Bearing pressure type hydroelectric generating set

文档序号:1412800 发布日期:2020-03-10 浏览:13次 中文

阅读说明:本技术 一种承载压力式水轮发电机组 (Bearing pressure type hydroelectric generating set ) 是由 余达贤 于 2018-09-03 设计创作,主要内容包括:本发明提供一种承载压力式水轮发电机组,包括水轮机、发电机、电网同频设备;水轮机身前后两端安装有压力水管,分别为压力进水管和压力出水管,所述水轮机内安装可以旋转的涡扇转轮,所述水轮机的势能输出端依次连有直流发电机、电网同频同步转换设备以及并入包括变压器的电网设备;所述的压力出水管连接有泄压式水轮发电机组,泄压式水轮发电机组采用冲击或混流方式带动转轮发电。本发明适用于所有高水头水力发电站增设加装。本机组只要有转动就有电能输出,只要有电能输出就能完美上网,不同于同步发电机必须达到同步转速才能入网、达不到同步转速等于无效出力。(The invention provides a bearing pressure type hydroelectric generating set, which comprises a hydraulic turbine, a generator and a power grid same-frequency device; the energy-saving water turbine comprises a water turbine body, a turbine fan, a direct current generator, a power grid common-frequency synchronous conversion device and a power grid device, wherein pressure water pipes, namely a pressure water inlet pipe and a pressure water outlet pipe are arranged at the front end and the rear end of the water turbine body; the pressure water outlet pipe is connected with a pressure-relief type hydroelectric generating set, and the pressure-relief type hydroelectric generating set drives the runner to generate power in an impact or mixed flow mode. The invention is suitable for additionally arranging all high-water-head hydraulic power stations. The generator set can output electric energy only by rotation, can perfectly surf the internet only by the electric energy output, and is different from a synchronous generator which can access the internet only by reaching synchronous rotating speed and cannot reach the synchronous rotating speed which is equal to invalid output.)

1. A bearing pressure type hydroelectric generating set is characterized by comprising a hydraulic turbine, a generator and power grid same-frequency equipment; the energy-saving water turbine comprises a water turbine body, a turbine fan, a direct current generator, a power grid common-frequency synchronous conversion device and a power grid device, wherein pressure water pipes, namely a pressure water inlet pipe and a pressure water outlet pipe are arranged at the front end and the rear end of the water turbine body; the pressure water outlet pipe is connected with a pressure-relief type hydroelectric generating set, and the pressure-relief type hydroelectric generating set drives the runner to generate power in an impact or mixed flow mode.

2. A load bearing pressure type hydroelectric generating set according to claim 1 wherein said pressure inlet conduit is located at the front of the body and directs water flow to the turbofan rotor, the centerline of the turbofan rotor is aligned with the water inlet, water flow entering from the water inlet axially pushes the turbofan rotor to rotate, and the rotational power pushes the dc generator to generate electricity.

3. A load bearing pressure type hydro-turbo generator set according to claim 1, wherein the pressure outlet pipe is located at the rear of the body, and after the water flow in the body is acted by the turbofan runner, the water flow falls to maintain the same pressure as the water inlet end and then impacts the pressure relief type hydro-turbo generator through the pressure outlet pipe.

4. A load-bearing pressure-type hydro-turbo generator set according to claim 1, wherein the work power of the hydro-turbo generator is determined by a pressure-relief type hydro-turbo generator set at a later stage; the rotating speed of the ultra-low speed generator set is set to be about one third of the rotating speed of a rear-stage unit, so that the pressure loss of the unit required by a rear-stage traditional unit is ensured to be the lowest.

Technical Field

The invention belongs to the field of hydroelectric power generation equipment. Relates to a hydroelectric generating set, in particular to a bearing pressure type hydroelectric generating set.

Background

At present, energy-saving and environment-friendly generator sets are needed in China, and the electricity utilization needs of people are met. The water conservancy generator invented in the past has the advantages of small generating capacity of the wind driven generator, high cost of most wind driven generators and incapability of meeting the power utilization requirement.

When the existing hydroelectric generating set is used, a dam needs to be built, the hydraulic generator is arranged at the bottom of the dam, as shown in fig. 1, high-speed pressure water columns generated by pressure water flow push a water bucket on a rotating wheel, work is done in a mode of realizing the release pressure of potential energy generated by the high-speed rotation of the rotating wheel, the synchronous grid connection of alternating current generated by the generator and a power grid at the same frequency is realized, the water inlet of the generating set is high pressure, and tail water is zero pressure. The method has the defects that the water retaining cost is high when the dam is built, and hydropower stations with water flow rate are all used in the method and all work is done at one time.

Disclosure of Invention

Aiming at the defects in the prior art, the invention provides a bearing pressure type hydroelectric generating set. The invention is suitable for wide geographical environment, high in generating efficiency and low in construction cost; the hydraulic power generating station is suitable for being additionally installed in all high-water-head hydraulic power generating stations, and multiple work doing of hydraulic resources is realized.

