DOI QR코드

DOI QR Code

Dissolved Oxygen Trend in Sapgyo Stream Watershed

삽교천유역의 용존산소 추세

  • 임창수 (경기대학교 공과대학 토목공학과)
  • Received : 2013.01.28
  • Accepted : 2013.04.01
  • Published : 2013.06.30

Abstract

In this study, monthly and seasonal dissolved oxygen trends of 19 water quality measurement stations in Sapgyo stream watershed were analyzed using monthly dissolved oxygen (DO) data measured for 16 years (1995~2010). Mann-Kendall trend test and Sen's slope estimator were carried out for trend analysis. Furthermore, Sapgyo stream watershed was divided into four different sections (Sapgyo stream, Muhan stream, Gykgyo stream, and Sapgyo lake) and chi-square test of homogeneity for DO trend was carried out for four different sections. The study results indicated that most of water quality measurement stations showed increasing or non-significant trend of DO on a monthly and seasonal basis. The chi-square test of homogeneity for each water quality measurement station showed the statistical homogeneity in seasonal DO trend; however, the test results showed the statistical non-homogeneity in monthly DO trend for the stations located in the reservoir. Overall, the dissolved oxygen trend in each water quality measurement station showed different patterns depending on the location of each station and season.

본 연구에서는 삽교천유역에 위치한 19개 수질관측지점의 16년간(1995~2010) 월별 용존산소(dissolved oxygen: DO)자료를 이용하여 월별 및 계절별 용존산소 추세를 분석하였다. 추세분석을 위해 Mann-Kendall 추세분석과 Sen's slope 방법을 적용하였다. 또한 삽교천 유역을 4개 구역(삽교호, 삽교천본류, 무한천 및 곡교천)으로 구분하여 카이스퀘어 동질성 검정(chi-square homogeneity test)을 실시하여 각 구역의 월별, 그리고 계절별 용존산소추세의 동질성 유무를 분석하였다. 분석결과 대부분 수질관측지점의 월별, 계절별 용존산소는 증가추세를 보이거나 혹은 유의한 추세를 보이지 않았다. 또한 삽교천 유역 수질관측지점들의 계절별 용존산소추세는 서로 동질성을 보인 반면에 월별 용존산소추세는 수질관측지점이 저수지에 위치한 지점의 경우 동질성을 보이지 않았다. 전반적으로 삽교천 유역 수질관측지점의 용존산소 추세는 각 수질관측지점의 위치와 계절에 따라서 다른 양상을 보였다.

