WO2017049895A1 - 豢养兽力发电系统 - Google Patents

豢养兽力发电系统 Download PDF

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Publication number
WO2017049895A1
WO2017049895A1 PCT/CN2016/079080 CN2016079080W WO2017049895A1 WO 2017049895 A1 WO2017049895 A1 WO 2017049895A1 CN 2016079080 W CN2016079080 W CN 2016079080W WO 2017049895 A1 WO2017049895 A1 WO 2017049895A1
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Prior art keywords
power generation
generation system
nurturing
power
radial
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PCT/CN2016/079080
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English (en)
French (fr)
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张德治
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张德治
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Publication of WO2017049895A1 publication Critical patent/WO2017049895A1/zh

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    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02KDYNAMO-ELECTRIC MACHINES
    • H02K7/00Arrangements for handling mechanical energy structurally associated with dynamo-electric machines, e.g. structural association with mechanical driving motors or auxiliary dynamo-electric machines
    • H02K7/18Structural association of electric generators with mechanical driving motors, e.g. with turbines
    • H02K7/1807Rotary generators
    • H02K7/1861Rotary generators driven by animals or vehicles
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01KANIMAL HUSBANDRY; AVICULTURE; APICULTURE; PISCICULTURE; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
    • A01K29/00Other apparatus for animal husbandry
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02PCONTROL OR REGULATION OF ELECTRIC MOTORS, ELECTRIC GENERATORS OR DYNAMO-ELECTRIC CONVERTERS; CONTROLLING TRANSFORMERS, REACTORS OR CHOKE COILS
    • H02P9/00Arrangements for controlling electric generators for the purpose of obtaining a desired output
    • H02P9/04Control effected upon non-electric prime mover and dependent upon electric output value of the generator
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02PCONTROL OR REGULATION OF ELECTRIC MOTORS, ELECTRIC GENERATORS OR DYNAMO-ELECTRIC CONVERTERS; CONTROLLING TRANSFORMERS, REACTORS OR CHOKE COILS
    • H02P9/00Arrangements for controlling electric generators for the purpose of obtaining a desired output
    • H02P9/08Control of generator circuit during starting or stopping of driving means, e.g. for initiating excitation

