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Youngsang Kim
Youngsang Kim
Verificeret mail på jnu.ac.kr
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An approach to estimate unsaturated shear strength using artificial neural network and hyperbolic formulation
SJ Lee, SR Lee, YS Kim
Computers and Geotechnics 30 (6), 489-503, 2003
1742003
Strength and stiffness of cement-treated marine dredged clay at various curing stages
G Kang, T Tsuchida, Y Kim
Construction and building materials 132, 71-84, 2017
1072017
FBG sensors encapsulated into 7-wire steel strand for tension monitoring of a prestressing tendon
JM Kim, HW Kim, YH Park, IH Yang, YS Kim
Advances in Structural Engineering 15 (6), 907-917, 2012
882012
Utilization of excavated soil in coal ash-based controlled low strength material (CLSM)
Y Kim, TM Do, H Kim, G Kang
Construction and Building Materials 124, 598-605, 2016
862016
Engineering properties of controlled low strength material (CLSM) incorporating red mud
TM Do, Y Kim
International Journal of Geo-Engineering 7, 1-17, 2016
762016
Strength development and microstructural characteristics of soft dredged clay stabilized with basic oxygen furnace steel slag
G Kang, AA Cikmit, T Tsuchida, H Honda, Y Kim
Construction and building materials 203, 501-513, 2019
682019
Development of a new cementless binder for controlled low strength material (CLSM) using entirely by-products
TM Do, GO Kang, Y Kim
Construction and Building Materials 206, 576-589, 2019
652019
Monitoring of tension force and load transfer of groundanchor by using optical FBG sensors embedded tendon
YS Kim, HW Kim
Smart Structures and Systems, An International Journal 7 (4), 303-317, 2011
522011
Utilization of by-product in controlled low-strength material for geothermal systems: engineering performances, environmental impact, and cost analysis
Y Kim, TM Do, MJ Kim, BJ Kim, HK Kim
Journal of Cleaner Production 172, 909-920, 2018
512018
Stabilization of a residual granitic soil using various new green binders
Y Kim, TQ Tran, G Kang, TM Do
Construction and Building Materials 223, 724-735, 2019
442019
Development of thermally enhanced controlled low-strength material incorporating different types of steel-making slag for ground-source heat pump system
Y Kim, BH Dinh, TM Do, G Kang
Renewable Energy 150, 116-127, 2020
392020
A reliable model to predict thermal conductivity of unsaturated weathered granite soils
GH Go, SR Lee, YS Kim
International Communications in Heat and Mass Transfer 74, 82-90, 2016
372016
Influence of humic acid on the strength behavior of cement-treated clay during various curing stages
G Kang, T Tsuchida, Y Kim, W Baek
Journal of Materials in Civil Engineering 29 (8), 04017057, 2017
362017
Development of a new cementless binder for marine dredged soil stabilization: Strength behavior, hydraulic resistance capacity, microstructural analysis, and environmental impact
TM Do, G Kang, N Vu, Y Kim
Construction and Building Materials 186, 263-275, 2018
322018
Performance of a horizontal heat exchanger for ground heat pump system: Effects of groundwater level drop with soil–water thermal characteristics
BH Dinh, GH Go, YS Kim
Applied Thermal Engineering 195, 117203, 2021
312021
Improvement of engineering properties of pond ash based CLSM with cementless binder and artificial aggregates made of bauxite residue
T Do, Y Kim, B Ryu
International Journal of Geo-Engineering 6, 1-10, 2015
282015
Experimental and numerical studies on the performance of horizontal U-type and spiral-coil-type ground heat exchangers considering economic aspects
BH Dinh, YS Kim, S Yoon
Renewable Energy 186, 505-516, 2022
272022
Rheology of fly ash mixed tailings slurries and applicability of prediction models
JK Lee, J Ko, Y Sang Kim
Minerals 7 (9), 165, 2017
272017
Influence of curing conditions on engineering properties of controlled low strength material made with cementless binder
TM Do, Y Kim, MQ Dang
KSCE Journal of Civil Engineering 21 (5), 1774-1782, 2017
262017
Utilization of marine dredged soil in controlled low-strength material used as a thermal grout in geothermal systems
TM Do, AN Do, GO Kang, YS Kim
Construction and Building Materials 215, 613-622, 2019
252019
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