References

  1. T. Yang, Q. Zhang, Y.D. Chen, X. Tao, C.y. Xu, X. Chen, A spatial assessment of hydrologic alteration caused by dam construction in the middle and lower Yellow River, China, Hydrol. Process., 22 (2008) 3829–3843.
  2. M.V. Carle, P.N. Halpin, C.A. Stow, Patterns of watershed urbanization and impacts on water quality, Wiley Online Library, 2005.
  3. J.G. Lee, J.P. Heaney, Estimation of urban imperviousness and its impacts on storm water systems, J. Water Resour. Plan. Manage., 129 (2003) 419–426.
  4. R. DeFries, K.N. Eshleman, Land-use change and hydrologic processes: a major focus for the future, Hydrol. Process., 18 (2004) 2183–2186.
  5. L.S. Kuchment, The hydrological cycle and human impact on it, Water Resour. Manag., (2004).
  6. K.-H. Ahn, V. Merwade, Quantifying the relative impact of climate and human activities on streamflow, J. Hydrol., 515 (2014) 257–266.
  7. United Nations, World Population Prospects: The 2009 Revision, New York, sn, (2010).
  8. E. Salvadore, J. Bronders, O. Batelaan, Hydrological modelling of urbanized catchments: A review and future directions, J. Hydrol., 529 (2015) 62–81.
  9. M. Brilly, S. Rusjan, A. Vidmar, Monitoring the impact of urbanisation on the Glinscica stream, Phys. Chem. Earth, Parts A/B/C, 31 (2006) 1089–1096.
  10. W. Shuster, J. Bonta, H. Thurston, E. Warnemuende, D. Smith, Impacts of impervious surface on watershed hydrology: A review, Urban Water J., 2 (2005) 263–275.
  11. R.T. Forman, Estimate of the area affected ecologically by the road system in the United States, Conserv. Biol., 14 (2000) 31–35.
  12. R.T. Forman, L.E. Alexander, Roads and their major ecological effects, Annu. Rev. Ecol. Syst., (1998) 207–C202.
  13. J.A. Jones, F.J. Swanson, B.C. Wemple, K.U. Snyder, Effects of roads on hydrology, geomorphology, and disturbance patches in stream networks, Conserv. Biol., 14 (2000) 76–85.
  14. A. Hicks, J. Larson, Impervious surface area and benthic macroinvertebrate response as an indicator of impact from urbanization of freshwater wetlands, US Environmental Protection Agency Library Report Number: EPA-R-822916-01-0; EPA/600/R-97/075, (1997).
  15. D.L. Simmons, R.J. Reynolds, Effects of urbanization on base flow of selected south-shore streams, long island, new york, J. Am. Water Resour. Assoc., 18 (1982) 797–805.
  16. C.M. Pringle, Hydrologic connectivity and the management of biological reserves: a global perspective, Ecol. Appl., 11 (2001) 981–998.
  17. J. Cairns Jr, Urban runoff in an integrated landscape context: Stormwater runoff and receiving systems, Lewis, (1995).
  18. J. Niemczynowicz, Urban hydrology and water management – present and future challenges, Urban Water, 1 (1999) 1–14.
  19. L. Han, W. Zhou, W. Li, L. Li, Impact of urbanization level on urban air quality: A case of fine particles (PM 2.5) in Chinese cities, Environ. Pollut., 194 (2014) 163–170.
  20. H. Long, Y. Liu, X. Hou, T. Li, Y. Li, Effects of land use transitions due to rapid urbanization on ecosystem services: Implications for urban planning in the new developing area of China, Habitat. Int., 44 (2014) 536–544.
  21. L. Shen, J. Zhou, Examining the effectiveness of indicators for guiding sustainable urbanization in China, Habitat. Int., 44 (2014) 111–120.
  22. H.T. Davis, C.M. Aelion, A.B. Lawson, B. Cai, S. McDermott, Associations between land cover categories, soil concentrations of arsenic, lead and barium, and population race/ethnicity and socioeconomic status, Sci. Total Environ., 490 (2014) 1051–1056.
  23. C. Elgin, C. Oyvat, Lurking in the cities: Urbanization and the informal economy, Struct. Change and Econ. Dyn., 27 (2013) 36–47.
  24. P. Sadorsky, The effect of urbanization on CO2 emissions in emerging economies, Energy Econ., 41 (2014) 147–153.
  25. J.E. Cohen, Human population: the next half century, Science, 302 (2003) 1172–1175.
  26. T. Fletcher, H. Andrieu, P. Hamel, Understanding, management and modelling of urban hydrology and its consequences for receiving waters: A state of the art, Adv. Water Resour., 51 (2013) 261–279.
  27. C.R. Jacobson, Identification and quantification of the hydrological impacts of imperviousness in urban catchments: A review, J. Environ. Manage., 92 (2011) 1438–1448.
