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| 1 | Micro-bubble Drag Reduction on a High Speed Vessel Model显示文摘轮船壳形式在水下区域强烈影响轮船的抵抗。在轮船抵抗的主要因素是皮肤磨擦抵抗。球状的弓,聚合物油漆,水驱虫剂油漆(高度防水的墙) ,空气注射,和特定的粗糙被研究人员用作一次尝试获得抵抗减小和轮船的操作效率。微水泡的注射是为阴沉的摩擦抵抗的一种有希望的技术。注射空气水泡应当以某种方式在狂暴的边界层内修改精力并且从而降低皮肤磨擦。这研究的目的是在一支海军上识别注射微水泡的效果快的巡逻队船(FPB ) 有下列主要尺寸的 57 m 类型模型:L=2 450 公里, B=400 公里,和 T=190 公里。微水泡注射和水泡速度的地点的影响也被调查。轮船模型被其速度能被改变并且调整的一台电动机拉。轮船模型抵抗被一个负担房间变换器精确测量。有或没有微水泡的注射的轮船抵抗的比较作为 drag 系数和弗鲁德数字的功能在一张图上被显示出。在船体中央部后面的微水泡注射是最好的地点完成,这被显示出最有效拖减小,和微水泡的罐头活动范围 6%9% 引起的 drag 减小。 | Yanuar Gunawan Sunaryo A. Jamaluddin | 2012 | Journal of Marine Science and Application2012,11,3: | 6 |
| 2 | Long span bridge health monitoring system in Japan 显示文摘 | Sunaryo Sumitro Yoshimasa Matsui | 2001 | Proceedings of SPIE2001,,4337: | 1 |
| 3 | Long span bridge health monitoring system in Japan显示文摘 | Sunaryo Sumitro Yoshimasa Matsui | 2001 | Proceedings of SPIE2001,,4337: | 1 |
| 4 | Elasto-Magnetic Sensor Unilization on Steel Cable Stress Measurement显示文摘 | Sunaryo Sumitro Andrej Jarosevic Ming L WANG | 2004 | Monitoring Session2004,15,: | 1 |
| 5 | Monitoring based maintenance utilizing actual stress sensory technology 显示文摘 | SUNARYO SUMITRO | 2005 | Smart Materials and Structures2005,14,: | 1 |
| 6 | PEGylation strategies for active targeting of PLA/PLGA nanoparticles显示文摘 | Betancourt T Byrne JD Sunaryo N | | 0,,: | 1 |
| 7 | Sustainable structure health monitoring system 显示文摘 | SUNARYO SUMITRO | 2005 | Structure Control and Health Monitoring2005,,12: | 1 |
| 8 | PEGylation strategies for active targeting of PLA/PLGA nanoparticles显示文摘 | Betancourt T Byrne JD Sunaryo N | 2009 | J Biomed Mater Res2009,91,1: | 1 |
| 9 | Monitoring based maintenance utilizing actual stress sensory technology显示文摘 | Sunaryo Sumitro | 2005 | Smart Materials and Structures2005,,14: | 1 |
| 10 | Sustainable structure health monitoring system显示文摘 | Sunaryo Sumitro | 2005 | Structure Control and Health Monitoring2005,,12: | 1 |
| 11 | 用于传统式近岸渔业平台的太阳能利用研究(英文)显示文摘In order to introduce clean environment and sustainable energy to traditional coastal fishing community, the objective of this study is to encourage the Indonesian traditional coastal fishing community to use green and renewable energy in their fishing activities. Introducing solar power as the main source of energy for fish-attracting lights and boat propulsion can reduce the use of fossil fuels, and sustain clean and healthy environment. As the world’s largest archipelago, Indonesia accounts for a high percentage of traditional fishing communities spread out along its islands. This fishing communities use various traditional fishing boats, and platforms. The fishing platforms are usually made of bamboo and placed on top of supporting structures on the seabed. Diesel electric generators are used to obtain electricity needed for lighting to attract the fish at night, and as the source of power for lifting the fishing net. The structure and fuel used are neither environmentally friendly nor clean;thus, an innovation is introduced. Traditional fishing practices using a fishing platform were studied, including the common size of the platform and the power needed for the fishing light. Based on the gathered information, this study proposes a catamaran vessel with a special top structure designed for fish lifting outfitting, and equipped with photovoltaic solar cells as the energy source for the fishing lights and vessel propulsion. Through this innovative break through, the vessel can be moved to the shore and will not be a threat to ship navigation and the environment. Furthemore, powered by clean and sustainable energy, the vessel can be directed to the best fishing ground. | Sunaryo Aldy Syahrihaddin Pradhana Shadu Imfianto | 2019 | Journal of Marine Science and Application2019,18,3: | 0 |