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Original Articles

On a PUB methodology from Chinese lessons

Leçons chinoises concernant la méthodologie de PUB

, , , &
Pages 2143-2157 | Received 07 May 2013, Accepted 15 Nov 2013, Published online: 27 Oct 2014

REFERENCES

  • Bart, R. and Hope, A., 2010. Streamflow response to fire in large catchments of a Mediterranean-climate region using paired-catchment experiments. Journal of Hydrology, 388 (3–4), 370–378. doi:10.1016/j.jhydrol.2010.05.016.
  • Blöschl, G., et al., eds., 2013. Runoff prediction in ungauged basins: synthesis across processes, places and scales. Cambridge: Cambridge University Press.
  • Blöschl, G. and Merz, R., 2008. Thoughts on a process-based catchment classification. Geophysical Research Abstracts, 10, EGU2008-A–08153.
  • Blöschl, G. and Merz, R., 2010. Landform-hydrology feedbacks. In: J.-C. Otto and R. Dikao, eds. Landform: structure, evolution, processes control. Wien: Springer, 117–126.
  • Brázdil, R. and Kundzewicz, Z.W., 2006. Historical hydrology. Editorial. Hydrological Sciences Journal, 51 (5), 733–738. Available from: http://www.tandfonline.com/doi/abs/10.1623/hysj.51.5.733.
  • Chen, J.L., et al., 2013. Rapid ice melting drives Earth’s pole to the east. Geophysical Research Letters, 40, 2625–2630. doi:10.1002/grl.50552.
  • Chokmani, K. and Ouarda, T.B.M.J., 2004. Physiographical space-based kriging for regional flood frequency estimation at ungauged sites. Water Resources Research, 40 (12), 1–13. doi:10.1029/2003WR002983.
  • Ding, Y. and Xie, Z., 1991. A simple method on estimating glacial mass balance. Journal of Glaciology and Geocryology, 13 (3), 213–218. (In Chinese with English Abstract.)
  • Fan, Z., et al., 2011. Spatial change trends of temperature and precipitation in China. Journal of Geoinformatic Science, 13 (4), 526–533. doi:10.3724/SP.J.1047.2011.00526.
  • Falkenmark, M. and Chapman, T., 1989. Comparative hydrology—an ecological approach to land and water resources. Paris: UNESCO.
  • Fernandez, W., Vogel, R.M., and Sankarasubramanian, A., 2000. Regional calibration of a watershed model. Hydrological Sciences Journal, 45 (5), 689–707. doi:10.1080/02626660009492371.
  • Freeze, R.A. and Harlan, R.L., 1969. Blueprint for a physically-based, digitally-simulated hydrologic response model. Journal of Hydrology, 9, 237–258. doi:10.1016/0022-1694(69)90020-1.
  • Guo, S., et al., 2002. A macro – scale and semi-distributed monthly water balance model to predict climate change impacts in China. Journal of Hydrology, 268 (1–4), 1–15. doi:10.1016/S0022-1694(02)00075-6.
  • Gou, X., et al., 2007. Streamflow variations of the Yellow River over the past 593 years in western China reconstructed from tree rings. Water Resources Research, 43, doi:10.1029/2006WR005705.
  • Guo, J. and Tang, Q., 1980. Preliminary study on the dynamic type and classification to Chinese rivers. Geography Journal, 12, 30–36. (In Chinese with English Abstract.)
  • Granger, R.J. and Pomeroy, J.W., 1997. Sustainability of the western Canadian boreal forest under changing hydrological conditions. II. Summer energy and water use. In: D. Rosbjerg, et al., eds. Sustainability of water resources under increasing uncertainty. Wallingford: International Association of Hydrological Sciences, IAHS Publ. 240, 243–250.
