References
- E. Wadid, Drought Vulnerability in the Arab Region, Case
Study – Drought in Syria, Ten Years of Scarce Water (2000-2010),
The Arab Center for the Studies of Arid Zones and Dry Lands,
Syria, 2011.
- A.K. Biswas, Integrated water resources management: a
reassessment, Water Int., 29 (2004) 248–256.
- A.K. Biswas, Integrated water resources management: is it
working?, Int. J. Water Resour. Dev., 24 (2008) 5–22.
- C. Mounira, A. Seddini, S. Benameur, Relieving the water
shortage crisis of Algeria by reusing treated wastewater
lagoons, Desal. Wat. Treat., 57 (2016) 15250–15262.
- H.H.G. Savenije, P. Van der Zaag, Integrated water resources
management: concepts and issues, Phys. Chem. Earth, Parts
A/B/C, 33 (2008) 290–297.
- E. Hatzigiannakis, A. Filintas, A. Ilias, A. Panagopoulos, G.
Arampatzis, I. Hatzispiroglou, Hydrological and rating curve
modelling of Pinios River water flows in Central Greece, for
environmental and agricultural water resources management,
Desal. Wat. Treat., 57 (2016) 11639–11659.
- E. Moussoulis, I. Zacharias, N.P. Nikolaidis, Combined
hydrological, rainfall–runoff, hydraulic and sediment transport
modeling in Upper Acheloos River catchment, Desal. Wat.
Treat., 57 (2016) 11540–11549.
- P. Stålnacke, G.D. Gooch, Integrated water resources
management, Irrig. Drain. Syst., 24 (2010) 155–159.
- R.A. Mcdonnell, Challenges for integrated water resources
management: how do we provide the knowledge to support
truly integrated thinking?, Int. J. Water Resour. Dev., 24 (2008)
131–143.
- J. Gupta, P. van der Zaag, Interbasin water transfers and
integrated water resources management: where engineering,
science and politics interlock, Phys. Chem. Earth, Parts A/B/C,
33 (2008) 28–40.
- A. Lamei, P. van der Zaag, E. von Münch, Water resources
management to satisfy high water demand in the arid Sharm El
Sheikh, the Red Sea, Egypt, Desal. Wat. Treat., 1 (2009) 299–306.
- N. Endo, J. Matsumoto, T. Lwin, Trends in precipitation
extremes over Southeast Asia, SOLA, 5 (2009) 168–171.
- M. Almazroui, N.M. Islam, P.D. Jones, H. Athar, A.M. Rahman,
Recent climate change in the Arabian Peninsula: seasonal
rainfall and temperature climatology of Saudi Arabia for 1979–
2009, Atmos. Res., 111 (2012) 29–45.
- M. Almazroui, Calibration of TRMM rainfall climatology over
Saudi Arabia during 1998–2009, Atmos. Res., 99 (2011) 400–414.
- R. Ragab, C. Prudhomme, Climate change and water resources
management in arid and semi-arid regions: prospective and
challenges for the 21st century, Biosyst. Eng., 81 (2002) 3–34.
- R. Modarres, V.P.R. Silva, Rainfall trends in arid and semi-arid
regions of Iran, J. Arid Environ., 70 (2007) 344–355.
- H. Tabari, P.H. Talaee, Temporal variability of precipitation over
Iran: 1966-2005, J. Hydrol., 396 (2011) 313–320.
- I. Ahmad, D. Tang, T.F. Wang, M. Wang, B. Wagan, Precipitation
trends over time using Mann-Kendall and Spearman’s rho
tests in Swat River basin, Pakistan, Adv. Meteorol., 2015 (2015)
1–15.
- G. Lee, F. Othman, S. Ibrahim, M. Jang, Determination of
the forecasting-model parameters by statistical analysis for
development of algae warning system, Desal. Wat. Treat., 57
(2016) 26773–26782.
- L.V. Melo, M.D. de Oliveira, M. Libânio, S.C. Oliveira,
Applicability of statistical tools for evaluation of water
treatment plants, Desal. Wat. Treat., 57 (2016) 14024–14033.
- A. Sentas, A. Psilovikos, T. Psilovikos, N. Matzafleri, Comparison
of the performance of stochastic models in forecasting daily
dissolved oxygen data in dam-Lake Thesaurus, Desal. Wat.
Treat., 57 (2016) 11660–11674.
