IDENTIFICATION OF AN URBAN FRACTURED-ROCK AQUIFER DYNAMICS USING AN EVOLUTIONARY SELF-ORGANIZING MODELLING

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dc.contributor.author Hong Y.S.
dc.contributor.author Rosen M.R.
dc.date.accessioned 2021-04-14T06:52:05Z
dc.date.available 2021-04-14T06:52:05Z
dc.date.issued 2002
dc.identifier https://www.elibrary.ru/item.asp?id=905322
dc.identifier.citation Journal of Hydrology, 2002, 259, 1-4, 89-104
dc.identifier.issn 0022-1694
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/27786
dc.description.abstract An urban fractured-rock aquifer system, where disposal of storm water is via 'soak holes' drilled directly into the top of fractured-rock basalt, has a highly dynamic nature where theories or knowledge to generate the model are still incomplete and insufficient. Therefore, formulating an accurate mechanistic model, usually based on first principles (physical and chemical laws, mass balance, and diffusion and transport, etc.), requires time- and money-consuming tasks.Instead of a human developing the mechanistic-based model, this paper presents an approach to automatic model evolution in genetic programming (GP) to model dynamic behaviour of groundwater level fluctuations affected by storm water infiltration. This GP evolves mathematical models automatically that have an understandable structure using function tree representation by methods of natural selection ('survival of the fittest') through genetic operators (reproduction, crossover, and mutation).The simulation results have shown that GP is not only capable of predicting the groundwater level fluctuation due to storm water infiltration but also provides insight into the dynamic behaviour of a partially known urban fractured-rock aquifer system by allowing knowledge extraction of the evolved models. Our results show that GP can work as a cost-effective modelling tool, enabling us to create prototype models quickly and inexpensively and assists us in developing accurate models in less time, even if we have limited experience and incomplete knowledge for an urban fractured-rock aquifer system affected by storm water infiltration.
dc.subject URBAN FRACTURED-ROCK AQUIFER
dc.subject STORM WATER INFILTRATION
dc.subject GROUNDWATER LEVEL FLUCTUATION
dc.subject EVOLUTIONARILY SELF-ORGANISING MODELLING
dc.subject GENETIC PROGRAMMING
dc.title IDENTIFICATION OF AN URBAN FRACTURED-ROCK AQUIFER DYNAMICS USING AN EVOLUTIONARY SELF-ORGANIZING MODELLING
dc.type Статья


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