Online dynamic measurement of saturation-capillary pressure relation in sandy medium under water level fluctuation

Yan Li , Jin-feng Zhou , Jun Xu , M. Kamon

Journal of Central South University ›› 2010, Vol. 17 ›› Issue (1) : 85 -92.

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Journal of Central South University ›› 2010, Vol. 17 ›› Issue (1) : 85 -92. DOI: 10.1007/s11771-010-0015-5
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Online dynamic measurement of saturation-capillary pressure relation in sandy medium under water level fluctuation

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Abstract

An online dynamic method based on electrical conductivity probe, tensiometer and datataker was presented to measure saturation-capillary pressure (S-p) relation in water-light nonaqueous phase liquid (LNAPL) two-phase sandy medium under water level fluctuation. Three-electrode electrical conductivity probe (ECP) was used to measure water saturation. Hydrophobic tensiometer was obtained by spraying waterproof material to the ceramic cup of commercially available hydrophilic tensiometer. A couple of hydrophilic tensiometer and hydrophobic tensiometer were used to measure pore water pressure and pore LNAPL pressure of the sandy medium, respectively. All the signals from ECP and tensiometer were collected by a data taker connected with a computer. The results show that this method can finish the measurement of S-p relation of a complete drainage or imbibition process in less than 60 min. It is much more timesaving compared with 10–40 d of traditional methods. Two cycles of water level fluctuation were produced, and four saturation-capillary pressure relations including two stable residual LNAPL saturations of the sandy medium were obtained during in 350 h. The results show that this method has a good durable performance and feasibility in the porous medium with complicated multiphase flow. Although further studies are needed on the signal stability and accuracy drift of the ECP, this online dynamic method can be used successfully in the rapid characterization of a LNAPL migration in porous media.

Keywords

water level fluctuation / saturation-capillary pressure (S-p) relation / online dynamic measurement

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Yan Li, Jin-feng Zhou, Jun Xu, M. Kamon. Online dynamic measurement of saturation-capillary pressure relation in sandy medium under water level fluctuation. Journal of Central South University, 2010, 17(1): 85-92 DOI:10.1007/s11771-010-0015-5

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References

[1]

KechavarziC., SogaK., IllangasekareT. H.. Two-dimensional laboratory simulation of LNAPL infiltration and redistribution in the vadose zone [J]. Journal of Contaminant Hydrology, 2005, 76: 211-233

[2]

OostromM., HofsteeC., WietsmaT. W.. Behavior of a viscous LNAPL under variable water table conditions [J]. Soil and Sediment Contamination, 2006, 15: 543-564

[3]

DobsonR., SchrothM. H., ZeyerJ.. Effect of water-table fluctuation on dissolution and biodegradation of a multi-component, light nonaqueous-phase liquid [J]. Journal of Contaminant Hydrology, 2007, 94: 235-248

[4]

FretwellB. A., BurgessW. G., BarkerJ. A.. Redistribution of contaminants by a fluctuating water table in a micro-porous, double-porosity aquifer: Field observations and model simulations [J]. Journal of Contaminant Hydrology, 2005, 78: 27-52

[5]

GellerJ. T.. Acoustic detection of immiscible liquids in sand [J]. Geophyscial Research Letters, 2000, 27(3): 417-420

[6]

LenhardR. J., JohnsonT. G., ParkerJ. C.. Experimental observations of nonaqueous-phase liquid subsurface movement [J]. Journal of Contaminant Hydrology, 1993, 12: 79-101

[7]

KechavarziC., SogaK., WiartP.. Multispectral image analysis method to determine dynamic fluid saturation distribution in two-dimensional three-fluid phase flow laboratory experiments [J]. Journal of Contaminant Hydrology, 2000, 46: 265-293

[8]

BobM. M., BrooksM. C., MravikS. C., WoodA. L.. A modified light transmission visualization method for DNAPL saturation measurements in 2-D models [J]. Advances in Water Resources, 2008, 31: 727-742

[9]

PeterK., ReimarB., CarlaR., PetrU., JanV., HarryV., ErwinK.. Fluorescence macrophotography as a tool to visualise and quantify spatial distribution of deposited colloid tracers in porous media [J]. Colloids and Surfaces A: Physicochem Eng Aspects, 2007, 306: 118-125

[10]

XieX.-xi.Study on the residual saturation of a non-wetting phase fluid in a sandy medium [D], 2009, Guangzhou, Sun Yat-sen University

[11]

LiuH.-l., ZhouQ.-y., WuH.-qiao.. Determination of saturation distribution of light non-aqueous phase liquid based on electric resistivity tomography [J]. Journal of Hydraulic Engineering, 2008, 39(2): 189-195

[12]

LiuH.-l., ZhouQ.-y., WuH.-qiao.. Laboratorial monitoring of the LNAPL contamination process using electrical resistivity tomography [J]. Chinese Journal of Geophysics, 2008, 51(4): 1246-1254

[13]

SeppalaK., NarvanenT., AntikainenO., RaikkonenH., HeinamakiJ., YliruusiJ.. A new method for online measurement of moisture content during fluid-bed granulation [J]. European Journal of Pharmaceutical Sciences, 2008, 34(1): 32-41

[14]

XuJ.-hui.Study on the measurement method of tantalum capacitance sensor for reservoir physical model saturation [D], 2007, Beijing, China University of Petroleum

[15]

KamonM., EndoK., KatsumiT.. Measuring the k-S-p relations on DNAPLs migration [J]. Engineering Geology, 2003, 70(3/4): 351-363

[16]

KamonM., LiY., EndoK., InuiT., KatsumiT.. Experimental study on the measurement of S-p relations of LNAPL in a porous medium [J]. Soils and Foundations, 2007, 47(1): 33-45

[17]

SharmaR. S., MohamedM. H. A.. An experimental investigation of LNAPL migration in an unsaturated/saturated sand [J]. Engineering Geology, 2003, 70(3/4): 305-313

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