SlideShare a Scribd company logo
1 of 25
Aquifer and Non Equilibrium
equation for unsteady radial
flow
Presented by: AbhiShek Gupta
Aquifer
• A saturated, permeable, geologic unit that can transmit a
significant amount of groundwater under an ordinary
gradient.
Unsteady flow in confined aquifer
• Assumptions
 The aquifer is confined
 The aquifer has infinite aerial extent
 The aquifer is homogeneous, isotropic and of uniform thickness
 The piezometric surface is horizontal prior to pumping
 The aquifer is pumped at a constant discharge rate
 The well penetrates the full thickness of the aquifer and thus
receives water by horizontal flow
principle of continuity equation
of flow,
Inflow,
Outflow,
• Change in volume,
S (Storage coefficient) is the volume of water released per unit surface area per
unit change in head normal to the surface.
• In this equation, h is head, r is radial distance from the well, S is storage
coefficient, T is transmissivity, and t is the time since the beginning of pumping.
The Theis Method (Curve Matching Method)
• Theis assumed that the well is replaced by a mathematical sink of constant
strength and imposing the boundary conditions h = h0 for t = 0, and h → h0
as r →∞ for t ≥0, the solution,
Where W(u) is the well function and u is given by,
After taking log on both equations,
therefore, a graph of log s against log t should be the same shape as a graph of log
(W(u)) against log (1/u)
constants
Theis curve Filed plot on logarithmic paper
Match of field data plot to Theis Type curve
Cooper-Jacob Method (Time-Drawdown)
This is also based upon the Theis analysis
Base 10
Straight line
If and are drawdown at time
and then,
Transmissivity is calculated by above
equation.
When s=0
(storativity)
Semi –log plot
Cooper-Jacob Method (Distance-Drawdown)
When observation of 3 or more wells are to be made.
transmissivity, per one logarithmic cycle
When s=0,
Therefore,
Unsteady Radial Flow in an Unconfined Aquifer
Equation of flow of water (Neuman’s equation),
where,
h is the saturated thickness of the aquifer (m)
r is radial distance from the pumping well (m)
z is elevation above the base of the aquifer (m)
is specific storage (1/m)
is radial hydraulic conductivity (m/day)
is vertical hydraulic conductivity (m/day)
T is time (day)
Three phases of drawdown
First phase:
• pressure drops
• specific storage as a major
contribution behaves as an
artesian aquifer
•flow is horizontal
• time-drawdown follows
Theis curve S - the elastic
storativity.
Second phase Third phase
• water table declines
• specific yield as a major
contribution
• flow is both horizontal and
vertical
• time-drawdown is a function
of Kv/Kh r, b
• rate of drawdown decreases
• flow is again horizontal
• time-drawdown again follows
Theis curve S - the specific
yield.
Neuman’ assumptions
• The aquifer is unconfined.
• The vadose zone has no influence on the drawdown.
• Water initially pumped comes from the instantaneous release of water from elastic
storage.
• Eventually water comes from storage due to gravity drainage of interconnected
pores.
• The drawdown is negligible compared with the saturated aquifer thickness.
• The specific yield is at least 10 times the elastic storativity.
• The aquifer may be- but does not have to be- anisotropic with the radial hydraulic
conductivity different than the vertical hydraulic conductivity.
Neuman’s solution,
Where,
is the well function of water-table aquifer
For early time,
and
For late time, and
and
Parameters can be
found by Penman
method
Penmen method to find parameters
• Two sets of type curves are used and plotted on log-log paper (Theoretical curve
vs 1/u).
• Superpose the early (t − s) data on Type-A curve.
• The data analysis is done by matching the observed data to the type curve.
• From the match point of Type-A curve, determine the values for
and the value of
• Use the previous equations to determine T and S
• The latest (s − t) data are then superposed on Type-B Curve for the Γ - values of
previously matched Type-A curve, from the match point of Type-B curve, determine
the values for
• By using the previous equations, the T and S can be determined.
.
Type curves for unconfined aquifers
Unsteady Radial Flow in a Leaky Aquifer
Equation for Unsteady
radial flow for leaky aquifer,
Where,
r is the radial distance
from a pumping well (m)
e is the rate of vertical
leakage (m/day)
Hantush-Jacob Method
Assumptions:
• The aquifer is leaky and has an "apparent" infinite extent,
• The aquifer and the confining layer are homogeneous, isotropic, and of uniform
thickness, over the area influenced by pumping,
• The potentiometric surface was horizontal prior to pumping,
• The well is pumped at a constant rate,
• The well is fully penetrating,
• Water removed from storage is discharged instantaneously with decline in head,
• The well diameter is small so that well storage is negligible,
• Leakage through the aquitard layer is vertical.
Hantush and Jacob solution for leaky aquifer,
Where,
where,
is the well function for leaky confined aquifer
B is the leakage factor given as
where,
b' is thickness of the aquitard (m)
K' is hydraulic conductivity of the aquitard (m/day)
Walton Graphical Solution
Log-log plot
Procedure
• Field data are plotted on drawdown vs. time on full logarithmic
scale.
• Field data should match one of the type curves for r/B
(interpolation if between two lines)
• From a match point, the following are known values
• Substitute in Hantush-Jacob equation:
(From match) r = distance between pumping well and
observation well
B = leakage factor
Thank you