  28. H.j. Huang, S.j. Cheng, J.c. Wen, J.h. Lee, Effect of growing watershed imperviousness on hydrograph parameters and peak discharge, Hydrol. Process., 22 (2008a) 2075–2085.
  29. R.J. Hawley, B.P. Bledsoe, How do flow peaks and durations change in suburbanizing semi-arid watersheds? A southern California case study, J. Hydrol., 405 (2011) 69–82.
  30. I. Braud, P. Breil, F. Thollet, M. Lagouy, F. Branger, C. Jacqueminet, S. Kermadi, K. Michel, Evidence of the impact of urbanization on the hydrological regime of a medium-sized periurban catchment in France, J. Hydrol., 485 (2013) 5–23.
  31. M. Chow, Z. Yusop, Characterization and source identification of stormwater runoff in tropical urban catchments, Water Sci. Technol., 69 (2014).
  32. J. Cantone, A. Schmidt, Improved understanding and prediction of the hydrologic response of highly urbanized catchments through development of the Illinois Urban Hydrologic Model, Water Resour. Res., 47 (2011).
  33. P.-J. Shi, Y. Yuan, J. Zheng, J.-A. Wang, Y. Ge, G.-Y. Qiu, The effect of land use/cover change on surface runoff in Shenzhen region, China, Catena, 69 (2007) 31–35.
  34. V.T. Chow, D.R. Maidment, L.W. Mays, Applied hydrology, 1988.
  35. N.A. Zakaria, A. Ab Ghani, R. Abdullah, L. Mohd. Sidek, A. Ainan, Bio-ecological drainage system (BIOECODS) for water quantity and quality control, Int. J. River Basin Manag., 1 (2003) 237–251.
  36. J.D. Sjöman, S.E. Gill, Residential runoff–The role of spatial density and surface cover, with a case study in the Höjeå river catchment, southern Sweden, Urban For. Urban Green., 13 (2014) 304–314.
  37. A. Behroozi, M. Niksokhan, M. Nazariha, Developing a simulation-optimisation model for quantitative and qualitative control of urban run-off using best management practices, J. Flood Risk Manag., (2015).
  38. C. Damodaram, M.H. Giacomoni, C. Prakash Khedun, H. Holmes, A. Ryan, W. Saour, E.M. Zechman, Simulation of combined best management practices and low impact development for sustainable stormwater management, J. Am. Water Resour. Assoc., (2010).
  39. A. Elliott, S. Trowsdale, A review of models for low impact urban stormwater drainage, Environ. Model. Software, 22 (2007) 394–405.
  40. H. Jia, H. Yao, Y. Tang, L.Y. Shaw, J.X. Zhen, Y. Lu, Development of a multi-criteria index ranking system for urban runoff best management practices (BMPs) selection, Environ. Monit. Assess., 185 (2013) 7915–7933.
  41. R. Liu, P. Zhang, X. Wang, J. Wang, W. Yu, Z. Shen, Cost-effectiveness and cost-benefit analysis of BMPs in controlling agricultural nonpoint source pollution in China based on the SWAT model, Environ. Monit. Assess., 186 (2014) 9011–9022.
  42. G. Wang, H. Yang, L. Wang, Z. Xu, B. Xue, Using the SWAT model to assess impacts of land use changes on runoff generation in headwaters, Hydrol. Process., 28 (2014) 1032–1042.
  43. X. Chen, J. Wu, Q. Hu, Simulation of climate change impacts on streamflow in the Bosten Lake basin using an artificial neural network model, J. Hydrol. Eng., 13 (2008) 180–183.
  44. L. Li, Z.-C. Hao, J.-H. Wang, Z.-H. Wang, Z.-B. Yu, Impact of future climate change on runoff in the head region of the Yellow River, J. Hydrol. Eng., 13 (2008) 347–354.
  45. Y. Liu, X. Zhang, D. Xia, J. You, Y. Rong, M. Bakir, Impacts of land-use and climate changes on hydrologic processes in the Qingyi River watershed, China, J. Hydrol. Eng., (2011).
  46. S. Wang, Y. Wang, L. Ran, T. Su, Climatic and anthropogenic impacts on runoff changes in the Songhua River basin over the last 56 years (1955–2010), Northeastern China, Catena, 127 (2015) 258–269.
  47. Z. Ma, S. Kang, L. Zhang, L. Tong, X. Su, Analysis of impacts of climate variability and human activity on streamflow for a river basin in arid region of northwest China, J. Hydrol., 352 (2008) 239–249.
  48. J.D. Milliman, K. Farnsworth, P. Jones, K. Xu, L. Smith, Climatic and anthropogenic factors affecting river discharge to the global ocean, 1951–2000, Global Planet. Change, 62 (2008) 187–194.
