Proceedings of the Korea Water Resources Association Conference (한국수자원학회:학술대회논문집)
Korea Water Resources Association
- Semi Annual
Domain
- Agriculture, Fishery and Food > Aquaculture
- Agriculture, Fishery and Food > Fisheries Resource Management/Fishing Environment
2005.09b
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TANAKA HITOSHI;NGUYEN TU TRONG;WADA NAOHIRO 837
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CHEN JING;ZHOU ZHIFANG 840
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DIMAKOPOULOS AGGELOS S;DIMAS ATHANASSIOS A 842
PDFA method for the numerical simulation of two-dimensional free-surface flow resulting from the propagation of regular gravity waves over topography with arbitrary bottom shape is presented. The method is based on the numerical solution of the Euler equations subject to the fully nonlinear free-surface boundary conditions and the appropriate bottom, inflow and outflow conditions using a hybrid finite-differences and spectral-method scheme. The formulation includes a boundary-fitted transformation, and is suitable for extension to incorporate large-eddy simulation (LES) and large-wave simulation (LWS) terms for turbulence and breaking wave modeling, respectively. Results are presented for the simulation of the free-surface flow over two different bottom topographies, with constant slope values of 1:10 and 1:20, two different inflow wave lengths and two different inflow wave heights. An absorption outflow zone is utilized and the results indicate minimum wave reflection from the outflow boundary. Over the bottom slope, lengths of waves in the linear regime are modified according to linear theory dispersion, while wave heights remain more or less unchanged. For waves in the nonlinear regime, wave lengths are becoming shorter, while the free surface elevation deviates from its initial sinusoidal shape. -
PAIMPILLIL JOSEPH SEBASTIAN;JOSEPH THRESIAMMA;BALACHANDRAN BALACHANDRAN 848
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CHIANG WEN-SON;HSIAO SHIH-CHUN;HWUNG HWUNG-HWENG 850
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Yoon, Sung-Bum;Lim, Chae-Ho;Baek, Un-Il 852
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GOGOI INDRANI;MAITY DAMODAR 854
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SAEED-REZA SAEED-REZA;YAZDI SABBAGH;KERMANI ALI 856
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Chu, Ao;Zhang, Changkuan;Zhang, Junlun 859
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A AMINI;E.F.R BOLLAERT;J-L BOILLAT;A.J SCHLEISS 861
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ZHANG WEI;ZHONG CHUN-XIN;SHEN ZHENG-CHAO 863
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KANG SOK KUH;YUM KI-DAI;JUNG KYUNG-TAE;JEONG SIN TAEK;PARK JIN SOON;SO JAE-KWI;JANG CHAN JOO 866
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TAKEDA MAKOTO;PARAMESHOR POKHAREL;PARAMESHOR POKHAREL;MATSUO NAOKI 868
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YANG WEN-CHANG;HWANG ROBERT R.;HSIEH CHIH-MIN;PENG YIH-FERNG 870
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NISHIDA WATARU;NOGUCHI MASATO;MATSUDA YOSHITOMO 872
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BEHERA MANASA RANJAN;K MURALI 878
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CHANSON HUBERT;TREVETHAN MARK;AOKI SHIN-ICHI 880
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SINHA P.C;JENA G.K;RAO A.D 885
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HIRONOBU SATO;KENYA TAKAHASHI;NOBUKO KASHIWADATE;MUNEHIRO NOMURA;MASAKI SAWAMOTO 887
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MIYAMOTO HITOSHI 889
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SUH KYUNG-DUCK;SHIN SUNGWON;COX DANIEL T. 891
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RAMLI ROSNIZA;HASSAN NIK MOHD KAMEL NIK;KASSIM ZALEHA 893
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ALVAREZ JOSE ANTA;GONZALEZ ENRIQUE PENA;AGUDO JERONIMO PUERTAS;ALVAREZ VICTOR VAZQUEZ 895
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KOFTIS THEOHARRIS;PRINOS PANAYOTIS 900
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HSU H.J;HUANG L.H 902
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FARD MANI GOLPARVAR;YEGANEH-BAKHTIARY ABBAS;CHENG LIANG 904