More Related Content

What's hot

Module 2 ch-2 ground water
Module 2 ch-2 ground waterModule 2 ch-2 ground water
Module 2 ch-2 ground waterAnkit Patel
 
Stage measurement
Stage measurementStage measurement
Stage measurementKiran Yadav
 
Unsteady radial flow in a confined aquifer Nonequilibrium well pumping equation
Unsteady radial flow in a confined aquifer Nonequilibrium well pumping equationUnsteady radial flow in a confined aquifer Nonequilibrium well pumping equation
Unsteady radial flow in a confined aquifer Nonequilibrium well pumping equationNaresh Kumar
 
Artificial groundwater recharging techniques
Artificial groundwater recharging techniquesArtificial groundwater recharging techniques
Artificial groundwater recharging techniquessaisrinivas gorugantula
 
radial flow pumping test
radial flow pumping testradial flow pumping test
radial flow pumping testFatonah Munsai
 
Dam and types of dam with site selection
Dam and types of dam with site selectionDam and types of dam with site selection
Dam and types of dam with site selectionJyoti Khatiwada
 
Hydrology and Water Resources Engineering
Hydrology and Water Resources EngineeringHydrology and Water Resources Engineering
Hydrology and Water Resources EngineeringGAURAV. H .TANDON
 
Estimation of Groundwater Potential
Estimation of Groundwater PotentialEstimation of Groundwater Potential
Estimation of Groundwater PotentialC. P. Kumar
 
Stability of Slopes
Stability of Slopes Stability of Slopes
Stability of Slopes Arbaz Kazi
 
Class lecture on Hydrology by Rabindra Ranjan saha Lecture 13
Class lecture on Hydrology by Rabindra Ranjan saha Lecture 13Class lecture on Hydrology by Rabindra Ranjan saha Lecture 13
Class lecture on Hydrology by Rabindra Ranjan saha Lecture 13World University of Bangladesh
 
Ground water hydrology
Ground water hydrologyGround water hydrology
Ground water hydrologySandra4Smiley
 
S curve hydrograph
S curve hydrographS curve hydrograph
S curve hydrographSatish Taji
 
Flood estimation
Flood estimation Flood estimation
Flood estimation RAJ BAIRWA
 

What's hot (20)

Earthen Dams
Earthen DamsEarthen Dams
Earthen Dams
 
Module 2 ch-2 ground water
Module 2 ch-2 ground waterModule 2 ch-2 ground water
Module 2 ch-2 ground water
 
Stage measurement
Stage measurementStage measurement
Stage measurement
 
Sediments loads
Sediments loadsSediments loads
Sediments loads
 
Unsteady radial flow in a confined aquifer Nonequilibrium well pumping equation
Unsteady radial flow in a confined aquifer Nonequilibrium well pumping equationUnsteady radial flow in a confined aquifer Nonequilibrium well pumping equation
Unsteady radial flow in a confined aquifer Nonequilibrium well pumping equation
 
Artificial groundwater recharging techniques
Artificial groundwater recharging techniquesArtificial groundwater recharging techniques
Artificial groundwater recharging techniques
 
Chapter 3 Fetter Properties of Aquifers
Chapter 3 Fetter Properties of AquifersChapter 3 Fetter Properties of Aquifers
Chapter 3 Fetter Properties of Aquifers
 
