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Grain Size
Soil Mechanics CT-233
Department of Civil Technology
Course In charge: Engr. Ameer Murad Khan.
Mir Chakar Khan Rind University of Technology, DGK.
 Grain size is a fundamental physical property of sedimentary rocks and, as
such, is a useful descriptive property.
 Grain size affects the porosity and permeability and porosity of the rocks
and thus is of considerable interest to petroleum geologists.
 Grain size data reflects sedimentation mechanisms, transportation and
depositional conditions
Importance Of Grain Size Data
Manual measurement of the clasts
 Sieve Analysis
 Settling tube analysis
 Pipette analysis
 Sedi graph
 Laser diffractometer
 Coulter Counter
 Image Analysis
 Photo hydrometer
 Thin section measurement
 Electron microscope
Techniques for measuring grain size
 This method is used to measure unconsolidated
sediments by sieving them through a set of nested wire mesh screens.
 Particles having size smaller than the mesh pass through while the smaller
ones remain.
 Size of mesh is standardized and is identified using mesh number.
 The mesh number denotes the number of squares present in 1sq.inch of
area
Sieve Analysis
 The settling velocity of particles falling through a fluid medium depends on the
size, shape, and density of the particle, and the density and viscosity of the fluid.
 In this technique, grains are allowed to settle through a column of water at a
specified temperature in a settling tube. It is based on Stoke’s law:
where;
V= settling velocity
C= constant
D= diameter of the particle
Settling Tube Analysis
 A laser-diffractor size analyzer operates on the principle that particles of a given size
diffract light through a given angle, which increase with decreasing particle size.
 This technique use T.V cameras to capture and digitize grain images from which, with the
aid of appropriate computer software, grain size diameters can be calculated.
 A photohydrometer is a settling tube that relates the changes in the intensity of the beam
of light passed through a column of suspended sediment to particles settling velocities
and thus to particle size
Laser Diffractometer
1.Histogram-a bar graph
2.Frequency curves Show the variation of
wt.% as a continuous function of grain size.
3.Cumulative curves-an Sshaped curve on
the arithmetic ordinate scale
GRAPHICAL PRESENTATION OF GRAIN SIZE DATA
1.Mode-most frequency
occuring particle diameter
2.Median-midpoint of
grain Size distribution
3.Mean-arithmatic mean
can be Arrived at by
picking selected Percentile
value and averaging them
STATISTICAL PARAMETERS OF GRAIN
SIZE
4.Standard
Deviation-measures
the ‘sorting’
(uniformity of
particle size
distribution)
5. Skewness-
measures of
The asymmetry of the
distribution
STATISTICAL PARAMETERS OF GRAIN
SIZE
6.Kurtosis-degree of “peakedness”
- If the central portion is better sorted=excessively
Peaked or “leptokurtic”
- If the tails is better sorted =flat peaked or “platy-kurtic”
STATISTICAL PARAMETERS OF GRAIN
SIZE
Lets Learn
Together…
 Any Question

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Grain Size-SM.pptx

  • 1.
  • 2. Grain Size Soil Mechanics CT-233 Department of Civil Technology Course In charge: Engr. Ameer Murad Khan. Mir Chakar Khan Rind University of Technology, DGK.
  • 3.  Grain size is a fundamental physical property of sedimentary rocks and, as such, is a useful descriptive property.  Grain size affects the porosity and permeability and porosity of the rocks and thus is of considerable interest to petroleum geologists.  Grain size data reflects sedimentation mechanisms, transportation and depositional conditions Importance Of Grain Size Data
  • 4. Manual measurement of the clasts  Sieve Analysis  Settling tube analysis  Pipette analysis  Sedi graph  Laser diffractometer  Coulter Counter  Image Analysis  Photo hydrometer  Thin section measurement  Electron microscope Techniques for measuring grain size
  • 5.  This method is used to measure unconsolidated sediments by sieving them through a set of nested wire mesh screens.  Particles having size smaller than the mesh pass through while the smaller ones remain.  Size of mesh is standardized and is identified using mesh number.  The mesh number denotes the number of squares present in 1sq.inch of area Sieve Analysis
  • 6.
  • 7.  The settling velocity of particles falling through a fluid medium depends on the size, shape, and density of the particle, and the density and viscosity of the fluid.  In this technique, grains are allowed to settle through a column of water at a specified temperature in a settling tube. It is based on Stoke’s law: where; V= settling velocity C= constant D= diameter of the particle Settling Tube Analysis
  • 8.  A laser-diffractor size analyzer operates on the principle that particles of a given size diffract light through a given angle, which increase with decreasing particle size.  This technique use T.V cameras to capture and digitize grain images from which, with the aid of appropriate computer software, grain size diameters can be calculated.  A photohydrometer is a settling tube that relates the changes in the intensity of the beam of light passed through a column of suspended sediment to particles settling velocities and thus to particle size Laser Diffractometer
  • 9. 1.Histogram-a bar graph 2.Frequency curves Show the variation of wt.% as a continuous function of grain size. 3.Cumulative curves-an Sshaped curve on the arithmetic ordinate scale GRAPHICAL PRESENTATION OF GRAIN SIZE DATA
  • 10. 1.Mode-most frequency occuring particle diameter 2.Median-midpoint of grain Size distribution 3.Mean-arithmatic mean can be Arrived at by picking selected Percentile value and averaging them STATISTICAL PARAMETERS OF GRAIN SIZE
  • 11. 4.Standard Deviation-measures the ‘sorting’ (uniformity of particle size distribution) 5. Skewness- measures of The asymmetry of the distribution STATISTICAL PARAMETERS OF GRAIN SIZE
  • 12. 6.Kurtosis-degree of “peakedness” - If the central portion is better sorted=excessively Peaked or “leptokurtic” - If the tails is better sorted =flat peaked or “platy-kurtic” STATISTICAL PARAMETERS OF GRAIN SIZE
  • 13.
  • 14.