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KOUTANDOS EVAN;PRINOS PANYOTIS 906
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TAO YOU;ZIDAN ZHAO;FANGPING ZHONG;ZUZHI WANG 908
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CHEN YONG;WAI ONYX WING HONG 910
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HUANG ZHENHUA;DING LEI 914
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Lee, Chang-Hoon 918
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YANO S;HASHIMOTO Y;KOMATSU T 922
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HUAI WENXIN;YANG ZHONGHUA 926
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BRICKER JEREMY D;OKABE ISO;NAKAYAMA AKIHIKO 930
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SERIO FRANCESCA DE;MOSSA MICHELE 936
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AZIZI A.H;AZIZI F;ETEMAD-SHAHIDI A 940
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Lee, W.Y;Lam, K.M 943
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NESTEROV OLEKSANDR;TKALICH PAVEL 945
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WEI WU;JIHONG XIA;ZHONGMIN YAN;NING ZHU;PENG LIU 947
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TAO JIANFENG;WANG ZHEN;ZHANG CHANGKUAN 949
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LAW ADRIAN WING-KEUNG;AI JIAO JIAN;YU S.C.M 951
PDFThe characteristics of Boussinesq starting forced plumes were investigated in this study. Two distinct periods in the transient plume penetration were identified, namely the Period of Flow Development (PFD) and Period of Developed Flow (PDF). PFD refers to the time period whereby the penetration rate is governed by the complex vortex dynamics initiated by the exit conditions that can include vortex coalescence, vortex leapfrogging, pinching off of the head vortex from the trailing stem and the eventual reconnection. The pinch-off and reconnection leads to an overshoot of the plume front which is a common observation reported in previous studies. The penetration rate in PDF is more predictable and depends on the continuous feeding of buoyancy and momentum into the head vortex by the trailing buoyant-jet stem. Similarity solutions are developed for PDF to describe the temporal variation of the penetration rate, by incorporating the behavior of an isolated buoyant vortex ring and recent laboratory results on the trailing buoyant jet. In particular, the variations of velocity ratios between the head vortex and trailing buoyant jet are analytically computed. To verify the similarity solutions, experiments were conducted on vertical starting forced plumes using planar laser induced fluorescence (PLIF). -
SCHNAUDER INGO;BOCKELMANN BETTINA 952
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Choi, K.W;Lee, Joseph-H.W 954
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XIAO YANG;LEE JOSEPH H.W;TANG HONGWU;YU DAEYOUNG 955
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TANAKA NORIO;SHIRONO YUSUKE;TAKAGI TOSHIMITSU 956
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S.M SAYAH;S MAI;J-L BOILLAT;A.J SCHLEISS 958
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CHIAIA GIANCARLO;DAMIANI LEONARDO;RANIERI GENNARO 963
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KOJIRI TOSHIHARU;HORI TOMOHARU;NAKATSUKA JUNPEI;CHONG TENG-SHENG 967
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RANJAN PRIYANTHA;GUPTA ASHIM DAS;KAZAMA SO;SAWAMOTO MASAKI 971
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HE YI-PING;WANG ZHAO-YIN;XIE XIAO-PING 973
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MARTIN FRANCISCO L;GARCIA EDUARDO;REVILLA JOSE A;MEDINA RAUL 976
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ZHAO RAN-HANG;CHAO SHENG-LE;XU SHI-GUO 978
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BACHMANN D.;WOGEL T;KONGETER J 980
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URA SATOMI;NOGUCHI MASATO;NISHIDA WATARU;SUEMITSU YUICHI 982
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LIU JIANWEI;XU SHIGUO;LIU YINGFEI 984
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SOKHEM PECH;SUNADA KENGO;OISHI SATORU;MIYAZAWA NAOKI;TANAKA DAISUKE 985
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YI CHOONG SUNG;CHOI SEUNG AN;KIM HUNG SOO;SHIM MYUNG PIL 989
