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  • Books  (328)
  • TA1-2040  (328)
  • MDPI - Multidisciplinary Digital Publishing Institute  (328)
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  • 11
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-04-11
    Description: This book is a collection of recent publications from researchers all over the globe in the broad area of high-voltage engineering. The presented research papers cover both experimental and simulation studies, with a focus on topics related to insulation monitoring using state-of-the-art sensors and advanced machine learning algorithms. Special attention was given in the Special Issue to partial discharge monitoring as one of the most important techniques in insulation condition assessment. Moreover, this Special Issue contains several articles which focus on different modeling techniques that help researchers to better evaluate the condition of insulation systems. Different power system assets are addressed in this book, including transformers, outdoor insulators, underground cables, and gas-insulated substations.
    Keywords: TA1-2040 ; T1-995 ; artificial neural network ; simulation ; high-frequency ; artificial flashover tests ; wide bandgap power modules ; tracking ; electrical field strength ; fast-rise square wave voltages ; FDTD simulation ; cable joint ; corona discharge ; feature selection ; post insulator ; earthing systems ; wind speed ; surface discharge ; oil/paper insulation ; oil-paper insulation ; high-magnitude currents and impulse polarity ; UFVM ; Tettex 9520 ; electrical tree ; flashover characteristics ; composite insulator ; partial discharge ; numerical modeling ; saline mechanism ; thermal parameters ; space charge density ; seasonal ; ion flow field ; denoising ; DDX 9121b ; temperature ; transformer asset management ; cavity discharge ; space/interface charge ; insulation health index ; heat transfer model ; leakage current ; machine learning ; partial discharges (PD) ; RF signal ; flashover ; high impulse conditions ; grounding electrodes ; generalized finite difference time domain ; curve fitting ; grounding ; plasma discharge ; outdoor insulators ; flashover dynamic model ; wavelet transform ; degradation ; thermal properties ; bipolar charge transport model ; UHF sensor ; cable ; random walk theory ; tracking test setup ; GIL ; pressure ; modelling ; non-uniform pollution between windward and leeward sides ; calibrator ; secondary arc ; polymeric insulation ; optical-UHF integrated detection ; shoreline ; dry band arcing ; photoelectric fusion pattern ; DDX 8003 ; XLPE ; silicone gel ; partial discharge modeling ; electric field analysis ; NSCT ; electrode’s geometry ; gas ; Comsol Multiphysics ; fast-impulses ; laying modes ; ageing ; cable ampacity ; residual resistance formulation ; finite element analysis ; thermal effect ; hydrophobicity ; soil resistivity ; charge simulation method ; short-circuit discharge ; dry band formation ; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
    Language: English
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  • 12
    Publication Date: 2024-04-11
    Description: Energy systems worldwide are undergoing major transformation as a consequence of the transition towards the widespread use of clean and sustainable energy sources. Basically, this involves massive changes in technical and organizational levels together with tremendous technological upgrades in different sectors ranging from energy generation and transmission systems down to distribution systems. These actions generate huge science and engineering challenges and demands for expert knowledge in the field to create solutions for a sustainable energy system that is economically, environmentally, and socially viable while meeting high security requirements. This book covers these promising and dynamic areas of research and development, and presents contributions in sustainable energy systems planning, integration, and management. Moreover, the book elaborates on a variety of topics, ranging from design and planning of small- to large-scale energy systems to the operation and control of energy networks in different sectors, namely electricity, heat, ?and transport.