- M. Ghodbane, A. Boudoukha, L. Benaabidate, Hydrochemical
and statistical characterization of groundwater in the Chemora
area, Northeastern Algeria, Desal. Wat. Treat., 57 (2016)
14858–14868.
- A. Sfikas, P. Angelidis, D. Petridis, A statistical approach for
identification of potential pollution incidents due to lignite
mining activity in a surface water stream, Desal. Wat. Treat., 57
(2016) 18606–18618.
- Nations Online, One World, The Nations Online Project:
Get In Touch with the World, 2016. Available at: http://www.nationsonline.org/oneworld/map/syria-map.htm
- T.A. Buishand, Some methods for testing the homogeneity of
rainfall records, J. Hydrol., 58 (1982) 11–27.
- M. Zeleňáková, I. Alkhalaf, P. Purcz, P. Blišťan, M.M. Portela,
Evaluation of Rainfall Time Series by Statistical Methods,
International Conference on Protection and Restoration of the
Environment, Thessaloniki, Grafima Publications, Greece, 2016,
pp. 508–514.
- D.H. Burn, M.A. Hag Elnur, Detection of hydrologic trends and
variability, J. Hydrol., 255 (2002) 107–122.
- J.R. Johnes, J.S. Schwartz, K.N. Ellis, J.M. Hathaway, C.M. Jawdy,
Temporal variability of precipitation in the Upper Tennessee
Valley, J. Hydrol.: Reg. Stud., 3 (2015) 125–138.
- J.R. Lanzante, Resistant, robust and non-parametric techniques
for the analysis of climate data: theory and examples, including
applications to historical radiosonde station data, Int. J.
Climatol., 16 (1996) 1197–1226.
- D.P. Lettenmaier, E.F. Wood, J.R. Wallis, Hydro-climatological
trends in the continental United States, 1948–88, J. Clim., 7
(1994) 586–607.
- T. Partal, E. Kahya, Trend analysis in Turkish precipitation data,
Hydrol. Process., 20 (2006) 2011–2026.
- A. Sarkar, R.D. Singh, N. Sharma, Climate Variability and
Trends in Part of Brahmaputra River Basin, India Water Week
2012 – Water, Energy and Food Security: Call for Solutions,
New Delhi, 2012.
- M. Sayemuzzaman, M.K. Jha, Seasonal and annual precipitation
time series trend analysis in North Carolina, United States,
Atmos. Res., 137 (2014) 183–194.
- Q. Zhang, C. Liu, C.Y. Xu, Y. Xu, T. Jiang, Observed trends of
annual maximum water level and streamflow during past 130
years in the Yangtze River basin, China, J. Hydrol., 324 (2006)
255–265.
- H.B. Mann, Non-parametric tests against trend, Econometrica,
13 (1945) 245–259.
- M.G. Kendall, Rank Correlation Measures, Charles Griffin,
London, 1975.
- B. Önöz, M. Bayazit, The power of statistical tests for trend
detection, Turk. J. Eng. Environ. Sci., 27 (2003) 247–251.
- H. Theil, A rank-invariant method of linear and polynomial
regression analysis, Netherlands Academy of van
Wetenschappen, Series A, 53 (1950) 386–392.
- P.K. Sen, Estimates of the regression coefficient based on
Kendall’s tau, J. Am. Stat. Assoc., 63 (1968) 1379–1389.
- Intergovernmental Panel for Climatic Change (IPCC) Working
Group II: Impacts, Adaptation and Vulnerability, Extreme High
Temperature and Precipitation Events. Available at: http://www.ipcc.ch/ipccreports/tar/wg2/index.php?idp=625
- M. Zeleňáková, P. Purcz, I.A.K. Gargar, H. Hlavatá,
Comparison of Precipitation Trends in Libya and Slovakia,
River Basin Management 7, WIT Press, Southampton, 2013,
pp. 365–374.
- J.T. Houghton, L.G. Meira Filho, B.A. Callander, N. Harris, A.
Kattenberg, K. Maskell, Climate Change 1995: The Science of
Climate Change, Working Group I, Second Assessment Report
of the Intergovernmental Panel on Climate Change (IPCC),
Cambridge University Press, UK, 1996.
- Z.X. Xu, K. Takeuchi, H. Ishidaira, J.Y. Li, Long-term trend
analysis for precipitation in Asia Pacific Friend river basin,
Hydrol. Process., 19 (2015) 3517–3532.