1,357
Views
5
CrossRef citations to date
0
Altmetric
CIVIL & ENVIRONMENTAL ENGINEERING

Assessment of changes in climate extremes of temperature over Ethiopia

Article: 2178117 | Received 06 Sep 2022, Accepted 05 Feb 2023, Published online: 16 Feb 2023

References

  • Ahmedou, O. C. A., Yasuda, H., Wang, K., & Hattori, K. (2008). Characteristics of precipitation in Northern Mauritania and its links with sea surface temperature. 72, 2243–16. https://doi.org/10.1016/j.jaridenv.2008.07.011
  • Alexander, L., Zhang, X., Peterson, T., Caesar, J., Gleason, B., Klein Tank, A., Haylock, M., Collins, D., Trewin, B., & Rahimzadeh, F. (2006). Global observed changes in daily climate extremes of temperature and precipitation. Journal Of Geophysical Research-Atmospheres (1984–2012), 111(D5). https://doi.org/10.1029/2005JD006290
  • Aronica, G. T., & Bonaccorso, B. (2013). Climate change effects on hydropower potential in the Alcantara River Basin in Sicily (Italy). Earth Interactions, 17(19), 1–22. https://doi.org/10.1175/2012EI000508.1
  • Asfaw, A., Simane, B., Hassen, A., & Bantider, A. (2017 Elsevier Ltd). Variability and time series trend analysis of rainfall and temperature in Northcentral Ethiopia: A case study in Woleka Sub-Basin’. Weather and Climate Extremes, June, 1–13. https://doi.org/10.1016/j.wace.2017.12.002
  • Badjana, H. M., Renard, B., Helmschrot, J., Edjamé, K. S., Afouda, A., & Wala, K. (2017). Bayesian trend analysis in annual rainfall total, duration and maximum in the Kara River Basin (West Africa). Journal of Hydrology: Regional Studies, 13(August), 255–273. Elsevier. https://doi.org/10.1016/j.ejrh.2017.08.009
  • Behailu, S., Melesse, A. M., Bhat, M. G., & Mcclain, M. E. (2014). Catena assessment of water resources availability and demand in the Mara River Basin. Catena, 115, 104–114 Elsevier B.V. https://doi.org/10.1016/j.catena.2013.11.017
  • Bring, A., & Destouni, G. (2013). Hydro-climatic changes and their monitoring in the Arctic: Observation-model comparisons and prioritization options for monitoring development. Journal of Hydrology, 492, 273–280 Elsevier B.V. https://doi.org/10.1016/j.jhydrol.2013.04.003
  • Erfanian, M., Ansari, H., Alizadeh, A., & Benayan Aval, M. (2014). Assessment of climatic extreme events variations in Khorasan Razavi province. Iran Journal of Irrigation and Drainage, 4, 817–825.
  • Fathian, F., Ghadami, M., & Dehghan, Z. (2022). Observed and projected changes in temperature and precipitation extremes based on CORDEX data over Iran. Theoretical and Applied Climatology, 149(1–2), 569–592. https://doi.org/10.1007/s00704-022-04066-9
  • Gedefaw, M., Yan, D., Wang, H., Qin, T., Girma, A., Abiyu, A., & Batsuren, D. (2018). Innovative trend analysis of annual and seasonal rainfall variability in Amhara Regional State, Ethiopia. Atmosphere, 9(9), 326. https://doi.org/10.3390/atmos9090326
  • Girma, E., Tino, J., & Wayessa, G. (2016). Rainfall trend and variability analysis in Setema-Gatira Area of Jimma, Southwestern Ethiopia. African Journal of Agricultural Research, 11(32), 3037–3045. https://doi.org/10.5897/AJAR2015.10160
  • Gocic, M., & Trajkovic, S. (2013). Analysis of changes in meteorological variables using Mann-Kendall and Sen ’ s slope estimator statistical tests in Serbia. Global and Planetary Change, 100, 172–182 Elsevier B.V. https://doi.org/10.1016/j.gloplacha.2012.10.014
  • Gong, B. (2018). Variation of hydrothermal conditions under climate change in naqu prefecture, Tibet Plateau, China. International Journal of Environmental Research and Public Health, 15(10), 2271. https://doi.org/10.3390/ijerph15102271
  • IPCC. (2007). Climate change- the scientific basis. Intergovernmental Panel on Climate Change. Cambridge University Press, Cambridge.
  • IPCC. (2013). Climate change 2013: The physical science basis. In: Contribution of working group i to the fifth assessment report of the intergovernmental panel on climate change. Intergovern- mental Panel on Climate Change, Working Group I Contribution to the IPCC Fifth Assessment Report (AR5). Cambridge Univ Press, New York, 1535. https://doi.org/10.1029/2000JD000115.
  • Jabal, Z. K., Khayyun, T. S., & Alwan, I. A. (2022, June). Impact of climate change on crops productivity using MODIS-NDVI time series. Civil Engineering Journal, 8(6), 1136–1156. https://doi.org/10.28991/CEJ-2022-08-06-04
  • Kendall, M. G. (1975). Rank correlation Methods. Griffin, London, UK.
