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新型花鼓发电装置设计

Design of New Flower Drum Power Generation Device
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摘要 目前市场上的自发电自行车主要采用太阳能供电,但太阳能发电有时会受到骑行环境、天气改变等因素影响,无法满足充电需求。为实现持续的自行车电能供应需求,设计了一种新型花鼓发电装置。花鼓发电装置安装在自行车轮轴上,将车轮的转动能量转化成电能进行存储和使用。发电花鼓采用的是行星摩擦轮同轴异向转动原理,让定子和转子作同轴异向转动以提高单位时间内的发电量。所设计的花鼓发电装置提高了能源的利用率,起到了节能环保的作用。 At present, self-generating bicycles on the market are mainly powered by solar energy, but solar power generation is sometimes affected by factors such as riding environment and weather changes, which cannot meet the charging demand. In order to meet the demand for continuous bicycle power supply, a new type of flower drum power generation device was designed. The flower drum power generator was installed on the bicycle wheel axle to convert the rotational energy of the wheel into electric energy for storage and use. The power generating drum adopted the coaxial rotating principle of the planetary friction wheel, and the stator and the rotor were coaxially rotated to increase the power generation per unit time. The designed flower drum power generation device has improved energy utilization and played a role in energy conservation and environmental protection.
出处 《科学技术创新》 2020年第2期20-21,共2页 Scientific and Technological Innovation
基金 国家级大学生创新创业项目“单轴异向行星式摩擦发电装置”(项目编号:201910380032) 安徽省基层教研室示范项目“机械设计制造及其自动化教研室”(项目编号:2018jyssf032) 安徽省“六卓越、一拔尖”卓越人才培养创新项目“机械设计制造及其自动化卓越工程师教育培养计划”(项目编号:2018zygc031) 巢湖学院校级虚拟仿真实验教学中心项目“数控加工虚拟仿真实验教学中心”(项目编号:ch18xnfz02) 巢湖学院校级特色专业项目“机械设计制造及其自动化”(项目编号:ch17tszy01)
关键词 发电装置 新型花鼓 自行车 电能 Power generation device New flower drum Bicycle Electric energy
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