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Stormwater Hydrology and Drainage
Storm sewers. --- Urban hydrology. --- Urban runoff. --- Sewers, Storm --- Storm drainage systems --- Storm drains --- Surface water sewers --- Drainage --- Runoff --- Sewerage --- Urban runoff --- Urban snowmelt runoff --- Urban stormwater runoff --- Sewage --- Urban hydrology --- Hydrology --- Drainage. --- Rain and rainfall. --- Storm sewers
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Optimizing Stormwater Treatment Practices: A Handbook of Assessment and Maintenance provides the information necessary for developing and operating an effective maintenance program for stormwater treatment. The book offers instructions on how to measure the level of performance of stormwater treatment practices directly and bases proposed maintenance schedules on actual performance and historical maintenance efforts and costs. The inspection methods, which are proven in the field and have been implemented successfully, are necessary as regulatory agencies are demanding evaluations of the performance of stormwater treatment practices. The authors have developed a three-tiered approach that offers readers a standard protocol for how to determine the effectiveness of stormwater treatment practices currently in place. This book also: Provides a standard protocol for how to determine the effectiveness of stormwater treatment practices Assists readers with identifying which assessment techniques to use for stormwater treatment while also providing instructions on implementation methods Contains a substantial number of examples and case studies to illustrate the use of the methods discussed in the book Optimizing Stormwater Treatment Practices: A Handbook of Assessment and Maintenance is an ideal reference and handbook for stormwater professionals. .
Civil engineering. --- Engineering. --- Environmental pollution. --- Engineering & Applied Sciences --- Engineering - General --- Urban runoff --- Storm sewers. --- Management. --- Sewers, Storm --- Storm drainage systems --- Storm drains --- Surface water sewers --- Stormwater management, Urban --- Water quality. --- Water pollution. --- Civil Engineering. --- Water Quality/Water Pollution. --- Waste Water Technology / Water Pollution Control / Water Management / Aquatic Pollution. --- Environmental Monitoring/Analysis. --- Rain gardens --- Drainage --- Runoff --- Sewerage --- Monitoring/Environmental Analysis. --- Chemical pollution --- Chemicals --- Contamination of environment --- Environmental pollution --- Pollution --- Contamination (Technology) --- Asbestos abatement --- Bioremediation --- Environmental engineering --- Environmental quality --- Factory and trade waste --- Hazardous waste site remediation --- Hazardous wastes --- In situ remediation --- Lead abatement --- Pollutants --- Refuse and refuse disposal --- Engineering --- Public works --- Environmental aspects --- Environmental monitoring. --- Biomonitoring (Ecology) --- Ecological monitoring --- Monitoring, Environmental --- Applied ecology --- Aquatic pollution --- Fresh water --- Fresh water pollution --- Freshwater pollution --- Inland water pollution --- Lake pollution --- Lakes --- Reservoirs --- River pollution --- Rivers --- Stream pollution --- Water contamination --- Water pollutants --- Water pollution --- Waste disposal in rivers, lakes, etc. --- Freshwater --- Freshwater quality --- Marine water quality --- Quality of water --- Seawater --- Seawater quality --- Water --- Measurement --- Monitoring --- Quality --- Composition
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As urban areas keep growing, water infrastructure ages, and the requirements on environmental protection become more rigorous, there is a continual need for upgrading water pollution control facilities and restoring degraded urban waters. Such issues are addressed in this book by focusing on five major topics: (a) Upgrading stormwater management facilities, (b) Retrofitting / upgrading combined sewer overflow (CSO) facilities, (c) Optimising/upgrading sewage treatment plant performance, (d) Urban stream restoration, and (e) Challenges in restoring urban environment. Each chapter contains some overview papers followed by research or case study papers. Besides presentations of new approaches and accomplishments in the field of upgrading and restoration, several papers provide analysis of vast needs in this field in several countries of Central and Eastern Europe, which either recently joined the European Union (EU) or are preparing for accession, and need to comply with the existing EU directives dealing with environmental protection. As such, this book will be of primary interest to researchers and university lecturers dealing with environmental upgrading and restoration, environmental planners from all levels of government, municipal engineers and politicians, and finally the private industry representatives (consultants, private utilities and environmental technology suppliers) searching for new business opportunities among the new or aspiring members of EU.
