Development of Water Submersible Gyro Generator of Combined Excitation for Energy Development of Small and Medium Rivers

S. Gandzha, Dilshod Aminov, A. Sogrin
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引用次数: 2

Abstract

According to various estimates, the energy potential of small and medium-sized rivers in Russia and neighboring countries is several times higher than that of large rivers. However, not enough attention is paid to the development of this alternative energy sector. The article analyzes one of the possible solutions to this problem. A design is proposed, in which the hydro turbine is built into the generator, and the entire structure is placed in the water. As a hydro generator, a special electric machine-a generator of combined excitation is offered. The generator inductor has powerful permanent magnets and an excitation winding. The total magnetic flux, which induces EMF in the phase windings, consists of the flows of these two sources of a magnetic field. The magnetic flux from the magnets remains unchanged, and from the excitation winding, the magnetic flux can be added or subtracted from the flux of the magnets. Thus, the magnetic flux control function remains in the machine. The current supply to the armature winding and the excitation winding is contactless. This design allows you to reduce the size due to permanent magnets and simplify the electronic system of stabilization of the output voltage by regulating the low-power excitation circuit. The generator has a reversed design, that is, the stator is inside and the rotor is outside. This design simplifies the overall layout of the turbine. The design of the generator has a patent of the Russian Federation. For the development of generators of this type, a design CAD system was created, consisting of a subsystem for the synthesis of optimal geometry on the basis of multi-level single-criteria optimization and an analysis subsystem built using well-known software complexes based on the finite element method. As an example of the operation of the system, the results of the calculation of the 3 kW hydro generator are shown. Comparative results of the calculations for the electronic model and tests of the mock-up sample are presented. The developed digital model of the generator showed good convergence with the real generator on the main parameters and characteristics.
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用于中小河流能源开发的组合式潜水陀螺发电机的研制
根据各种估计,俄罗斯及周边国家的中小河流的能源潜力是大河的几倍。然而,对这一替代能源部门的发展没有给予足够的重视。本文分析了解决这一问题的一种可能的方法。提出了一种将水轮机内置于发电机内,整个结构置于水中的设计方案。作为水轮发电机,提供了一种特殊的电机——联合励磁发电机。发电机电感具有强大的永磁体和励磁绕组。在相绕组中引起电动势的总磁通量由这两个磁场源的流动组成。磁体的磁通量保持不变,并且从激励绕组中,磁通量可以从磁体的磁通量中增加或减少。因此,磁通控制功能保留在机器中。电枢绕组和励磁绕组的电流供应是无触点的。本设计可以减少永磁体的尺寸,并通过调节低功率励磁电路来简化稳定输出电压的电子系统。发电机采用反式设计,即定子在里面,转子在外面。这种设计简化了涡轮的整体布局。发电机的设计已获得俄罗斯联邦专利。针对该类发电机的研制,建立了设计CAD系统,该系统由基于多级单准则优化的最优几何综合子系统和基于有限元法的知名软件复合体分析子系统组成。以该系统的运行为例,给出了3kw水轮发电机的计算结果。给出了电子模型的计算结果和实体样品的测试结果的对比。所建立的发电机数字模型在主要参数和特性上与实际发电机有较好的收敛性。
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