    Keywords: TA1-2040 ; T1-995 ; n/a ; Romanian coastal environment ; neural networks ; intermittent heating ; wind velocities ; time-space network ; optimal chiller loading (OCL) ; renewable energy ; pure electric buses ; mixed-integer non-linear programming problem (MINLP) ; control system ; FANP ; energy consumption ; load regulation ; energy ; smart box ; novel method ; smart logistics system ; multiple uncertainties ; non-intrusive load monitoring ; wind speed forecasting ; solid waste to energy plant ; uncertain cooling demand ; dual robust optimization ; Black Sea ; field test and numerical simulation ; electric power ; sustainable development ; multi-type bus operating organization ; cuckoo search algorithm ; vehicular emissions ; SWAN ; public transport ; product quality model ; MCDM ; TOPSIS ; heat transfer ; solar energy ; forecasting validity ; information gap decision theory (IGDT) ; photovoltaic systems ; configurations of internal wall ; ensemble empirical mode decomposition ; agricultural pruning ; hot summer and cold winter climate zone ; energy and environmental systems ; feature extraction ; information platform ; pruning biomass ; smart grid ; product usability testing ; meteorological variables ; fuzzy logic ; performance evaluation ; rural residential building ; threshold value of daily operation hours ; datacenter ; wave energy ; thermal comfort ; heat storage and release ; resampling ; risk aversion ; environment ; support vector machine ; internal coverings ; numerical models ; gradient descent ; renewable biomass energy ; demand response ; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
    Language: English
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  • 13
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-04-11
    Description: Unconventional reservoirs are usually complex and highly heterogeneous, such as shale, coal, and tight sandstone reservoirs. The strong physical and chemical interactions between fluids and pore surfaces lead to the inapplicability of conventional approaches for characterizing fluid flow in these low-porosity and ultralow-permeability reservoir systems. Therefore, new theories and techniques are urgently needed to characterize petrophysical properties, fluid transport, and their relationships at multiple scales for improving production efficiency from unconventional reservoirs. This book presents fundamental innovations gathered from 21 recent works on novel applications of new techniques and theories in unconventional reservoirs, covering the fields of petrophysical characterization, hydraulic fracturing, fluid transport physics, enhanced oil recovery, and geothermal energy. Clearly, the research covered in this book is helpful to understand and master the latest techniques and theories for unconventional reservoirs, which have important practical significance for the economic and effective development of unconventional oil and gas resources.
    Keywords: TA1-2040 ; T1-995 ; shale gas ; permeability ; prediction by NMR logs ; matrix–fracture interaction ; faults ; remaining oil distributions ; unconventional reservoirs ; coal deformation ; reservoir depletion ; carbonate reservoir ; nanopore ; fracturing fluid ; pseudo-potential model ; shale reservoirs ; matrix-fracture interactions ; multi-scale fracture ; succession pseudo-steady state (SPSS) method ; fluid transport physics ; integrated methods ; chelating agent ; dissolved gas ; non-equilibrium permeability ; effective stress ; fractal ; fracture network ; spontaneous imbibition ; tight oil ; porous media ; 0-1 programming ; the average flow velocity ; geothermal water ; micro-fracture ; pore types ; pore network model ; petrophysical characterization ; nitrogen adsorption ; analysis of influencing factors ; mudstone ; rheology ; velocity profile ; shale permeability ; flow resistance ; global effect ; tight sandstones ; fractal dimension ; contact angle ; temperature-resistance ; fractured well transient productivity ; reservoir classifications ; deep circulation groundwater ; viscosity ; NMR ; fractional diffusion ; lattice Boltzmann method ; multiporosity and multiscale ; fractal geometry ; imbibition front ; productivity contribution degree of multimedium ; wetting angle ; pH of formation water ; enhanced oil recovery ; isotopes ; tight sandstone ; fracture diversion ; shale ; SRV-fractured horizontal well ; low-salinity water flooding ; shale gas reservoir ; tight reservoirs ; fracture continuum method ; tight oil reservoir ; Lucaogou Formation ; hydraulic fracturing ; clean fracturing fluid ; recovery factor ; flow regimes ; local effect ; complex fracture network ; pore structure ; gas adsorption capacity ; polymer ; non-linear flow ; conformable derivative ; production simulation ; analytical model ; enhanced geothermal system ; multi-scale flow ; experimental evaluation ; extended finite element method ; fluid-solid interaction ; groundwater flow ; well-placement optimization ; thickener ; imbibition recovery ; equilibrium permeability ; slip length ; large density ratio ; clay mineral composition ; finite volume method ; volume fracturing ; influential factors ; sulfonate gemini surfactant ; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
    Language: English
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  • 14
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-04-11
    Description: Recently, new wide-band energy gap semiconductors can be grown by ALD, PLD, sputtering, or MOCVD. They have great potential for the fabrication and application to TFTs. Inorganic semiconductors have good stability against environmental degradation over their organic counterparts, whereas organic materials are usually flexible, transparent, and when solution-processed at low temperatures, are prone to degradation when exposed to heat, moisture, and oxygen. For this Special Issue, we invited researchers to submit papers discussing the development of new functional and smart materials, and inorganic as well as organic semiconductor materials, such as ZnO, InZnO, GaO, AlGaO, AnGaO, AlN/GaN, conducting polymers, molecular semiconductors, perovskite-based materials, carbon nanotubes, carbon nanotubes/polymer composites, and 2D materials (e.g., graphene, MoS2) and their potential applications in display drivers, radio frequency identification tags, e-paper, gas, chemical and biosensors, to name but a few.
