SCI檢索 1.第一作者論文 lYu Yao, Erman Peng, Weijie Liu, Xiuqi Han, Yicheng Liu, Yue Ning. Modeling wave processes in a reef-lagoon-channel system based on a Boussinesq model. Ocean Engineering 2023, 268, 113404. lYu Yao, Zhuangzhi Li, Conghao Xu*, Changbo Jiang. A study of wave-driven flow characteristics across a reef under the effect of tidal current. Applied Ocean Research, 2023, 130:103430. lYu Yao, Xianjin Chen Conghao Xu,*, Meijun Jia, Changbo Jiang. Numerical modelling of wave transformation and runup over rough fringing reefs using VARANS equations. Applied Ocean Research 2022, 118:102952. lYu Yao*, Xiaoxiao Yang,· Sai Hin Lai, Ren Jie Chin. Predicting tsunami?like solitary wave run?up over fringing reefs using the multi?layer perceptron neural network. Natural Hazards, 2021, 107: 601-616. lYu Yao*, Xiaoxiao Yang, Weijie Liu, Tiancheng He, The effect of reef roughness on monochromatic wave breaking and transmission over fringing reefs, Marine Georesources & Geotechnology, 2021. 39(3), 354-364. lYu Yao, Xianjin Chen, Conghao Xu*, Meijun Jia, Changbo Jiang. Modeling solitary wave transformation and run-up over fringing reefs with large bottom roughness. Ocean Engineering, 2020, 218: 108208. lYu Yao, Songgui Chen*, Jinhai Zheng*, Qiming Zhang, Shubin Chen. Laboratory study on wave transformation and run-up in a 2DH reef-lagoon-channel system. Ocean Engineering, 2020, 215:107907. lYu Yao*, Meijun Jia, Changbo Jiang, Qiming Zhang, Zhengjiang Tang. Laboratory study of wave processes over fringing reefs with a reef-flat excavation pit. Coastal Engineering, 2020, 158:103700. lYu Yao, Yicheng Liu, Long Chen*, Zhengzhi Deng, Changbo Jiang. Study on the wave-driven current around the surf zone over fringing reefs. Ocean Engineering, 2020, 198:106968. lYu Yao*, Qiming Zhang, Janet M. Becker, Mark A. Merrifield, Boussinesq modeling of wave processes in field fringing reef environments, Applied Ocean Research, 2020, 95:102025. lYu Yao, Meijun Jia, Dawei Mao, Zhengzhi Deng*, Xiaojian Liu. A numerical investigation of the reduction of solitary wave runup by a row of vertical slotted piles, China Ocean Engineering, 2020, 34(1):10-20. lYu Yao*, Wenrun He, Changbo Jiang, Ruichao Du, Wave-induced set-up over barrier reefs under the effect of tidal current, Journal of Hydraulic Research, 2020, 58(3):447-459. Doi: 10.1080/00221686.2019.1623928. lYu Yao, Tiancheng He, Zhengzhi Deng*, Long Chen, Huiqun Guo, Large eddy simulation modeling of tsunami-like solitary wave processes over fringing reefs, Natural Hazards Earth System Sciences, 2019, 19: 1281-1295. lYu Yao, Wenrun He, Zhengzhi Deng*, Qiming Zhang, Laboratory investigation of the breaking wave characteristics over a barrier reef under the effect of current, Coastal Engineering Journal, 2019, 61: 210-223. lYu Yao, Qiming Zhang, Songgui Chen*, Zhengjiang Tang, Effects of reef morphology variations on wave processes over fringing reefs, Applied Ocean Research, 2019, 82: 52-62. lYu Yao, Zhenhua Huang*, Wenrun He, Stephen G. Monismith, Wave-induced setup and wave-driven current over Quasi-2DH reef-lagoon-channel systems, Coastal Engineering, 2018, 138: 113-125. lYu Yao*, Zhengjiang Tang, Changbo Jiang, Wenrun He, Zengsheng Liu, Boussinesq modeling of solitary wave run-up reduction by emergent vegetation on a sloping beach, Journal of Hydro-environment Research, 2018, 19: 78-87. lYu Yao, Fang He*, Zhengjiang Tang, Zengsheng Liu, A study of tsunami-like solitary wave transformation