Engineering properties of soil
Engineering properties of soilEngineering properties of soil
Engineering properties of soil
 
radial flow pumping test
radial flow pumping testradial flow pumping test
radial flow pumping test
 
Dam and types of dam with site selection
Dam and types of dam with site selectionDam and types of dam with site selection
Dam and types of dam with site selection
 
Pumping test
Pumping testPumping test
Pumping test
 
Ground Water Hydrology
Ground Water HydrologyGround Water Hydrology
Ground Water Hydrology
 
Hydrology and Water Resources Engineering
Hydrology and Water Resources EngineeringHydrology and Water Resources Engineering
Hydrology and Water Resources Engineering
 
Estimation of Groundwater Potential
Estimation of Groundwater PotentialEstimation of Groundwater Potential
Estimation of Groundwater Potential
 
Stability of Slopes
Stability of Slopes Stability of Slopes
Stability of Slopes
 
Class lecture on Hydrology by Rabindra Ranjan saha Lecture 13
Class lecture on Hydrology by Rabindra Ranjan saha Lecture 13Class lecture on Hydrology by Rabindra Ranjan saha Lecture 13
Class lecture on Hydrology by Rabindra Ranjan saha Lecture 13
 
Ground water hydrology
Ground water hydrologyGround water hydrology
Ground water hydrology
 
S curve hydrograph
S curve hydrographS curve hydrograph
S curve hydrograph
 
Hydrograph
HydrographHydrograph
Hydrograph
 
Flood estimation
Flood estimation Flood estimation
Flood estimation
 

Similar to Non equilibrium equation for unsteady radial flow

DSD-INT 2018 Floodplain Circulation Dynamics - van der Steeg
DSD-INT 2018 Floodplain Circulation Dynamics - van der SteegDSD-INT 2018 Floodplain Circulation Dynamics - van der Steeg
DSD-INT 2018 Floodplain Circulation Dynamics - van der SteegDeltares
 
UNIFORM FLOW OCF.pptx
UNIFORM FLOW OCF.pptxUNIFORM FLOW OCF.pptx
UNIFORM FLOW OCF.pptxreenarana28
 
streamflowmeasurement-170307185522.pdf
streamflowmeasurement-170307185522.pdfstreamflowmeasurement-170307185522.pdf
streamflowmeasurement-170307185522.pdfMashrufaHussain1
 
Stream flow measurement
Stream flow measurementStream flow measurement
Stream flow measurementMOHIT MAYOOR
 
88c40e_Suppressed Weir Lecture.pptx
88c40e_Suppressed Weir Lecture.pptx88c40e_Suppressed Weir Lecture.pptx
88c40e_Suppressed Weir Lecture.pptxWaliEdwardian1
 
UNIT 1 UNIFORM FLOW.pptx
UNIT 1 UNIFORM FLOW.pptxUNIT 1 UNIFORM FLOW.pptx
UNIT 1 UNIFORM FLOW.pptxreenarana28
 
Forced convection
Forced convectionForced convection
Forced convectionmsg15
 
Methods of in site Permeability Test
Methods of in site Permeability TestMethods of in site Permeability Test
Methods of in site Permeability TestGaurang Kakadiya
 
Iahr2015 net transport of fine sediments in a narrow, converging estuary, w...
Iahr2015   net transport of fine sediments in a narrow, converging estuary, w...Iahr2015   net transport of fine sediments in a narrow, converging estuary, w...
Iahr2015 net transport of fine sediments in a narrow, converging estuary, w...Deltares
 
Friction losses in turbulent flow (Fanning Equation).pdf
Friction losses in turbulent flow (Fanning Equation).pdfFriction losses in turbulent flow (Fanning Equation).pdf
Friction losses in turbulent flow (Fanning Equation).pdfSharpmark256
 

Similar to Non equilibrium equation for unsteady radial flow (20)

Chapter 5 Fetter Ground water flow to wells
Chapter 5 Fetter Ground water flow to wellsChapter 5 Fetter Ground water flow to wells
Chapter 5 Fetter Ground water flow to wells
 
Aquifer test and estimation
Aquifer test and estimationAquifer test and estimation
Aquifer test and estimation
 