    Keywords: TA1-2040 ; TK1-9971 ; T1-995 ; charge transport and injection mechanisms ; optical synaptic devices ; flat panel displays ; simulation ; persistent photoconductivity ; hydrogen ; interdigitated ; interface state trap density ; technology computer aided design (TCAD) ; oxygen defects ; Corbino ; transistor model evaluation ; metal-halide lamp ; InGaZnOx ; contact resistances ; chemical treatment ; colour difference ; organic transistor ; equivalent circuit ; channel-length dependence ; just noticeable difference ; oxide semiconductor ; OTFT ; chromaticity ; modeling contact effects ; oxygen deficiency ; dual-threshold inverter ; surface treated ; charge-carrier-mobility extraction ; optical detecting ; thin film transistor ; green ; photo-sensors ; modelling ; capacitor ; TFT-LCD ; organic thin-film transistor ; spectrum ; hydrogen effect ; organic film growth ; transparent conducting oxides ; quartz-halogen lamp ; optical ; blue LED ; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
    Language: English
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  • 15
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-04-11
    Description: This Special Issue covers a wide range of areas—including building orientation, service life, use of photocatalytically active structures and PV facades, implications of transportation system, building types (i.e., high rise, multilevel, commercial, residential), life cycle assessment, and structural engineering—that need to be considered in the environmental impact assessment of buildings, and the chapters include case studies across the globe. Consideration of these strategies would help reduce energy and material consumption, environmental emissions, and waste generation associated with all phases of a building’s life cycle. Chapter 1 demonstrates that green star concrete exhibits the same structural properties as conventional concrete in Australia. Chapter 2 showed that the use of TiO2 as a photocatalyst on the surface of construction materials with a suitable stable binding agent, such as aggregates, would enable building walls to absorb NOx from air. This study found that TiO2 has the potential to reduce ambient concentrations of NOx from areas where this pollutant becomes concentrated under solar irradiation. Chapter 3 presents the life cycle assessment of architecturally integrated glass–glass photovoltaics in building facades to find the appropriate material composition for a multicolored PV façade offering improved environmental performance. Chapter 4 shows that urban office buildings lacking appropriate orientation experienced indoor overheating. Chapter 5 details four modeling approaches that were implemented to estimate buildings’ response towards load shedding. Chapter 6 covers the life cycle GHG emissions of high-rise residential housing block to discover opportunities for environmental improvement. Chapter 7 discusses an LCA framework that took into account variation in the service life of buildings associated with the use of different types of materials. Chapter 8 presents a useful data mining algorithm to conduct life cycle asset management in residential developments built on transport systems.
    Keywords: TA1-2040 ; T1-995 ; wash water ; greenhouse gases ; environmental life cycle assessment ; sustainable-development ; transit-policy ; public-engagement ; Multilevel buildings ; building integrated photovoltaic ; slag ; operational energy ; life-cycle social analysis ; building ; travel-satisfaction ; TEASER ; BIPV ; photocatalytic construction materials ; functionalized aggregate ; green star concrete ; work-commute ; shallow plan forms ; life cycle assessment ; recycled aggregate ; environmental remediation ; block of buildings ; rain cladding ; LCA ; sustainability ; peak shaving ; residential building ; indoor overheating ; LCI ; air pollution ; environmental performance ; service life ; nitric oxides ; thermal model ; coloured glass ; demand response ; modal-variability ; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
    Language: English
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  • 16
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-04-11
    Description: By the late 1940s, and since then, the continuous development of dislocation theories have provided the basis for correlating the macroscopic time-dependent deformation of metals and alloys—known as creep—to the time-dependent processes taking place within the metals and alloys. High-temperature deformation and stress relaxation effects have also been explained and modeled on similar bases. The knowledge of high-temperature deformation as well as its modeling in conventional or unconventional situations is becoming clearer year by year, with new contemporary and better performing high-temperature materials being constantly produced and investigated.This book includes recent contributions covering relevant topics and materials in the field in an innovative way. In the first section, contributions are related to the general description of creep deformation, damage, and ductility, while in the second section, innovative testing techniques of creep deformation are presented. The third section deals with creep in the presence of complex loading/temperature changes and environmental effects, while the last section focuses on material microstructure–creep correlations for specific material classes. The quality and potential of specific materials and microstructures, testing conditions, and modeling as addressed by specific contributions will surely inspire scientists and technicians in their own innovative approaches and studies on creep and high-temperature deformation.
