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Dive into the research topics where Jeehee Lim is active.

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Featured researches published by Jeehee Lim.


Clays and Clay Minerals | 2012

Hydraulic characteristics of bentonite cake fabricated on cutoff walls

The-Bao Nguyen; Chulho Lee; Jeehee Lim; Hangseok Choi

Bentonite cake is usually formed on the excavated trench surface that is supported by the bentonite slurry during construction of slurry cutoff walls. The lower hydraulic conductivity of bentonite cakes formed during construction of slurry cutoff walls in comparison to backfill materials provides an additional benefit. In the present study, the hydraulic conductivities of bentonite cakes made using three different bentonites were estimated using the modified fluid-loss test under various pressures. Both the hydraulic conductivities of bentonite cakes and cutoff-wall backfill are important in evaluating the in situ hydraulic performance of slurry cutoff-wall construction. Three bentonite slurry concentrations of 4, 6, and 8% were used to fabricate bentonite cakes that represent common field conditions. X-ray diffraction, cation exchange capacity, and swell-index data were collected to characterize the bentonites. Two modified methods for analyzing fluid-loss test results were used to estimate bentonite cake hydraulic conductivities. In addition, the viscosity as a function of time was measured to explain the sealing capacities of the bentonite slurries. The bentonite-cake hydraulic conductivities ranged from 2.15×10−11 m/s to 2.88×10−10 m/s, which were 10 to 500 times lower than the cutoff wall backfill design. Experimental results for 4 and 6% bentonite slurries were relatively similar, but the 8% slurries were noticeably different. Calculated bentonite-cake thickness and stress distribution indicated that the local void ratio and hydraulic conductivity may vary across the cake thickness. The considerably lower bentonite-cake hydraulic conductivities compared to the cutoff wall backfill design show its significance in slurry cutoff-wall construction practices.


Science China-technological Sciences | 2011

Applicability of cement-based grout for ground heat exchanger considering heating-cooling cycles

Moonseo Park; Sunhong Min; Jeehee Lim; Jong Min Choi; Hangseok Choi


Ksce Journal of Civil Engineering | 2011

Numerical modeling of diffusion for volatile organic compounds through composite landfill liner systems

The-Bao Nguyen; Jeehee Lim; Hangseok Choi; Timothy D. Stark


Journal of the Korean Geotechnical Society | 2013

Consideration of Bentonite Cake Existing on Vertical Cutoff Wall in Slug Test Analysis

Jeehee Lim; The-Bao Nguyen; Dongseop Lee; Jaeyoon Ahn; Hangseok Choi


Journal of the Korean Geotechnical Society | 2012

Analytical Solution for Transient Groundwater Flow in Vertical Cutoff Walls : Application of Slug Test and Evaluation of Hydraulic Conductivity

Jeehee Lim; Dongseop Lee; Hangseok Choi


Journal of the Korean Geotechnical Society | 2012

2-D Axisymmetric Non-linear Finite Strain Consolidation Model Considering Self-weight Consolidation of Dredged Soil

Tae-Hoon Kwak; Dongseop Lee; Jeehee Lim; Timothy D. Stark; Eun-Seok Choi; Hangseok Choi


AFORE | 2012

INVERSE PARAMETER ESTIMATION FOR SITU THERMAL RESPONSE TEST IN STANDING COLUMN WELL

Chulho Lee; Jeehee Lim; Dongseop Lee; Myungsup Yoon; Hangseok Choi


Journal of the Korean Geotechnical Society | 2011

Characteristics of Bentonite Filter Cake on Vertical Cutoff Walls Evaluated by Modified Fluid Loss Test

The-Bao Nguyen; Moonseo Park; Jeehee Lim; Hangseok Choi; Shinin Han


Journal of the Korean Geotechnical Society | 2011

General Steady-State Shape Factors in Analyzing Slug Test Results to Evaluate In-situ Hydraulic Conductivity of Vertical Cutoff Wall

Jeehee Lim; Dongseop Lee; The-Bao Nguyen; Hangseok Choi


Journal of the Korean Geotechnical Society | 2011

Analysis Method for Non-Linear Finite Strain Consolidation for Soft Dredged Soil Deposit -Part I: Parameter Estimation for Analysis

Tae-Hoon Kwak; Chulho Lee; Jeehee Lim; Yong-Hoon An; Hangseok Choi

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Jong Min Choi

Hanbat National University

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