  • Kiktev, D., Sexton, D. M. H., Alexander, L., & Folland, C. K. (2003). Comparison of modeled and observed trends in indices of daily climate extremes. Journal of Climate, 16(22), 3560–3571. https://doi.org/10.1175/1520-04422003016<3560:COMAOT>2.0.CO;2
  • Klein Tank, A., Peterson, T., Quadir, D., Dorji, S., Zou, X., Tang, H., Santhosh, K., Joshi, U., Jaswal, A., & Kolli, R. (2006). Changes in daily temperature and precipitation extremes in central and south Asia. Journal Of Geophysical Research-Atmospheres (1984–2012), 111(D16). https://doi.org/10.1029/2005JD006316
  • Liu, W., Zhang, M., Wang, S., Wang, B., Li, F., & Che, Y. (2013). Changes in precipitation extremes over Shaanxi Province, northwestern China, during 1960–2011. Quaternary International, 313-314, 118–129. https://doi.org/10.1016/j.quaint.2013.06.033
  • Mann, H. B. (1945). Non-parametric tests against trend. Econometrica, 13(3), 245–259.
  • Mbungu, W., Ntegeka, V., Kahimba, F. C., Taye, M., & Willems, P. (2012). temporal and spatial variations in hydro-climatic extremes in the Lake Victoria Basin. Physics and Chemistry of the Earth, 50-52, 24–33 Elsevier Ltd. https://doi.org/10.1016/j.pce.2012.09.002
  • Mohan, S., Clarke, R. M., & Chadee, X. T. (2020). Variations in extreme temperature and precipitation for a Caribbean island: Barbados (1969–2017). Theoretical and Applied Climatology, 140(3–4), 1277–1290. https://doi.org/10.1007/s00704-020-03157-9
  • Nama, A. H., Abbas, A. S., & Maatooq, J. S. (2022, June). Field and satellite images-based investigation of rivers Morphological Aspects. Civil Engineering Journal, 8(7), 1339–1357. https://doi.org/10.28991/CEJ-2022-08-07-03
  • Pingale, S. M., Khare, D., Jat, M. K., & Adamowski, J. (2014). Spatial and temporal trends of mean and extreme rainfall and temperature for the 33 Urban Centers of the Arid and Semi-Arid State of Rajasthan, India. Atmospheric Research, 138, 73–90 Elsevier B.V. https://doi.org/10.1016/j.atmosres.2013.10.024
  • Rahimzadeh, F., Asgari, A., & Fattahi, E. (2009). Variability of extreme temperature and precipitation in Iran during recent decades. International Journal of Climatology, 29(3), 329–343. https://doi.org/10.1002/joc.1739
  • Randell, H., & Gray, C. (2016). Climate variability and educational attainment: Evidence from Rural Ethiopia. Global Environmental Change, 41, 111–123 Elsevier Ltd. https://doi.org/10.1016/j.gloenvcha.2016.09.006
  • Ren, G., Guan, Z., Shao, X., & Gong, D. (2011). Change in climatic extremes over Mainland China. Climate Research, 50(1–2), 105–111. https://doi.org/10.3354/cr01067
  • Saddique, N., Khaliq, A., & Bernhofer, C. (2020). Trends in temperature and precipitation extremes in historical (1961–1990) and projected (2061–2090) periods in a data scarce mountain basin, northern Pakistan. Stochastic Environmental Research and Risk Assessment, 34(10), 1441–1455. https://doi.org/10.1007/s00477-020-01829-6
  • Sawan, Z. M. 2017. Climatic variables: Evaporation, sunshine, relative humidity, soil and air temperature and its adverse effects on cotton production. Information Processing in Agriculture, China Agricultural University. https://doi.org/10.1016/j.inpa.2017.09.006
  • Seleshi, Y., & Zanke, U. (2004). Recent changes in rainfall and rainy days in Ethiopia. International Journal of Climatology, 24(8), 973–983. https://doi.org/10.1002/joc.1052
  • Shrestha, A. B., Bajracharya, S. R., Sharma, A. R., Duo, C., & Kulkarni, A. (2016). Observed trends and changes in daily temperature and precipitation extremes over the Koshi river basin 1975–2010. International Journal of Climatology, 2016. https://doi.org/10.1002/joc.4761
  • Sillmann, J., Kharin, V. V., Zhang, X., Zwiers, F. W., & Bronaugh, D. (2013). Climate extremes indices in the CMIP5 multimodel ensemble: Part 1. Model evaluation in the present climate. Journal of Geophysical Research: Atmospheres, 118(4), 1716–1733. https://doi.org/10.1002/jgrd.50203
  • Soltani, M., Laux, P., Kunstmann, H., Stan, K., Sohrabi, M. M., Molanejad, M., Sabziparvar, A. A., Ranjbar Saadatabadi, A., Ranjbar, F., Rousta, I., Zawar-Reza, P., Khoshakhlagh, F., Soltanzadeh, I., Babu, C. A., Azizi, G. H., & Martin, M. V. (2016). Assessment of climate variations in temperature and precipitation extreme events over Iran. Theoretical and Applied Climatology, 126(3–4), 775–795. https://doi.org/10.1007/s00704-015-1609-5
