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Archeology --- dewatering --- archaeology --- farmland
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Drainage. --- Retaining walls. --- Dewatering --- Lakes
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Electroosmotic dewatering --- Solidification --- Radioactive waste sites --- Quality control. --- Cleanup --- Contracting out.
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IJsselmeer (Pays-Bas) --- Coastal engineering --- Land reclamation --- Dewatering --- IJssel Lake (Netherlands)
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Groundwater --- Foundations --- Excavation --- Water --- Concrete --- Pumping machinery --- Filters and filtration --- Wells --- Permeability --- Dimensions --- Drainage --- Air entrainment --- Dewatering
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Environmental engineering. --- Engineering geology. --- Finite element method. --- Mathematical models. --- Rock mechanics. --- Stability. --- Anchors structures --- Backfills --- Blasting --- Cavities --- Coal mines --- Dewatering --- Displacement --- Dolomite rock --- Explosion effects --- Field tests --- Fragmentation --- Landslides --- Linkages --- Microseisms --- Mine bursts --- Monitoring --- Penstocks --- Rock bolts --- Rock excavation --- Rock mechanics --- Rock properties --- Rocks --- Room and pillar mining --- Seismic waves --- Shaft sinking --- Slopes --- Soil classification --- Spillways --- Stability --- Stabilization --- Structural analysis --- Subways --- Swelling --- Tunneling excavation --- Tunneling machines
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This Special Issue (SI) collects fourteen articles published by leading scholars of numerical modeling in civil and mining geotechnical engineering. There is a good balance in the number of published articles, with seven in civil engineering and seven in mining engineering. The software used in the numerical modeling of these article varies from numerical codes based on continuum mechanics to those based on distinct element methods or mesh-free methods. The studied materials vary from rock, soil, and backfill to tailings. The investigations vary from mechanical behavior to hydraulic and thermal responses of infrastructures varying from pile foundations to tailings dams and underground openings. The SI thus collected a diversity of articles, reflecting the state-of-the-art of numerical modeling applied in civil and mining geotechnical engineering.
Technology: general issues --- History of engineering & technology --- near-surface thick deposit --- surface subsidence --- numerical simulation --- unmanned aerial survey --- accurate model --- railway ballast fouling --- ballast degradation --- micro-mechanical parameters --- shear strength --- large diameter bored pile --- hyperparameters --- supervised machine learning --- finite element method --- parametric study --- load transfer --- failure mechanism --- geothermal heat exchangers --- permafrost --- thaw settlement --- sustainability --- embedded beam elements --- finite element --- mesh sensitivity --- soil-structure interaction --- deep foundation --- 3D modelling --- fluid fine tailings --- dewatering --- modelling --- seasonal weathering --- freeze–thaw --- evaporation --- mining backfill --- compressibility --- constitutive models --- numerical modeling --- plasticity --- critical state soil model --- modified Cam Clay model --- model normalization --- precomputation --- incompatibility --- rock --- plastic deformation --- goaf-side entry --- stability of surrounding rock --- pillar size optimization --- confined water --- paste filling mining --- filling step --- advancing distance --- floor failure --- tailings dam --- impacting force --- kinetic energy --- smoothed particle hydrodynamics (SPH) --- 3D nonlinear yield criterion --- elastoplastic model --- circular opening --- backfill --- FLAC3D --- pore water pressure --- hydraulic conductivity --- alternative method --- numerical analyses --- unsaturated soil --- n/a --- freeze-thaw
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The present Special Issue brings together recent research findings from renowned scientists in the field of water treatment and assembled contributions on advanced technologies applied to the treatment of wastewater and drinking water, with emphasis on novel membrane treatment technologies. 12 research contributions have highlighted various processes and technologies, which can achieve effective treatment and purification of wastewater and of drinking water, aiming (occasionally) for water reuse. The main topics which are analyzed are the use of novel type membranes in bioreactors, the use of modified membranes, for example using vacuum membrane distillation, the fouling of membranes, the problem of arsenic, antimony and chromium contamination in groundwaters and its removal and the use of novel technologies for more efficient ozonation.
hollow fiber membranes --- modeling --- small sized powdered ferric hydroxide --- ceramic membranes --- multiphase --- antimony treatment --- winery effluents --- fouling --- municipal wastewater sludge --- particle size distribution --- ultrafiltration --- coagulation --- HA–BSA mixtures --- Sb(III) --- water treatment --- chromate --- separation --- backwash duration --- water crisis --- adsorption --- dewatering --- hexavalent chromium --- arsenic adsorption --- polydimethylsiloxane --- vacuum membrane distillation --- co-treatment --- desalination --- arsenic --- mass transfer --- produced water treatment --- membranes --- process control --- membrane resistance --- granular ferric hydroxide --- ozonation --- Membrane Bioreactor --- hollow fibre --- crossflow membrane filtration --- microfiltration --- membrane filtration --- xDLVO theory --- Fe-based coagulants --- wastewater treatment --- cake resistance --- Sb(V) --- peroxone --- temperature --- drinking water --- trickling biofilter --- natural organic matter (NOM) --- antimony --- second cheese whey --- sodium alginate --- optical sensors --- bioethanol recovery --- membrane fouling --- interaction energy --- TMP --- adsorption kinetics --- water matrix --- multivariate statistics --- polluted waters --- natural organic matter --- operation --- solution conditions --- biofilm membrane bioreactor
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