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BALL JAMES E;PHILLIPS B. C 991
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ANWAR A.H.M.FAISAL;MUKHERJEE NANDAN 995
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Kang, Min-Goo;Kim, Jeong-Kon;Lee, Gwang-Man 997
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KOLOKYTHA E.;MYLOPOULOS Y 1002
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PARSA J;ETEMAD-SHAHIDI A;JABBARI E 1004
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G CIARVINO;L CIARAVINO;C GUALTIERI 1006
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KINOUCHI TSUYOSHI;YAGI HIROSHI;MIYAMOTO MAMORU 1008
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GANOULIS J;ZARDAVA K;KIOURTSIDIS C 1011
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MOZAFARI J;RAHIMI H;OMID M.H 1014
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Sik, Byung;Kim, Hung-Soo;Ha, Byung;Seoh, Byung-Ha;Kim, Nam-Won 1016
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ISERI YOSHIHIKO;KAWAMURA AKIRA;JINNO KENJI 1018
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TSUCHIYA MITSUKUNI;MOROTA KEIJI 1020
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SHIRAIWA J.;KAZAMA S.;SAWAMOTO M. 1023
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FRAGOSO MANUEL MONTENEGRO 1029
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GUOBIN XU;JIJIAN LIAN 1033
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KIM GEE-HYOUNG;CHOI GYE-WOON;KIM YOUNG-KYU 1035
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M MUSTE;R ETTEMA;J SCHNOOR;P KUMAR;M HONDZO;R.K PRICE;P.F QUINN;W-F TSAI 1037
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LIM KWANGSUOP;KIM MANSIK;LEE JINHEE;JANG SUKHWAN 1044
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PARK CHANGKUN;PARK JAEHYEON;CHOI YONGSUN;YANG JEONG-SEOK;JEONG KYOCHUL 1046
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YONG HUANG;ZHIFANG ZHOU 1050
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MONTAZAR ALI ASGHAR;KOUCHAKZADEH SALAH;OMID MOHAMMAD H 1052
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FRANCOIS BOCQUEE;OLIVIER FENOGLI 1055
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You, Jin-Jun;Gan, Hong;Wang, Lin 1056
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BECKER BERNHARD;SCHONLAU HENNING;BACHMANN DANIEL;KONGETER JURGEN 1059
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HUNTER NEIL M;BATES PAUL D;HORRITT MATTHEW S 1060
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PATEL H.M;ELDHO T.I;RASTOGI A.K 1062
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FORTIS RICARDO;ORTIZ JAYME PINTO;LAMPARELLI CLAUDIA CONDE;NIETO REGIS 1064
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AUGUSTO GERARDO L;KIKUYAMA KOJI;LIM LAURENCE A. GAN;HASEGAWA YUTAKA;KALAW MARTIN ERNETO L 1068
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POLATEL CEYDA;MUSTE MARIAN;PATEL VIRENDRA C;STOESSER THORSTEN;RODI WOLFGANG 1070
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RAO B.N.MALLESWARA;UMAMAHESH N.V 1073
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GAUTAM DILIP K;KHARBUJA RAM G 1076
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WATER QUALITY ANALYSIS ON THE INNERMOST PART OF THE ARIAKE SEA BY USING TERRA-ASTER SATELLITE IMAGESOHGUSHI KOICHIRO;ARAKI HIROYUKI 1077
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Kwon, Hyung-Joong;Shin, Sha-Chul;Kim, Seong-Joon 1079
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KIM UNG-YONG;YEON INSUNG;YOON SEOK-HWAN 1081
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J.A GARCIA ARAGON;K IZQUIERDO AYALA;H SALINAS TAPIA 1083
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FUKUSHIMA YUSUKE 1086
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SOTO-CORTES GABRIEL;GUAYCOCHEA-GUGLIELMI DARIO 1088
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Suk, Hee-Jun;Seo, Min-Woo;Kim, Hyoung-Soo 1090
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CHOI SEUNG CHEOL;SHIN BONG SOON;GWON YONGDAE;RIM JAY MYOUNG 1094
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TAKEDA MAKOTO;MATSUO NAOKI;HIRASHIMA SIGERU;HIRAYAMA YASUNORI;TANAKA MASAHIRO;TAKAHASHI TOSHIHIKO 1096
