Power-saving power utilization device
阅读说明:本技术 省电式的用电装置 (Power-saving power utilization device ) 是由 王登宏 王综汉 于 2018-08-07 设计创作,主要内容包括:本发明公开了一种省电式的用电装置,其是借由一动力系统接收一初始电能提供电力后再带动一飞轮转动,该飞轮转动可借由惯性原理在转动时产生较大的扭力,再由飞轮的轮轴另一侧的输出端连动至发电装置,借以驱动发电装置产生较大发电量,即是能以较少的市电产生出较大的扭力来增加发电量,达到节能省电的效果,而发电装置产生的多余的电力亦可回馈到一储电装置,该储电装置所储存电力具有可提供动力系统运作的起始功能。(The invention discloses a power-saving electricity utilization device, which receives initial electric energy by a power system to provide electric power and then drives a flywheel to rotate, wherein the flywheel can generate larger torque force when rotating by virtue of the inertia principle, and then is linked to an electricity generation device by an output end on the other side of a wheel shaft of the flywheel so as to drive the electricity generation device to generate larger electricity generation amount, namely, the larger torque force can be generated by less commercial power to increase the electricity generation amount, so that the effects of saving energy and electricity are achieved, redundant electric power generated by the electricity generation device can also be fed back to an electricity storage device, and the electricity stored by the electricity storage device has the initial function of providing the operation of the power system.)
1. A power-saving electric device is characterized by comprising: a power system capable of receiving an initial electric energy to provide electric power; the flywheel is connected with the power system and is driven by the power system to rotate; the power generation device is linked to the power generation device through the output end of the wheel shaft of the flywheel, the generated power can be used for power utilization of ordinary families and factories, and redundant electric quantity can be fed back to a power storage device.
2. The power-saving electric device according to claim 1, wherein: the initial electric energy is commercial power of a power grid.
3. The power-saving electric device according to claim 1, wherein: the powertrain system includes a motor.
4. The power-saving electric device according to claim 1, wherein: the output end of the wheel shaft of the flywheel is linked to the power generation device by a belt, the produced excess power is stored in the power storage device, and the power of the power storage device is combined with the commercial power to gain and drive the power system.
5. The power-saving electric device according to claim 1, wherein: the output power end generated by the power generation device forms a load power end which can be connected to household electrical equipment and factory mechanical equipment and is provided for other equipment.
6. An electricity-saving electricity utilization device is characterized in that: the flywheel of the first group generates larger torque force when rotating by virtue of the inertia principle, then drives the power system of the second group and the flywheel to generate larger torque force, and is sequentially connected in series to the Nth group to generate larger torque force, and finally can be linked to a power generation device, the generated power can be used for power consumption requirements of ordinary families and factories, the redundant power can be used as electric power storage, and the intersection of the serial connection of the power system and the flywheel of each group is also provided with a switch and is connected to any power generation device started by different torque force.
Technical Field
The invention relates to a power-saving electricity utilization device, in particular to a power system which receives initial electric energy to provide electric power and then drives a flywheel to rotate, wherein the flywheel can generate larger torque force when rotating by virtue of the inertia principle, and then is linked to an electricity generation device by an output end on the other side of a wheel shaft of the flywheel so as to drive the electricity generation device to generate larger generated energy, namely, the initial electric energy can be used or for example, commercial power is used as the initial electric energy to generate larger torque force to increase the generated energy, so that the effects of saving energy and electricity are achieved, redundant electric power generated by the electricity generation device can also be fed back to an electricity storage device, and the stored electric power of the electricity storage device has the initial function of providing the operation of the power system.
Background
In recent years, global energy is about to face the crisis of energy exhaustion, and measures for limiting electricity consumption are often taken in the electricity utilization process, so that methods of generating electricity energy by using wind power, solar energy, water power, coal, nuclear energy and the like are continuously developed in various countries in the world, so that the consumption speed of traditional energy is reduced.