  49. N. Grimm, S. Faeth, N. Golubiewski, C. Redman, J. Wu, X. Bai, J. Briggs, Nutrient imbalances: Pollution remains, Science, 319 (2009) 756–760.
  50. I. Lewin, S. Jusik, K. Szoszkiewicz, I. Czerniawska-Kusza, A.E. Ławniczak, Application of the new multimetric MMI_PL index for biological water quality assessment in reference and human-impacted streams (Poland, the Slovak Republic), Limnologica-Ecology and Management of Inland Waters, 49 (2014) 42–51.
  51. G. Mouri, S. Takizawa, T. Oki, Spatial and temporal variation in nutrient parameters in stream water in a rural-urban catchment, Shikoku, Japan: effects of land cover and human impact, J. Environ. Manage., 92 (2011) 1837–1848.
  52. G. Mouri, T. Oki, Modelling the catchment-scale environmental impacts of wastewater treatment in an urban sewage system for CO2 emission assessment, Water Sci. Technol., (2010).
  53. G. Mouri, S. Shinoda, T. Oki, Assessment of the historical environmental changes from a survey of local residents in an urban–rural catchment, Ecol. Complex., 15 (2013) 83–96.
  54. M. Nastar, The quest to become a world city: Implications for access to water, Cities, 41 (2014) 1–9.
  55. J. Rouillard, A. Reeves, K.V. Heal, T. Ball, The role of public participation in encouraging changes in rural land use to reduce flood risk, Land Use Pol., 38 (2014) 637–645.
  56. G. Wang, J. Zhang, T. Pagano, J. Lin, C. Liu, Identifying contributions of climate change and human activity to changes in runoff using Epoch detection and hydrologic simulation, J. Hydrol. Eng., 18 (2011) 1385–1392.
  57. K. Price, Effects of watershed topography, soils, land use, and climate on baseflow hydrology in humid regions: A review, Prog. Phys. Geogr., 35 (2011) 465–492.
  58. J. Boggs, G. Sun, Urbanization alters watershed hydrology in the Piedmont of North Carolina, Ecohydrology, 4 (2011) 256–264.
  59. D.B. Jennings, S.T. Jarnagin, Changes in anthropogenic impervious surfaces, precipitation and daily streamflow discharge: a historical perspective in a mid-Atlantic subwatershed, Landscape Ecol., 17 (2002) 471–489.
  60. G.J. Kauffman, A.C. Belden, K.J. Vonck, A.R. Homsey, Link between impervious cover and base flow in the White Clay Creek Wild and Scenic watershed in Delaware, J. Hydrol. Eng., 14 (2009) 324–334.
  61. K.L. Meierdiercks, J.A. Smith, M.L. Baeck, A.J. Miller, Heterogeneity of hydrologic response in urban watersheds, J. Am. Water Resour. Assoc., 46 (2010) 1221–1237.
  62. E. Vázquez-Suñé, X. Sánchez-Vila, J. Carrera, Introductory review of specific factors influencing urban groundwater, an emerging branch of hydrogeology, with reference to Barcelona, Spain, Hydrogeol. J., 13 (2005) 522–533.
  63. E.S. Bedan, J.C. Clausen, Stormwater runoff quality and quantity from traditional and low impact development watersheds, Wiley Online Library, (2009).
  64. M.J. Burns, T.D. Fletcher, C.J. Walsh, A.R. Ladson, B.E. Hatt, Hydrologic shortcomings of conventional urban stormwater management and opportunities for reform, Landsc. Urban Plan., 105 (2012) 230–240.
  65. M.E. Dietz, J.C. Clausen, Stormwater runoff and export changes with development in a traditional and low impact subdivision, J. Environ. Manage., 87 (2008) 560–566.
  66. T.R. Schueler, L. Fraley-McNeal, K. Cappiella, Is impervious cover still important? Review of recent research, J. Hydrol. Eng., 14 (2009) 309–315.
  67. R. Brown, Effects of precipitation and land use on storm runoff, Wiley Online Library, 1988.
  68. A.L. Riley, Restoring streams in cities: A guide for planners, policymakers and citizens, Island Press, 1998.
  69. C. Maksimovic, C.E. Tucci, Urban drainage in specific climates. Volume I: urban drainage in humid tropics: IHP-V technical documents in hydrology, No. 40, UNESCO, 2001.
  70. M.W. Doyle, J.M. Harbor, C.F. Rich, A. Spacie, Examining the effects of urbanization on streams using indicators of geomorphic stability, Phys. Geogr., 21 (2000) 155–181.
  71. D.B. Booth, Urbanization and the natural drainage system - impacts, solutions, and prognoses, The Northwest Environ. J., 7 (1991) 2–24.
  72. M.-H. Hsu, S.H. Chen, T.-J. Chang, Inundation simulation for urban drainage basin with storm sewer system, J. Hydrol., 234 (2000) 21–37.