  • Subash, N., & Sikka, A. K. (2013). Trend analysis of rainfall and temperature and its relationship over India. no. 1974. https://doi.org/10.1007/s00704-013-1015-9
  • Sun, Q., Kong, D., Miao, C., Duan, Q., Yang, T., & Aizhong, Y. (2014). Variations in global temperature and precipitation for the period of 1948 to 2010. Environmental Monitoring and Assessment, 186(9), 5663–5679. https://doi.org/10.1007/s10661-014-3811-9
  • Sun, W., Mu, X., Song, X., Wu, D., Cheng, A., & Qiu, B. (2015). Changes in extreme temperature and precipitation events in the Loess Plateau (China) during 1960–2013 under global warming. https://doi.org/10.1016/j.atmosres.2015.09.001
  • Suwarno, I., Ma’arif, A., Raharja, N. M., Nurjanah, A., Ikhsan, J., & Mutiarin, D. (2021). IoT-based lava flood early warning system with rainfall intensity monitoring and disaster communication technology. Emerging Science Journal, 4, 154–166 Special Issue “IoT, IoV, and Blockchain”. https://doi.org/10.28991/esj-2021-SP1-011
  • Tekleab, S., Mohamed, Y., & Uhlenbrook, S. (2013). Hydro-climatic trends in the Abay/Upper Blue Nile Basin, Ethiopia. Physics and Chemistry of the Earth, 61–62, 32–42 Elsevier Ltd. https://doi.org/10.1016/j.pce.2013.04.017
  • Theobald, A., Mcgowan, H., & Speirs, J. (2016). Trends in synoptic circulation and precipitation in the Snowy Mountains Region, Australia, in the period 1958 – 2012. Atmospheric Research, 169, 434–448 Elsevier B.V. https://doi.org/10.1016/j.atmosres.2015.05.007
  • Vormoor, K., Lawrence, D., Schlichting, L., Wilson, D., & Kwok, W. (2016). Evidence for changes in the magnitude and frequency of observed rainfall vs. snowmelt driven floods in Norway. Journal Of Hydrology, 538, 33–48 Elsevier B.V. https://doi.org/10.1016/j.jhydrol.2016.03.066
  • Wagesho, N., Goel, N. K., & Jain, M. K. (2012). Investigation of non-stationarity in hydro-climatic variables at Rift Valley Lakes Basin of Ethiopia. Journal of Hydrology, 444–445, 113–133 Elsevier B.V. https://doi.org/10.1016/j.jhydrol.2012.04.011
  • Wang, H., Zhang, M., Zhu, H., Dang, X., Yang, Z., & Yin, L. (2012). Hydro-climatic trends in the last 50 years in the Lower Reach of the Shiyang River Basin, NW China. Catena, 95, 33–41 Elsevier B.V. https://doi.org/10.1016/j.catena.2012.03.003
  • Wen, X., Xiaoqing, W., & Gao, M. (2017). Spatiotemporal variability of temperature and precipitation in Gansu Province (Northwest China) during 1951 – 2015. Atmospheric Research, 197(November 2016), 132–149. Elsevier. https://doi.org/10.1016/j.atmosres.2017.07.001
  • Xu, X., Du, Y., Tang, J., & Wang, Y. (2011). Variations of temperature and precipitation extremes in recent two decades over China. Atmospheric Research, 101(1), 143–154. https://doi.org/10.1016/j.atmosres.2011.02.003
  • Yenehun, A., Walraevens, K., & Batelaan, O. (2017). Spatial and temporal variability of groundwater recharge in Geba Basin, Northern Ethiopia. Journal of African Earth Sciences, 134, 198–212— Elsevier B.V. https://doi.org/10.1016/j.jafrearsci.2017.06.006
  • You, Q., Kang, S., Aguilar, E., & Yan, Y. (2008). Changes in daily climate extremes in the eastern and central Tibetan Plateau during 1961– 2005. Journal of Geophysical Research, 113(D7). https://doi.org/10.1029/2007JD009389
  • Zarrin, A., Dadashi-Roudbari, A., & Hassani, S. (2022). Future changes in precipitation extremes over Iran: Insight from a CMIP6 bias corrected multi-model ensemble. Pure Applied Geophysics, 179(1), 441–464. https://doi.org/10.1007/s00024-021-02904-x
  • Zhang, Q., Jianfeng, L., Singh, V. P., & Xiao, M. (2013). Spatio-temporal relations between temperature and precipitation regimes: Implications for temperature-induced changes in the hydrological cycle. Global and Planetary Change, 111, 57–76 Elsevier B.V. https://doi.org/10.1016/j.gloplacha.2013.08.012
  • Zhao, J., Huang, Q., Chang, J., Liu, D., Huang, S., & Shi, X. (2015). Analysis of temporal and spatial trends of hydro-climatic variables in the Wei River Basin. Environmental Research, 139, 55–64 Elsevier. https://doi.org/10.1016/j.envres.2014.12.028