ASTM D5920-14
(Test Method)Standard Test Method [Analytical Procedure] for Tests of Anisotropic Unconfined Aquifers by Neuman Method
Standard Test Method [Analytical Procedure] for Tests of Anisotropic Unconfined Aquifers by Neuman Method
SIGNIFICANCE AND USE
5.1 Assumptions:
5.1.1 The control well discharges at a constant rate, Q.
5.1.2 The control well, observation wells, and piezometers are of infinitesimal diameter.
5.1.3 The unconfined aquifer is homogeneous and really extensive.
5.1.4 Discharge from the control well is derived initially from elastic storage in the aquifer, and later from gravity drainage from the water table.
5.1.5 The geometry of the aquifer, control well, observation wells, and piezometers is shown in Fig. 2. The geometry of the test wells should be adjusted depending on the parameters of interest.
5.2 Implications of Assumptions:
5.2.1 Use of the Neuman (1) method assumes the control well is of infinitesimal diameter. The storage in the control well may adversely affect drawdown measurements obtained in the early part of the test. See 5.2.2 of Test Method D4106 for assistance in determining the duration of the effects of well-bore storage on drawdown.
5.2.2 If drawdown is large compared with the initial saturated thickness of the aquifer, the late-time drawdown may need to be adjusted for the effect of the reduction in saturated thickness. Section 5.2.3 of Test Method D4106 provides guidance in correcting for the reduction in saturated thickness. According to Neuman (1) such adjustments should be made only for late-time values.
5.3 Practice D3740 provides evaluation factors for the activities in this guide.
Note 1: The quality of the result produced by this guide is dependent on the competence of the personnel performing it, and the suitability of the equipment and facilities used. Agencies that meet the criteria of Practice D3740 are generally considered capable of competent and objective testing/sampling/inspection/etc. Users of this guide are cautioned that compliance with Practice D3740 does not in itself ensure reliable results. Reliable results depend on many factors; Practice D3740 provides a means of evaluating some of those factors.
SCOPE
1.1 This test method covers an analytical procedure for determining the transmissivity, storage coefficient, specific yield, and horizontal-to-vertical hydraulic conductivity ratio of an unconfined aquifer. It is used to analyze the drawdown of water levels in piezometers and partially or fully penetrating observation wells during pumping from a control well at a constant rate.
1.2 The analytical procedure given in this test method is used in conjunction with Guide D4043 and Test Method D4050.
1.3 The valid use of the Neuman method is limited to determination of transmissivities for aquifers in hydrogeologic settings with reasonable correspondence to the assumptions of the theory.
1.4 The values stated in SI units are to be regarded as standard.
1.5 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.
General Information
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Standards Content (Sample)
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Designation:D5920 −14
Standard Test Method (Analytical Procedure) for
Tests of Anisotropic Unconfined Aquifers by Neuman
1
Method
This standard is issued under the fixed designation D5920; the number immediately following the designation indicates the year of
original adoption or, in the case of revision, the year of last revision.Anumber in parentheses indicates the year of last reapproval.A
superscript epsilon (´) indicates an editorial change since the last revision or reapproval.
1. Scope* Determining Hydraulic Properties by Well Techniques
D4050Test Method for (Field Procedure) for Withdrawal
1.1 This test method covers an analytical procedure for
and Injection Well Tests for Determining Hydraulic Prop-
determining the transmissivity, storage coefficient, specific
erties of Aquifer Systems
yield, and horizontal-to-vertical hydraulic conductivity ratio of
D4105Test Method for (Analytical Procedure) for Deter-
an unconfined aquifer. It is used to analyze the drawdown of
mining Transmissivity and Storage Coefficient of Non-
water levels in piezometers and partially or fully penetrating
leaky ConfinedAquifers by the Modified Theis Nonequi-
observation wells during pumping from a control well at a
librium Method
constant rate.
D4106Test Method for (Analytical Procedure) for Deter-
1.2 The analytical procedure given in this test method is
mining Transmissivity and Storage Coefficient of Non-
used in conjunction with Guide D4043 and Test Method
leaky Confined Aquifers by the Theis Nonequilibrium
D4050.
Method
1.3 The valid use of the Neuman method is limited to D6026Practice for Using Significant Digits in Geotechnical
Data
determination of transmissivities for aquifers in hydrogeologic
settings with reasonable correspondence to the assumptions of
the theory. 3. Terminology
1.4 The values stated in SI units are to be regarded as
3.1 Definitions—For definitions of general technical terms
standard. used within this guide, refer to Terminology D653.
1.5 This standard does not purport to address all of the
3.2 Symbols and Dimensions:
safety concerns, if any, associated with its use. It is the
3.2.1 b [L]—initial saturated thickness of the aquifer.
responsibility of the user of this standard to establish appro-
3.2.2 d [L]—vertical distance between top of screen in
priate safety and health practices and determine the applica-
pumping well and initial position of the water table.
bility of regulatory limitations prior to use.
3.2.3 d [nd]—dimensionless d, equal to d/b.
D
2. Referenced Documents
3.2.4 J (x)—zero-order Bessel function of the first kind.
0
2
−1
2.1 ASTM Standards:
3.2.5 K [LT ]—hydraulic conductivity in the plane of the
r
D653Terminology Relating to Soil, Rock, and Contained
aquifer, radially from the control well.
Fluids
−1
3.2.6 K [LT ]—hydraulicconductivitynormaltotheplane
Z
D3740Practice for Minimum Requirements for Agencies
of the aquifer.
Engaged in Testing and/or Inspection of Soil and Rock as
3.2.6.1 Discussion—The use of the symbol K for the hy-
Used in Engineering Design and Construction
draulic conductivity is the predominant usage in groundwater
D4043Guide for Selection of Aquifer Test Method in
literature by hydrogeologists, whereas, the symbol k is com-
monly used for this term in soil and rock mechanics and soil
science.
1
ThistestmethodisunderthejurisdictionofASTMCommitteeD18onSoiland
Rock and is the direct responsibility of Subcommittee D18.21 on Groundwater and
3.2.7 l [L]—vertical distance between bottom of screen in
Vadose Zone Investigations.
control well and initial position of water table.
CurrenteditionapprovedJune1,2014.PublishedJuly2014.Originallyapproved
in 1996. Last previous edition approved in 2006 as D5920-96(2006), which was 3.2.8 l [nd]—dimensionless l, equal to l/b.
D
withdrawn February 2014 and reinstated in June 2014. DOI: 10.1520/D5920-14.
3 −1
3.2.9 Q[L T ]—discharge rate.
2
For referenced ASTM standards, visit the ASTM website, www.astm.org, or
contact ASTM Customer Service at service@astm.org. For Annual Book of ASTM
3.2.10 r [L]—radial distance from control well.
Standards volume information, refer to the standard’s Document Summary page on
the ASTM website. 3.2.11 s [L]—drawdown.
*A Summary of Changes section appears at the end of this standard
Copyright © ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States
1
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D5920−14
3.2.12 s [L]—corrected drawdown. 3.2.29 z [L]—verticaldistanceofthetopoftheobservation
c 2
well screen above the bottom of the aquifer.
3.2.13 s [nd]—dimensionless drawdown, equal to 4πTs/Q.
D
3.2.30 z [nd]—dimensionless elevation, equal to z/b.
3.2.14 s [L]—drawdown of the water table. D
wt
3.2.31 z [nd]—dimensionless elevation of base of screen,
1D
3.2.15 S [nd]—storage coefficient, equa
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