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YOON SEIEUI;LEE JONGTAE;JUNG JAEYOOK;LEE JOONHO 1098
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LEE JONG-TAE;PARK YOUNG-MIN;KIM TAE-HWA 1100
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HONG JUNBUM;KIM HYUNGSIK;SEOH HYUNGHA;KIM HUNGSOO 1102
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ALIBAGHERI ALIBAGHERI;BARADARANNIA MOHAMMAD;SARANG AMIN;HJORTH PEDER 1104
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AWAD HAYTHAM;KAWAMURA AKIRA;JINNO KENJI 1110
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GU LI;BURTON BRENT 1112
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LIAN JIJIAN;MU XIANGPENG;WAN WUYI 1114
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Jang, Suk-Hwan;Choi, Tae-Yong;Lim, Kwang-Suop 1116
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AUGUSTO GERARDO L;KIKUYAMA KOJI;LIM LAURENCE A. GAN;HASEGAWA YUTAKA;KALAW MARTIN ERNESTO L 1118
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YUN-LIANG GHIEN;CHAO WU;XIAO-MING U;MAO YE 1120
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HYUN KYUNG HAK;PARK JONG BAE;KIM SUNG YOUNG;JEONG KYUNG YOUNG;JANG SUN YOUNG;AHN SUNG SIK 1122
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MIYAZAWA NAOKI;SUNADA KENGO;SOKHEM PECH;OISHI SATORU;SISINGGIH DIAN 1124
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Yeo, Hong-Koo;Kang, Joon-Gu;Kim, Sung-Jung 1126
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HIKIDA MAKOTO;PARK KICHAN;HASHIMOTO HARUYUKI 1128
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YEO WOONKWANG;KIM YOUNGBIN;LEE JONGKOOK;JANG BOKJIN 1134
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KABIR M. MAHBOOB-UL;JAHAN SARWAT;NOOR AHMED ABDULLAH 1136
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LEE CHANJOO;LEE DUHAN;LIM KYUHO;WOO HYOSEOP 1138
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S VYSOTSKY I 1141
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ARITA MASAMITSU;HASHIMOTO AKIHIRO 1143
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GAO PENG-JIE;WANG LIANXING 1145
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KIM JIN-HONG;KIM KYUNG-SUB 1150
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COKGOR SEVKET;KUCUKALI SERHAT 1152
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MUNSURRAHMAN MD;NAKAGAWA HAJIME;HAQUE ANISUL;ISLAM TAREKUL;ISHIGAKI TAISUKE 1154
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DUEL HARM;HAASNOOT MARJOLIJN;BAPTIST MARTIN 1158
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RODRIGUEZ JOSE F;GARCIA MARCELO H 1159
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MARUYAMA JIRO;NAKAI MASANORI;MURATA TOMOYA;ARITA MASAMITSU 1162
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YEON IN-SUNG;AHN SANG-JIN;YEON GYU-BANG;KIM UNG-YONG 1164
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CHUNG SE WOONG;KIM YU KYUNG;KO ICK HWAN;NOH JOON WOO 1170
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ONSCIK MARIA BIRONE;NAGY LASZLO 1172
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PETTI MARCO;BOSA SILVIA 1174
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NATALE MICHELE DI;GRECO ROERTO;KARATZA DESPINA;MUSMARRA DINO 1176
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HAYASHI HISASHI;CLIFFORD MWANANGOMBI;BANDA DANFORD 1178
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ABDALLAH SAMY MOHAMED 1179
PDFTo immobilize the pollutants from wastewater in situ, two phosphatic clays collected from different areas in Egypt (eastern and western Sebaia, Aswan-Isna, Upper Egypt) used to remove contaminant ions from industrial wastewater. Obtained results confirmed the strong relationship between phosphatic clay and Pb elimination from wastewater. The sensitivity classification of phosphatic clay toward ions retained as described in three categories: highly sensitive to retain Pb , Al and Cr ; moderately sensitive for Mn; and weakly sensitive for Band Zn. Data suggested that large fraction of Pb removed by phosphatic clays stayed intact under a wide variation in extracting solution pH (3-11). In situ immobilization is considered a promising technique that has the potential to remove contaminant ions from wastewater. Two important factors need to be considered when applying this technique: The first, is the clay must be effective and selective under different composition of wastewater. The second, is the immobilized ions should be stable and non-leacheable under varying water conditions. Phosphatic clays with$Pb^{2+}$ were suitable to achieve these two factors. Possible mechanism for removal$Pb^{2+}$ by phosphatic clays is the formation of fluoropyromorphite through the dissolution of fluoro and hydroxyl apatite by its precipitation from solution, beside, Pb complexation at phosphatic clay surface at P-OH sites. -