3.uniform flow.pptx
3.uniform flow.pptx3.uniform flow.pptx
3.uniform flow.pptx
 
DSD-INT 2018 Floodplain Circulation Dynamics - van der Steeg
DSD-INT 2018 Floodplain Circulation Dynamics - van der SteegDSD-INT 2018 Floodplain Circulation Dynamics - van der Steeg
DSD-INT 2018 Floodplain Circulation Dynamics - van der Steeg
 
Unit41.pptx
Unit41.pptxUnit41.pptx
Unit41.pptx
 
UNIFORM FLOW OCF.pptx
UNIFORM FLOW OCF.pptxUNIFORM FLOW OCF.pptx
UNIFORM FLOW OCF.pptx
 
streamflowmeasurement-170307185522.pdf
streamflowmeasurement-170307185522.pdfstreamflowmeasurement-170307185522.pdf
streamflowmeasurement-170307185522.pdf
 
Stream flow measurement
Stream flow measurementStream flow measurement
Stream flow measurement
 
Lecture 2.pptx
Lecture 2.pptxLecture 2.pptx
Lecture 2.pptx
 
Groundwater hydrology
Groundwater hydrologyGroundwater hydrology
Groundwater hydrology
 
Stream gauging ppt
Stream gauging pptStream gauging ppt
Stream gauging ppt
 
Groundwater hydrology
Groundwater hydrologyGroundwater hydrology
Groundwater hydrology
 
88c40e_Suppressed Weir Lecture.pptx
88c40e_Suppressed Weir Lecture.pptx88c40e_Suppressed Weir Lecture.pptx
88c40e_Suppressed Weir Lecture.pptx
 
UNIT 1 UNIFORM FLOW.pptx
UNIT 1 UNIFORM FLOW.pptxUNIT 1 UNIFORM FLOW.pptx
UNIT 1 UNIFORM FLOW.pptx
 
F convection.ppt
F convection.pptF convection.ppt
F convection.ppt
 
Forced convection
Forced convectionForced convection
Forced convection
 
Methods of in site Permeability Test
Methods of in site Permeability TestMethods of in site Permeability Test
Methods of in site Permeability Test
 
Iahr2015 net transport of fine sediments in a narrow, converging estuary, w...
Iahr2015   net transport of fine sediments in a narrow, converging estuary, w...Iahr2015   net transport of fine sediments in a narrow, converging estuary, w...
Iahr2015 net transport of fine sediments in a narrow, converging estuary, w...
 
Lecture 1.pptx
Lecture 1.pptxLecture 1.pptx
Lecture 1.pptx
 
Friction losses in turbulent flow (Fanning Equation).pdf
Friction losses in turbulent flow (Fanning Equation).pdfFriction losses in turbulent flow (Fanning Equation).pdf
Friction losses in turbulent flow (Fanning Equation).pdf
 

Recently uploaded

1029-Danh muc Sach Giao Khoa khoi 6.pdf
1029-Danh muc Sach Giao Khoa khoi  6.pdf1029-Danh muc Sach Giao Khoa khoi  6.pdf
1029-Danh muc Sach Giao Khoa khoi 6.pdfQucHHunhnh
 
Jual Obat Aborsi Hongkong ( Asli No.1 ) 085657271886 Obat Penggugur Kandungan...
Jual Obat Aborsi Hongkong ( Asli No.1 ) 085657271886 Obat Penggugur Kandungan...Jual Obat Aborsi Hongkong ( Asli No.1 ) 085657271886 Obat Penggugur Kandungan...
Jual Obat Aborsi Hongkong ( Asli No.1 ) 085657271886 Obat Penggugur Kandungan...ZurliaSoop
 
Making communications land - Are they received and understood as intended? we...
Making communications land - Are they received and understood as intended? we...Making communications land - Are they received and understood as intended? we...
Making communications land - Are they received and understood as intended? we...Association for Project Management
 
2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx
2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx
2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptxMaritesTamaniVerdade
 
HMCS Max Bernays Pre-Deployment Brief (May 2024).pptx
HMCS Max Bernays Pre-Deployment Brief (May 2024).pptxHMCS Max Bernays Pre-Deployment Brief (May 2024).pptx
HMCS Max Bernays Pre-Deployment Brief (May 2024).pptxEsquimalt MFRC
 