and run-up over fringing reefs, Ocean Engineering, 2018, 149: 142-155. lYu Yao, Zhengjiang Tang, Fang He*, Wancheng Yuan, Numerical investigation of solitary wave interaction with a double-row of vertical slotted piles,Journal of Engineering Mechanics, 2018, 144(1): 04017147. lYu Yao*, Wenrun He, Ruichao Du, Changbo Jiang, Study on wave-induced setup over fringing reefs in the presence of a reef crest, Applied Ocean Research, 2017, 66, 164-177. lYu Yao*, Janet M. Becker, Murray R. Ford, Mark A. Merrifield, Modeling Wave processes over fringing reefs with an excavation pit, Coastal Engineering, 2016, 109: 9-19. lYu Yao*, Ruichao Du, Changbo Jiang, Zhengjiang Tang, Wancheng Yuan, Experimental study of reduction of solitary wave run-up by emergent rigid vegetation on a beach, Journal of Earthquake and Tsunami, 2015, 9(5): 1540003. lYu Yao, Zhenhua Huang*, Stephen G. Monismith, Edmond Y.M. Lo, Characteristics of monochromatic waves breaking over fringing reefs, Journal of Coastal Research, 2013, 29: 94-104. lYu Yao, Zhenhua Huang*, Stephen G. Monismith, Edmond Y.M. Lo, 1DH Boussinesq modeling of wave transformation over fringing reefs, Ocean Engineering, 2012, 47: 30-42.
2. 通訊作者論文 lJiangxia Li, Shunqi Pan, Yongping Chen, Yu Yao*, Conghao Xu. Assessment of combined wind and wave energy in the tropical cyclone affected region: An application in China seas, Energy, 2022,125020. lBin Deng, Wen Zhang, Yu Yao*, Changbo Jiang. A laboratory study of the effect of varying beach slopes on bore-driven swash hydrodynamics, Frontiers in Marine Science, 2022, 9:956379. doi: 10.3389/fmars. 2022.956379. lKe Qu, Liangbin Zhang, Yu Yao*, Changbo Jiang, Numerical evaluation of influences of onshore wind on overtopping characteristics of coastal seawall under solitary wave, Ocean Engineering, 2022.266: 112860. lKe Qu, Baohao Wen, Yu Yao*, Weiyi Sun, Changbo Jiang. Numerical study on hydrodynamic characteristics of movable coastal bridge deck under joint action of solitary wave and current, Ocean Engineering, 2022, 262: 112143. lSonggui Chen, Yu Yao*, Huiqun Guo, Meijun Jia, Numerical investigation of monochromatic wave interaction with a vertical seawall located on a reef flat, Ocean Engineering, 2020, 214: 107847. lLong Chen, Yu Yao*, Zhiliang Wang, Development and validation of a prediction model for the multi-wake of tidal stream turbines, Renewable Energy, 2020, 155, 800-809. lZhengzhi Deng*, Chen Wang, Yu Yao*, Pablo Higuera, Numerical simulation of an oscillating water column device installed over a submerged breakwater, Journal of Marine Science and Technology, 2020, 25:258-271. lZhengzhi Deng, Chen Wang, Chi Wang, Yu Yao*, Zeting Ou, Lixi Wang, Wave Scattering by Twin Surface-Piercing Plates Over A Stepped Bottom: Trapped Wave Energy and Energy Loss, China Ocean Engineering, 2019, 33(4): 398–411. lChangbo Jiang, Xiaojian Liu, Yu Yao*, Bin Deng, Numerical investigation of solitary wave interaction with a row of vertical slotted piles on a sloping beach, International Journal of Naval Architecture and Ocean Engineering, 2019, 11: 530-541. lChangbo Jiang, Xiaojian Liu, Yu Yao*, Bin Deng, Jie Chen, Numerical Investigation of Tsunami-Like Solitary Wave Interaction with a Seawall, Journal of Earthquake and Tsunami, 2017, 11(1): 1740006. lChangbo Jiang, Yu Yao*, Ya Deng, Bin Deng, Numerical Investigation of Solitary Wave Interaction with a Row of Vertical Slotted Piles, Journal of Coastal Research, 2015, 31(6): 1502-1511.