KIM KYUNG-SUB;JE CHUNG-HWAN;KIM JIN-HONG 1181
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OH JONG-MIN;CHOI ISONG 1182
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ONODERA S;MIYAOKA K;TANIGUCHI M;SAITO M;ISHITOBI T;CHEN J;LIU G;FUKUSHIMA Y 1185
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SAITO MITSUYO;ONODERA SHIN-ICHI 1187
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WANG P.F;CHOI WOO-HEE;LEATHER JIM;KIRTAY VIKKI 1189
PDFDue to their slow degradation properties, hydrophobic organic contaminants in estuarine sediment have been a concern for risks to human health and aquatic organisms. Studies of fate and transport of these contaminants in estuaries are further complicated by the fact that hydrodynamics and sediment transport processes in these regions are complex, involving processes with various temporal and spatial scales. In order to simulate and quantify long-term attenuation of Polycyclic Aromatic Hydrocarbons (PAH) in the Elizabeth River, VA, we develop a modeling approach, which employs the U.S. Environmental Protection Agency's water quality model, WASP, and encompasses key physical and chemical processes that govern long-term fate and transport of PAHs in the river. In this box-model configuration, freshwater inflows mix with ocean saline water and tidally averaged dispersion coefficients are obtained by calibration using measured salinity data. Sediment core field data is used to estimate the net deposition/erosion rate, treating only either the gross resuspension or deposition rate as the calibration parameter. Once calibrated, the model simulates fate and transport PAHs following the loading input to the river in 1967, nearly 4 decades ago. Sediment PAH concentrations are simulated over 1967-2022 and model results for Year 2002 are compared with field data measured at various locations of the river during that year. Sediment concentrations for Year 2012 and 2022 are also projected for various remedial actions. Since all the model parameters are based on empirical field data, model predictions should reflect responses based on the assumptions that have been governing the fate and sediment transport for the past decades. -
Lee, Sang-Il;Kim, Dae-Hwan 1193
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YAMAKAWA SHINJI;OCHIAI KATSUNORI;KANEDA MASAKI;YOSHIBA YASUAKI;TSUKAMOTO DAISUKE 1197
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ZOBEYER A.T.M.HASAN;BARI M FAZLUL;JAHAN NASREEN 1199
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KAWANISI KIYOSI;SHIOZAKI RYOUHEI 1203
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YI YONG-KON;KIM YOUNG DO;KOH DEUK-KOO;KIM WOO-GU;JUNG KWAN SOO 1209
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KIM JONG-WOO;YOON SEI-EUI;LEE JONG-TAE 1211
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ZHILI WANG;YANFEN GENG;SHENG JIN 1217
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XINLIN HE;SHENGLIAN GUO;DONGXU LIU;GUOQIN XIE;DONG SHENG;HUAMEI LIU 1220
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Chae, Hyo-Sok;Fukami, Kaxuhiko;Yoshitani, Junichi 1222
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KIM TAESOON;HEO JUN-HAENG 1224
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KIM DAE-HONG;KIM WOO-GU;CHO YONG-SIK 1226
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PIAMSA-NGA NAPAPORN;MAEDA EMI;NAKATSUJI KEJI 1228
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YOON KWANG SEOK;LEE JONG-KYU 1231
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HONGXIA TANG;ZHIFANG ZHOU 1233
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Kim, Burmshik;Steele, Kenneth-F 1235
