Search results for "Modell"

showing 10 items of 2134 documents

Geostatistical Microscale Study of Magnetic Susceptibility in Soil Profile and Magnetic Indicators of Potential Soil Pollution

2015

Directional variograms, along the soil profile, can be useful and precise tool that can be used to increase the precision of the assessment of soil pollution. The detail analysis of spatial variability in the soil profile can be also an important part of the standardization of soil magnetometry as a screening method for an assessment of soil pollution related to the dust deposition. The goal of this study was to investigate the correlation between basic parameters of spatial correlations of magnetic susceptibility in the soil profile, such as a range of correlation and a sill, and selected magnetometric indicators of soil pollution. Magnetic indicators were an area under the curve of magnet…

Environmental EngineeringMagnetometerSoil pollutionSoil scienceDispersion (geology)complex mixturesArticlelaw.inventionlawEnvironmental ChemistryVariogramWater Science and TechnologyHydrogeologyField magnetometrySoil magnetic susceptibilityEcological Modelingequipment and suppliesPollutionMagnetic susceptibilitySoil contaminationEcological ModellingEnvironmental scienceSoil horizonSpatial variabilityMagnetic indicatorsSpatial correlationhuman activitiesWater, Air, & Soil Pollution
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Uncertainty and sensitivity analysis for reducing greenhouse gas emissions from wastewater treatment plants.

2020

Abstract This paper presents the sensitivity and uncertainty analysis of a plant-wide mathematical model for wastewater treatment plants (WWTPs). The mathematical model assesses direct and indirect (due to the energy consumption) greenhouse gases (GHG) emissions from a WWTP employing a whole-plant approach. The model includes: i) the kinetic/mass-balance based model regarding nitrogen; ii) two-step nitrification process; iii) N2O formation both during nitrification and denitrification (as dissolved and off-gas concentration). Important model factors have been selected by using the Extended-Fourier Amplitude Sensitivity Testing (FAST) global sensitivity analysis method. A scenario analysis h…

Environmental EngineeringNitrogen0208 environmental biotechnology02 engineering and technology010501 environmental sciencesWastewater01 natural sciencesWaste Disposal FluidGreenhouse gas emissionModellingGreenhouse GasesWaste WaterScenario analysisEffluentUncertainty analysis0105 earth and related environmental sciencesWater Science and TechnologyBiological Oxygen Demand AnalysisEnergy demandSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleChemical oxygen demandEnvironmental engineeringUncertainty020801 environmental engineeringWastewaterGreenhouse gasEnvironmental scienceNitrificationPlant-wide assessmentWaste disposalWater science and technology : a journal of the International Association on Water Pollution Research
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Greenhouse gases from membrane bioreactors: Mathematical modelling, sensitivity and uncertainty analysis

2017

In this study a new mathematical model to quantify greenhouse gas emissions (namely, carbon dioxide and nitrous oxide) from membrane bioreactors (MBRs) is presented. The model has been adopted to predict the key processes of a pilot plant with pre-denitrification MBR scheme, filled with domestic and saline wastewater. The model was calibrated by adopting an advanced protocol based on an extensive dataset. In terms of nitrous oxide, the results show that an important role is played by the half saturation coefficients related to nitrogen removal processes and the model factors affecting the oxygen transfer rate in the aerobic and MBR tanks. Uncertainty analysis showed that for the gaseous mod…

Environmental EngineeringNitrogen0208 environmental biotechnologyNitrous OxideBioengineering02 engineering and technologyWastewater010501 environmental sciences01 natural sciencesModellingchemistry.chemical_compoundBioreactorsBioreactorGreenhouse gaseWaste Management and DisposalUncertainty analysis0105 earth and related environmental sciencesSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleRenewable Energy Sustainability and the EnvironmentMembraneUncertaintyEnvironmental engineeringGeneral MedicineNitrous oxide020801 environmental engineeringPilot plantWastewaterchemistryGreenhouse gases; Membrane; Modelling; Uncertainty; Wastewater; Bioengineering; Environmental EngineeringGreenhouse gasCarbon dioxideEnvironmental scienceGasesSaturation (chemistry)Bioresource Technology
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A parsimonious dynamic model for river water quality assessment