ICT Role in 21st Century Education & its Challenges.pptx
ICT Role in 21st Century Education & its Challenges.pptxICT Role in 21st Century Education & its Challenges.pptx
ICT Role in 21st Century Education & its Challenges.pptxAreebaZafar22
 
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...christianmathematics
 
General Principles of Intellectual Property: Concepts of Intellectual Proper...
General Principles of Intellectual Property: Concepts of Intellectual  Proper...General Principles of Intellectual Property: Concepts of Intellectual  Proper...
General Principles of Intellectual Property: Concepts of Intellectual Proper...Poonam Aher Patil
 
Understanding Accommodations and Modifications
Understanding  Accommodations and ModificationsUnderstanding  Accommodations and Modifications
Understanding Accommodations and ModificationsMJDuyan
 
This PowerPoint helps students to consider the concept of infinity.
This PowerPoint helps students to consider the concept of infinity.This PowerPoint helps students to consider the concept of infinity.
This PowerPoint helps students to consider the concept of infinity.christianmathematics
 
Activity 01 - Artificial Culture (1).pdf
Activity 01 - Artificial Culture (1).pdfActivity 01 - Artificial Culture (1).pdf
Activity 01 - Artificial Culture (1).pdfciinovamais
 
How to Give a Domain for a Field in Odoo 17
How to Give a Domain for a Field in Odoo 17How to Give a Domain for a Field in Odoo 17
How to Give a Domain for a Field in Odoo 17Celine George
 
Kodo Millet PPT made by Ghanshyam bairwa college of Agriculture kumher bhara...
Kodo Millet  PPT made by Ghanshyam bairwa college of Agriculture kumher bhara...Kodo Millet  PPT made by Ghanshyam bairwa college of Agriculture kumher bhara...
Kodo Millet PPT made by Ghanshyam bairwa college of Agriculture kumher bhara...pradhanghanshyam7136
 
Holdier Curriculum Vitae (April 2024).pdf
Holdier Curriculum Vitae (April 2024).pdfHoldier Curriculum Vitae (April 2024).pdf
Holdier Curriculum Vitae (April 2024).pdfagholdier
 
Food safety_Challenges food safety laboratories_.pdf
Food safety_Challenges food safety laboratories_.pdfFood safety_Challenges food safety laboratories_.pdf
Food safety_Challenges food safety laboratories_.pdfSherif Taha
 
Accessible Digital Futures project (20/03/2024)
Accessible Digital Futures project (20/03/2024)Accessible Digital Futures project (20/03/2024)
Accessible Digital Futures project (20/03/2024)Jisc
 
The basics of sentences session 3pptx.pptx
The basics of sentences session 3pptx.pptxThe basics of sentences session 3pptx.pptx
The basics of sentences session 3pptx.pptxheathfieldcps1
 
Single or Multiple melodic lines structure
Single or Multiple melodic lines structureSingle or Multiple melodic lines structure
Single or Multiple melodic lines structuredhanjurrannsibayan2
 
Sociology 101 Demonstration of Learning Exhibit
Sociology 101 Demonstration of Learning ExhibitSociology 101 Demonstration of Learning Exhibit
Sociology 101 Demonstration of Learning Exhibitjbellavia9
 

Recently uploaded (20)

1029-Danh muc Sach Giao Khoa khoi 6.pdf
1029-Danh muc Sach Giao Khoa khoi  6.pdf1029-Danh muc Sach Giao Khoa khoi  6.pdf
1029-Danh muc Sach Giao Khoa khoi 6.pdf
 
Jual Obat Aborsi Hongkong ( Asli No.1 ) 085657271886 Obat Penggugur Kandungan...
Jual Obat Aborsi Hongkong ( Asli No.1 ) 085657271886 Obat Penggugur Kandungan...Jual Obat Aborsi Hongkong ( Asli No.1 ) 085657271886 Obat Penggugur Kandungan...
Jual Obat Aborsi Hongkong ( Asli No.1 ) 085657271886 Obat Penggugur Kandungan...
 
Mehran University Newsletter Vol-X, Issue-I, 2024
Mehran University Newsletter Vol-X, Issue-I, 2024Mehran University Newsletter Vol-X, Issue-I, 2024
Mehran University Newsletter Vol-X, Issue-I, 2024
 
Making communications land - Are they received and understood as intended? we...
Making communications land - Are they received and understood as intended? we...Making communications land - Are they received and understood as intended? we...
Making communications land - Are they received and understood as intended? we...
 
