Estimation of Soil Permeability Using an Acoustic Technique
Jin Won Kim and Chung R. Song
Department of Civil Engineering The University of Mississippi University, MS 38677
Estimation of Soil Permeability Using an Acoustic Technique Jin Won - - PowerPoint PPT Presentation
Estimation of Soil Permeability Using an Acoustic Technique Jin Won Kim and Chung R. Song Department of Civil Engineering The University of Mississippi University, MS 38677 Concepts The propagation of elastic waves in saturated soils causes
Jin Won Kim and Chung R. Song
Department of Civil Engineering The University of Mississippi University, MS 38677
The propagation of elastic waves in saturated soils causes the l d ti b t lid ti l d t coupled motion between solid particles and pore water. Characteristic Frequency The coupled behavior involves the permeability of soils. By measuring the characteristic frequency of elastic waves in saturated soils, the permeability of soils is estimated.
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tion Attenuat
c
: Characteristic Frequency
Specific
Frequency (Hz)
eventually to the permeability of soils).
c
Frequency (Hz)
y p y )
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c
Amp.:A1 A A2
2 1
Amp.: A2
Underwater actuator = attenuation coefficient 1
2
1
− =
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Wave generator Digital oscilloscope Amplifier Receiver 2 Underground Actuator Receiver 1
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Receiver 1
Receiver 2
Receiver 2 Amplitude : X1 ≈ X2
Very little attenuation:
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not the characteristic frequency
Receiver 1 X1 X2 Receiver 2 Amplitude : X1 < X2
V hi h tt ti
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Very high attenuation: Characteristic frequency
Saturated Condition : w = 23.14 (%) Dry Condition : w = 0.098 (%) y ( )
1 Dry Soil 0.5 Saturated Soil 500 1000 1500 2000 2500 3000 3500 4000 4500
Frequency (Hz)
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The University of Mississippi Civil Engineering
(%)
3
( / ) t m d
Sardis Lake 2.65 24.15 1.616 0.390 Tillatoba River 2.67 25.90 1.364 0.489
Baton Rouge 2.68 45.56 1.210 0.550
( t / ( % )
40 60 80 100 rcent Finer
/ m
2
) )
20 0.000 0.001 0.010 0.100 1.000 10.000 Grain Size, D(mm) Per
Tillatoba River Baton Rouge Sardis Lake
0.4 0.6 0 4
0.2 1000 2000 3000 4000 5000 6000 7000
Frequency (Hz) Frequency (Hz)
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0.6 0.2 0.4
2000 4000 6000 8000 10000 12000
Frequency (Hz) Frequency (Hz)
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0.2 0.4 0.6
2000 4000 6000 8000 10000 12000
Frequency (Hz)
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The University of Mississippi Civil Engineering
The University of Mississippi Civil Engineering
3 4 5
0.92 m
1 2 3 2000 4000 6000 8000 10000 12000 14000 frequency (Hz)
0.47 m
Errors from incorrect alignment
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4 5 1 2 3
Ratio A2/A1
2000 4000 6000 8000 10000 12000 14000
Frequency (Hz)
4 5 1 2 3
Attenuation coefficient
2000 4000 6000 8000 10000 12000 14000
Frequency (Hz) System characteristic frequency is approximately 10000 Hz Frequency (Hz)
The University of Mississippi Civil Engineering
System characteristic frequency is approximately 10000 Hz
2
200 Hz
2000 4000 6000 plitude (mV)
7 kHz
2000 4000 6000 mplitdue (mV) 2 4 6 8 10 12 distance (cm) amp 2 4 6 8 10 12 distance (cm) am
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1 2 1 2
D : the diameter of a stand pipe L : the length of a sample h h
1
h
2
h
D
The University of Mississippi Civil Engineering