The generation of energy by wind, solar, hydraulic, etc. is limited by local limitations, and coal and nuclear energy are polluting and dangerous. Therefore, in view of the defects of the existing methods for generating electricity by using wind power, solar energy, water power, coal and nuclear energy, the inventor of the present invention continuously develops and improves the methods and finally develops an electricity-saving electricity-using device.
Disclosure of Invention
The invention mainly aims to provide a power-saving type electric device which achieves the effects of saving energy and electricity.
Based on the above, the present invention mainly adopts the following technical means to achieve the above object.
A power-saving electric device comprises: a power system capable of receiving an initial electric energy to provide electric power; the flywheel is connected with the power system and is driven by the power system to rotate; the power generation device is linked to the power generation device through the output end of the wheel shaft of the flywheel, the generated power can be used for power utilization of ordinary families and factories, and redundant electric quantity can be fed back to a power storage device.
Further, the initial electric energy adopts the commercial power of the power grid.
Further, the powertrain system includes a motor.
Furthermore, the power generation device is linked to the power generation device through the output end of the wheel shaft of the flywheel by a belt, the excess power generated by the power generation device can be stored in the power storage device, and the power of the power storage device can be combined with commercial power to gain the power system.
Furthermore, the output power end generated by the power generation device forms a load power end, and the load power end is connected to household electrical equipment and factory mechanical equipment and is provided for other equipment.
A power-saving electricity-using device comprises a plurality of groups of power systems and flywheels which are connected in series, wherein the flywheels of a first group generate larger torsion when rotating by virtue of the inertia principle and then drive the power systems of a second group and the flywheels to generate larger torsion, the flywheels are sequentially connected in series to an Nth group to generate larger torsion, and finally the flywheel can be linked to an electricity-generating device, the generated electricity can be used for electricity demand of ordinary families and factories, the redundant electricity can be used as stored electricity, and a change-over switch is arranged at the intersection of the series connection of the power systems and the flywheels of each group and is connected to any electricity-generating device started by different torsion.
After the technical means is adopted, the invention uses a power system to receive initial electric energy to provide electric power and then drives a flywheel to rotate, the flywheel can generate larger torsion force when rotating by virtue of the inertia principle, and then the flywheel is linked to the power generation device by the output end on the other side of the wheel shaft of the flywheel so as to drive the power generation device to generate larger generated energy, namely, the larger torsion force can be generated by less commercial power to increase the generated energy, so that the effects of saving energy and electricity are achieved, the redundant electric power generated by the power generation device can also be fed back to a power storage device, and the electric power stored by the power storage device has the initial function of providing the operation of the power system.
Drawings
FIG. 1 is a block diagram of a power-saving electric device according to the present invention.
FIG. 2 is a block diagram of the power supplied by the power generator of the present invention.
Fig. 3 is a perspective view of the power saving electric device of the present invention.
FIG. 4 is a block diagram of the power saving power consuming apparatus of the present invention.
FIG. 5 is another block diagram of the power saving electric device of the present invention.
[ notation ] to show
10 electric device
A initial electric energy
B commercial power
1 power system
11 Motor
2 flywheel
20 wheel axle
21 leather belt
3 generating set
4 load power consumption end
41 household electrical appliance
42 plant machinery
43 electric power storage device
5 first group
6 second group
7 Nth group
8 change-over switch
G1 and G2 power generation devices.
Detailed Description
The present invention relates to a power saving
To understand the structure of the present invention in more detail, please refer to fig. 1, fig. 3 and fig. 5, the present invention provides a power saving
a
the
the
Referring to fig. 2, the sufficient output power generated by the
Generally speaking, the torque required by the household electrical appliance 41 and the plant mechanical equipment 42 needs to utilize a certain amount of electric power, and the
Referring to fig. 4, the power saving electric device can use multiple sets of power systems and flywheels connected in series, so that the flywheel of the first set 5 generates a larger torque force when rotating by the principle of inertia and then drives the power system of the second set 6 and the flywheel to generate a larger torque force, and the flywheel is connected in series to the nth set 7 in sequence to generate a larger torque force, and finally can be linked to the
In summary, the present invention provides an electricity-saving
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