2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx
2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx
2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx
 
HMCS Max Bernays Pre-Deployment Brief (May 2024).pptx
HMCS Max Bernays Pre-Deployment Brief (May 2024).pptxHMCS Max Bernays Pre-Deployment Brief (May 2024).pptx
HMCS Max Bernays Pre-Deployment Brief (May 2024).pptx
 
ICT Role in 21st Century Education & its Challenges.pptx
ICT Role in 21st Century Education & its Challenges.pptxICT Role in 21st Century Education & its Challenges.pptx
ICT Role in 21st Century Education & its Challenges.pptx
 
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...
 
General Principles of Intellectual Property: Concepts of Intellectual Proper...
General Principles of Intellectual Property: Concepts of Intellectual  Proper...General Principles of Intellectual Property: Concepts of Intellectual  Proper...
General Principles of Intellectual Property: Concepts of Intellectual Proper...
 
Understanding Accommodations and Modifications
Understanding  Accommodations and ModificationsUnderstanding  Accommodations and Modifications
Understanding Accommodations and Modifications
 
This PowerPoint helps students to consider the concept of infinity.
This PowerPoint helps students to consider the concept of infinity.This PowerPoint helps students to consider the concept of infinity.
This PowerPoint helps students to consider the concept of infinity.
 
Activity 01 - Artificial Culture (1).pdf
Activity 01 - Artificial Culture (1).pdfActivity 01 - Artificial Culture (1).pdf
Activity 01 - Artificial Culture (1).pdf
 
How to Give a Domain for a Field in Odoo 17
How to Give a Domain for a Field in Odoo 17How to Give a Domain for a Field in Odoo 17
How to Give a Domain for a Field in Odoo 17
 
Kodo Millet PPT made by Ghanshyam bairwa college of Agriculture kumher bhara...
Kodo Millet  PPT made by Ghanshyam bairwa college of Agriculture kumher bhara...Kodo Millet  PPT made by Ghanshyam bairwa college of Agriculture kumher bhara...
Kodo Millet PPT made by Ghanshyam bairwa college of Agriculture kumher bhara...
 
Holdier Curriculum Vitae (April 2024).pdf
Holdier Curriculum Vitae (April 2024).pdfHoldier Curriculum Vitae (April 2024).pdf
Holdier Curriculum Vitae (April 2024).pdf
 
Food safety_Challenges food safety laboratories_.pdf
Food safety_Challenges food safety laboratories_.pdfFood safety_Challenges food safety laboratories_.pdf
Food safety_Challenges food safety laboratories_.pdf
 
Accessible Digital Futures project (20/03/2024)
Accessible Digital Futures project (20/03/2024)Accessible Digital Futures project (20/03/2024)
Accessible Digital Futures project (20/03/2024)
 
The basics of sentences session 3pptx.pptx
The basics of sentences session 3pptx.pptxThe basics of sentences session 3pptx.pptx
The basics of sentences session 3pptx.pptx
 
Single or Multiple melodic lines structure
Single or Multiple melodic lines structureSingle or Multiple melodic lines structure
Single or Multiple melodic lines structure
 
Sociology 101 Demonstration of Learning Exhibit
Sociology 101 Demonstration of Learning ExhibitSociology 101 Demonstration of Learning Exhibit
Sociology 101 Demonstration of Learning Exhibit
 