  • Hrachowitz, M., et al., 2013. A decade of Predictions in Ungauged Basins (PUB)—a review. Hydrological Sciences Journal, 58 (6), 1198–1255. http://www.tandfonline.com/doi/full/10.1080/02626667.2013.803183
  • Huang, G., 2007. Daily flow hydrograph simulation using regional flow duration curves for ungauged region of Dongjiang basin. Journal of Hydroelectric Engineering, 26 (4), 758-764. (In Chinese with English Abstract.)
  • Jia, Y., et al., 2009. Predicting inflows to barrier lakes formed in the Wenchuan earthquake using the WEP model and TRMM-based rain. In: W. Xu, T. Ao, and X. Zhang, eds. Hydrological modelling and integrated water resources management in ungauged mountainous watersheds. Wallingford: International Association of Hydrological Sciences, IAHS Publ. 335, 42–50.
  • Koutsoyiannis, D., et al., 2009. Climate, hydrology and freshwater: towards an interactive incorporation of hydrological experience into climate research. Hydrological Sciences Journal, 54 (2), 394–405. doi:10.1623/hysj.54.2.394.
  • Kumar, P., 2011. Typology of hydrologic predictability. Water Resources Research, 47. doi:10.1029/2010WR009769.
  • Li, Q., 1998. Analysis and discussion related to the hydrological watershed models used in the first hydrological forecasting technology competition of China. Advances in Water Science, 9 (2), 191–195. (In Chinese with English Abstract.)
  • Li, H., et al., 2012. Estimating sediment flux in the Xinjiang River based on the load duration curve method. China Rural Water and Hydropower, 11, 13-20. (In Chinese with English Abstract.)
  • Li, X., Cao, C., and Chang, C., 2006. The first law of geography and spatial-temporal proximity. Journal of Nature, 29 (2), 69-71. (In Chinese with English Abstract.)
  • Li, C., Lu, J., and Ye, B., 2008. 2-D hybrid approach to storm flood modelling in the Shalan catchment. In: D. Yang, et al., eds., Hydrological research in China: process studies, modelling approaches and applications. Wallingford: International Association of Hydrological Sciences, IAHS Publ. 322, 186–192.
  • Li, H. and Shen, J., 1996. Research on the estimation of parameters of inverse Gaussian distribution model for ungauged basin. Journal of Xi an University of Technology, 12 (3), 195–199. (In Chinese with abstract in English.)
  • Li, X., Zhang, C., and Fu, S., 1997. The application of geoscience analysis of remote sensing on the regional parameters about runoff of low water of river. Remote Sensing Technology and Application, 12 (3), 17–22. (In Chinese with English Abstract.)
  • Liang, Z., et al., 2008. A statistically-based runoff-yield model. In: D. Yang, et al., eds. Hydrological research in China: process studies, modelling approaches and applications. Wallingford: International Association of Hydrological Sciences, IAHS Publ. 322, 88–94.
  • Liu, C., 1986. The analysis to the water balance and water storage of China. In: The Proceeding of the third national hydrological conference of China. Beijing: Chinese Geographic Society. Science Press. (In Chinese.)
  • Liu, C., et al., 2008a. Development of hydro-informatic modelling system and its application. Science in China Series E: Technological Sciences, 51 (4), 456–466. doi:10.1007/s11431-008-0040-x.
  • Liu, C., et al., 2013. Estimating the runoff for data scarce basins based on HIMS model. South-to-North Water Transfers and Water Science & Technology, 1, 1–8. (In Chinese with English Abstract.)
  • Liu, S., et al., 2001. Spatial variation of soil moisture in China: geostatistical characterization. Journal of the Meteorological Society of Japan, 79 (1B), 555–574. doi:10.2151/jmsj.79.555.
  • Liu, S., et al., 2004. The effects of bushfires on hydrological processes using a paired-catchment analysis. Meteorology and Atmospheric Physics, 86, 31–44. doi:10.1007/s00703-003-0614-x.
  • Liu, S., et al., 2008b. Environmental flow in China. GWSP Newsletter, 7, 9–11.
