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SIHG TESTING AND ANALYSIS

机译:SIHG测试与分析

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This paper describes the Sailboat Integrated Hydroelectric Generator (SIHG). This turbine is intended to be fixed to the transom of a 30-40 foot sailing vessel to produce green power for the vessel's electrical systems. The design goal for the SIHG was the generation of a minimum of 225 watts at 6 knots and an ideal output of 400 watts at 6 knots. Power is generated by the SIHG when water moving over five turbine blades creates rotational motion, which is transferred through a gear box to a three-phase electrical generator. The three-phase electrical output is then rectified and used to recharge the boat's battery. Presently, most sailboats of this size run their engines in order to recharge their batteries. The SIHG produces no emissions and has no operating costs. Extensive testing in the Thames River at the U.S. Coast Guard Academy in New London Connecticut produced data that was then used to determine the power output and efficiency of the SIHG at various speeds through the water. The turbine was fixed to the transom of a dinghy which was then towed behind a rigid hulled inflatable vessel to simulate a sailboat under wind power. Novel data collection methods and instrumentation were then used to gather power and drag data for the turbine at various speeds. Power output plots and efficiency curves were calculated from this data and are represented in this paper. Actual performance shows that the SIHG is capable of producing 275 watts at 6 knots and 400 watts at 8 knots. The maximum efficiency of the SIHG is calculated to be 37percent and occurs when traveling through the water at a speed of 5 knots. Due to the substantial power generation at relatively low speeds, tidal applications are discussed.
机译:本文介绍了帆船综合水力发电机(SIHG)。该涡轮机旨在固定在30至40英尺长的帆船的横梁上,以为船舶的电气系统提供绿色动力。 SIHG的设计目标是在6节时产生至少225瓦的功率,在6节时产生400瓦的理想输出。当在五个涡轮叶片上流动的水产生旋转运动时,SIHG会产生动力,该旋转运动通过齿轮箱传递到三相发电机。然后对三相电输出进行整流,并用于为船上的电池充电。目前,大多数这种尺寸的帆船都运行其发动机以给电池充电。 SIHG不产生排放,也没有运营成本。在康涅狄格州新伦敦市美国海岸警卫队学院的泰晤士河上进行的广泛测试产生的数据随后被用于确定SIHG在不同速度下通过水的功率输出和效率。涡轮机固定在小艇的横梁上,然后将其拖到刚性的充气船后面,以模拟风能下的帆船。然后,使用新颖的数据收集方法和仪器以各种速度收集涡轮的功率并拖动数据。从该数据计算出功率输出曲线和效率曲线,并在本文中进行了介绍。实际性能表明,SIHG能够以6节的速度产生275瓦的功率,以8节的速度产生400瓦的功率。计算得出的SIHG的最大效率为37%,发生在以5节的速度在水中行驶时。由于以相对较低的速度产生大量电力,因此讨论了潮汐应用。

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