EI 檢索1. 第一作者: l姚宇*,袁萬成,劉曉建, 蔣昌波,孤立波作用下四立柱結(jié)構(gòu)附近水動力特性研究, 船舶力學(xué), 2020, 24(3): 301-310。 l姚宇*,珊瑚礁海岸水動力學(xué)問題研究綜述,水科學(xué)進展,2019,30(1):139-152。 l姚宇*,劉增晟,袁萬成,蔣昌波,雙排立柱結(jié)構(gòu)附近孤立波傳播變形數(shù)值模擬,應(yīng)用基礎(chǔ)與工程科學(xué)學(xué)報,2019,27(05):1008-1018。 l姚宇*,張起銘,蔣昌波,礁面糙率變化下珊瑚礁海岸附近波浪傳播變形試驗,科學(xué)通報,2019,64(9):977-985。 l姚宇*,何文潤,李宇,劉曉建,唐政江,基于Navier-Stokes方程珊瑚島礁附近孤立波傳播變形數(shù)值模擬,哈爾濱工程大學(xué)學(xué)報,2018,39(2):392-398。 l姚宇*,唐政江,杜睿超,蔣昌波,潮汐流影響下珊瑚島礁附近波浪傳播變形和增水試驗,水科學(xué)進展,2017,28(4):614-621。 lYu Yao*, Zhengjiang Tang, Ruichao Du, Changbo Jiang, A semi-analytical model on wave-induced setup over fringing reefs with a shallow reef crest, Journal of Disaster Research, 2016, 11(5): 948-956. 2. 通訊作者論文 l許從昊,姚宇*,郭婷,鄧爭志,排樁式波浪能發(fā)電裝置附近流場特性研究,浙江大學(xué)學(xué)報(工學(xué)版),2021,55(7):1308-1316。 l蔣昌波,鄧涯,姚宇*,鄧斌,孤立波作用下排柱附近流動特性數(shù)值分析研究,浙江大學(xué)學(xué)報(工學(xué)版),2015,49(8):1441-1447。
CSCD核心(擴)和其他論文1.第一作者: l姚宇*,何天城,唐政江,蔣昌波,珊瑚礁礁坪寬度對波浪傳播變形及增水影響的實驗研究,熱帶海洋學(xué)報,2019,38(2):13-19。 l姚宇*,唐夢君,唐政江,蔣昌波,非淹沒剛性植被影響下孤立波在岸灘上的爬高,水利水電科技進展,2019,39(2):31-36。 l姚宇*,杜睿超,蔣昌波,袁萬成,唐政江,礁冠寬度對珊瑚礁坪波浪增水影響的實驗研究,海洋通報,2017,36(3):340-347。 l姚宇*,唐政江,杜睿超,蔣昌波,珊瑚礁破碎帶附近波浪演化和波生流實驗研究,海洋科學(xué),2017,41(2):12-19。 l姚宇*,袁萬成,杜睿超,蔣昌波,岸礁礁冠對波浪傳播變形及增水影響的實驗研究,熱帶海洋學(xué)報,2015,34(6):19-25。 l姚宇*,杜睿超,袁萬成,蔣昌波,珊瑚岸礁破碎帶附近波浪演化實驗研究,海洋學(xué)報,2015,37(12):66-73。 l姚宇*,杜睿超,袁萬成,蔣昌波,斜坡非淹沒剛性植被影響下孤立波爬高的研究,水動力學(xué)研究與進展A輯,2015,30(5):506-515。 2.通訊作者論文 l陳仙金,姚宇*,張起銘,唐政江,人工采掘坑影響下珊瑚礁海岸波浪傳播變形試驗,海洋通報,2021,40(2):224-231。 l曠敏,姚宇*,陳仙金,張起銘,蔣昌波,采掘坑位置對珊瑚礁海岸波浪傳播變形影響試驗,熱帶海洋學(xué)報,2021,40(4):14-21。 l楊笑笑,姚宇*,郭輝群,賈美軍,礁面大糙率存在下孤立波傳播變形及爬高實驗研究,海洋學(xué)報,2021,43(3):24-30。 