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Development of a Water-Submersible Hydrogenerator as a Renewable Source of Electricity for Small Rivers

机译:开发潜水式水力发电机作为小河的可再生能源

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The problem of using hydroelectric power of small rivers is considered. It is shown that it can be resolved only in the design of electric generators for locations and operating conditions. The task of developing such a project system is set. The problem of choosing a turbine and the type of electric machine for a hydrogenerator is outlined. Among a large number of types of generators, it is proposed to use a generator of the original design as a hydrogenerator of low and medium power. The electric machine in question is a submersible type generator with combined excitation. The resulting magnetic field of the generator is formed from two sources: permanent magnets and the field winding. At the same time, the hydrogenerator has a small size, thanks to the use of powerful permanent magnets, and the coil of the excitation for regulating the magnetic flow. At the final stage, a decision was made to develop a three-dimensional model of the generator in the Solid Works program. In order to make sure that the design system works correctly, it was decided to make a scale model using 3D printer technology.
机译:考虑了使用小河水力发电的问题。结果表明,只有在针对位置和运行条件的发电机设计中才能解决该问题。制定了开发这样的项目系统的任务。概述了选择涡轮机和用于水轮发电机的电机类型的问题。在许多类型的发电机中,建议使用原始设计的发电机作为低功率和中功率的氢化器。所讨论的电机是具有组合励磁的潜水式发电机。发电机产生的磁场由两个源形成:永磁体和励磁绕组。同时,由于使用了强大的永磁体以及用于调节磁通量的励磁线圈,水轮发电机的尺寸也变得很小。在最后阶段,决定在Solid Works程序中开发发电机的三维模型。为了确保设计系统正常工作,决定使用3D打印机技术制作比例模型。

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