2010

Water quality modelling is of crucial importance for the assessment of physical, chemical, and biological changes in water bodies. Mathematical approaches to water modelling have become more prevalent over recent years. Different model types ranging from detailed physical models to simplified conceptual models are available. Actually, a possible middle ground between detailed and simplified models may be parsimonious models that represent the simplest approach that fits the application. The appropriate modelling approach depends on the research goal as well as on data available for correct model application. When there is inadequate data, it is mandatory to focus on a simple river water qua…

Environmental EngineeringQuality managementmedia_common.quotation_subjectFresh WaterCivil engineeringRiversWater SupplyQuality (business)mathematical modellingPhotosynthesisphysical-chemical water qualityWater Science and Technologymedia_commonHydrologyNitratesPhysical modelSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleSewageMathematical modelSettore ICAR/02 - Costruzioni Idrauliche E Marittime E IdrologiaWater quality modellingsensitivity analysiModels Theoreticalsimplified modelOxygenQuaternary Ammonium CompoundsKineticsItalyData qualityConceptual modelEnvironmental scienceEnvironmental PollutantsWater qualityAlgorithmsWater Science and Technology
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Stormwater infiltration trenches: a conceptual modelling approach.

2009

In recent years, limitations linked to traditional urban drainage schemes have been pointed out and new approaches are developing introducing more natural methods for retaining and/or disposing of stormwater. These mitigation measures are generally called Best Management Practices or Sustainable Urban Drainage System and they include practices such as infiltration and storage tanks in order to reduce the peak flow and retain part of the polluting components. The introduction of such practices in urban drainage systems entails an upgrade of existing modelling frameworks in order to evaluate their efficiency in mitigating the impact of urban drainage systems on receiving water bodies. While s…

Environmental EngineeringSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleStormwater qualityRainSettore ICAR/02 - Costruzioni Idrauliche E Marittime E IdrologiaStormwaterEnvironmental engineeringintegrated urban drainage managementModels TheoreticalCivil engineeringPercolation trenchcatchment-scale modelinfiltration structure modellingCloggingInfiltration (hydrology)Storage tankstormwater qualityWater MovementsEnvironmental scienceDrainageWater Science and TechnologyWater science and technology : a journal of the International Association on Water Pollution Research
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Toward a New Plant-Wide Experimental and Modeling Approach for Reduction of Greenhouse Gas Emission from Wastewater Treatment Plants

2019

Mechanisms causing greenhouse gas (GHG) emission in wastewater treatment plants are of great interest among researchers, encouraging the development of new methods for wastewater management. Wastewater treatment plants (WWTPs) emit three major greenhouse gases during the treatment processes: CO2, CH4, and N2O. Additional amounts of CO2 and CH4 are produced during energy consumption, which can be considered an indirect source of GHGs. Recently, several efforts have been undertaken to assess GHGs from WWTPs, with particular attention paid to the N2O assessment due to its high warming potential (300 times stronger than CO2). This study proposes an integrated model platform for WWTP simulation,…

Environmental EngineeringSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleWaste management0208 environmental biotechnology02 engineering and technologyModelling020801 environmental engineeringReduction (complexity)Energy consumptionWastewaterGreenhouse gasEnvironmental ChemistryEnvironmental scienceGreenhouse gas (GHG) emissionSewage treatmentWastewater treatment plants (WWTPs)Decision support systemGeneral Environmental ScienceCivil and Structural Engineering
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Implications of terrain resolution on modeling rainfall-triggered landslides using a TIN- based model

2021

Abstract This study employs a distributed eco-hydrological-landslide model, the tRIBS-VEGGIE-Landslide, to evaluate the influence of terrain resolution on the hydro-geomorphological processes involved in slope stability analysis. The model implements a Triangulated Irregular Network (TIN) to describe the topography starting from a grid-DEM. Five grid-DEM resolutions of the case study basin, i.e., 10, 20, 30 and 70 m, are used to derive the corresponding TINs. The results show that using irregular meshes reduces the loss of accuracy with coarser resolutions in the derived slope distribution in comparison to slope distributions estimated from the original grid-based DEM. From a hydrological p…

