[1]
杨晖, 陈源, 刘明勇. 船式拖拉机船壳减阻综合分析[J]. 中国农机化学报, 2019, 40(6): 129-133, 151.
Yang Hui, Chen Yuan, Liu Mingyong. Comprehensive analysis of drag reduction of ship hull of ship type tractor [J]. Journal of Chinese Agricultural Mechanization, 2019, 40(6): 129-133, 151.
[2]
李振镛, 李屹, 王光善, 等. 水垫形成技术在水田耕整机上的应用[J]. 浙江农业大学学报, 1995(6): 551-555.
[3]
李振镛, 李劲, 李屹,等. “水垫”形成原理在船拖上的应用和试验研究 [J]. 农业机械学报, 1995(4): 41-45.
Li Zhenyong, Li Jin, Li Yi, et al. Experimental research on applying the theory of forming water pad to the boattype tractor [J]. Transactions of the Chinese Society for Agricultural Machinery, 1995(4): 41-45.
[4]
吴浩, 董文才, 欧勇鹏. 大型平板变水深气层减阻试验技术研究[A]. 中国造船工程学会船舶力学学术委员会. 2015年船舶水动力学学术会议论文集[C]. 中国造船工程学会船舶力学学术委员会: 中国造船工程学会, 2015: 1-6.
[5]
秦立果, 孙红江, 浩杨. 鲨鱼皮盾鳞结构减阻性能数值模拟[J]. 中国科技论文, 2019, 14(12): 1271-1277.
Qin Liguo, Sun Hongjiang, Hao Yang. Numerical simulation on drag reduction performance of shark skin with denticle structures [J]. China Sciencepaper, 2019, 14(12): 1271-1277.
[6]
区颖刚, 邵耀坚. 船式拖拉机船体行驶阻力的研究[J]. 华南农学院学报, 1984(1): 1-10.
[7]
Hao W, Yongpeng O, Qing Y. Experimental study of air layer drag reduction on a flat plate and bottom hull of a ship with cavity [J]. Ocean Engineering, 2019, 183: 236-248.
[8]
Slyozkin A, Atlar M, Sampson R, et al. An experimental investigation into the hydrodynamic drag reduction of a flat plate using airfed cavities [J]. Ocean Engineering, 2014, 76: 105-120.
[9]
吴浩, 董文才, 欧勇鹏. 平板喷气流场特性及气流量分配策略试验研究[J]. 哈尔滨工程大学学报, 2016, 37(9): 1220-1226.
Wu Hao, Dong Wencai, Ou Yongpeng. Experimental study of flow field characteristics and air distribution strategies on a flat plate with ai injection [J]. Journal of Harbin Engineering University, 2016, 37(9): 1220-1226.
[10]
Park S H, Inwon L. Optimization of drag reduction effect of air lubrication for a tanker model [J]. International Journal of Naval Architecture and Ocean Engineering, 2018, 10: 427-438.
[11]
Latorre R. Ship hull drag reduction using bottom air injection [J]. Ocean Engineering, 1997, 24(2): 161-175.
[12]
Mkiharju S A, Ceccio S L. On multipoint gas injection to form an air layer for frictional drag reduction [J]. Ocean Engineering, 2018, 147: 206-214.
[13]
杨晖, 刘明勇. 基于CFD的船式拖拉机兴波阻力研究[J]. 中国农机化学报, 2019, 40(9): 114-119.
Yang Hui, Liu Mingyong. Research on wavemaking resistance of ship tractor based on CFD [J]. Journal of Chinese Agricultural Mechanization, 2019, 40(9): 114-119.
[14]
王其和, 廖兴红, 方娜. 湖北省农机科研政策研究[J]. 中国农机化学报, 2015, 36(4): 288-297.
Wang Qihe, Liao Xinghong, Fang Na. Study on the scientific research policies of agricultural machinery in Hubei province [J]. Journal of Chinese Agricultural Mechanization, 2015, 36(4): 288-297.
[15]
戴飞, 韩正晟, 张克平, 等. 我国机械化秸秆还田联合作业机的现状与发展[J]. 中国农机化, 2011(6): 42-45, 37.
Dai Fei, Han Zhengsheng, Zhang Keping, et al. Development present situation of straw returned combined machine used in China [J]. Chinese Agricultural Mechanization, 2011(6): 42-45, 37.
[16]
王树才, 邓在京. 加大CAD技术应用力度提高我国农业机械整体水平[J]. 中国农机化, 2003(2): 32-35.
Wang Shucai, Deng Zaijing. Improve the application of CAD technology, promote the level of agrimachinery technology in China [J]. Chinese Agricultural Mechanization, 2003(2): 32-35.
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