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Electrical System Design of Solar-Powered Electrical Water Recreational and Sport Vessel

机译:太阳能电动水上运动休闲船的电气系统设计

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Indonesia is the world’s largest archipelago with more than 17 000 islands, and the best marine tourism destination due to its beautiful beaches and underwater scenery, but Indonesia is also the most vulnerable country to be affected by climate change due to the greenhouse effect. Besides industry, the transportation sector is the highest contributor to the global greenhouse effect. In order to reduce the source of the greenhouse effect, the Indonesian Government has committed to using new and renewable energy as an alternative to fossil-based fuel. In an attempt to contribute to the Government’s efforts and to advance the national marine tourism, the research is aimed to design water recreational and sport vessel that powered by a solar generated electric engine, as further development of Universitas Indonesia’s solar boat participated in International Solar-boat Challenge competition in the Netherlands. The research is focused on the effective use of solar energy as the main source for powering the vessel’s electrical engine, based on the existing optimum shape and dimensions of the boat. Information and data regarding the arrangement of the vessel, solar electric generation processes and vessel powering system obtained from literature study, discussion with experts, and on the spot surveys of various recreational vessels were used as input for the calculation and simulation of the vessel being investigated. The research results are expected could be further developed for other related usages such as fish farming, coastal fishing rig, floating restaurant, etc.
机译:印度尼西亚是世界上最大的群岛,拥有17000多个岛屿,并且因其美丽的海滩和水下风景而成为最佳的海上旅游目的地,但由于温室效应,印度尼西亚还是受气候变化影响最脆弱的国家。除工业外,运输部门是全球温室效应的最大贡献者。为了减少温室效应的来源,印度尼西亚政府已承诺使用新的可再生能源来替代化石燃料。为促进政府的努力并促进国家海上旅游的发展,这项研究旨在设计由太阳能电动发动机提供动力的水上娱乐和运动船,印尼大学的太阳能船的进一步发展参与了国际太阳能-船挑战赛在荷兰。该研究的重点是根据船的现有最佳形状和尺寸,有效利用太阳能作为为船用电动发动机提供动力的主要来源。通过文献研究,与专家讨论以及对各种娱乐船只进行实地考察获得的有关船只布置,太阳能发电过程和船只动力系统的信息和数据,被用作计算和仿真船只的输入。预期该研究结果可进一步发展为其他相关用途,例如养鱼,沿海捕鱼平台,水上餐厅等。

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