  • Liu, S., et al., 2009. Temporal variation of soil moisture over the Wuding River Basin assessed with an eco-hydrological model, in-situ observations and remote sensing. Hydrology and Earth System Sciences, 13, 1375–1398. doi:10.5194/hess-13-1375-2009.
  • Liu, S., Liu, C., and Zhao, W., 2010. Towards the methodology for Predictions in Ungauged Basins. Progress in Geography, 29 (11), 1333–1339. (In Chinese with English Abstract.)
  • Liu, C.M. and Wang, G.T., 1980. The estimation of small-watershed peak flows in China. Water Resources Research, 16 (5), 881–886. doi:10.1029/WR016i005p00881.
  • Liu, S., Xia, J., and Mo, X., 2005. Advances in Predictions in Ungauged Basins. Water Resources and Hydropower Engineering, 36 (2), 9–12. (In Chinese with English Abstract.)
  • Liu, C., Zeng, Y., and Qiu, X., 2004. The Hydrometeorology atlas of Yellow River. Zhengzhou: Yellow River Water Resource Press, 94. (In Chinese with English Abstract.)
  • Lv, H., Zhu, Y., and Yu, Z., 2008. Estimating unsaturated soil hydraulic parameters using a generalized Richards equation. In: D. Yang, et al., eds. Hydrological research in China: process studies, modelling approaches and applications. Wallingford: International Association of Hydrological Sciences, IAHS Publ. 322, 22–27.
  • McDonnell, J.J. and Woods, R., 2004. Editorial: on the need for catchment classification. Journal of Hydrology, 299 (1–2), 2–3. doi:10.1016/j.jhydrol.2004.09.003.
  • Micovic, Z. and Quick, M.C., 1999. A rainfall and snowmelt runoff modelling approach to flow estimation at ungauged sites in British Columbia. Journal of Hydrology, 226 (1–2), 101–120. doi:10.1016/S0022-1694(99)00172-9.
  • Ministry of Water Resources of China, 2002. China National Water Resources Standard SL 77–94. (In Chinese.)
  • Mo, X., et al., 2005. Prediction of crop yield, water consumption and water use efficiency with a SVAT-crop growth model using remotely sensed data on the North China Plain. Ecological Modelling, 183, 301–322.  doi:10.1016/j.ecolmodel.2004.07.032.
  • Mo, X. and Liu, S., 2001. Simulating evapotranspiration and photosynthesis of winter wheat over the growing season. Agricultural and Forest Meteorology, 109, 203–222. doi:10.1016/S0168-1923(01)00266-0.
  • Mo, X., Liu, S., and Lin, Z., 2012. Evaluation of an ecosystem model for a wheat–maize double cropping system over the North China Plain. Environmental Modelling & Software, 32, 61–73. doi:10.1016/j.envsoft.2011.07.002.
  • Montanari, A., et al., 2013. “Panta Rhei—everything flows”: change in hydrology and society—the IAHS scientific decade 2013–2022. Hydrological Sciences Journal, 58 (6), 1256–1275. doi:10.1080/02626667.2013.809088.
  • Pan, H., et al., 2012. Study of rainfall threshold of debris flow forewarning in data lack areas. Rock and Soil Mechanics, 33 (7), 2122–2226. (In Chinese with English Abstract.)
  • Pomeroy, J.W., Whitfield, P., and Spence, C., eds., 2013. Putting Prediction in Ungauged Basins into practice. Ottawa: Canadian Water Resources Association.
  • Qiu, L., et al., 2013. Simulation of snowmelt runoff in the Lhasa River Basin by MODIS and SRM. Journal of Beijing Normal University (Natural science), 49 (2/3), 152–156. (In Chinese with English Abstract.)
  • Qin, G., Wang, S., and Miu, R., 2009. Real-time flood forecasting with the use of corresponding rising difference model. In: W. Xu, T. Ao, and X. Zhang, eds. Hydrological modelling and integrated water resources management in ungauged mountainous watersheds. Wallingford: International Association of Hydrological Sciences, IAHS Publ. 335, 122–129.