Urban runoff. --- Urban runoff --- Storm sewers --- Water-supply --- Water use --- Stream restoration --- Environmental Sciences --- Environmental Engineering --- Earth & Environmental Sciences --- Civil & Environmental Engineering --- Engineering & Applied Sciences --- Environmental aspects --- Rehabilitation, River --- Rehabilitation, Stream --- Restoration of rivers --- Restoration of streams --- River rehabilitation --- River restoration --- Stream rehabilitation --- Rivers --- Use of water --- Utilization of water --- Water --- Water utilization --- Sewers, Storm --- Storm drainage systems --- Storm drains --- Surface water sewers --- Urban snowmelt runoff --- Urban stormwater runoff --- Restoration --- Utilization --- Ecoulement urbain --- Egouts pluviaux --- Eaux --- Réhabilitation --- Commutative algebra - Congresses. --- Algèbres commutatives --- Computational noncommutative algebra --- Réhabilitation --- EPUB-LIV-FT LIVECOLO SPRINGER-B Urban environment --- Eau --- Cours d'eau --- Congresses. --- Congrès --- Approvisionnement --- Aspect de l'environnement --- Utilisation --- Commutative algebra --- Congresses --- Restoration ecology --- Drainage --- Runoff --- Sewerage --- Sewage --- Urban hydrology --- Regulation --- Algebra. --- Algebraic geometry. --- Algebraic Geometry. --- Algebraic geometry --- Geometry --- Mathematics --- Mathematical analysis
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This book on Sustainable Drainage Systems disseminates recent findings on current challenges faced by practicing sustainable drainage engineers and scientists.
Drainage --- Runoff --- Flood control --- Storm sewers --- Hydraulic engineering --- Sustainable development. --- Environmental aspects. --- Management --- Development, Sustainable --- Ecologically sustainable development --- Economic development, Sustainable --- Economic sustainability --- ESD (Ecologically sustainable development) --- Smart growth --- Sustainable development --- Sustainable economic development --- Economic development --- Engineering, Hydraulic --- Engineering --- Fluid mechanics --- Hydraulics --- Shore protection --- Sewers, Storm --- Storm drainage systems --- Storm drains --- Surface water sewers --- Sewerage --- Urban runoff --- Flood prevention --- Flood protection --- Floods --- Prevention of floods --- Rivers --- Forest influences --- Flowoff --- Melt runoff --- Meltwater runoff --- Rainfall runoff --- Run-off --- Snow cover runoff --- Snow dump runoff --- Snow melt runoff --- Snowmelt-induced runoff --- Snowmelt runoff --- Snowmelt water runoff --- Storm runoff --- Storm water runoff --- Stormwater runoff --- Water runoff, Snowmelt --- Water runoff, Storm --- Hydrologic cycle --- Land drainage --- Agricultural engineering --- Reclamation of land --- Sanitary engineering --- Environmental aspects --- Prevention --- Regulation
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Different types of pressures, such as nutrients, micropollutants, microbes, nanoparticles, microplastics, or antibiotic-resistant genes, endanger the quality of water bodies. Evidence-based pollution control needs to be built on the three basic elements of water governance: Monitoring, modeling, and management. Monitoring sets the empirical basis by providing space- and time-dependent information on substance concentrations and loads, as well as driving boundary conditions for assessing water quality trends, water quality statuses, and providing necessary information for the calibration and validation of models. Modeling needs proper system understanding and helps to derive information for times and locations where no monitoring is done or possible. Possible applications are risk assessments for exceedance of quality standards, assessment of regionalized relevance of sources and pathways of pollution, effectiveness of measures, bundles of measures or policies, and assessment of future developments as scenarios or forecasts. Management relies on this information and translates it in a socioeconomic context into specific plans for implementation. Evaluation of success of management plans again includes well-defined monitoring strategies. This book provides an important overview in this context.
