2(9), 1-9.

Energy Management in Disasters: The Effective Role of Renewable Energy Sources

Yıl 2024, Cilt: 8 Sayı: 2, 34 - 51

Öz

Since the last decade, natural disasters caused by regular geological activities and global warming have continued to demonstrate the need to optimize existing energy resources and increase the renewable energy potential in national development by disrupting the security of supply of humanity. Inter-institutional cooperation, rational and sustainable energy policies are necessary to increase energy efficiency in disasters in the face of a changing climate. The current situation in energy use before, during and after the disaster should be monitored using improvement techniques. It is important to prepare action plans for the integration and installation of alternative and renewable energy sources required to meet the energy needs arising from disasters.

Kaynakça

  • [1] Intergovernmental Panel on Climate Change: IPCC (2018). Global Warming of 1.5°C. Retrieved from https://www.ipcc.ch/sr15/
  • [2] Cüce, H., & Uğur, O. (2021). Evaluation of Greenhouse Gas Emissions from Highway Transportation in Nevşehir Province in the Initial Period of Covid-19 Epidemic. Black Sea Journal of Science, 11(1), 118-134.
  • [3] Saha, A., & Nath, K. (2019). Renewable Energy Integration in Disaster Management: A Review. Renewable and Sustainable Energy Reviews, 104, 253-265.
  • [4] Sachs, J., Kroll, C., Lafortune, G., Fuller, G., & Woelm, F. (2022). Sustainable development report 2022. Cambridge University Press.
  • [5] United Nations Development Programme: UNDP (2017). Integrating Energy Efficiency into Disaster Risk Reduction.
  • [6] International Energy Agency: IEA (2020). Energy Efficiency 2020: Analysis and Outlooks to 2040.
  • [7] Bashir, M. F., Inglesi-Lotz, R., Razi, U., & Shahzad, L. (2024). Economic complexity, greenfield investments, and energy innovation: policy implications for sustainable development goals in newly industrialised economies. Environmental Science and Pollution Research, 31(24), 36013-36027.
  • [8] Rogelj, J., Popp, A., Calvin, K. V., Luderer, G., Emmerling, J., Gernaat, D., ... & Tavoni, M. (2018). Scenarios towards limiting global mean temperature increase below 1.5 C. Nature climate change, 8(4), 325-332.
  • [9] Qiu, L., Wang, X., & Wei, J. (2023). Energy security and energy management: The role of extreme natural events. Innovation and Green Development, 2(2), 100051.
  • [10] Ribeiro, D., Mackres, E., Baatz, B., Cluett, R., Jarrett, M., Kelly, M., & Vaidyanathan, S. (2015, October). Enhancing community resilience through energy efficiency. Washington, DC, USA: American Council for an Energy-Efficient Economy.
  • [11] Lee, C. C., Wang, C. W., Ho, S. J., & Wu, T. P. (2021). The impact of natural disaster on energy consumption: International evidence. Energy Economics, 97, 105021.
  • [12] Jacobson, M. Z., & Delucchi, M. A. (2011). Providing all global energy with wind, water, and solar power, Part II: Reliability, system and transmission costs, and policies. Renewable Energy, 39(1), 117-121.
  • [13] Sovacool, B. K., & Brown, M. A. (2010). Twelve metropolitan carbon footprints: A preliminary comparative global assessment. Renewable and Sustainable Energy Reviews, 14(1), 217-245.
  • [14] McCollum, D. L., Zhou, W., Bertram, C., De Boer, H. S., Bosetti, V., Busch, S., ... & Riahi, K. (2018). Energy investment needs for fulfilling the Paris Agreement and achieving the Sustainable Development Goals. Nature Energy, 3(7), 589-599.
  • [15] International Labour Organization: ILO (2019). World Employment and Social Outlook: Trends 2019. Retrieved from [https://www.ilo.org/sites/default/files]
  • [16] Halldórsson, Á., & Kovács, G. (2010). The sustainable agenda and energy efficiency: Logistics solutions and supply chains in times of climate change. International Journal of Physical Distribution & Logistics Management, 40(1/2), 5-13.
  • [17] Cüce, H. Climate Change-Related Natural Disasters: Environmental Effects and Sustainable Monitoring. International Journal of Environmental Trends (IJENT), 7(2), 113-125.
  • [18] Lee, C. K., & Kim, J. (2019). A review on the renewable energy for disaster management systems in Korea. Renewable and Sustainable Energy Reviews, 104, 33-41.
  • [19] Kibert, C. J., Thiele, L. P., & Powell, K. R. (2016). Sustainable Construction: Green Building Design and Delivery. John Wiley & Sons.
  • [20] Creutzig, F., Agoston, P., Goldschmidt, J. C., Luderer, G., Nemet, G., & Pietzcker, R. C. (2017). The underestimated potential of solar energy to mitigate climate change. Nature Energy, 2(9), 1-9.
Toplam 20 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Çevre Yönetimi (Diğer)
Bölüm Makaleler
Yazarlar