l賈美軍, 姚宇*, 陳松貴, 郭輝群. 防浪建筑物影響下珊瑚礁海岸波浪傳播變形試驗.海洋工程,2020, 38(6):53-59+123。 l賈美軍, 姚宇*, 何天城, 郭輝群. 大糙率礁面影響下珊瑚礁海岸附近規(guī)則波演化及爬高試驗研究,海洋與湖沼, 2020, 51(6): 1344-1349。 l楊笑笑,姚宇*,何天城,賈美軍,大糙率珊瑚礁附近規(guī)則波非線性特征實驗研究,海洋學(xué)研究,2020,38(2):9-15。 l何天城,姚宇*,劉增晟,蔣昌波,孤立波作用下珊瑚礁海岸附近流動特性研究,水動力學(xué)研究與進展(A輯),2019,34(4):494-502。 l何文潤,姚宇*,唐政江,劉增晟,粗糙珊瑚礁面附近波浪增水實驗研究,海洋科學(xué)進展,2019,37(3):409-416。 l蔣昌波,劉曉建,姚宇*,杜睿超,孤立波作用下破碎區(qū)單圓柱附近流動特性數(shù)值研究,水動力學(xué)研究與進展A輯,2016,472-479。 獲授權(quán)的發(fā)明專利l姚宇,李長慎,許從昊,蔣昌波,一種珊瑚受精卵收集裝置,2022.10.04,中國,專利號ZL202110268493.7。 l姚宇,吳際,許從昊,蔣昌波,一種吸收太陽輻射的珊瑚防護結(jié)構(gòu),2022.09.27,中國,專利號ZL202110240049.4。 l姚宇,賈美軍,蔣昌波,一種修復(fù)被臺風(fēng)浪破壞的珊瑚礁的結(jié)構(gòu),2022.08.19,中國,專利號ZL201910035812.2。 l姚宇,楊笑笑,蔣昌波,一種用于清理珊瑚礁上泥沙的裝置,2022.07.19,中國,專利號ZL201910036108.9。 l姚宇,陳仙金,許從昊,陳龍,蔣昌波,一種捕捉珊瑚礁上海星的裝置,2022.01.14,中國,專利號ZL202010041622.4。 l姚宇,曠敏,許從昊,陳龍,蔣昌波,一種適用珊瑚礁地形的波流發(fā)電裝置,2020.12.11,中國,專利號ZL202010041624.3。 l姚宇,郭輝群,何天城,唐夢君,張起銘,一種通過降低海水酸度促進珊瑚生長的珊瑚培養(yǎng)裝置,2020.2.14,中國,專利號ZL201711078335.5。 l姚宇,張起銘,何文潤,何天城,唐夢君,郭輝群,一種用于應(yīng)對海水溫度異常升高的珊瑚營養(yǎng)供給裝置,2020.2.14,中國,專利號ZL201711067467.8。 l姚宇,唐夢君,何天城,郭輝群,張起銘,一種適用于島礁地形的防浪護岸裝置,2020.2.14,中國,專利號ZL201711406715.7。 l姚宇,何文潤,劉增晟,蔣昌波,一種用于治理珊瑚礁白化的海水降溫裝置,2019.4.30,中國,申請?zhí)枺篫L201611007170.8。 l姚宇,劉增晟,何文潤,蔣昌波,一種利用紅樹林和珊瑚分層消浪的海岸防護結(jié)構(gòu),2019.2.12,中國,專利號ZL201611007103.6。 l姚宇,唐政江,杜睿超,袁萬成,蔣昌波,一種集消浪、離岸養(yǎng)殖為一體的漂浮式裝置,2018.06.19,中國,ZL201610121433.1。 l姚宇,杜睿超,袁萬成,蔣昌波,一種依靠風(fēng)力供電的分層式人工礁體,2016.07.20,中國,ZL201510017768.4。 l姚宇,袁萬成,杜睿超,段自豪,蔣昌波,一種結(jié)合柔性植物消浪的潛堤堤頂結(jié)構(gòu),2016.06.01,中國,ZL201510212992.9。
|