BTEX Removal by PSO and Inverse Solutions by DE: Simulation optimisation algorithm to reduce pollutants and transmissivity assessment

-15% su kodu: ENG15
107,53 
Įprasta kaina: 126,50 
-15% su kodu: ENG15
Kupono kodas: ENG15
Akcija baigiasi: 2025-03-03
-15% su kodu: ENG15
107,53 
Įprasta kaina: 126,50 
-15% su kodu: ENG15
Kupono kodas: ENG15
Akcija baigiasi: 2025-03-03
-15% su kodu: ENG15
2025-02-28 126.5000 InStock
Nemokamas pristatymas į paštomatus per 11-15 darbo dienų užsakymams nuo 10,00 

Knygos aprašymas

A simulation-optimization model which incorporates the flow and contaminant transport simulation model within an optimization program helps in designing the best satisfactory bioremediation system. For the effective bioremediation system design, the groundwater flow and contaminant transport should be simulated at various time steps. For optimal design, groundwater flow and transport modelling is coupled with optimization techniques of Particle swarm optimization. Biodegradation process is simulated by incorporating an instantaneous reaction model. Decision-makers require adequate information on these interactions in order to formulate sustainable water resources development strategies. A successful groundwater management requires precise information on groundwater quantity and quality, its renewability and the hydrogeological structure of the subsurface formation. Differential evolution (DE) is a method that optimizes a problem by iteratively trying to improve a candidate solution with regard to a given measure of quality. In this book in 2nd section transmissivity (T) values are estimated by coupling the differential evolution optimization technique with FEM simulation model.

Informacija

Autorius: Ashok Kumar Rastogi, Devika Naraboyina, Aedil Elizabeth,
Leidėjas: LAP LAMBERT Academic Publishing
Išleidimo metai: 2015
Knygos puslapių skaičius: 344
ISBN-10: 3659762784
ISBN-13: 9783659762789
Formatas: 220 x 150 x 21 mm. Knyga minkštu viršeliu
Kalba: Anglų

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