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| 1 | Anti-Kondo resonance in transport through a quantum wire with a side-coupled quantum dot显示文摘 | Kicheon K Young C S Kim J J | 2001 | Phys Rev B2001,63,11: | 1 |
| 2 | A Novel Approach for Trademark Image Retrieval by Combining Global Fea- tures and Local Features显示文摘 | Wang Zhen hal Hong Kicheon | 2012 | Journal of Computational Information Systems2012,8,4: | 1 |
| 3 | Equation-of-motion Treatment of the Impurity Anderson Model with a Finite On-site Coulomb repulsion显示文摘 | | 1995 | Rhysical Review B1995,52,10: | 1 |
| 4 | Highly bendable composite photoelectrode prepared from TiO 2 /polymer blend for low temperature fabricated dye-sensitized solar cells显示文摘 | Yuelong Li Kicheon Yoo Doh-Kwon Lee Jong Hak Kim Nam-Gyu Park Kyungkon Kim Min Jae Ko | 2010 | Current Applied Physics2010,,4: | 1 |
| 5 | Magnetic polarization currents in double quantum dot devices显示文摘 | Cho S K Mckenie R H Kicheon | 2003 | J Phys:Condens Matter2003,15,: | 1 |
| 6 | Equation-of-motion Treatment of the Impurity Anderson Model with a Finite on-site Coulomb Repulsion显示文摘 | KANG KICHEON MIN B I | 1995 | Phys Rev B1995,52,10: | 1 |
| 7 | High-resolution circulation forecasting of the Maenggol Channel, south coast of Korea显示文摘The Maenggol Channel and Uldolmok Strait, located on the south-west coast of Korea, have notably strong and complex currents due to tidal effects and to local geological factors. In these areas, electric power has been generated using strong tidal currents, the speed of which is more than 3 m/s during spring tides. The region also provides a shortcut for navigation. These tidal conditions are therefore sometimes useful, but may also cause terrible accidents or severe economic damage, in the absence of accurate information regarding ocean conditions. In April 2014, the passenger ferry MV Sewol capsized in the Maenggol Channel, with 295 passengers killed and 9 still missing. While this was unquestionably a man-made disaster, strong currents were one of the contributing causes. It was also difficult to conduct scuba diving rescue operations given strong current speeds,and accurate prediction of the time when the tide would turn was thus critically needed. In this research, we used the high-resolution coastal circulation forecasting system of KOOS(Korea Operational Oceanographic System) for analysis and simulation of strong tidal currents in such areas with many small islands, using measurements and modeling from this research area. For accurate prediction of tidal currents, small grid size-modeling was needed,and in this study, we identified a suitable grid size that offers efficiency as well as accuracy. | CHOI Jinyong JUN Kicheon CHOI Youngkwang CHO Kyoungho KWON Jae-Il PARK Jinsoon PARK Kwangsoon | 2015 | Acta Oceanologica Sinica2015,34,12: | 0 |
| 8 | Mapping bathymetry based on waterlines observed from low altitude Helikite remote sensing platform显示文摘Mapping shoreline changes along coastal regions is critically important in monitoring continuously rising sea surface heights due to climate change and frequent severe storms. Thus, it is especially important if the region has very high tidal ranges over very gentle tidal flats, which is a very vulnerable region. Although the various remote sensing platforms can be used to map shoreline changes, the spatial and temporal resolutions are not enough to obtain it for a short time. Accordingly, in this study we introduce the newly developed low altitude Helikite remote sensing platform to achieve much better resolutions of shorelines and a bathymetry. The Helikite stands for Helium balloon and Kite, which is a kind of aerial platform that uses the advantages of both a Helium balloon and a kite. Field experiments were conducted in the Jaebu Island, off the coast of the west Korean Peninsula in January29, 2011. In order to extract shorelines from the consecutive images taken by the low altitude Helikite remote sensing platform, active contours without edges(ACWE) is used. Edges or boundaries exist primarily on places between one type of objective and the other. Since the hydrodynamic pressure has an effect everywhere, the locations of the waterlines can be the isobath lines. We could map several waterlines, which would enable us to complete a local bathymetry map ranges from 35 to 60 cm depth. The error resulting from applying ACWE algorithm to the imagery to determine the waterline is approximately less than 1 m. Therefore, it is very unique way to obtain such high resolutions of bathymetry with high accuracy for the regions of extremely high tidal ranges for a short time. | JO Young-Heon SHA Jin KWON Jae-Il JUN Kicheon PARK Jinku | 2015 | Acta Oceanologica Sinica2015,34,9: | 0 |