  73. B.L. Rhoads, Stream power: A unifying theme for urban fluvial geomorphology, Lewis Publishers, Boca Raton, Fla, 1995.
  74. V. Smakhtin, Low flow hydrology: a review, J. Hydrol., 240 (2001) 147–186.
  75. T.N. Carlson, S.T. Arthur, The impact of land use—land cover changes due to urbanization on surface microclimate and hydrology: a satellite perspective, Global Planet. Change, 25 (2000) 49–65.
  76. V.H. Dale, S. Brown, R. Haeuber, N. Hobbs, N. Huntly, R. Naiman, W. Riebsame, M. Turner, T. Valone, Ecological principles and guidelines for managing the use of land, Ecol. Appl., 10 (2000) 639–670.
  77. D. Entekhabi, G.R. Asrar, A.K. Betts, K.J. Beven, R.L. Bras, C.J. Duffy, T. Dunne, R.D. Koster, D.P. Lettenmaier, D.B. McLaughlin, An agenda for land surface hydrology research and a call for the second international hydrological decade, Bull. Amer. Meteorol. Soc., 80 (1999) 2043–2058.
  78. S. Rose, N.E. Peters, Effects of urbanization on streamflow in the Atlanta area (Georgia, USA): a comparative hydrological approach, Hydrol. Process., 15 (2001) 1441–1457.
  79. L.B. Leopold, M.G. Wolman, J.P. Miller, Fluvial processes in geomorphology, Courier Corporation, (2012).
  80. J. Marsalek, D. Rousseau, P.d. Steen, S. Bourgues, M. Francey, Ecosensitive approach to managing urban aquatic habitats and their integration with urban infrastructure, MI Wagner, J. and Breil, P.(Ed.), Aquatic Habitats in Sustainable Urban Water Management: Science, Policy and Practice, 2007.
  81. C.L. Arnold Jr, C.J. Gibbons, Impervious surface coverage: the emergence of a key environmental indicator, J. Am. Plann. Assoc., 62 (1996) 243–258.
  82. Y. Zhou, Y. Wang, A.J. Gold, P.V. August, Modeling watershed rainfall–runoff relations using impervious surface-area data with high spatial resolution, Hydrogeol. J., 18 (2010) 1413– 1423.
  83. M. Boyd, M. Bufill, R. Knee, Pervious and impervious runoff in urban catchments, Hydrol. Sci. J., 38 (1993) 463–478.
  84. E. Brabec, S. Schulte, P.L. Richards, Impervious surfaces and water quality: a review of current literature and its implications for watershed planning, J. Plan. Lit., 16 (2002) 499–514.
  85. A.H. Roy, W.D. Shuster, Assessing impervious surface connectivity and applications for watershed management, J. Am. Water Resour. Assoc., 45 (2009) 198–209.
  86. S.-y. Huang, S.-j. Cheng, J.-c. Wen, J.-h. Lee, Identifying peak-imperviousness-recurrence relationships on a growing-impervious watershed, Taiwan, J. Hydrol., 362 (2008) 320–336.
  87. M.J. Paul, J.L. Meyer, Streams in the urban landscape, Annu. Rev. Ecol. Syst., (2001) 333–365.
  88. D. Burns, T. Vitvar, J. McDonnell, J. Hassett, J. Duncan, C. Kendall, Effects of suburban development on runoff generation in the Croton River basin, New York, USA, J. Hydrol., 311 (2005) 266–281.
  89. J. Chen, A.A. Hill, L.D. Urbano, A GIS-based model for urban flood inundation, J. Hydrol., 373 (2009) 184–192.
  90. I.S. Kang, J.I. Park, V.P. Singh, Effect of urbanization on runoff characteristics of the On-Cheon Stream watershed in Pusan, Korea, Hydrol. Process., 12 (1998) 351–363.
  91. S.-Y. Huang, S.-J. Cheng, J.-C. Wen, J.-H. Lee, Identifying hydrograph parameters and their relationships to urbanization variables, Hydrol. Sci. J., 57 (2012) 144–161.
  92. J.C. Guo, Volume-based imperviousness for storm water designs, J. Irrig. Drainage Eng., (2008).
  93. R.E. Beighley, M. Kargar, Y. He, Effects of impervious area estimation methods on simulated peak discharges, J. Hydrol. Eng., 14 (2009) 388–398.
  94. Z. Kliment, M. Matoušková, Runoff changes in the Šumava Mountains (Black Forest) and the Foothill Regions: extent of influence by human impact and climate change, Water Resour. Manag., 23 (2009) 1813–1834.
  95. T. Moramarco, F. Melone, V. Singh, Assessment of flooding in urbanized ungauged basins: a case study in the Upper Tiber area, Italy, Hydrol. Process., 19 (2005) 1909–1924.