    Keywords: TA1-2040 ; T1-995 ; TN1-997 ; Larson–Miller parameter ; n/a ; visualization ; bond coat ; hydrogen ; poly-crystal ; Gibbs free energy principle ; constitutive equations ; creep damage ; DFT ; finite element method ; austenitic stainless steel ; strain rate sensitivity ; MCrAlY ; excess volume ; superalloy ; scanning electron microscopy ; creep buckling ; dislocation dynamics ; creep ; elevated temperature ; modelling ; size effect ; residual stress ; superalloy VAT 32 ; water vapor ; activation energy ; small angle neutron scattering ; superalloy VAT 36 ; metallic glass ; iron aluminides ; Gr.91 ; internal stress ; relaxation fatigue ; multiaxiality ; creep grain boundary ; grain boundary cavitation ; cavitation ; solute atom ; stress exponent ; external pressure ; P92 ; TMA ; low cycle fatigue ; nanoindentation ; high temperature ; FEM ; intrinsic ductility ; normalizing ; creep ductility ; creep rupture mechanism ; microstructural features ; simulate HAZ ; P92 steel ; glide ; ferritic–martensitic steel ; creep rupture ; cyclic softening ; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
    Language: English
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  • 17
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-04-11
    Description: With increasing power levels and power densities in electronics systems, thermal issues are becoming more and more critical. The elevated temperatures result in changing electrical system parameters, changing the operation of devices, and sometimes even the destruction of devices. To prevent this, the thermal behavior has to be considered in the design phase. This can be done with thermal end electro-thermal design and simulation tools. This Special Issue of Energies, edited by two well-known experts of the field, Prof. Marta Rencz, Budapest University of Technology and Economics, and by Prof. Lorenzo Codecasa, Politecnico di Milano, collects twelve papers carefully selected for the representation of the latest results in thermal and electro-thermal system simulation. These contributions present a good survey of the latest results in one of the most topical areas in the field of electronics: The thermal and electro-thermal simulation of electronic components and systems. Several papers of this issue are extended versions of papers presented at the THERMINIC 2018 Workshop, held in Stockholm in the fall of 2018. The papers presented here deal with modeling and simulation of state-of-the-art applications that are highly critical from the thermal point of view, and around which there is great research activity in both industry and academia. Contributions covered the thermal simulation of electronic packages, electro-thermal advanced modeling in power electronics, multi-physics modeling and simulation of LEDs, and the characterization of interface materials, among other subjects.
    Keywords: TA1-2040 ; T1-995 ; thermal interface material ; thermal aging ; modeling ; LED compact thermal models ; niobium pentoxide ; model-order reduction ; ferromagnetic cores ; LED digital twin ; Cauer RC ladder ; in-situ characterization ; electronic packages ; time domain thermoreflectance ; multi-domain compact model ; power LEDs ; DC–DC converters ; structure function ; boundary condition independent ; electric aircraft ; multi-LED ; modelling ; light emitting diodes ; thin film ; JEDEC metrics ; tool agnostic ; power losses ; switching ; dynamic thermal compact model ; thermal transient testing ; reliability ; thermal transient analysis ; thermal simulation ; non-destructive testing ; IGBT ; carbon nanotubes ; compact thermal model ; power semiconductor devices ; SPICE ; phosphor light conversion ; thermal management ; LED luminaire design ; design flow ; thermal characterization ; motor cooling ; thermal phenomena ; silicone dome ; LED ; secondary heat path ; multi-domain modelling ; heating and optical power ; transient analysis ; thermal testability ; thermal conductivity ; multiple heat source ; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
    Language: English
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  • 18
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-04-11
    Description: This book presents an interesting sample of the latest advances in optimization techniques applied to electrical power engineering. It covers a variety of topics from various fields, ranging from classical optimization such as Linear and Nonlinear Programming and Integer and Mixed-Integer Programming to the most modern methods based on bio-inspired metaheuristics. The featured papers invite readers to delve further into emerging optimization techniques and their real application to case studies such as conventional and renewable energy generation, distributed generation, transport and distribution of electrical energy, electrical machines and power electronics, network optimization, intelligent systems, advances in electric mobility, etc.
