By Ken Howard; Dubravka Pokrajac
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Extra info for Advanced simulation and modelling for urban groundwater management : UGROW
Old’ chemicals: As new chemicals replace older chemicals, the latter may still be worthy of consideration, as they may still be present within the groundwater system. Major changes in abstraction rate: If abstraction significantly changes, water levels will either rise or fall. This will often result in changing the redox status from aerobic to anaerobic, or vice versa, with consequent effects for chemical reactions. For example, aerobic degradation of petroleum hydrocarbons may no longer occur, or anaerobic degradation may cease for chlorinated solvents.
1984), and the aquifer system as simulated by MODFLOW (McDonald and Harbaugh, 1988). Given OROP’s vital role in Tampa Bay Water’s well-field management system, understanding and quantifying the uncertainty of predictions made by the CNTB model is recognized as a high priority for ensuring long-term sustainability of the water resource. MODFLOW is used to simulate groundwater flow in two principal hydrostratigraphic units: the generally unconfined Surficial Aquifer System (SAS) and the Upper Floridan Aquifer System (UFAS), which is confined over much of the model area by the Intermediate Confining Unit (ICU).
However, new technologies and well-planned and executed management strategies are critical if groundwater resources are to be used effectively and responsibly. In turn, the development of appropriate management strategies requires a sound knowledge of urban groundwater science, as well as the application of aquifer modelling tools used to test alternative approaches to resource management strategies and aid decision-making (Howard, 2007). Particular consideration needs to be given to the urban water budget and the influence of groundwater capture on induced recharge, and how these, in turn, relate to the sustainable yield of an aquifer (Sophocleous, 2000, 2005, 2007).
Advanced simulation and modelling for urban groundwater management : UGROW by Ken Howard; Dubravka Pokrajac
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