Dilek Şahin Cüce

Hüseyin Cüce 0000-0002-3590-681X

Erken Görünüm Tarihi 17 Aralık 2024
Yayımlanma Tarihi
Gönderilme Tarihi 17 Eylül 2024
Kabul Tarihi 17 Aralık 2024
Yayımlandığı Sayı Yıl 2024 Cilt: 8 Sayı: 2

Kaynak Göster

APA Şahin Cüce, D., & Cüce, H. (2024). Energy Management in Disasters: The Effective Role of Renewable Energy Sources. Uluslararası Çevresel Eğilimler Dergisi, 8(2), 34-51.
AMA Şahin Cüce D, Cüce H. Energy Management in Disasters: The Effective Role of Renewable Energy Sources. IJENT. Aralık 2024;8(2):34-51.
Chicago Şahin Cüce, Dilek, ve Hüseyin Cüce. “Energy Management in Disasters: The Effective Role of Renewable Energy Sources”. Uluslararası Çevresel Eğilimler Dergisi 8, sy. 2 (Aralık 2024): 34-51.
EndNote Şahin Cüce D, Cüce H (01 Aralık 2024) Energy Management in Disasters: The Effective Role of Renewable Energy Sources. Uluslararası Çevresel Eğilimler Dergisi 8 2 34–51.
IEEE D. Şahin Cüce ve H. Cüce, “Energy Management in Disasters: The Effective Role of Renewable Energy Sources”, IJENT, c. 8, sy. 2, ss. 34–51, 2024.
ISNAD Şahin Cüce, Dilek - Cüce, Hüseyin. “Energy Management in Disasters: The Effective Role of Renewable Energy Sources”. Uluslararası Çevresel Eğilimler Dergisi 8/2 (Aralık 2024), 34-51.
JAMA Şahin Cüce D, Cüce H. Energy Management in Disasters: The Effective Role of Renewable Energy Sources. IJENT. 2024;8:34–51.
MLA Şahin Cüce, Dilek ve Hüseyin Cüce. “Energy Management in Disasters: The Effective Role of Renewable Energy Sources”. Uluslararası Çevresel Eğilimler Dergisi, c. 8, sy. 2, 2024, ss. 34-51.
Vancouver Şahin Cüce D, Cüce H. Energy Management in Disasters: The Effective Role of Renewable Energy Sources. IJENT. 2024;8(2):34-51.

Environmental Engineering, Environmental Sustainability and Development, Industrial Waste Issues and Management, Global warming and Climate Change, Environmental Law, Environmental Developments and Legislation, Environmental Protection, Biotechnology and Environment, Fossil Fuels and Renewable Energy, Chemical Engineering, Civil Engineering, Geological Engineering, Mining Engineering, Agriculture Engineering, Biology, Chemistry, Physics,