    Keywords: TA1-2040 ; T1-995 ; n/a ; Stackelberg game ; MILP ; optimal congestion threshold ; magnetic field mitigation ; simulation ; multi-objective particle swarm optimization ; virtual power plant ; internal defect ; day-ahead load forecasting ; neural network ; modular predictor ; multi-objective particle swarm optimization algorithm ; stochastic optimization ; dragonfly algorithm ; unit commitment ; metaheuristic ; multi-population method (MP) ; optimization ; tabu search ; considerable decomposition ; loss minimization ; active distribution system ; islanded microgrid ; dynamic solving framework ; feature selection ; electric energy costs ; power factor compensation ; dependability ; interactive load ; overhead ; energy internet ; evolutionary computation ; wind power ; developed grew wolf optimizer ; underground ; ETAP ; fuzzy algorithm ; electric vehicles ; Schwarz’s equation ; evolutionary algorithms ; electric power contracts ; congestion management ; optimizing-scenarios method ; building energy management system ; particle encoding method ; ringdown detection ; HOMER software ; DC optimal power flow ; prosumer ; constrained parameter estimation ; distributed generations (DGs) ; strong track filter (STF) ; transient stability ; calibration ; cost minimization ; radiance ; decentralized and collaborative optimization ; hybrid renewable energy system ; renewable energy sources ; rural electrification ; distribution network reconfiguration ; interval variables ; optimization methods ; particle swarm optimization ; hierarchical scheduling ; micro grid ; AC/DC hybrid active distribution ; consensus ; artificial bee colony ; CCHP system ; data center ; support vector machine ; affinity propagation clustering ; extended Kalman filter ; affine arithmetic ; linear discriminant analysis (LDA) ; current margins ; heterogeneous networks ; Cameroon ; hybrid method ; distributed heat-electricity energy management ; discrete wind driven optimization ; fitness function ; cross-entropy ; GenOpt ; wind energy ; demand uncertainty ; UC ; off-design performance ; genetic algorithm ; energy storage ; the biomimetic membrane computing ; power system optimization ; electric vehicle ; power architectures ; economic load dispatch problem (ELD) ; runner-root algorithm (RRA) ; Cable joint ; battery energy storage system ; load curtailment ; integration assessment ; power system unit commitment ; artificial lighting ; power flow ; hybrid membrane computing ; two-point estimation method ; low-voltage networks ; demand bidding ; non-sinusoidal circuits ; energy flow model ; power transfer distribution factors ; sustainability ; HVAC system ; voltage deviation ; street light points ; radial basis function ; energy storage system ; charging/discharging ; power systems ; intelligent scatter search ; MV/LV substation ; optimal power flow ; stochastic state estimation ; eight searching sub-regions ; chaos optimization algorithm (COA) ; mutual information theory ; inter-turn shorted-circuit fault (ISCF) ; C&I particle swarm optimization ; multiobjective optimization ; passive shielding ; sub-Saharan Africa ; micro-phasor measurement unit ; geometric algebra ; bio-inspired algorithms ; adaptive consensus algorithm ; energy management ; PCS efficiency ; multi-stakeholders ; generalized generation distribution factors ; the genetic algorithm based P system ; JAYA algorithm ; thermal probability density ; power optimization ; pumped-hydro energy storage ; smart grid ; two-stage feature selection ; piecewise linear techniques ; photovoltaic ; SOCP relaxations ; switched reluctance machine (SRM) ; optimal reactive power dispatch ; optimal operation ; controllable response ; off-grid ; active shielding ; transformer-fault diagnosis ; IEEE Std. 80-2000 ; principal component analysis ; demand response ; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
    Language: English
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  • 19
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-04-11
    Description: This Special Issue on Antimicrobial Resistance in Environmental Waters features 11 articles on the monitoring and surveillance of antimicrobial resistance (AMR) in natural aquatic systems (i.e., reservoirs, rivers), and effluent discharge from water treatment plants to assess the effectiveness of AMR removal and resulting loads in treated waters. Some of the key elements of AMR studies presented in this Special Issue highlight the underlying drivers of AMR contamination in the environment and the evaluation of the hazard imposed on aquatic organisms in receiving environments through ecological risk assessments. As described in this Issue, screening antimicrobial peptide (AMP) libraries for biofilm disruption and antimicrobial candidates are promising avenues for the development of new treatment options to eradicate resistance.
