Search results for "Urban drainage"

showing 10 items of 51 documents

Greenhouse gas emissions from integrated urban drainage systems: where do we stand?

2018

As sources of greenhouse gas (GHG) emissions, integrated urban drainage systems (IUDSs) (i.e., sewer systems, wastewater treatment plants and receiving water bodies) contribute to climate change. This paper, produced by the International Working Group on Data and Models, which works under the IWA/IAHR Joint Committee on Urban Drainage, reviews the state-of-the-art and modelling tools developed recently to understand and manage GHG emissions from IUDS. Further, open problems and research gaps are discussed and a framework for handling GHG emissions from IUDSs is presented. The literature review reveals that there is a need to strengthen already available mathematical models for IUDS to take …

Mathematical modellingSettore ICAR/03 - Ingegneria Sanitaria-Ambientale0208 environmental biotechnologyEnvironmental engineeringClimate change02 engineering and technology010501 environmental sciencesInternational working group01 natural sciences020801 environmental engineeringWater quality/dk/atira/pure/sustainabledevelopmentgoals/climate_actionGreenhouse gasSDG 13 - Climate ActionEnvironmental scienceIntegrated urban drainage modellingSewage treatmentGHGWater qualityDrainage0105 earth and related environmental sciencesWater Science and Technology
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Global sensitivity analysis for urban water quality modelling: Terminology, convergence and comparison of different methods

2015

Abstract Sensitivity analysis represents an important step in improving the understanding and use of environmental models. Indeed, by means of global sensitivity analysis (GSA), modellers may identify both important ( factor prioritisation ) and non-influential ( factor fixing ) model factors. No general rule has yet been defined for verifying the convergence of the GSA methods. In order to fill this gap this paper presents a convergence analysis of three widely used GSA methods (SRC, Extended FAST and Morris screening) for an urban drainage stormwater quality–quantity model. After the convergence was achieved the results of each method were compared. In particular, a discussion on peculiar…

Mathematical optimizationMathematical modelSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleUncertaintyContrast (statistics)Numerical method6. Clean waterTerm (time)law.inventionSystems analysisMathematical modelMathematical models; Numerical methods; Sewer sediments; Systems analysis; Uncertainty; Urban drainage modelling; Water Science and TechnologySystems analysilawSewer sedimentConvergence (routing)StatisticsVenn diagramSensitivity (control systems)Urban drainage modellingReliability (statistics)MathematicsWater Science and Technology
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Uncertainty Propagation in Integrated Urban Water Quality Modelling

2018

Sensitivity and uncertainty assessment of integrated urban drainage water quality models are crucial steps in the evaluation of the reliability of model results. Indeed, the assessment of the reliability of the results of complex water quality models is crucial in understanding their significance. In the case of integrated urban drainage water quality models, due to the fact that integrated approaches are basically a cascade of sub-models (simulating the sewer system, wastewater treatment plant and receiving water body), uncertainty produced in one sub-model propagates to the following ones in a manner dependent on the model structure, the estimation of parameters and the availability and u…

Mathematical optimizationPropagation of uncertaintySettore ICAR/03 - Ingegneria Sanitaria-AmbientaleComputer scienceStandard deviationpollution evaluationKeywords: Integrated urban drainage modelling Environmental water quality management Pollution evaluation Uncertainty analysisIntegrated urban drainage modellingSensitivity (control systems)Water qualityDrainageGLUEuncertainty analysisenvironmental water quality managementUncertainty analysisReliability (statistics)
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Simplified model to evaluate the fate of micropollutants in an integrated urban drainage system: sensitivity analysis

2016

The paper presents the sensitivity analysis of an integrated urban water quality system by means of the global sensitivity analysis (GSA). Specifically, an home-made integrated model developed in previous studies has been modified in order to include the micropollutant assessment (namely, sulfamethoxazole - SMX). The model takes into account also the interactions between the three components of the system: sewer system (SS), wastewater treatment plant (WWTP) and the receiving water body (RWB). The analysis has been applied to an experimental catchment nearby Palermo (Italy): the Nocella catchment. Five scenarios each characterized by different combinations of sub-systems (i.e., SS, WWTP and…

MicropollutantmodellingSettore ICAR/03 - Ingegneria Sanitaria-Ambientaleurban drainageMonte Carlo simulationsMicropollutants; urban drainage; modelling; Monte Carlo simulations
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Ability of software SWMM to simulate sewer smooth pressurization transient

2010

As a consequence of heavy rainfall events or network malfunctioning, filling of sewers (pressurization) and network overflowing may occur. Several models are commonly used to simulate floods in drainage networks and their results are usually thought to be reliable and robust. Actually, mathematical models based on the momentum equation appear to be more suitable in correctly simulating the pressurization moving jump but models based on the energy equation are much more popular because of their greater simplicity in comparison to the former ones. In this paper, on the basis of laboratory pipe tests, the ability of software SWMM (Storm Water Management Model, probably the most popular softwar…

Numerical modelling Pressurization Transition Unsteady flow Urban drainageSettore ICAR/01 - Idraulica
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Storm sewer pressurization transient – an experimental investigation

2014

Pipe pressurization is examined experimentally by 144 laboratory experiments in a circular tilting pipe between two tanks, in which the transient was triggered by sudden closing of the downstream tank outlet. The experiments cover ranges of values of slope, velocity and filling ratio of the open-channel flow not explored in previous studies. Situations involving considerable air quantity and consequent intense pressure oscillations were also reproduced. Two different pressurization patterns, defined as “smooth” and “abrupt”, were observed, but only the abrupt pattern produced intense pressure oscillations. The comparison among all the abrupt pressurization surges showed how the oscillations…

