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Fifty-year rainfall change and its effect on droughts and floods in Wenzhou, China

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Abstract

Based on daily, monthly, seasonal and annual precipitation, monthly duration and flood-affected area data from 1954 to 2007, we examined the absolute and relative change trends of rainfall and their effects on hazard intensity in Wenzhou city, China. The long-term trend of precipitation was studied by linear regression, moving average, cumulative anomaly and Z index methods, respectively. Our results show that there was no significant downward trend of annual precipitation. In contrast, there was significant decrease in autumn, July, mid-January and early June and significant increase in early January and late May, especially in late June. During 1954 and 2007, although significant fluctuation existed in the absolute value of precipitation, the relative changes of wet and dry were not significant compared with the average. The 10-year decrease in precipitation was 23.37 mm in autumn, 14.85 mm in July, 0.33 mm in mid-January and 6.87 mm in early June; while the 10-year increase was 0.35 mm in early January, 3.05 mm in late May and 8.57 mm in late June, respectively. Moreover, we found that 1964, 1966, 1977 and 1995 were the transition periods when the rainfall Z index was at peaks, the flood intensity was high, and the drought intensity was relatively low. On the other hand, 1958, 1968, 1971, 1980, 1989 and 1992 were the periods when the rainfall Z index was at valleys, the flood intensity was low, and the drought intensity was relatively high. Taken together, we demonstrated the obvious effects of precipitation changes on flood and drought intensities.

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References

  • Chen Y, Xu C, Hao X et al (2008) Fifty-year climate change and its effect on annual runoff in the Tarim River Basin, China. Q Int. doi:10.1016/j.quaint.2008.11.011

  • Cruz RV, Harasawa H, Lal M, Wu S, Anokhin Y, Punsalmaa B, Honda Y, Jafari M, Li C, Ninh NH (2007) Asia. In: Parry ML, Canziani OF, Palutikof JP, van der Linden PJ, Hanson CE (eds) Climate change 2007: impacts, adaptation and vulnerability. Contribution of working group II to the fourth assessment report of the intergovernmental panel on climate change. Cambridge University Press, Cambridge, pp 469–506

  • Gu JQ, Shi N, Wang YB (2001) Climatic change of flood and drought events with there characteristics in the recent 50 years over Zhejiang province. J Trop Meteorol 17(4):429–435 (in Chinese)

    Google Scholar 

  • Hu ZZ, Yang S, Wu R (2003) Long-term climate variations in China and global warming signals. J Geophys Res 108:4614. doi:10.1029/2003JD003651

    Google Scholar 

  • Huang RH, Xu YH, Zhou LT (1999) The interdecadal variation of summer precipitations in China and the drought trend in north China. Plateau Meteorol 18(4):465–476 (in Chinese)

    Google Scholar 

  • Ju XS, Yang XW, Chen LJ et al (1997) Research on determination of station indexes and division of regional flood/drought grades in China. Q J Appl Meteorol 8(1):26–33 (in Chinese)

    Google Scholar 

  • Lin XC, Yu SQ (1990) Climatic trend in China for the last 40 years. Meteorological Monthly 10:16–21 (in Chinese)

    Google Scholar 

  • Management Division of Chinese Agriculture and Plant Industry (2008) http://zzys.agri.gov.cn/zaiqing.asp

  • Pei YX, Guo M (2001) The fundamental principle and application of sliding average method. J Gun Launch Cont 1:21–23 (in Chinese)

    Google Scholar 

  • Shi N (1996) Secular variation of winter atmospheric teleconnection pattern in the northern hemisphere and its relation with china’s climate change. Acta meteorologica sinica 54(6):657–683 (in Chinese)

    Google Scholar 

  • Sun LC (2003) Changing features of precipitation over Northwest China during the 20th century. J Glaciol Geocryol 25 (2):143–148 (in Chinese)

    Google Scholar 

  • Xu NZ, Bai WR (2002) Effects of flood and drought on development of agriculture and social economy in China. J Catastrophol 17(1):56–61 (in Chinese)

    Google Scholar 

  • Zhai PM (2004) Climate change and meteorological disasters. Sci Technol Rev 7:11–14 (in Chinese)

    Google Scholar 

  • Zhai PM, Pan X (2003) Trends in temperature extremes during 1951–1999 in China. Geophys Res Lett 30:1913. doi:10.1029/2003GL018004

  • Zhai PM, Zou XK (2005) Changes in temperature and precipitation and their impacts on drought in China during 1951–2003. Adv Clim Change Res 1(1):16–18 (in Chinese)

    Google Scholar 

  • Zhai PM, Sun A, Ren F et al (1999) Changes of climate extremes in China. Climatic Change 42:203–218

    Article  Google Scholar 

Download references

Acknowledgments

This paper was financially supported by the National Natural Science Foundation of China (NSFC) (Project No. 40730526 and No.70703010), the Shanghai Youth Science and Technology Venus Program (Grants 09QA1401800), PhD Program Scholarship Fund of ECNU (No.2010035) and Doctor Foundation of Tianjin Normal University (No. 52X09019). We gratefully acknowledge the thoughtful comments of the editor and reviewers.

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Correspondence to Jun Wang.

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Liu, Y., Chen, Z., Wang, J. et al. Fifty-year rainfall change and its effect on droughts and floods in Wenzhou, China. Nat Hazards 56, 131–143 (2011). https://doi.org/10.1007/s11069-010-9556-z

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