  • Reed, S., Koren, V., Smith, M., and DMIP participants, 2004. Overall distributed model intercomparison project results. Journal of Hydrology, 298, 27–60. doi:10.1016/j.jhydrol.2004.03.031.
  • Research Group of Small-watershed Peak Flow Estimation, 1978. The estimation of small-watershed peak flow. Beijing: Science Press. (In Chinese.)
  • Roderick, M.L. and Farquhar, G.D., 2002. The cause of decreased pan evaporation over the past 50 years. Science, 298, 1410–1411. doi:10.1126/science.1075390.
  • Schaake, J., et al., 2006. The model parameter estimation experiment (MOPEX). Journal of Hydrology, 320, 1–2. doi:10.1016/j.jhydrol.2005.07.054.
  • Schreider, S.Y., et al., 2002. Prediction of monthly discharge in ungauged catchments under agricultural land use in the Upper Ping basin, Northern Thailand. Mathematics and Computers in Simulation, 59 (1–3), 19–33. doi:10.1016/S0378-4754(01)00390-1.
  • Shi, P., et al., 2008. Computation of grid storage capacity from topographic index in hydrological modeling. In: D. Yang, et al., eds. Hydrological research in China: process studies, modelling approaches and applications. Wallingford: International Association of Hydrological Sciences, IAHS Publ. 322, 28–32.
  • Shu, C., et al., 2010. The simulation of hydrological processes in an ungauged alpine basin by using Xinanjiang model. Journal of Ecology and Natural Resources, 1 (2), 186–192.
  • Sivapalan, M., et al., 2003. IAHS Decade on Predictions in Ungauged Basins (PUB), 2003–2012: shaping an exciting future for the hydrological sciences. Hydrological Sciences Journal, 48 (6), 857–880. doi:10.1623/hysj.48.6.857.51421.
  • Sivapalan, M., et al., 2005. Linking flood frequency to long-term water balance: incorporating effects of seasonality. Water Resources Research, 41, W06012. doi:10.1029/2004WR003439.
  • Sivapalan, M., et al., 2011. Water cycle dynamics in a changing environment: improving predictability through synthesis. Water Resources Research, 47, W00J01. doi:10.1029/2011WR011377.
  • Skøien, J.O., Merz, R., and Blöschl, G., 2006. Top-kriging - geostatistics on stream networks. Hydrology and Earth System Sciences, 10 (2), 277–287. doi:10.5194/hess-10-277-2006.
  • Sun, Y., et al., 2009. A study on calibration of the Nash model parameters in no-data or scarce-data regions. In: W. Xu, T. Ao, and X. Zhang, eds. Hydrological modelling and integrated water resources management in ungauged mountainous watersheds. Wallingford: International Association of Hydrological Sciences, IAHS Publ. 335, 3–8.
  • Thompson, J.N., 1994. The coevolutionary process. Chicago: University of Chicago Press.
  • Vanclay, J.K., 2009. Managing water use from forest plantations. Forest Ecology and Management, 257 (2), 385–389. doi:10.1016/j.foreco.2008.09.003.
  • Wagener, T., et al., 2010. The future of hydrology: an evolving science for a changing world. Water Resources Research, 46, W05301. doi:10.1029/2009WR008906.
  • Wang, G., et al., 1999. Natural annual runoff estimation from 1470 to 1918 for Sanmenxia Gauge Station of Yellow River. Advances in Water Science, 10 (2), 170–176. (In Chinese with English Abstract.)
  • Wang, N., et al., 2009. Study on the zone of maximum precipitation in the North Slopes of the Central Qilian Mountains. Journal of Glaciology and Geocryology, 31 (3), 395–403. (In Chinese with English Abstract.)
