微水电厂叶片定向机构转矩研究与设计的若干问题

Bostan Viorel, Bostan Ion, Dulgheru Valeriu, Ciobanu Oleg
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引用次数: 0

摘要

对水力能量转换系统的分析表明,与势能转换系统相比,水动能转换系统有发展的机会。作者的坚持不懈的搜索导致了一些先进的技术解决方案的设计和许可的流出微型水力发电厂。它们基于水动力效应,由叶片的水动力剖面和考虑到涡轮转子每个旋转阶段的能量转换的最佳叶片对水流的方向产生。流动型微型水电站的基本优点是同时利用水流对叶片表面的压力效应和叶片连续取向的水动力剖面产生的水动力效应,提高了转换效率。微水电厂最重要的节点是轴向垂直的动水转子和叶片随水流方向连续定向的机构。本文根据水流的流速对位于上游到下游过渡区内的动水叶片进行定位,使每个叶片所产生的水动力增大,同时使叶片旋转的水力阻力减小,从而分析了动水叶片所受的短扭矩和力。在此基础上,设计、开发和制造了叶片抗水流定向到最佳位置的机构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Some Aspects Regarding Torque Study and Elaboration of the Blades Orientation Mechanism for Microhydropower Plant
The analysis of hydraulic energy conversion systems has demonstrated the opportunity for the development of water kinetic energy conversion systems compared to potential energy conversion systems. Insistent searches of authors have led to the design and licensing of some advanced technical solutions for outflow micro hydroelectric power plants. They are based on the hydrodynamic effect, generated by the hydrodynamic profile of blades and by the optimal blades' orientation towards water streams with account of energy conversion at each rotation phase of the turbine rotor. The basic advantage of the flow microhydropower plant is the increase of the conversion efficiency by the simultaneous use of the pressure effects of water streams on the blade surface and of the hydrodynamic effect generated by the hydrodynamic profile of the blade with continuous blade orientation. The most important nodes of the microhydropower plant are the hydrodynamic rotor with vertical axis and the mechanism of continuous orientation of the blades depending on the direction of water currents. The paper makes an analysis of the brief torque and of the forces applied on the hydrodynamic blades located in the transition zone from the upstream area to the downstream area, by positioning the blades according to the flow velocity of the water flow which leads to increased hydrodynamics forces developed by each blade and the simultaneous reduction of the hydraulic resistance forces to the rotation of the blades, based on which the mechanism of orienting the blades in optimal positions against water currents was designed, developed, and manufactured.
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