Entropy Applications in Environmental and Water Engineering
Materialtyp:
ArtikelUtgivningsinformation: MDPI - Multidisciplinary Digital Publishing Institute 2019Beskrivning: 1 electronic resource (512 p.)Innehållstyp: - text
- computer
- online resource
- 9783038972228
- Technology, Engineering, Agriculture, Industrial processes
- Technology: general issues
- History of engineering and technology
- ANN
- Anhui Province
- Bayesian technique
- Beta-Lognormal model
- Burg entropy
- EEF method
- ENSO
- El Niño
- GB2 distribution
- Hei River basin
- Hexi corridor
- Kolmogorov complexity
- Lagrangian function
- Loess Plateau
- NDVI
- Poyang Lake basin
- Shannon entropy
- Tsallis entropy
- accelerating genetic algorithm
- ant colony fuzzy clustering
- arid region
- bagging
- bootstrap aggregating
- bootstrap neural networks
- canopy flow
- changing environment
- climacogram
- coherent structures
- combined forecast
- complement
- complex systems
- complexity
- composite multiscale sample entropy
- conditional entropy production
- confidence intervals
- configurational entropy
- connection entropy
- continuous probability distribution functions
- crop yield
- cross elasticity
- cross entropy
- cross-entropy minimization
- data-scarce
- ensemble model simulation criterion
- entropy
- entropy applications
- entropy ensemble filter
- entropy of information
- entropy parameter
- entropy production
- entropy spectral analysis time series analysis
- entropy theory
- entropy weighting method
- environmental engineering
- f
Open Access Unrestricted online access star
Entropy theory has wide applications to a range of problems in the fields of environmental and water engineering, including river hydraulic geometry, fluvial hydraulics, water monitoring network design, river flow forecasting, floods and droughts, river network analysis, infiltration, soil moisture, sediment transport, surface water and groundwater quality modeling, ecosystems modeling, water distribution networks, environmental and water resources management, and parameter estimation. Such applications have used several different entropy formulations, such as Shannon, Tsallis, Reacutenyi Burg, Kolmogorov, Kapur, configurational, and relative entropies, which can be derived in time, space, or frequency domains. More recently, entropy-based concepts have been coupled with other theories, including copula and wavelets, to study various issues associated with environmental and water resources systems. Recent studies indicate the enormous scope and potential of entropy theory in advancing research in the fields of environmental and water engineering, including establishing and explaining physical connections between theory and reality. The objective of this Special Issue is to provide a platform for compiling important recent and current research on the applications of entropy theory in environmental and water engineering. The contributions to this Special Issue have addressed many aspects associated with entropy theory applications and have shown the enormous scope and potential of entropy theory in advancing research in the fields of environmental and water engineering.
Creative Commons Licence cc by-nc-nd cc https://creativecommons.org/licenses/by-nc-nd/4.0/
eng
Freely available e-book