  96. F. Rodriguez, H. Andrieu, J.-D. Creutin, Surface runoff in urban catchments: morphological identification of unit hydrographs from urban databanks, J. Hydrol., 283 (2003) 146–168.
  97. J. Yang, D. Entekhabi, F. Castelli, L. Chua, Hydrologic response of a tropical watershed to urbanization, J. Hydrol., 517 (2014) 538–546.
  98. J.D. Miller, H. Kim, T.R. Kjeldsen, J. Packman, S. Grebby, R. Dearden, Assessing the impact of urbanization on storm runoff in a peri-urban catchment using historical change in impervious cover, J. Hydrol., 515 (2014) 59–70.
  99. G. Wang, J. Liu, J. Kubota, L. Chen, Effects of land-use changes on hydrological processes in the middle basin of the Heihe River, northwest China, Hydrol. Process., 21 (2007) 1370–1382.
  100. Q. Weng, Modeling urban growth effects on surface runoff with the integration of remote sensing and GIS, Environ. Manage., 28 (2001) 737–748.
  101. A. Brath, A. Montanari, G. Moretti, Assessing the effect on flood frequency of land use change via hydrological simulation (with uncertainty), J. Hydrol., 324 (2006) 141–153.
  102. M.H. Costa, A. Botta, J.A. Cardille, Effects of large-scale changes in land cover on the discharge of the Tocantins River, Southeastern Amazonia, J. Hydrol., 283 (2003) 206–217.
  103. P. Yu, Y. Wang, C.-C. Kuo, Effects of land-use change on runoff response in the ungauged Ta-Chou basin, Taiwan, International Association of Hydrological Sciences, Publication, (2003) 162–170.
  104. J.H. Gregory, M.D. Dukes, P.H. Jones, G.L. Miller, Effect of urban soil compaction on infiltration rate, J. Soil Water Conserv., 61 (2006) 117–124.
  105. C.P. Konrad, D.B. Booth, Hydrologic changes in urban streams and their ecological significance, Am. Fish. Soc. Symp., 47 (2005) 157–177.
  106. Z. Tang, B. Engel, B. Pijanowski, K. Lim, Forecasting land use change and its environmental impact at a watershed scale, J. Environ. Manage., 76 (2005) 35–45.
  107. H. Chang, Comparative streamflow characteristics in urbanizing basins in the Portland Metropolitan Area, Oregon, USA, Hydrol. Process., 21 (2007) 211–222.
  108. T. Gebremicael, Y. Mohamed, G. Betrie, P. van der Zaag, E. Teferi, Trend analysis of runoff and sediment fluxes in the Upper Blue Nile basin: A combined analysis of statistical tests, physically-based models and landuse maps, J. Hydrol., 482 (2013) 57–68.
  109. H. Ozdemir, E. Elbaşı, Benchmarking land use change impacts on direct runoff in ungauged urban watersheds, Phys. Chem. Earth, Parts A/B/C, 2014.
  110. N. Sajikumar, R. Remya, Impact of land cover and land use change on runoff characteristics, J. Environ. Manage., (2015).
  111. M. Bari, K. Smettem, M. Sivapalan, Understanding changes in annual runoff following land use changes: a systematic data-based approach, Hydrol. Process., 19 (2005) 2463–2479.
  112. Y.-P. Lin, N.-M. Hong, P.-J. Wu, C.-F. Wu, P.H. Verburg, Impacts of land use change scenarios on hydrology and land use patterns in the Wu-Tu watershed in Northern Taiwan, Landsc. Urban Plan., 80 (2007) 111–126.
  113. J. Zhang, G. Wang, T. Pagano, J. Jin, C. Liu, R. He, Y. Liu, Using hydrologic simulation to explore the impacts of climate change on runoff in the Huaihe River basin of China, J. Hydrol. Eng., 18 (2012) 1393–1399.
  114. N. Algeet-Abarquero, M. Marchamalo, J. Bonatti, J. Fernández- Moya, R. Moussa, Implications of land use change on runoff generation at the plot scale in the humid tropics of Costa Rica, Catena, 135 (2015) 263–270.
  115. E.T. Slonecker, D.B. Jennings, D. Garofalo, Remote sensing of impervious surfaces: A review, Remote Sens. Revs., 20 (2001) 227–255.
  116. D.B. Booth, C.R. Jackson, Urbanization of aquatic systems: degradation thresholds, stormwater detection, and the limits of mitigation, J. Am. Water Resour. Assoc., 33 (1997) 1077–1090.
  117. L.B. Leopold, Hydrology for urban land planning: A guidebook on the hydrologic effects of urban land use, US Government Printing Office, (1968).
  118. L. Yang, F. Tian, D. Niyogi, A need to revisit hydrologic responses to urbanization by incorporating the feedback on spatial rainfall patterns, Urban Climate, 12 (2015) 128–140.