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KIM MAN-IL;NISHIGAKI MAKOTO;JEONG GYO-CHEOL;PARK CHANG-KUN 1239
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DEVELOPMENT OF RAINFALL RUNOFF FORECASTING MODEL FOR WATER RESOURCES MANAGEMENT IN A CATCHMENT SCALEJeong, Woo-Chang;Hwang, Man-Ha;Ko, Ick-Hwan 1241
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JEONG CHANG SAM;HEO JUN-HAENG;BAE DEG-HYO;KO ICK HWANG 1243
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NAM WOO-SUNG;HEO JUN-HAENG;KIM KYUNG-DUK;LEE YOUNG-SEIK 1245
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XU YUEPING;HOLZHAUER HARRIETTI;BOOIJ MARTIJN J 1247
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MIGNOT EMMANUEL;PAQUIER ANDRE;RIVIERS NICOLAS 1249
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CHOI SEUNG AN;YI CHOONG SUNG;SHIM MYUNG PIL;KIM HUNG SOO 1251
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CHANSON HUBERT;COUSSOT PHILIPPE 1253
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VILLAGOMEZ IGNACIO CALDINO;ALONSO ISAAC BONOLA 1255
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Kim, Sung-Won 1257
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SUN SHUANGKE;LIU HAITAO;LIU ZHIPING 1259
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SATTAROV M.A;ESHMIRZOYEV I.E;RAKHIMOV F 1261
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SHENGYI ZHENG;HUICHAO DAI;WENLI WEI 1264
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YUAN ZIMIN;HU CHANGWEI;WANG YANYAN;ZHANG HONGPIN;WAN HONGTAO 1267
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CAO MINGXIONG;JIANG JIHONG;ZHOU BINRUI;CAI GUOZHENG 1269
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HUANG XI-BIN;LI JIA-CAI 1274
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SUN JIAN;ZHANG ZHICHANG;ZHANG ZONGXIAO;TIAN CHUN;YAN JINYUAN 1276
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LIAN JIJIAN;LIU FANG;ZHANG HUA 1277
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LIAN JILIANG;ZHONG DENGHUA 1279
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SHIN HONGJOON;NAM WOOSUNG;HEO JUN-HAENG 1287
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KIM UNG-YONG;KIM JONg-SUB;AHN SANG-JIN;HAHM CHANG-HAHK 1289
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Yoon, Kwang-Seok;Yeo, Kyu-Dong 1291
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KIM YOUNG-TAEK;LEE JONG-IN;CHO YONG-SIK 1301
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OGIHARA KUNIHIRO;MATUZAWA ATUKO 1303
PDFThe sea water and the soil of surface zone in lagoon have many physical relations between each other by both physical phenomena such as tidal motion and wave action, and activity of a creature which lives in soil zone. The soil zone has an activity of filtering the sea water at lowering tide and also the organic materials in sea water are supplied into the soil. And small creatures such as small crab eat organic materials. Usually the surface zone of lagoon becomes under the sea water in two times of a day and also is coming in two times under the sunshine and it becomes dries up conditions. Authors made the field observation at Sanbannse lagoon in Tokyo bay in several times between 2002 to 2004. The observation has been done in a half period of tide in October and November 2002 and also full tide observation is made in July 2, 2003 in summer and November 26, 2003 in autumn. In 2004, three times observations of full tide has been made in three times as June 22, July 20 and December 14. This report is the summary of results on these observations focusing on the soil surface zone and sea water at under ground and wave breaking zone. -
OKAMINE NATSUMI;SUGIMACHI HITOMI;NAKAMUTA KEIKO;JINNO KENJI 1305
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TAI JIA'AI;ZHANG CHANGKUAN;JIN YIN 1307
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CHIAIA GIANCARLO;DAMIANI LEONARDO 1311
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SETTIV KANNAYYA;V SUNDAR;K MURALI 1313
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KHAYYER ABBAS;YEGANEH-BAKHTIARY ABBAS;GHAHERI ABBAS;GOTOH HITOSHI;SAKAI TETSUO 1315
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Cho, Dae-Hee;Cho, Yong-Sik 1317