In order to achieve the purpose, the technical scheme of the invention is as follows:

a bearing pressure type hydroelectric generating set comprises a hydraulic turbine, a generator and a power grid same-frequency device; the energy-saving water turbine comprises a water turbine body, a turbine fan, a direct current generator, a power grid common-frequency synchronous conversion device and a power grid device, wherein pressure water pipes, namely a pressure water inlet pipe and a pressure water outlet pipe are arranged at the front end and the rear end of the water turbine body; the pressure water outlet pipe is connected with a pressure-relief type hydroelectric generating set, and the pressure-relief type hydroelectric generating set drives the rotating wheel to generate power in an impact or mixed flow mode;

the pressure water inlet pipe is positioned at the front part of the machine body and guides water flow to the turbofan rotating wheel, the central line of the turbofan rotating wheel is matched with the water inlet, the water flow enters from the water inlet and pushes the turbofan rotating wheel to rotate axially, and the rotating power pushes the direct-current generator to generate electricity.

The pressure water outlet pipe is positioned at the rear part of the machine body, and after water flow in the machine body does work through the turbofan rotating wheel, the water flow falls down to keep the pressure basically the same as that of the water inlet end and then impacts the pressure relief type hydraulic generator through the pressure water outlet pipe.

Furthermore, the pressure relief type hydraulic generator adopts an original traditional unit.

Furthermore, the work power of the hydraulic generator is determined by a pressure relief type hydraulic generator set at the rear stage; the rotating speed of the ultra-low speed generator set is set to be about one third of the rotating speed of a rear-stage unit, so that the pressure loss of the unit required by a rear-stage traditional unit is ensured to be the lowest.

Has the advantages that: the invention is suitable for additionally arranging all high-water-head hydraulic power stations. The generator set can output electric energy only by rotation, can perfectly surf the internet only by the electric energy output, and is different from a synchronous generator which can access the internet only by reaching synchronous rotating speed and cannot reach the synchronous rotating speed which is equal to invalid output. The invention has convenient installation, high power generation efficiency and good market prospect; the size of the hydraulic turbine unit and the diameter of the hydraulic turbine shaft can be changed according to needs, the front end of water used by the original traditional unit is utilized by applying work for many times, and the water flow utilization rate is improved; the manufacturing is simple and durable, the manufacturing cost is low, and the solar energy water heater is beneficial to supplement the existing electricity.

Drawings

Fig. 1 is a schematic structural diagram of the prior art.

FIG. 2 is a composition distribution diagram of the present invention

In the figure, 1-a pressure water inlet pipe, 2-a hydraulic generator, 3-a turbofan rotating wheel, 4-a direct current generator, 5-a power grid same-frequency synchronous conversion device, 6-a power grid device integrated with a transformer, 7-a pressure water outlet pipe, 8-a pressure relief type hydraulic generator set and 9-a rotating wheel.

Detailed Description

The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.

A bearing pressure type hydraulic generator set comprises a hydraulic generator 2, pressure water pipes which are arranged at two sides of a body of the bearing pressure type hydraulic generator and are divided into a pressure water inlet pipe 1 and a pressure water outlet pipe 7, a turbofan rotating wheel 3 which can rotate is arranged in the bearing pressure type hydraulic generator 2, and a potential energy output end of the bearing pressure type hydraulic generator 2 is sequentially connected with a direct current generator 4, a power grid same-frequency synchronous conversion device 5 and a power grid device 6 which comprises a transformer; the pressure water outlet pipe 7 is connected with a pressure-relief type hydroelectric generating set 8, and the pressure-relief type hydroelectric generating set 8 drives the rotating wheel 9 to generate electricity in an impact or mixed flow mode.

The pressure water inlet pipe 1 is positioned at the front part of the machine body 2 and is provided with a water inlet of an adjustable water feeding plate, the water inlet is used for guiding water flow to the turbofan rotating wheel 3, the central line of the turbofan rotating wheel 3 is matched with the water inlet, and the water flow enters from the water inlet and impacts the turbofan rotating wheel 3 to rotate; thus, the water flow impact efficiency is improved.

The pressure water outlet pipe 7 is positioned at the rear part of the machine body 2, and water flow in the machine body 2 drops after acting through the turbofan rotating wheel 3, continues to flow and transmit under pressure and then impacts the pressure bearing type hydraulic generator 8 to generate power.

The working principle of the invention is as follows: starting the rear-stage water turbine to generate power → rotating the water turbine at the current stage → rotating the generator → adjusting the output direct current voltage of the generator to be higher than the voltage of the power grid → converting the direct current output by the generator into alternating current to be input into the power grid by the power grid reference frequency locking phase-locking frequency converter.

Although technical solutions of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

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