    Keywords: TA1-2040 ; T1-995 ; TA170-171 ; risk assessment ; reuse water ; Acinetobacter junii ; Escherichia coli ; co-occurrence pattern ; EPS ; wastewater treatment plant ; UV-disinfection ; biofilm ; estuary reservoir ; Environmental Waters ; antibiotic resistance genes ; antimicrobial peptide (AMP) ; wastewater ; tertiary media filtration ; Psl ; antibiotic-resistant strains ; drinking water treatment plants ; water ; sediment ; surface water ; gastrointestinal infections ; Acinetobacter baumannii ; metal resistance genes ; metagenomics ; water reuse ; bacterial community ; antibiotics ; ERIC-PCR ; river-reservoir system ; the Yellow River ; ecological risk assessment ; aquatic environment ; wastewater treatment ; sand settling reservoirs ; antibiotic resistance gene ; environmental ecology ; antibiotic resistance ; ESBL ; water treatment plants ; Pseudomonas aeruginosa ; chlorination ; irrigation water ; exopolysaccharide ; fecal indicator bacteria ; Antimicrobial Resistance ; persistence ; Qingcaosha reservoir ; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
    Language: English
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  • 20
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-04-11
    Description: As computer and space technologies have been developed, geoscience information systems (GIS) and remote sensing (RS) technologies, which deal with the geospatial information, have been rapidly maturing. Moreover, over the last few decades, machine learning techniques including artificial neural network (ANN), deep learning, decision tree, and support vector machine (SVM) have been successfully applied to geospatial science and engineering research fields. The machine learning techniques have been widely applied to GIS and RS research fields and have recently produced valuable results in the areas of geoscience, environment, natural hazards, and natural resources. This book is a collection representing novel contributions detailing machine learning techniques as applied to geoscience information systems and remote sensing.
    Keywords: TA1-2040 ; T1-995 ; n/a ; sport games ; compensatory eating ; breath test ; exercise-induced anorexia ; Fitbit ; nutrition education ; senescence ; body weight ; sport nutrition ; fitness ; long-term follow-up ; self-efficacy ; protein ; food consumption ; cytokines ; physical exercise ; cardiometabolic health ; mediation analyses ; obesity ; food choice ; telomere length ; sporting events ; carbohydrates ; free radicals ; marathon ; adolescents ; movement skills ; naturally enriched 13C-milk proteins ; behavioral intervention ; acute exercise ; skeletal muscle damage ; Protein ; TERRA ; nutrition ; telemonitoring ; Latino ; adolescent ; macronutrients ; metabolism ; mechanisms of impact ; anabolic competence ; endurance exercise ; food healthiness ; exercise ; health promotion ; behavioral economics ; immunity ; stunting ; lifestyle intervention ; running ; telomerase ; dietary intake ; inflammation ; vegetarian ; recreational athlete ; physical performance ; out-of-home eating ; diet ; overweight ; dietary restriction ; soccer ; dual burden of malnutrition ; protein shake ; childhood memories ; chronic diseases ; music events ; oxidation ; added sugar ; lifestyle change ; vegan ; nudges ; food ; physical activity ; half-marathon ; health conscious ; free or reduced lunch ; low-income ; diet quality ; National School Lunch Program ; older adults ; aging ; sport spectators ; chronic low-grade systemic inflammation ; sport ; food intake ; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
    Language: English
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