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2005 | 08 | 2 |

Tytuł artykułu

Various methods of the measurement of the permeability coefficient in soils - possibilities and application

Autorzy

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
The paper presents a review and classification of methods of the determination of the permeability coefficient and research instruments, well-known from literature. Special emphasis has been put on the discussion of experimental methods, as the most exact values of this parameter are obtained on their basis. Apart from this, attention has been paid to modern measuring instruments which serve to define the consolidation and permeability coefficients in coherent soils. The introduction of suggested changes in the current methodology of studies into practice makes values of the discussed parameters obtained in situ and from laboratory tests comparable.

Wydawca

-

Rocznik

Tom

08

Numer

2

Opis fizyczny

http://www.ejpau.media.pl/volume8/issue2/art-13.html

Twórcy

  • Warsaw Agricultural University, Nowoursynowska 166, 02-787 Warsaw, Poland

Bibliografia

  • Benson C.H., Gunter J., Boutwell G., Trautwein S., Berzanskis P., 1997: Comparison of four methods to assess hydraulic conductivity. Jour. of Geot. and Geoenv. Eng. Vol. 123, No 10: 929-937.
  • Burns S.E., Mayne P.W., 2002: Interpretation of seismic piezocone results for the estimation of hydraulic conductivity in clays. Geot. Testing Jour. Vol. 25 No 3: 334-341.
  • Chu J., Bo M.W., Chang M.F., Choa V., 2002: Consolidation and permeability properties of Singapore Marine Clay. Jour. of Geot. and Geoenvironmental. Eng. 724-732.
  • Daniel D.E., 1994: State-of the art.: Laboratory hydraulic conductivity tests for saturated soils. Hydraulic conductivity and waste contaminant transport in soils. ASTM STP 1142, Philadelphia, 30-78.
  • Jaromińska M., Dembicki E., 1999: Determination of water permeability coefficient of semi-permeable soils. Inżynieria Morska i Geot. No 5: 227-235 [in Polish].
  • Kaczyński R., 1969: Determination of water permeability coefficient of aquiclude, aquitard and aquifuge soils. Przegląd Geologiczny, No 10: 503-507 [in Polish].
  • Kaczyński R., Drągowski A., Krogulec E., Laskowski K., Barański M., Lemieszek P., Trzciński J., Granecki W., Porzeżyński S., Woźnicki M., 1997: Carry out of comparative analysis results of investigations permeability coefficient in cohesive soils on the basis different methods. Institute of Geological Work, Faculty Geology of Warsaw University, [in Polish].
  • Lafleur J., Giroux F., Huot M., 1987: Field permeability of the weathered chaplain clay crust. Can. Geot. Jour. Vol. 24: 581-589.
  • Leroueil S., Bouclin G., Tavenas F., Bergeron L., Rochelle P., 1990: Permeability anisotropy of natural clays as a function of strain. Can. Geot. Jour. 27: 568-579.
  • Marciniak M., Przybyłek J., Herzig J., Szczepańska J., 1999: Investigation of permeability coefficient of aquitard formations. Sorus Edyt., Poznań-Kraków [in Polish].
  • Mitchell J.K., Guzikowski F., Villet W.C.B., 1978: The measurement of soil properties in situ. Dep. of Civil Eng. University of California 1: 1-7.
  • Morin R.H., Olsen H.W., 1987: Theoretical analysis of the transient response from a constant flow rate hydraulic conductivity test. Water Resources Research Vol. 23, No 8: 1461-1470.
  • Olsen H.W., 1966: Darcy´s law in saturated kaolinite. Water Resources Research. Vol. 2, No. 6: 287-295.
  • Olsen H.W., Nichols R.W., Rice T.L., 1985: Low gradient permeability measurements in triaxial system. Geotechnique Vol. 35, No 2: 145-157.
  • Ossowski J., Żak S., 1996: About the necessarity of standards for conditions and methods of permeability measurements for cohesive and semi-permeable soils. Proc. of the Conf. Hydrogeological problems of Sout-Western Poland, Wrocław, 297-303 [in Polish].
  • Pane V., Croce P., Znidarcic D., Ko H.Y., Olsen H.W., Schiffman R.L., 1983: Effects of consolidation on permeability measurement for soft clay, Geotechnique: Vol. 33. No 1.
  • Ratnam S., Soga K., Mair R.J., Whittle W., 2002: Self-boring pressuremeter permeability measurements in Bothkennar clay. Geotechnique 52, No 1: 55-60.
  • Skutnik Z., Garbulewski K., 2000: In situ and laboratory tests of hydraulic conductivity for pliocene clays. XII Native Conf. Soil Mech. And Foumd., Szczecin-Międzyzdroje, 263-278 [in Polish].
  • Sobolewski M., 2002: Determination of flow water characteristic in cohesive soils on the basis in situ tests. PhD. Dep. Geoengineering SGGW, Warsaw 2002 [in Polish].
  • Sobolewski M., 2004: Meaning of grade overconsolidation ratio of clay in the piezocone tests (CPTU). IX Inter. Conf. Current Issues of Civil and Environmental Eng. University of Technology, Rzeszów No. 37 Vol. 1: 373-382 [in Polish].
  • Szymański A., Sobolewski M., 2003: Determination of permeability parameters in cohesive soils, Inżynieria Morska i Geot., 2003 nr. 3-4: 159-163 [in Polish].
  • Tavenas F., Leblond P., Jean P., Leroueil S., 1983: The permeability of naturals soft clays. Part 1: Methods of laboratory measurement. Can. Geot. Jour. 20: 629-644.
  • Tavenas F., Tremblay M., Larouche G., Leroueil S., 1986: In situ measurement of permeability in soft clays. Proc of the Spec. Conf. In situ' 86. Use of in situ Test in Geot. Eng. Blacksburg, Virginia: 1034-1048.
  • Totani G., Calabrese M., Monaco P., 1998: In situ determination of ch by flat dilatometer (DMT). Proc of the Inter. Conf. on Geot. Site Characterization, Atlanta Vol. 2: 883-889.
  • Tremblay M., Eriksson L., 1987: Use of piezometers for in situ measurement of permeability. Proc of the 9-th Europ. Conf. on Soil Mech. and Found. Eng. Dublin 1: 99-102.
  • Woźniak H., 2001: Application of Rowe´s hydraulic consolidation cell to studies on volumetric strain of fill soils due to inundation. Geology, Qrt. AGH, Krakow, Vol. 27, No. 2-4: 513-525 [in Polish]
  • Zhang M., Takahashi M., Morin R.H., Esaki T., 1998: Theoretical Evaluation of the Transient Response of Constant Head and Constant Flow Rate Permeability Tests. Geot. Testing Jour. Vol. 21, No 1: 52-57.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-article-7e2e708d-66e5-44d3-a632-ea368061b545
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