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JUNG JAE-SANG;CHO YONG-SIK;KIM JONG-SU;PARK SANG-IL 1319
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FUKUOKA IPPEI;KITAHARA KOUICHI;WADA AKIRA;KAWANAGA MITSUHITO;KAGAMI YUJI;TAKANO TAIRYU 1321
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Kwon, Seok-Jae;Seo, Il-Won 1323
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Kim, Gwang-Seob;Yim, Tae-Kyung 1325
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LI CHONG;MA WEI;YE BAISHENG;LIAO WENGEN 1327
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MORIO NOBUKI;NOGUCHI MASATO;KIKUTAKE KAYOKO 1329
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SIMONYAN ARMINE;MIKAYELYAN HASMIK 1331
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PLAMEN VIDENOV;ANNA TZENKOVA-BRATOEVA;JULIA IVANCHEVA 1332
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Kim, Nam-Won;Chung, Il-Moon;Won, Yoo-Seong 1333
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WANG XING-JU;XU SHI-GUO;WANG HAO 1335
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BAKAR SAHOL HAMID ABU;SINNAKUDAN SHANKER KUMAR 1346
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PARK JOONG BAE;DO EUN DAE;CHOI JAe CHUN;CHO JAE HEE 1351
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KANG SOK KUH;YUM KI-DAI;JUNG KYUNG TAE;JEONG SIN TAEK;PARK JIN SOON;SO JAE-KWI;JANG CHAn JOO 1353
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LEE KWANG-SOO;YUM KI-DAI;KANG SOK KUH;PARK JIN SOON;PARK WOO-SUN;HAN SANG-HUN;JUNG GONG-IL;PARK JUNG WOO 1355
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SHAO XUEJUN;WANG HONG;WANG ZHAOYIN 1359
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KAMIMURA JUICHI;SAKAI SUSUMU;SANEMATSU TOSHIRO 1361
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KAYABA YUICHI;KOBAYASHI MINORU;IGARASHI SYOJI;SUZUKI AKIRA 1363
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WU BAOSHENG;XIA JUNQIAN 1365
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TSUJIMOTO TETSURO 1369
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TUAN CHING-HAO;YEH CHAO-HSIEN;HSU SHAOHUA MARKO 1375
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LEE CHANG-SEOK;CHO YONG-CHAN;SHIN HYUN-CHEOL;LEE BYUNG-CHEON;BAE YANG-SEOP;BYUN HWA-GEUN 1378
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KIM HYEON-JUN;YOON SOO-KIL;NOH SEONG-JIN;JANG CHEOL-HEE 1379
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Kim, He-Ju;Kim, Chang-Wan 1382
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TODA YUJI;TSUJIMOTO TETSURO;FUJIMORI NORIOMI 1383
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SUGIO SATORU;WATANABE KUNITOSHI 1385
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CHIBANA TAKEYOSHI;IWAMOTO HIDEHITO;TSUJIMOTO TETSURO 1387
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KAYABA YUICHI;SAGAWA SHIRO;KAWAGUCHI YOICHI;SAIKI MASAKUNI;MINAGAWA TOMOKO;TASHIRO TAKASHI 1389
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YEH CHAO-HSIEN;LIEN HUI-PANG 1391
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JIHONG XIA;WEI WU;MIN YAN ZHONG;CHUANFENG JIANG 1394
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OH KYOUNG-DOO;HONG IL-PYO;JUN BYONG-HO;AHN WON-SIK;LEE MEE-YOUNG 1400
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KIM HUNG SOO;HONG IL PYO;KIM SANG UG;SONG JAE HYUN 1402
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KURIBAYASHI DAISUKE;TANAKA SHIGNOBU;IKEDA TETSUYA 1403
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JINPING LIU 1407
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SING LOW KOON;DOM NORLIDA MOHD 1411
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KO ICK-HWAN;KANG BOOSIK;JUNG WOOCHANG;RIEU SEUNG-YUP;NOH JOONWOO;KIM NAMIL 1423
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ANDREAS VAN LINN 1429
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SPARKS TIM;BOCKELMANN BETTINA;NAMIN MASOUD;FALCONER ROGER 1434
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KABIRI-SAMANI ABDORREZA 1447
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POLATEL CEYDA 1453
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CHUNG EUN-SUNG 1460
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