000763581 000__ 04871cam\a2200565Ii\4500 000763581 001__ 763581 000763581 005__ 20230306142445.0 000763581 006__ m\\\\\o\\d\\\\\\\\ 000763581 007__ cr\cn\nnnunnun 000763581 008__ 161027s2016\\\\sz\\\\\\o\\\\\001\0\eng\d 000763581 019__ $$a961818656$$a962436607 000763581 020__ $$a9783319401959$$q(electronic book) 000763581 020__ $$a3319401955$$q(electronic book) 000763581 020__ $$z9783319401942 000763581 020__ $$z3319401947 000763581 035__ $$aSP(OCoLC)ocn961272025 000763581 035__ $$aSP(OCoLC)961272025$$z(OCoLC)961818656$$z(OCoLC)962436607 000763581 040__ $$aN$T$$beng$$erda$$epn$$cN$T$$dEBLCP$$dAZU$$dIDEBK$$dOCLCO$$dYDX$$dGW5XE$$dN$T 000763581 049__ $$aISEA 000763581 050_4 $$aTC409 000763581 08204 $$a628/.21$$223 000763581 24500 $$aUrban hydrology, watershed management and socio-economic aspects /$$cArup K. Sarma, Vijay P. Singh, Suresh A. Kartha, Rajib K. Bhattacharjya, editors. 000763581 264_1 $$aSwitzerland :$$bSpringer,$$c2016. 000763581 300__ $$a1 online resource. 000763581 336__ $$atext$$btxt$$2rdacontent 000763581 337__ $$acomputer$$bc$$2rdamedia 000763581 338__ $$aonline resource$$bcr$$2rdacarrier 000763581 4901_ $$aWater science and technology library ;$$vvolume 73 000763581 500__ $$aIncludes index. 000763581 5050_ $$aPreface; Contents; About the Editors; Impacts of Urbanization on Hydrological Processes and Mitigation Measures; 1 Impact of Slope and Vegetation on Hydrological Processes; Abstract; 1 Introduction; 2 Background; 2.1 Infiltration; 2.2 Runoff; 2.3 Permeability; 2.4 Catchment Area; 2.5 Watershed with Slopes; 3 Modes and Methods; 3.1 Experimental Study; 4 Results and Discussion; 4.1 Particle Size Gradation Curve; 4.1.1 Calculation of Coefficient of Uniformity and Coefficient of Curvature; 4.2 Infiltration by Restricting Runoff Without Vegetation; 4.2.1 Conclusions Drawn from the Curves 000763581 5058_ $$a4.3 Infiltration Without Considering Runoff with Vegetation4.3.1 Conclusions Drawn from the Curves; 4.4 Infiltration by Allowing Runoff Without Vegetation; 4.4.1 Conclusions Drawn from the Curves; 4.5 Infiltration by Allowing Runoff with Vegetation; 4.5.1 Conclusions Drawn from the Curves; 4.6 Runoff Without Vegetation; 4.6.1 Conclusions Drawn from the Curves; 4.7 Runoff with Vegetation; 4.7.1 Conclusions Drawn from the Curves; 4.8 Ideal Conditions for Conducting the Experiment in Rainfall Apparatus; 4.9 Data Analysis; 4.10 Scope of Further Study; 4.11 Practical Application; 5 Conclusion 000763581 5058_ $$aAcknowledgementsReferences; 2 Impact of Total and Effective Imperviousness on Runoff Prediction; Abstract; 1 Introduction; 2 Study Area; 3 Methodology; 4 Runoff Simulation of Watersheds; 5 Analysis and Results; 6 Conclusion; References; 3 Issues of Urban Drainage-Present Status and the Way Forward; Abstract; 1 Introduction; 2 Adaptation and Mitigation Measures in Mumbai; 3 Adaptation and Mitigation Measures in India; 4 National Mission on Sustainable Habitat: Climate Change Adaptation and Urban Drainage Parameters; 5 Summary and Conclusions; References 000763581 5058_ $$a4 Optimal Allocation of Ecological Management Practices in a Hilly Urban WatershedAbstract; 1 Introduction; 2 Mathematical Formulation; 3 Case Study; 3.1 EMP Consideration; 3.2 Parameters of the RUSLE Model; 3.3 Parameters for the Rational Method; 3.4 Other Consideration for the Optimization Model; 4 Results; 5 Conclusions; References; Remote Sensing and GIS Applications in Urban Hydrology; 5 Surface Runoff Depth by SCS Curve Number Method Integrated with Satellite Image and GIS Techniques; Abstract; 1 Introduction; 2 Study Area; 3 Methodology; 3.1 Data Acquisition and GIS Techniques 000763581 5058_ $$a3.1.1 Demarcation of District Boundary and Watershed Delineation3.1.2 Landuse/Landcover Classification; 3.1.3 Generation of Hydrological Soil Group; 3.1.4 Derivation of the Curve Number (CN); 3.2 Estimation of Runoff by Using USDA SCS-CN Method; 4 Results and Discussion; 4.1 Watershed Map; 4.2 Landuse/Landcover Map; 4.3 Soil Types and Hydrological Soil Group Map; 4.4 Curve Number Generated; 4.5 Estimated Surface Runoff Depth and Its Verification; 5 Conclusion; References; 6 Study on the Impact of Land Use Changes on Urban Hydrology of Cochin, Kerala, India; Abstract; 1 Introduction 000763581 506__ $$aAccess limited to authorized users. 000763581 588__ $$aOnline resource; title from PDF title page (viewed November 9, 2016) 000763581 650_0 $$aUrban hydrology. 000763581 650_0 $$aEnvironmental management. 000763581 650_0 $$aRemote sensing. 000763581 650_0 $$aUrban geography. 000763581 650_0 $$aWater$$xPollution. 000763581 7001_ $$aSarma, Arup K.$$eeditor. 000763581 7001_ $$aSingh, V. P.$$q(Vijay P.),$$eeditor. 000763581 7001_ $$aKartha, Suresh A.$$eeditor. 000763581 7001_ $$aBhattacharjya, Rajib K.$$eeditor. 000763581 830_0 $$aWater science and technology library ;$$vv. 73. 000763581 852__ $$bebk 000763581 85640 $$3SpringerLink$$uhttps://univsouthin.idm.oclc.org/login?url=http://link.springer.com/10.1007/978-3-319-40195-9$$zOnline Access$$91397441.1 000763581 909CO $$ooai:library.usi.edu:763581$$pGLOBAL_SET 000763581 980__ $$aEBOOK 000763581 980__ $$aBIB 000763581 982__ $$aEbook 000763581 983__ $$aOnline 000763581 994__ $$a92$$bISE