Non equilibrium equation for unsteady radial flow

  • 1. Aquifer and Non Equilibrium equation for unsteady radial flow Presented by: AbhiShek Gupta
  • 2. Aquifer • A saturated, permeable, geologic unit that can transmit a significant amount of groundwater under an ordinary gradient.
  • 3. Unsteady flow in confined aquifer • Assumptions  The aquifer is confined  The aquifer has infinite aerial extent  The aquifer is homogeneous, isotropic and of uniform thickness  The piezometric surface is horizontal prior to pumping  The aquifer is pumped at a constant discharge rate  The well penetrates the full thickness of the aquifer and thus receives water by horizontal flow
  • 4. principle of continuity equation of flow, Inflow, Outflow,
  • 5. • Change in volume, S (Storage coefficient) is the volume of water released per unit surface area per unit change in head normal to the surface. • In this equation, h is head, r is radial distance from the well, S is storage coefficient, T is transmissivity, and t is the time since the beginning of pumping.
  • 6. The Theis Method (Curve Matching Method) • Theis assumed that the well is replaced by a mathematical sink of constant strength and imposing the boundary conditions h = h0 for t = 0, and h → h0 as r →∞ for t ≥0, the solution, Where W(u) is the well function and u is given by,
  • 7. After taking log on both equations, therefore, a graph of log s against log t should be the same shape as a graph of log (W(u)) against log (1/u) constants
  • 8. Theis curve Filed plot on logarithmic paper
  • 9. Match of field data plot to Theis Type curve
  • 10. Cooper-Jacob Method (Time-Drawdown) This is also based upon the Theis analysis Base 10 Straight line
  • 11. If and are drawdown at time and then, Transmissivity is calculated by above equation. When s=0 (storativity) Semi –log plot
  • 12. Cooper-Jacob Method (Distance-Drawdown) When observation of 3 or more wells are to be made. transmissivity, per one logarithmic cycle When s=0, Therefore,
  • 13. Unsteady Radial Flow in an Unconfined Aquifer Equation of flow of water (Neuman’s equation), where, h is the saturated thickness of the aquifer (m) r is radial distance from the pumping well (m) z is elevation above the base of the aquifer (m) is specific storage (1/m) is radial hydraulic conductivity (m/day) is vertical hydraulic conductivity (m/day) T is time (day)
  • 14. Three phases of drawdown First phase: • pressure drops • specific storage as a major contribution behaves as an artesian aquifer •flow is horizontal • time-drawdown follows Theis curve S - the elastic storativity.
  • 15. Second phase Third phase • water table declines • specific yield as a major contribution • flow is both horizontal and vertical • time-drawdown is a function of Kv/Kh r, b • rate of drawdown decreases • flow is again horizontal • time-drawdown again follows Theis curve S - the specific yield.
  • 16. Neuman’ assumptions • The aquifer is unconfined. • The vadose zone has no influence on the drawdown. • Water initially pumped comes from the instantaneous release of water from elastic storage. • Eventually water comes from storage due to gravity drainage of interconnected pores. • The drawdown is negligible compared with the saturated aquifer thickness. • The specific yield is at least 10 times the elastic storativity. • The aquifer may be- but does not have to be- anisotropic with the radial hydraulic conductivity different than the vertical hydraulic conductivity.
  • 17. Neuman’s solution, Where, is the well function of water-table aquifer For early time, and For late time, and and Parameters can be found by Penman method
  • 18. Penmen method to find parameters • Two sets of type curves are used and plotted on log-log paper (Theoretical curve vs 1/u). • Superpose the early (t − s) data on Type-A curve. • The data analysis is done by matching the observed data to the type curve. • From the match point of Type-A curve, determine the values for and the value of • Use the previous equations to determine T and S • The latest (s − t) data are then superposed on Type-B Curve for the Γ - values of previously matched Type-A curve, from the match point of Type-B curve, determine the values for • By using the previous equations, the T and S can be determined. .
  • 19. Type curves for unconfined aquifers
  • 20. Unsteady Radial Flow in a Leaky Aquifer Equation for Unsteady radial flow for leaky aquifer, Where, r is the radial distance from a pumping well (m) e is the rate of vertical leakage (m/day)
  • 21. Hantush-Jacob Method Assumptions: • The aquifer is leaky and has an "apparent" infinite extent, • The aquifer and the confining layer are homogeneous, isotropic, and of uniform thickness, over the area influenced by pumping, • The potentiometric surface was horizontal prior to pumping, • The well is pumped at a constant rate, • The well is fully penetrating, • Water removed from storage is discharged instantaneously with decline in head, • The well diameter is small so that well storage is negligible, • Leakage through the aquitard layer is vertical.
  • 22. Hantush and Jacob solution for leaky aquifer, Where, where, is the well function for leaky confined aquifer B is the leakage factor given as where, b' is thickness of the aquitard (m) K' is hydraulic conductivity of the aquitard (m/day)
  • 24. Procedure • Field data are plotted on drawdown vs. time on full logarithmic scale. • Field data should match one of the type curves for r/B (interpolation if between two lines) • From a match point, the following are known values • Substitute in Hantush-Jacob equation: (From match) r = distance between pumping well and observation well B = leakage factor