  119. R. Ragab, J. Bromley, P. Rosier, J. Cooper, J. Gash, Experimental study of water fluxes in a residential area: 1. Rainfall, roof runoff and evaporation: the effect of slope and aspect, Hydrol. Process., 17 (2003a) 2409–2422.
  120. S.A. Sheeder, J.D. Ross, T.N. Carlson, Dual urban and rural hydrograph signals in three small watersheds, J. Am. Water Resour. Assoc., 38 (2002) 1027–1040.
  121. D.B. Booth, Forest cover, impervious-surface area, and the mitigation of urbanization impacts in King County, Washington, University of Washington, Department of Civil and Environmental Engineering, (2000).
  122. T. Dunne, L.B. Leopold, Water in Environmental Planning, Macmillan, 1978.
  123. F.I.S.R.W. Group, Stream corridor restoration: principles, processes, and practices, (1998).
  124. T. Berezowski, J. Chormański, O. Batelaan, F. Canters, T. Van de Voorde, Impact of remotely sensed land-cover proportions on urban runoff prediction, Int. J. Appl. Earth Obs. Geoinf., 16 (2012) 54–65.
  125. B. Lin, X. Chen, H. Yao, Y. Chen, M. Liu, L. Gao, A. James, Analyses of landuse change impacts on catchment runoff using different time indicators based on SWAT model, Ecol. Indic., 58 (2015) 55–63.
  126. N. Sillanpää, H. Koivusalo, Impacts of urban development on runoff event characteristics and unit hydrographs across warm and cold seasons in high latitudes, J. Hydrol., 521 (2015) 328–340.
  127. L. Yao, W. Wei, L. Chen, How does imperviousness impact the urban rainfall-runoff process under various storm cases?, Ecol. Indic., 60 (2016) 893–905.
  128. G. Yang, L.C. Bowling, K.A. Cherkauer, B.C. Pijanowski, The impact of urban development on hydrologic regime from catchment to basin scales, Landsc. Urban Plan., 103 (2011) 237–247.
  129. M.J. Burns, C.J. Walsh, T.D. Fletcher, A.R. Ladson, B.E. Hatt, A landscape measure of urban stormwater runoff effects is a better predictor of stream condition than a suite of hydrologic factors, Ecohydrology, 8 (2015) 160–171.
  130. W.M. Alley, J.E. Veenhuis, Effective impervious area in urban runoff modeling, J. Hydraul. Eng., 109 (1983) 313–319.
  131. S.G. Walesh, Urban surface water management, John Wiley & Sons, (1989).
  132. N.A. Campana, C.E. Tucci, Predicting floods from urban development scenarios: case study of the Dilúvio Basin, Porto Alegre, Brazil, Urban Water, 3 (2001) 113–124.
  133. W. Choi, Catchment-scale hydrological response to climate and use combined scenarios: a case study for the Kishwaukee River Basin, Illinois, Phys. Geogr., 29 (2008) 79–99.
  134. Y.-m. Wang, Y.-j. Li, S.-j. Cheng, F.-t. Yang, Y.-t. Chen, Effects of spatial-temporal imperviousness on hydrological responses of various areas in an urbanized watershed, Water Resour. Manag., (2015) 1–17.
  135. G. Yang, L.C. Bowling, K.A. Cherkauer, B.C. Pijanowski, D. Niyogi, Hydroclimatic response of watersheds to urban intensity: an observational and modeling-based analysis for the White River Basin, Indiana, J. Hydrometeorol., 11 (2010) 122–138.
  136. F.H. Kong, Y.L. Ban, H.W. Yin, P. James, I. Dronova, Modeling stormwater management at the city district level in response to changes in land use and low impact development, Environ. Modell. Softw., 95 (2017) 132–142.
  137. J.C. Albrecht, Alterations in the Hydrologic Cycle Induced by Urbanization in Northern New Castle County, Delaware: Magnitudes and Projections, 1974.
  138. D. Cook, W. Dickinson, The impact of urbanization on the hydrologic response of the Speedvale Experimental Basin, Ontario—A case study, Proc. Int. Symp. Urban Hydrology, Hydraulic Infrastructures and Water Quality Control, 1985.
  139. G. Hollis, The effect of urbanization on floods of different recurrence interval, Water Resour. Res., 11 (1975) 431–435.
  140. S.S. Foster, Impacts of urbanization on groundwater, Hydrological processes and water management in urban areas. Wallingford, UK, International Association of Hydrological Sciences–Association Internationale des Sciences Hydrologiques (IAHS–AISH Pub. No. 198), (1990).
  141. D. Ramier, E. Berthier, H. Andrieu, The hydrological behaviour of urban streets: long-term observations and modelling of runoff losses and rainfall–runoff transformation, Hydrol. Process., 25 (2011) 2161–2178.
  142. R. Ragab, P. Rosier, A. Dixon, J. Bromley, J. Cooper, Experimental study of water fluxes in a residential area: 2. Road infiltration, runoff and evaporation, Hydrol. Process., 17 (2003) 2423–2437.
