Examples of 'groundwater flow' in a sentence
Meaning of "groundwater flow"
This phrase refers to the movement or circulation of water below the surface of the earth, specifically in underground aquifers, wells, or natural reservoirs. It is commonly used in scientific or environmental discussions related to hydrology, geology, or water resource management
How to use "groundwater flow" in a sentence
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groundwater flow
Causing an interruption with the groundwater flow.
Groundwater flow around a sheet pile.
It should not be confused with groundwater flow.
Transboundary groundwater flow characterization is needed.
This term relates to hydrology and groundwater flow.
Calculation of groundwater flow and particle tracking for.
Analytic element modeling of groundwater flow.
Groundwater flow is simulated using the finite element method.
Aquifers where intergranular groundwater flow is dominant.
The groundwater flow rate within a cenote is very slow.
It is governed by the groundwater flow equation.
This fundamental head relationship is basic to an understanding of groundwater flow.
The direction of the groundwater flow is not right.
Shallow percolation is the source of shallow groundwater flow.
Groundwater related events groundwater flow and contaminant transport.
See also
The groundwater flow rate within a cenote may be very slow.
No significant residual effects on groundwater flow patterns are expected.
Between groundwater flow and elevation levels between two points.
Schematic drawing of regional groundwater flow.
Protect the natural groundwater flow in caves from water pollution.
The classification of the medium in which the groundwater flow occurs.
The role of the groundwater flow is of major importance in this analysis.
Better understanding of groundwater flow.
Characterization of groundwater flow and contaminant transport in permafrost can be highly complex.
Neglect the effects of regional groundwater flow and dispersion.
I can model groundwater flow using soil samples and geological maps.
Avoid disrupting or intercepting groundwater flow to any water body.
Numerical methods for solving partial differential equations of groundwater flow.
The effects of gaseous methane on groundwater flow in crystalline bedrock.
Understand the interaction between water chemistry and groundwater flow.
This will be particularly evident in groundwater flow systems of different catchments.
A hydrogeological evaluation needs a numerical representation of the groundwater flow regime.
Lakes may have a complex groundwater flow system associated with them.
A potentiometric map provides an indication of the direction of groundwater flow in an aquifer.
A groundwater flow system may consist of one or more aquifers of different types.
Lenses directed and accelerated groundwater flow into the habitats.
Water routing through the catchment is made complex by karstic groundwater flow.
The above groundwater flow equations are valid for three dimensional flow.
Fractures provide the primary pathways for groundwater flow in rock.
Groundwater flow patterns do not necessary follow the general slope of the volcano.
They say this is due to the pressure of the groundwater flow.
Many solutions for groundwater flow problems were borrowed or adapted from existing heat transfer solutions.
Groundwater models are used to represent the natural groundwater flow in the environment.
O Modelling groundwater flow and contaminant transport.
Such conditions can only be assessed by more complex analyses of the groundwater flow.
Precipitation enters these fractures and groundwater flow delivers water to the lake.
Further tests will be needed to determine the extent and direction of all groundwater flow.
Plant uptake is water taken from the groundwater flow and soil moisture.
Numerical models are a great tool to evaluate the current and future conditions of groundwater flow.
The data were also integrated to develop a representative groundwater flow and mass transport numerical model.
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