Research & information: general --- Environmental economics --- Pollution control --- diffuse pollution --- field mapping --- storm drains --- Bayesian statistics --- distributed modelling --- PhosFate --- water quality --- analysis method --- chromaticity measurement --- surface fitting --- concentration of dissolved matter --- Copernicus Programme --- ACOLITE --- flooding --- quasi-real time monitoring --- inundation mapping --- suspended matter --- Spain --- cyanobacteria --- Microcystis aeruginosa --- water --- monitoring --- spectrophotometry --- derivative absorbance --- model evaluation --- nitrogen --- nutrient retention --- phosphorus --- sediment --- constructed wetland --- water resources management --- eutrophication --- unmanned surface vehicle --- water monitoring --- ensemble learning --- dynamic power management --- observational process ontology --- water quality monitoring --- water pollution alert --- semantic discovery --- water quality status --- sources and pathways --- land cover --- digital elevation model --- urban river --- ArcGIS --- modeling --- CSO --- urban drainage --- sewer system --- trace pollutants --- urban runoff --- concentration duration frequency curve --- MONERIS --- diffuse nutrient emission --- empirical modeling --- river basin management plan of Hungary --- effectiveness of measures --- scenarios and forecasts --- socioeconomic context --- sources and pathways of water pollution --- system understanding --- water governance --- water quality statuses and trends --- water pollution control --- diffuse pollution --- field mapping --- storm drains --- Bayesian statistics --- distributed modelling --- PhosFate --- water quality --- analysis method --- chromaticity measurement --- surface fitting --- concentration of dissolved matter --- Copernicus Programme --- ACOLITE --- flooding --- quasi-real time monitoring --- inundation mapping --- suspended matter --- Spain --- cyanobacteria --- Microcystis aeruginosa --- water --- monitoring --- spectrophotometry --- derivative absorbance --- model evaluation --- nitrogen --- nutrient retention --- phosphorus --- sediment --- constructed wetland --- water resources management --- eutrophication --- unmanned surface vehicle --- water monitoring --- ensemble learning --- dynamic power management --- observational process ontology --- water quality monitoring --- water pollution alert --- semantic discovery --- water quality status --- sources and pathways --- land cover --- digital elevation model --- urban river --- ArcGIS --- modeling --- CSO --- urban drainage --- sewer system --- trace pollutants --- urban runoff --- concentration duration frequency curve --- MONERIS --- diffuse nutrient emission --- empirical modeling --- river basin management plan of Hungary --- effectiveness of measures --- scenarios and forecasts --- socioeconomic context --- sources and pathways of water pollution --- system understanding --- water governance --- water quality statuses and trends --- water pollution control
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Urban runoff --- Runoff --- Hydrology --- Storm sewers --- Management --- Design --- Eau de pluie --- Rainwater --- Eau de ruissellement --- Runoff water --- Eau d'infiltration --- Infiltration water --- Tempête --- Storms --- Modèle --- Models --- design --- Écoulement de fluide --- Fluid flow --- Drainage --- drainage --- Pompe --- Pumps --- Qualité de l'eau --- Water quality --- Gestion --- management --- Application des ordinateurs --- computer applications --- 628.2 --- 556.166.2 --- Urban water removal. Town drainage, sewerage --- Storm floods --- 556.166.2 Storm floods --- 628.2 Urban water removal. Town drainage, sewerage --- Flood routing --- Hydrologic models --- Stormwater management, Urban --- Rain gardens --- Sewers, Storm --- Storm drainage systems --- Storm drains --- Surface water sewers --- Sewerage --- Flowoff --- Melt runoff --- Meltwater runoff --- Rainfall runoff --- Run-off --- Snow cover runoff --- Snow dump runoff --- Snow melt runoff --- Snowmelt-induced runoff --- Snowmelt runoff --- Snowmelt water runoff --- Storm runoff --- Storm water runoff --- Stormwater runoff --- Water runoff, Snowmelt --- Water runoff, Storm --- Hydrologic cycle --- Hydrological modeling --- Hydrological models --- Hydrology models --- Models and modelmaking --- Routing, Flood --- Floods --- Stream measurements --- drainage. --- management. --- Urban runoff - Management --- Runoff - Management --- Storm sewers - Design --- Reservoir --- Hydrology. --- Floods. --- Floodplain management. --- Floodplains. --- Hydraulic engineering. --- Storm sewers. --- Runoff. --- Hydrologic models. --- Flood routing. --- Eaux pluviales --- Écoulement urbain --- Bassins de retenue des eaux pluviales --- Plaines inondables --- Plaines inondables. --- Génie hydraulique. --- Égouts pluviaux --- Modèles hydrologiques. --- Rainwater. --- Runoff water. --- Infiltration water. --- Storms. --- Models. --- design. --- Fluid flow. --- Pumps. --- Water quality. --- Hydraulic systems. --- Mathematical models --- Design. --- Management. --- Collecte. --- Infiltration. --- Gestion. --- Simulation par ordinateur. --- Modèles mathématiques
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