  143. C.J. Walsh, A.H. Roy, J.W. Feminella, P.D. Cottingham, P.M. Groffman, R.P. Morgan, The urban stream syndrome: current knowledge and the search for a cure, J. N. Am. Benthol. Soc., 24 (2005) 706–723.
  144. Y. Liu, S. Gebremeskel, F. De Smedt, L. Hoffmann, L. Pfister, Predicting storm runoff from different land-use classes using a geographical information system-based distributed model, Hydrol. Process., 20 (2006) 533–548.
  145. A. Joel, I. Messing, O. Seguel, M. Casanova, Measurement of surface water runoff from plots of two different sizes, Hydrol. Process., 16 (2002) 1467–1478.
  146. M. Skotnicki, M. Sowiński, The influence of depression storage on runoff from impervious surface of urban catchment, Urban Water J., 12 (2015) 207–218.
  147. J. Barco, K.M. Wong, M.K. Stenstrom, Automatic calibration of the US EPA SWMM model for a large urban catchment, J. Hydraul. Eng., 2008.
  148. S.T. Dayaratne, B. Perera, Calibration of urban stormwater drainage models using hydrograph modelling, Urban Water J., 1 (2004) 283–297.
  149. W. James, Rules for responsible modeling, CHI, (2003).
  150. V.A. Tsihrintzis, R. Hamid, Runoff quality prediction from small urban catchments using SWMM, Hydrol. Process., 12 (1998) 311–329.
  151. W. Shuster, E. Pappas, Laboratory simulation of urban runoff and estimation of runoff hydrographs with experimental curve numbers implemented in USEPA SWMM, J. Irrig. Drainage Eng., (2010).
  152. M. Mansell, F. Rollet, The effect of surface texture on evaporation, infiltration and storage properties of paved surfaces, Water Sci. Technol., 60 (2009) 71.
  153. M.L. Terstriep, M.L. Voorhees, G.M. Bender, Conventional Urbanization and Its Effect on Storm Runoff, Illinois State Water Survey, 1976.
  154. D.R. Easterling, T.R. Karl, K.P. Gallo, D.A. Robinson, K.E. Trenberth, A. Dai, Observed climate variability and change of relevance to the biosphere, J. Geophys. Res.-Atmos. (1984–2012), 105 (2000) 20101–20114.
  155. Y.-P. Xu, X. Zhang, Q. Ran, Y. Tian, Impact of climate change on hydrology of upper reaches of Qiantang River Basin, East China, J. Hydrol., 483 (2013) 51–60.
  156. N. Wagesho, M. Jain, N. Goel, Effect of climate change on runoff generation: application to rift valley lakes basin of Ethiopia, J. Hydrol. Eng., 18 (2012) 1048–1063.
  157. E.S. Chung, K. Park, K.S. Lee, The relative impacts of climate change and urbanization on the hydrological response of a Korean urban watershed, Hydrol. Process., 25 (2011) 544–560.
  158. J. Franczyk, H. Chang, The effects of climate change and urbanization on the runoff of the Rock Creek basin in the Portland metropolitan area, Oregon, USA, Hydrol. Process., 23 (2009) 805–815.
  159. L. Poelmans, A.V. Rompaey, V. Ntegeka, P. Willems, The relative impact of climate change and urban expansion on peak flows: a case study in central Belgium, Hydrol. Process., 25 (2011) 2846–2858.
  160. D. Wang, X. Cai, Comparative study of climate and human impacts on seasonal baseflow in urban and agricultural watersheds, Geophys. Res. Lett., 37 (2010).
  161. S. Dubé, A.P. Plamondon, R.L. Rothwell, Watering up after clear-cutting on forested wetlands of the St. Lawrence lowland, Water Resour. Res., 31 (1995) 1741–1750.
  162. A. Iroumé, A. Huber, K. Schulz, Summer flows in experimental catchments with different forest covers, Chile, J. Hydrol., 300 (2005) 300–313.
  163. J.C. Knox, Agricultural influence on landscape sensitivity in the Upper Mississippi River Valley, Catena, 42 (2001) 193–224.
  164. D.S. Leigh, Late Quaternary climates and river channels of the Atlantic Coastal Plain, Southeastern USA, Geomorphology, 101 (2008) 90–108.
  165. M.D. Tomer, K.E. Schilling, A simple approach to distinguish land-use and climate-change effects on watershed hydrology, J. Hydrol., 376 (2009) 24–33.
  166. G. Fu, M.E. Barber, S. Chen, Impacts of climate change on regional hydrological regimes in the Spokane River Watershed, J. Hydrol. Eng., (2007).
  167. R.N. Jones, F.H. Chiew, W.C. Boughton, L. Zhang, Estimating the sensitivity of mean annual runoff to climate change using selected hydrological models, Adv. Water Resour., 29 (2006) 1419–1429.
