自动调节的发电驱动装置

By introducing an adjusting lever and a buoyancy plate into the power generation drive unit, the water turbine's entry depth is automatically adjusted according to water level changes, solving the problem of the turbine being fully loaded due to uneven flow and improving power generation efficiency and water utilization.

CN120926005BActive Publication Date: 2026-07-17ZHEJIANG MINGSHUO ENERGY SAVING TECH

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
ZHEJIANG MINGSHUO ENERGY SAVING TECH
Filing Date
2025-07-31
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

In existing technologies, when the intersection of the water turbine and the pipeline is located no more than the center line of the pipeline, the flow rate within the pipeline is uneven, causing the water turbine to remain at full load even at low flow rates, which affects water pressure and reduces power generation efficiency.

Method used

Design an automatically adjustable power generation drive device. By setting an adjusting lever and a buoyancy plate inside the casing, the water wheel's entry depth is automatically adjusted according to water level changes. This ensures that the water wheel reduces energy conversion when the flow rate is low and maintains the optimal entry depth when the flow rate is high. The water wheel angle is adjusted and stable transmission is achieved by using an adjusting groove and elastic element in conjunction with the sliding stroke of the water wheel shaft.

Benefits of technology

It improves power generation efficiency, reduces the impact of energy conversion of the turbine on the water flow at low flow rates, enhances water utilization and the stability of the power generation device, and provides flexibility to adapt to changes in flow rate.

✦ Generated by Eureka AI based on patent content.

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Abstract

本发明属于发电机技术领域,具体涉及一种自动调节的发电驱动装置,包括壳体和设置在所述壳体中的水轮,所述壳体的敞口侧铰接有调节杠杆,所述调节杠杆的一端与所述水轮的水轮轴转动连接,所述调节杠杆另一端设置有浮力板伸出于所述壳体敞口之外,所述水轮的叶片随所述浮力板的摆动露出于所述壳体敞口外。在装置的壳体内铰接一个两端可以摆动的调节杠杆,杆较长的一侧安装浮力板并且延伸到管路中,杆较短的一侧安装可以周向转动的水轮,由于管路内流量的大小水面高度也发生变化,从而带动浮力板改变调节杠杆的角度,水轮随之根据水面的高低改变叶片的吃水深度,使发电装置能在管内流量较小时降低能量的转化,减小对水流的影响。
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