  • Wang, S. and Liu, S., 2013. Exploring the relationship between polar motion and a primitive river’s runoffbased on Granger causality. In: A. Gelfan, et al., eds. Cold and mountain region hydrological systems under climate change: towards improved projections. Wallingford: International Association of Hydrological Sciences, IAHS Publ. 360, 131–138.
  • Wen, Y., et al., 2011. Flow influence line and its application in bridge flood forecast. Journal of China Raiway Society, 33 (6), 99–102. (In Chinese with English Abstract.)
  • Woo, M. and Liu, C.M., 1994. Mountain hydrology of Canada and China: a case study in comparative hydrology. Hydrological Processes, 8 (6), 573–587. doi:10.1002/hyp.3360080608.
  • Wu, K., Liu, C., and Wang, G., 1983. Analysis of hydrological characteristics of the rivers in the riverhead area of the Yangtze River. Geographical Research, 2 (2), 72–81. (In Chinese with English Abstract.)
  • Xia, J., et al., 2005. Development of distributed time-variant gain model for nonlinear hydrological systems. Science in China Series D: Earth Sciences, 48 (6), 713–723.
  • Xu, W.L., Ao, T.Q., and Zhang, X.H., eds., 2009. Hydrological modelling and integrated water resources management in ungauged mountainous watersheds. Wallingford: International Association of Hydrological Sciences, IAHS Publ. 335, 310.
  • Yang, D., et al., eds., 2008. Hydrological research in China: process studies, modelling approaches and applications. Wallingford: International Association of Hydrological Sciences, IAHS Publ. 322, 262.
  • Yang, D. and Shao, W., 2008. Analysis of water resources variability in the Yellow River of China using a distributed hydrological model. In: D. Yang, et al., eds., Hydrological research in China: process studies, modelling approaches and applications. Wallingford: International Association of Hydrological Sciences, IAHS Publ. 322, 228–233.
  • Yang, J., 1999. Some technical problem of runoff design for small-watersheds without data. Hydrology, 6, 26–29. (In Chinese with English Abstract.)
  • Young, A.R., 2006. Stream flow simulation within UK ungauged catchments using a daily rainfall-runoff model. Journal of Hydrology, 320 (1–2), 155–172. doi:10.1016/j.jhydrol.2005.07.017.
  • Yuan, Y., et al., 2007. The Potential to Reconstruct Manasi River Streamflow in the Northern Tien Shan Mountains (NW China). Tree-Ring Research, 63 (2), 81–93. doi:10.3959/1536-1098-63.2.81.
  • Zhan, C. and Xia, J., 2010. The tempo-spatial pattern of terrestrial evapotranspiration over China based on remote sensing. Beijing: Knowledge Copyright Press, 189. (In Chinese with English Abstract.)
  • Zhang, X., et al., 2009. A unit hydrograph model with spatial variations of rainfall based on an artificial neural network. In: W. Xu, T. Ao, and X. Zhang, eds. Hydrological modelling and integrated water resources management in ungauged mountainous watersheds. Wallingford: International Association of Hydrological Sciences, IAHS Publ. 335, 116–121.
  • Zhang, X., et al., 2011. Study on allocation methods of the water pollutant loads in ungauged basin. Journal of China Institute of Water Resources and Hydropower Research, 9 (2), 136–142. (In Chinese with English Abstract.)
  • Zhao, R., 1984. Catchment hydrological simulation-Xinanjiang model and Shaanbei Model. Beijing: China Water Power Press. (In Chinese.)
  • Zhao, Z., et al., 2011. Predicting inflows to Tangjiashan barrier lake based on WEP model and TRMM precipitation data. Shuili Xuebao, 42 (7), 848–856. (In Chinese with English Abstract.)
  • Zhu, Y., et al., 2010. Hydrodynamic modeling in ungauged rivers: a case study in the Wei River. Journal of Beijing Normal University (Natural Science), 46 (3), 378–382. (In Chinese with English Abstract.)

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