Published May 30, 2023
| Version v1
Book chapter
Open
Assessing seasonal and annual groundwater level fluctuations in Erzincan for sustainable water management
- 1. Erzincan Binali Yıldırım Üniversitesi
- 2. Siirt Üniversitesi
- 3. Erzincan Binali Yildirim University
- 4. Abdelhafid Boussouf University Center
- 5. Mansoura University
Description
In this study, it has been determined that evaluation of seasonal and annual GWL changes research topics made with SQMK and ITA methods in the literature. This research contributes to the literature because it shows the effectiveness of these methods used simultaneously.
Files
Assessing seasonal and annual groundwater level fluctuations in Erzincan for sustainable water management.pdf
Files
(8.6 MB)
| Name | Size | Download all |
|---|---|---|
|
md5:8ca3979fe66ea047d82c83f6b5fcfe2a
|
8.6 MB | Preview Download |
Additional details
References
- Abbas, M. Arshad, M. & Shahid, M.A. (2023). Zoning of groundwater level using innovative trend analysis: Case study at Rechna Doab, Pakistan. Water Resources and Irrigation Management-WRIM, 12(1-3):64-80.
- Akkan, E. (1963). Erzincan ovasının iklim özellikleri. Ankara Üniversitesi Dil ve Tarih-Coğrafya Fakültesi Dergisi, 21(3-4):79-112.
- Al Adaileh, H. Al Qinna M. Barta K. Al-Karablieh E. Rakonczai J. & Alobeiaat A. (2019). A drought adaptation management system for groundwater resources based on combined drought index and vulnerability analysis. Earth Systems and Environment, 3:445-461.
- Atalay İ. Mortan K. (2003). Resimli ve Haritalı Türkiye Bölgesel Coğrafyası (Genişletilmiş 2,Baskı), İnkılap Yayınları, İstanbul.
- Berhail, S. & Katipoğlu, O.M. (2023). Spatiotemporal detection of abrupt change in trends of rainfall and dry and wet periods at different time scales: The case of the Medjerda basin in northeast Algeria. Acta Geophysica, 1-20.
- Carrard, N. Foster, T. & Willetts, J. (2019). Groundwater as a source of drinking water in southeast Asia and the Pacific: A multi-country review of current reliance and resource concerns. Water, 11(8): 1605.
- Cui, L. Wang L. Lai, Z. Tian, Q. Liu, W. Li, J. (2017). Innovative trend analysis of annual and seasonal air temperature and rainfall in the Yangtze River basin, China during 1960-2015. J. of Atmospheric and Solar-Terrestrial Physics. 164:48–59.
- Dabanlı, İ., Şen, Z., Yeleğen, M. Ö., Şişman, E., Selek, B., & Güçlü, Y. S. (2016). Trend assessment by the innovative-Şen method. Water resources management, 30:5193-5203.
- Durduran, S.S, Bozdağ, A. Okka, C.T , Alkan, T. (2021). Monitoring of Groundwater Level Change with Geographical Information System (GIS), The Case of Konya Altınekin Basin. Afyon Kocatepe Üniversitesi Fen Ve Mühendislik Bilimleri Dergisi. 21(3):620-631.
- Esteban-Parra, M.J. Rodrigo, FS, Castro-Dı´ez, Y. (1995). Temperature trends and change points in the northern Spanish plateau during the last 100 years. Int J Climatol 15(9):1031–1042
- Makokha, G.L. Shisanya, C.A. (2010). Trends in mean annual minimum and maximum near surface temperature in Nairobi city, Kenya. Adv Meteorol.
- Mathivha, F.I. Nkosi, M. & Mutoti, M.I. (2021). Evaluating the relationship between hydrological extremes and groundwater in Luvuvhu River Catchment, South Africa. Journal of Hydrology: Regional Studies, 37, 100897.
- Minea, I. Boicu, D. & Chelariu, O.E. (2020). Detection of groundwater levels trends using innovative trend analysis method in temperate climatic conditions. Water, 12(8):2129.
- Mosmann, V. Castro, A. Fraile, R. Dessens, J. Sánchez, J. (2004). Detection of statistically significant trends in the summer precipitation of mainland Spain. Atmos. Res. 70, 43–53.
- Nalley, D. Adamowski, J. Khalil, B. Ozga-Zielinski, B. (2013). Trend detection in surface air temperature in Ontario and Quebec, Canada during 1967–2006 using the discrete wavelet transforms. Atmos Res. 132:375–398
- Öztopal, A. & Şen, Z. (2017). Innovative trend methodology applications to precipitation records in Turkey. Water resources management, 31, 727-737.
- Rahman, M.A. Yunsheng, L. & Sultana, N. (2017). Analysis and prediction of rainfall trends over Bangladesh using Mann–Kendall, Spearman's rho tests and ARIMA model. Meteorol Atmos Phys 129:409–424.
- Sahoo, S. Swain, S. Goswami, A. Sharma, R. & Pateriya, B. (2021). Assessment of trends and multi-decadal changes in groundwater level in parts of the Malwa region, Punjab, India. Groundwater for Sustainable Development, 14:100644.
- Satish Kumar, K., & Venkata Rathnam, E. (2019). Analysis and prediction of groundwater level trends using four variations of Mann Kendall tests and ARIMA modelling. Journal of the Geological Society of India, 94, 281-289.
- SatishKumar, K. & Rathnam, E.V. (2022). Comparison of six trend detection methods and forecasting for monthly groundwater levels–a case study. ISH Journal of Hydraulic Engineering, 28(sup1), 412-421.
- Sen, Z. (2012). An innovative trend analysis methodology. J. Hydro Eng. 17 (9):1042–1046.
- Sen, Z. (2017). Innovative trend significance test and applications. Theor. Appl. Climatol. 127:939–947.
- Sneyers, R. (1990). On the statistical analysis of series of observations. World Meteorol Organ Tech Note 143:192
- Swain, S. Sahoo, S. Taloor, A.K. Mishra, S.K. Pandey, A. (2022). Exploring recent groundwater level changes using Innovative Trend Analysis (ITA) technique over three districts of Jharkhand, India. Groundwater for Sustainable Development. 18:100783.
- Tabari, H. Hosseinzadeh Talaee, P. Ezani, A. Shifteh Some'e, B. (2012). Shift changes and monotonic trends in autocorrelated temperature series over Iran. Theor. Appl. Climatol. 109:95–108.
- Xing, L. Huang, L. Chi, G. Yang, L. Li, C. & Hou, X. (2018). A dynamic study of a karst spring based on wavelet analysis and the Mann-Kendall Trend Test. Water, 10(6):698.