OscillationFlow (psychology)StormVolumetric flow rateSettore ICAR/01 - IdraulicaPhysics::Fluid DynamicsFilling ratioCabin pressurizationEnvironmental scienceAir–water flow pressurization storm sewer system transition unsteady flow urban drainageGeotechnical engineeringTransient (oscillation)Intensity (heat transfer)Water Science and TechnologyCivil and Structural Engineering
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Receiving water body quality assessment: an integrated mathematical approach applied to an Italian case study

2011

This study presents a basin-scale approach to the analysis of receiving water body quality considering both point and non-point pollution sources. In particular, this paper describes an extensive data gathering campaign carried out in the Nocella catchment, which is an agricultural and semi-urbanised basin located in Sicily, Italy. Two sewer systems, two wastewater treatment plants and a river reach were monitored during both dry and wet weather periods. A mathematical model of the entire integrated system was also created. Specifically, a detailed modelling approach was developed by employing three well known models: Storm Water Management Model, GPS-X and Soil and Water Assessment Tool. T…

PollutionAtmospheric ScienceSoil and Water Assessment Toolmedia_common.quotation_subjectDrainage basinPoint source pollutionnon-point pollution sourceQuality (business)Civil and Structural EngineeringWater Science and Technologymedia_commongeographygeography.geographical_feature_categorySettore ICAR/03 - Ingegneria Sanitaria-Ambientalebusiness.industryriver water quality monitoringSettore ICAR/02 - Costruzioni Idrauliche E Marittime E IdrologiaEnvironmental engineeringriver water quality modellingStorm Water Management ModelGeotechnical Engineering and Engineering Geologyurban drainage-integrated modellingpoint pollution sourceAgricultureEnvironmental scienceWater qualityWater resource managementbusinessJournal of Hydroinformatics
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Emission standards versus immission standards for assessing the impact of urban drainage on ephemeral receiving water bodies

2010

In the past, emission standard indicators have been adopted by environmental regulation authorities in order to preserve the quality of a receiving water body. Such indicators are based on the frequency or magnitude of a polluted discharge that may be continuous or intermittent. In order to properly maintain the quality of receiving waters, the Water Framework Directive, following the basic ideas of British Urban Pollution Manual, has been established. The Directive has overtaken the emission-standard concept, substituting it with the stream-standard concept that fixes discharge limits for each polluting substance depending on the self-depurative characteristics of receiving waters. Stream-…

PollutionConservation of Natural ResourcesTime FactorsEnvironmental EngineeringRainmedia_common.quotation_subjecturban drainage integrated modelling Water Framework Directive water quality management water quality monitoringEnvironmentWaste Disposal FluidDrainage system (geomorphology)Water MovementsCitiesDrainageWater Science and Technologymedia_commonSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleEmission standardSettore ICAR/02 - Costruzioni Idrauliche E Marittime E IdrologiaDrainage SanitaryWater PollutionEnvironmental engineeringWaterModels TheoreticalWastewaterWater Framework DirectiveEnvironmental scienceCombined sewerWater qualityWater resource managementWater Science and Technology
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Propagation of precipitation measurement biases into the hydraulic modelling of urban drainage systems – A case study of the Parco D’Orleans sub-urba…

2020

Aim of this study is to evaluate the impact of Precipitation Measurement Biases (PMBs) of tippingbucket rain gauges onto the hydraulic modelling of urban drainage networks. As a case study, the monitored experimental suburban catchment of Parco d’Orleans located in the University Campus of Palermo, Italy and managed since 1987 by the Department of Engineering of the University of Palermo is considered. . Two tipping-bucket rain gauges provide a good spatial coverage of the catchment area and an acoustic level gauge is installed at the outlet of the drainage network for flow mesaurements. Contemporary high temporal resolution rainfall and runoff data series are available between 1993 to 1998…

Precipitation Measurement BiasesSettore ICAR/02 - Costruzioni Idrauliche E Marittime E Idrologiaurban drainage networks
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Receiving water quality assessment: comparison between simplified and detailed integrated urban modelling approaches

2010

Urban water quality management often requires use of numerical models allowing the evaluation of the cause–effect relationship between the input(s) (i.e. rainfall, pollutant concentrations on catchment surface and in sewer system) and the resulting water quality response. The conventional approach to the system (i.e. sewer system, wastewater treatment plant and receiving water body), considering each component separately, does not enable optimisation of the whole system. However, recent gains in understanding and modelling make it possible to represent the system as a whole and optimise its overall performance. Indeed, integrated urban drainage modelling is of growing interest for tools to …

Quality ControlMathematical optimizationEnvironmental EngineeringQuality managementComputer sciencemedia_common.quotation_subjectWater SupplyDrainage system (geomorphology)Sensitivity analysisQuality (business)mathematical modellingReliability (statistics)Uncertainty analysisurban drainage integrated modellingWater Science and Technologymedia_commonMathematical modelSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleUrbanizationSettore ICAR/02 - Costruzioni Idrauliche E Marittime E IdrologiaEnvironmental engineeringriver water qualitysensitivity analysiModels TheoreticalWater Framework Directiveuncertainty analysi
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