Keywords

References

  1. Chang, H.J. (2008). "Spatial analysis of water quality trends in the Han River basin, South Korea." Water Research, Vol. 42, pp. 3285-3304. https://doi.org/10.1016/j.watres.2008.04.006
  2. Chang, S.H., Park, J.W., Kim, K.S., Lee, H.J., Kim, H.G., and Rhew, D.H. (2010). "The assesment of water quality in Nam-Hangang basin using long-term trend statistic analysis of comprehensive water quality index." Korean Society of Water and Wastewater, Korean Society on Water Environment, Fall Joint Conference, pp. 543-544.
  3. Cheng, B.Y., Liu, T.C., Shyu, G.S., Chang, T.K., and Fang, W.T. (2011). "Analysis of trends in water quality: constructed wetlands in metropolitan Taipei." Water Sci. Technol., Vol. 64, No. 11, pp. 2143-2150. https://doi.org/10.2166/wst.2011.785
  4. Darken, P.F. (1993). Testing for changes in trend in water quality data. Ph.D. Dissertation, Virginia Polytechnic Institute and State University, Virginia, U.S.A.
  5. Daughney, C.J., and Reeves, R.R. (2006). "Analysis of temporal trends in New Zeland's groundwater quality based on data from the national groundwater monitoring programme." Journal of Judrology(NewZeland), Vol. 45, No. 1, pp. 41-62.
  6. Hamill, K.D., and McBride, G.B. (2003). "River water quality trends and increased dairying in Southland, New Zealand." New Zealand Journal of Marine and Freshwater Research, Vol. 37, pp. 323-332. https://doi.org/10.1080/00288330.2003.9517170
  7. Kahya, E., and Kalayci, S. (2004). "Trend analysis of streamflow in Turkey." Journal of Hydrology, Vol. 289, pp. 128-144. https://doi.org/10.1016/j.jhydrol.2003.11.006
  8. Kendall, M.G. (1975). Rank correlation methods. Griffin, London.
  9. Kim, H.-J, Yoon, K.-S., An, Y., and Lee, K.-S. (2004). "Study on the characteristics of the water quality in lake Sapkyo." KCID J ., Vol. 11, No. 2, pp. 32-46.
  10. Lee, S.-H. (1995). "A study of non-parametric statistical tests to analyze trend in water quality data." Journal of Environmental Impact Assessment, Vol. 4, No. 2, pp. 93-103.
  11. Mann, H.B. (1945). Nonparametric tests against trend. Econometrica, Vol. 13, pp. 46-59.
  12. Monteith, D.T., Evans, C.D., and Patrick, S. (2001). "Monitoring acid waters in the UK: 1988-1998 trends." Water, Air, and Soil Pollution, Vol. 130, pp. 1307-1312. https://doi.org/10.1023/A:1013901822306
  13. Ravichandran, S. (2003). "Hydrological influences on the water quality trends in Tamiraparani basin, South India." Environmental Monitoring and Assessment, Vol. 87, pp. 293-309. https://doi.org/10.1023/A:1024818204664
  14. Robson, A.J., and Neal, C. (1996). "Water quality trends at an upward site in Wales, UK, 1983-1993." Hydrological Processes, Vol. 10, pp. 183-203. https://doi.org/10.1002/(SICI)1099-1085(199602)10:2<183::AID-HYP356>3.0.CO;2-8
  15. Sen, P.K. (1968). "Estimates of the regression coefficient based on Kendall's tau." Journal of the American Statistical Association, Vol. 63, pp. 1379-1389. https://doi.org/10.1080/01621459.1968.10480934
  16. Simeonov, V., Stratis, J.A., Samara, C., Zachariadis, G., Voutsa, D., Anthemidis, Sofoniou, M., and Kouimtzis, Th. (2003). "Assessment of the surface water quality in Northern Greece."Water Research, Vol. 37, pp. 4119-4124. https://doi.org/10.1016/S0043-1354(03)00398-1
  17. Smith, D.G., McBride, G.B., Bryers, G.G., Wisse, J., and Mink, D.F. (1996). "Trends in New Zealand's national river water quality network." New Zealand Journal of Marine and Freshwater Research, Vol. 30, pp. 485-500. https://doi.org/10.1080/00288330.1996.9516737
  18. Soulsby, C., Malcolm, R., Gibbins, C., and Dilks, C. (2001). "Seasonality, water quality trends and biological responses in four streams in the Cairngorm Mountains." Scotland, Hydrology and Earth Syatem Sciences, Vol. 5, No. 3, pp. 443-450.
  19. Tabari, H., Marofi, S., and Ahmadi, M. (2008). "Longterm variations of water quality parameters in the Maroon River, Iran." Environ. Monit. Assess., Vol. 177, No. 1-4, pp. 273-287.
  20. van Belle, G., and Hughes, J.P. (1984). "Nonparametric tests for trend in water quality." Water Resources Research, Vol. 20, pp. 127-136. https://doi.org/10.1029/WR020i001p00127
  21. Vega, M., Pardo, R., Barrado, E., and Deban, L. (1998). "Assessment of seasonal and polluting effects on the quality of river water by exploratory data analysis." Wat. Res., Vol. 32, No. 12, pp. 3581-3592. https://doi.org/10.1016/S0043-1354(98)00138-9
  22. Yi, H.-S., and Park, S.-Y. (2005). "Analysis of discharge characteristics of NPS pollutant loads from forest in Yongdam watershed." Korean Society of Water and Wastewater, Korean Society on Water Environment, Fall Joint Conference, pp. 506-509.
  23. Yoon, J.H., Yoo, Y.B., and Lee, J.W. (2007). "Statistical analysis about water quality characteristic of lakes and rivers in the Geum River basin." Korean Society of Water and Wastewater, Korean Society on Water Environment, Fall Joint Conference, pp. 673-681.
  24. Yu, J.-J., Shin, S.-H., Yoon, Y.-S., and Song, J.-K. (2010). "Long-term water quality trend analysis with NTrend 1.0 program in Nakdong River." Journal of Korean Society on Water Quality, Vol. 26, No. 6, pp. 895-902.

Cited by

  1. Trend Analysis of Monthly Water Quality Data in Nakdong River Based on Seasonal Mann-Kendall Test vol.57, pp.6, 2015, https://doi.org/10.5389/KSAE.2015.57.6.153