HR: 08:45h
AN: H41B-04 [Abstracts]
TI: Determination of Groundwater Velocity and Dispersion Parameters by Borehole Wall Multielectrode Geoelectrics
AU: * Kessels, W
EM: winfried.kessels@gga-hannover.de
AF: Leibniz Institute for Applied Geosciences, Stilleweg 2, Hannover, D 30655, Germany
AU: Wuttke, M W
EM: manfred.wuttke@gga-hannover.de
AF: Leibniz Institute for Applied Geosciences, Stilleweg 2, Hannover, D 30655, Germany
AB:
A single well technique to determine groundwater flow values and transport parameters is presented.
Multielectrode arrays are placed at the filtered casing depth by an inflatable packer or are installed on the
borehole wall behind the casing.Tracer water with a higher or lower specific electrical conductivity (salinity) which
is injected between the electrodes. This tracer plume then moves into the natural groundwater flow field. The
observation of this movement by geoelectric logging enables the determination of the groundwater velocity and
salinity. The transport parameters "effective porosity" and "dispersion length" can also be derived. The geoelectric
logging uses n borehole electrodes and two grounding electrodes. Thus, either n independent two point
measurements or n*(n-1)/2 pole-to-pole measurements can be conducted to obtain a full set of geoelectric
measurements. This set is used to derive all electrode combinations by applying the law of superposition and
reciprocity. The tracer distribution around the borehole during and after injection depends on the hydraulic and
transport parameters of the aquifer and the filter sand. The transport parameter "porosity" plus the total injected
tracer volume determines the tracer distribution around the borehole. The transport parameter "dispersivity"
determines the abruptness of the tracer front.
The method was tested by undertaking measurements in a lab aquifer filled with sand. The results are
discussed and the limitations of the method are shown.
Multielectrode installations behind casing were tested in situ in the two scientific boreholes CAT-LUD-1 and CAT-
LUD-1A drilled in the northern part of Germany. A multielectrode packer system was designed, built and tested in
these boreholes. The results are compared with colloid observations in the borehole and hydraulic triangulation
in surrounded observation wells.
Here, the interpretation of these in situ measurements is mainly restricted to two point geoelectric measurements
and vertical four point electrode interpretations. The transport equation for NaCl-tracered water is the basic rule to
determine the groundwater transport velocity. Numerical calculations to simulate the measurement are carried
out with the program FEFLOW.
Due to the density contrast, the tracer undergoes vertical movement.
Kessels, W., Zoth, G.(1998): Doppelmantel - Packer mit geoelektrischer Meßtechnik zur Bestimmung der
Abstandsgeschwindigkeit des Grundwassers, Patent Az:19855048.0, GGA-Institut, Germany, Hannover.
KESSELS, W., RIFAI, H., THORENZ, C., ZOTH, G.(2002): Multi Electrode Geoelectric on the Borehole Wall-
Determination of groundwater velocity and dispersion parameters, AGU spring meeting, Washington
KESSELS, W., ZOTH, G., WONIK, T., FULDA, C. (1999): THE USE OF SALT CARTRIDGES FOR FLUID LOGGING.
XXIV GENERAL ASSEMBLY OF E.G.S. THE HAGUE, THE NETHERLANDS
PANTELEIT,B., KESSELS, W., BINOT, F (2006): MUD TRACER TEST DURING SOFT ROCK DRILLING; W.R.R.,
VOL. 42, W11415, DOI:10.1029/2005WR004487
DE: 0915 Downhole methods
DE: 1828 Groundwater hydraulics
DE: 1832 Groundwater transport
DE: 5114 Permeability and porosity
DE: 5139 Transport properties
SC: Hydrology [H]
MN: 2007 Joint Assembly