Environmental EngineeringSlope stability analysisEcological ModelingHydrological modellingSettore ICAR/02 - Costruzioni Idrauliche E Marittime E IdrologiaResolution (electron density)TerrainLandslideSoil scienceHydrologic modelingTriangulated irregular networkDigital elevation modelsSlope stabilityNumerical modelingDigital elevation models; Hydrologic modeling; Landslides; Numerical modeling; Slope stability analysisDigital elevation models Hydrologic modeling Landslides Numerical modeling Slope stability analysisDigital elevation modelSlope stability analysisLandslidesSoftwareGeologyEnvironmental Modelling & Software
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An integral approach to sludge handling in a WWTP operated for EBPR aiming phosphorus recovery: simulation of alternatives, LCA and LCC analyses

2020

[EN] As phosphorus is a non-renewable resource mainly used to produce fertilizers and helps to provide food all over the world, the proper management of its reserves is a global concern since it is expected to become scarcer in the near future. In this work we assessed two different sludge line configurations aiming for P extraction and recovery before anaerobic digestion and compared them with the classical configuration. This study has been performed by simulation with the model BNRM2 integrated in the software package DESASS 7.1. Configuration 1 was based on the production of a PO4-enriched stream from sludge via elutriation in the primary thickeners, while Configuration 2 was based on t…

Environmental EngineeringSludge managementWater research0208 environmental biotechnologychemistry.chemical_elementExtraction02 engineering and technologyWastewater010501 environmental sciencesWaste Disposal Fluid01 natural sciences13.- Tomar medidas urgentes para combatir el cambio climático y sus efectosFertilizersWaste Management and DisposalTECNOLOGIA DEL MEDIO AMBIENTE0105 earth and related environmental sciencesWater Science and TechnologyCivil and Structural EngineeringSewageWaste managementMathematical modellingEcological ModelingPhosphorusExtraction (chemistry)PhosphorusElutriationPollution020801 environmental engineeringEnhanced biological phosphorus removalVolume (thermodynamics)WastewaterchemistryPhosphorus recoveryEnvironmental scienceWaste water
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Impact of rainfall data resolution in time and space on the urban flooding evaluation.

2013

Climate change and modification of the urban environment increase the frequency and the negative effects of flooding, increasing the interest of researchers and practitioners in this topic. Usually, flood frequency analysis in urban areas is indirectly carried out by adopting advanced hydraulic models to simulate long historical rainfall series or design storms. However, their results are affected by a level of uncertainty which has been extensively investigated in recent years. A major source of uncertainty inherent to hydraulic model results is linked to the imperfect knowledge of the rainfall input data both in time and space. Several studies show that hydrological modelling in urban are…

Environmental EngineeringTime FactorsFlood mythSpacetimeMeteorologyGeographyHydrological modellingClimate ChangeRainFlooding (psychology)UncertaintyClimate changeStormModels TheoreticalFloodsItalyAdded valueCitiesGLUEWater Science and TechnologyEnvironmental MonitoringWater science and technology : a journal of the International Association on Water Pollution Research
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Wastewater modification processes assessment in a stabilization reservoir.

2008

A semi-empirical mechanistic model able to simulate the dynamics of a stabilization reservoir was developed incorporating both settling of particulate components and chemical/biological processes. Several factors affecting the reservoir effluent quality were taken into account: hydraulics and hydrology, solar radiation, atmospheric reaeration, algae, zooplankton, organic matter, pathogen bacteria, and sediment-water interaction. The model quantifies the specific influence of each factor on effluent quality, evaluating the correlation between the different considered factors. State variables included in the model were: algae, dissolved oxygen, organic matter, zooplankton and indicator bacter…

Environmental EngineeringTime FactorsHydraulicsWastewater treatmentMathematical modelling Stabilization reservoir Wastewater reuse Wastewater treatmentWastewater reuseWaste Disposal FluidZooplanktonlaw.inventionHydrology (agriculture)SettlinglawAnimalsOrganic matterComputer SimulationEffluentWater Science and Technologychemistry.chemical_classificationMathematical modellingStabilization reservoirEnvironmental engineeringParticulateschemistryWastewaterModels ChemicalEnvironmental scienceSewage treatmentWater Pollutants Chemical
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