  168. L. Liuzzo, L.V. Noto, E.R. Vivoni, G. La Loggia, Basin-scale water resources assessment in Oklahoma under synthetic climate change scenarios using a fully distributed hydrologic model, J. Hydrol. Eng., (2009).
  169. A. Loukas, M.C. Quick, Effect of climate change on hydrologic regime of two climatically different watersheds, J. Hydrol. Eng., (1996).
  170. B. Notter, L. MacMillan, D. Viviroli, R. Weingartner, H.-P. Liniger, Impacts of environmental change on water resources in the Mt. Kenya region, J. Hydrol., 343 (2007) 266–278.
  171. H. Thodsen, The influence of climate change on stream flow in Danish rivers, J. Hydrol., 333 (2007) 226–238.
  172. J. Zhang, G. Wang, R. He, C. Liu, Variation trends of runoffs in the Middle Yellow River basin and its response to climate change, Adv. Water Sci., 20 (2009) 153–158.
  173. J. Zhang, G. Wang, Impacts of climate change on hydrology and water resources, Sci. Press, (2007) 138–181.
  174. H.-p. Qin, Z.-x. Li, G. Fu, The effects of low impact development on urban flooding under different rainfall characteristics, J. Environ. Manage., 129 (2013) 577–585.
  175. M. Guan, N. Sillanpää, H. Koivusalo, Storm runoff response to rainfall pattern, magnitude and urbanization in a developing urban catchment, Hydrol. Process., (2015).
  176. K. Langford, Using a mathematical model to assess the hydrological effects of landuse change, (1976).
  177. P.E. Church, G.E. Granato, D.W. Owens, Basic requirements for collecting, documenting, and reporting precipitation and stormwater-flow measurements, National highway runoff water-quality data and methodology synthesis, 1 (2003) 47–79.
  178. A. Berne, G. Delrieu, J.-D. Creutin, C. Obled, Temporal and spatial resolution of rainfall measurements required for urban hydrology, J. Hydrol., 299 (2004) 166–179.
  179. T. Einfalt, K. Arnbjerg-Nielsen, C. Golz, N.-E. Jensen, M. Quirmbach, G. Vaes, B. Vieux, Towards a roadmap for use of radar rainfall data in urban drainage, J. Hydrol., 299 (2004) 186–202.
  180. F. Fabry, A. Bellon, M.R. Duncan, G.L. Austin, High resolution rainfall measurements by radar for very small basins: the sampling problem reexamined, J. Hydrol., 161 (1994) 415–428.
  181. K. Tilford, N. Fox, C. Collier, Application of weather radar data for urban hydrology, Meteorol. Appl., 9 (2002) 95–104.
  182. H. Taha, Urban climates and heat islands: albedo, evapotranspiration, and anthropogenic heat, energy and buildings, 25 (1997) 99–103.
  183. A.J. Arnfield, Two decades of urban climate research: a review of turbulence, exchanges of energy and water, and the urban heat island, Int. J. Climatol., 23 (2003) 1–26.
  184. P.G. Dixon, T.L. Mote, Patterns and causes of Atlanta’s urban heat island-initiated precipitation, J. Appl. Meteorol., 42 (2003) 1273–1284.
  185. A.M. Rizwan, L.Y. Dennis, L. Chunho, A review on the generation, determination and mitigation of Urban Heat Island, J. Environ. Sci., 20 (2008) 120–128.
  186. L. Cuo, D.P. Lettenmaier, B.V. Mattheussen, P. Storck, M. Wiley, Hydrologic prediction for urban watersheds with the Distributed Hydrology–Soil–Vegetation Model, Hydrol. Process., 22 (2008) 4205–4213.
  187. J.R. Guay, Rainfall-Runoff Characteristics and Effects of Increased Urban Density on Streamflow and Infiltration in the Eastern Part of the San Jacinto River Basin, Riverside County, California, US Department of the Interior, US Geological Survey, (2002).
  188. L. Wang, J. Lyons, P. Kanehl, R. Bannerman, Impacts of urbanization on stream habitat and fish across multiple spatial scales, Environ. Manage., 28 (2001) 255–266.
  189. G. Nanson, R. Young, Downstream reduction of rural channel size with contrasting urban effects in small coastal streams of southeastern Australia, J. Hydrol., 52 (1981) 239–255.
  190. A. Robinson, The effects of urbanization on stream channel morphology, Proc. Natl. Symp. Urban Hydrology, Hydraulics, and Sediment Control, (1976).
  191. T. Schueler, The importance of imperviousness, Watershed Prot. Techn., 1 (1994) 100–101.
  192. R.D. Klein, Urbanization and stream quality impairment 1, J. Am. Water Resour. Assoc., 15 (1979) 948–963.