Definitions

  • the invention belongs to a power generation system, in particular to a tamed animal power generation system.
  • Taiwanese Patent No. 103204182 using a treadmill-like way, the facility attracts the animals to run, so as to issue Electricity, but it is easy to be seen by livestock, and it must be destroyed by manpower to continue operations.
  • the object of the present invention is to provide a parasitic animal power generation system, the main body of which is a passive device, which is arranged on the plane of the ground, and the radial angle of the passive device is provided with a radial lever to provide livestock linkage, and the habit of walking through the livestock , the passive device is operated to continuously generate current.
  • the invention is realized by the invention, which comprises: a passive animal power generation system comprising: a passive device which can be placed on the ground surface and the working shaft is vertical, the upper end is provided with a radial seat, and the radial seat is shifted by a shifting
  • the unit is linked to a power generating unit, the bottom is fixedly supported by a chassis, and the radiating seat can be arranged horizontally; an electromechanical operating power supply; a system switch; and two or more radial levers are respectively extended in an equiangular manner.
  • a plurality of sets of plane docking seats are combined at the end of the radial lever; a rotational speed sensor senses the rotational speed of the working shaft; and a plurality of sets of traction devices corresponding to the planar docking seat are respectively connected
  • the above-mentioned planar docking station and each of the traction devices are respectively provided with a spurting device, and the spurting device is operated by the above-mentioned rotational speed sensor.
  • the traction device is provided with a front sill that can be turned up, and the outer end is combined with a yoke.
  • the front end of the front sill is provided with a docking rod, which is connected to the above-mentioned spurting device, and the spurting device is coupled with the above-mentioned plane docking seat.
  • the outer end of the front cymbal is provided with a restraining device for driving a reel to expand and contract via working electric power.
  • the squeezing device is internally provided with a pulling sensor.
  • the pulling sensor is activated when one of the telescopic movements of the connecting rod is moved forward and backward.
  • the command is sent to cause the spurting device to operate a mast to generate a whip action.
  • the stable power is output via a frequency conversion device.
  • the working shaft of the passive device is provided with a braking device operated by a system switch.
  • the passive device is managed by a system switch.
  • the system switch When the system switch is directed to the system, the system is electrically connected to a rotational speed sensor, and the rotational speed sensor is electrically connected to the spur device.
  • the system switch is located remotely, avoiding the ground bypass working range when the system is running.
  • the passive device is managed by a system switch.
  • the system switch When the system switch is pointing to the system, the system switch is electrically connected to the pull sensor when the system switch is directed to the system, and the pull sensor is electrically connected to the spur device.
  • the command speed sensor is stopped, the brake device is commanded to operate, and the stop device is actuated to actuate the reins to indicate that the animal stops.
  • the planar docking station can change the plane angle to change the direction of movement of the livestock.
  • the invention provides a power generation system with a planar turnover on the plane of the earth, which generates power by plane rotation caused by the movement of the livestock.
  • the present invention combines a planarly tiltable traction device at one end of the radial lever to provide a dynamic coupling of the animal and provides a coupling assembly relief operation.
  • the invention is provided with a spurting device at the rear end of the traction device, and can perform the spurt to maintain the work stably in the case of livestock sluggishness.
  • the invention is provided with a restraining device at one end of the traction device, and the livestock is instructed to work through the reins.
  • the system of the invention plans an organic electric induction and control device to perform management assistance.
  • the invention provides a rotary power to cut electric current generation power by raising the activity habit of the livestock, and a power generation system is provided with an equiangular splitting radial lever, which generates a lever torque by the livestock movement, and drives the system to rotate to generate electricity. And through the management assistance of the spurting device and the stopping device, the operation degree of the livestock power generation operation is more stable.
  • FIG. 1 is a top plan view of an implementation of a power generation system of the present invention.
  • FIG. 2 is a side view of the system of the passive device of the present invention.
  • Figure 3 is a schematic view of the apparatus for utilizing a livestock linkage system of the present invention.
  • Figure 4 is a partial schematic view of the spurting device.
  • Figure 5 is a flow chart showing the flow of electromechanical control of the present invention.
  • FIG. 6 is a schematic view showing another embodiment of the power generation system of the present invention.
  • Power generation system 10 livestock 100 external accessories 101
  • Passive device 1 spoke seat 11 system switch 102
  • the present invention provides a power generation system that utilizes the habit of the livestock 100 to perform a rotary motion to excite electric power. 10.
  • the main body of the power generation system 10 is placed on the plane of the ground by a passive device 1.
  • the passive device 1 is provided with a spoke seat 11 which is provided with a radial lever 2 at a horizontal equiangular radial direction.
  • the end of the lever 2 is coupled to the livestock 100 via a traction device 3, and utilizes the advance walking habit of the livestock 100 to cause a planar rotational motion, thereby driving the power generating unit 12 of the passive device 1 to excite a current, wherein the passive device 1 is a working axis S is a vertical surface, and the upper end is horizontally provided with a radial seat 11, and the power generating unit 12 is connected via a transmission 13, and the linkage shaft can also be provided with a inertial wheel of a generally stable rotation speed (Fig. The operation is more stable, and the bottom of the passive device 1 is provided with a chassis 15 which is placed on the surface of the ground and fixed by the fixing device 150.
  • the passive device 1 is provided with a braking device 16 acting on the working axis S, and a transmission 13 and a rotational speed sensor 14, wherein the transmission 13 can provide a rotational speed of the radial seat 11 and a rotational speed ratio of the power generating unit 12, and the braking device 16 is determined by the rest.
  • the system can be stopped, and the brake device 16 is a friction-stopping device, which can take mechanical linkage, or motor-pulling, and the like, as long as it can produce a definite effect on the power generation unit 12.
  • the rotational speed sensor 14 is configured to sense the running speed of the passive device 1 by the plane.
  • the rotational speed sensor 14 can also be electronic, and the magnitude change of the current value is taken out from the power generating unit 12 as a calculation reference, and the requested working data is compared.
  • the setting of the rotational speed sensor 14 is a general electromechanical implementation technology, and details are not described herein again.
  • the spoke seats 11 are arranged in an equiangular radial shape, each equiangular position extending with a radial radial lever 2, the end of which provides a corresponding number of livestock 100 traction, of course, the system can only be pulled with a single animal 100, but It will cause the system to split due to eccentric rotation, and consume the total working energy of the livestock 100.
  • the power generation system 10 has an isotropically directed radial lever 2, and the towed animal 100 is symmetrical point force traction, such as at least through two centrally symmetric two-radius levers 2, the ends of which are symmetrical to perform livestock 100 traction, thus
  • the optimal number of the radial directions is a double number, and it is easier to obtain a working combination of the symmetric angular position and the equal force application.
  • the end of the radial lever 2 is connected to the livestock device 100 in a horizontal manner via a plane docking seat 31, and the livestock 100 is connected by the manager's order. Its action habits keep moving, so the work rotates as shown in Figure 1 to drive the passive device 1 to excite electricity.
  • a squeaking device 4 for stimulating the movement of the animal 100 can be provided at the rear end thereof.
  • the squeezing device 4 is provided with a pull sensor 42.
  • the change of the pull sensor 42 is based on the front When the rear end connecting rod 320 of the cymbal 32 is pulled, it is determined by the front and rear displacement.
  • the pulling sensor 42 is pulled forward by the front cymbal 32, there is no reaction, which means that the livestock 100 is working for a stable force, and the traction force is applied.
  • the plane docking seat 31 is transmitted to the radial lever 2 to push the system.
  • the docking rod 320 of the front cymbal 32 will retreat, the pull sensor 42 is touched, and the sensor 42 is pulled. A signal occurs, the mast 41 is commanded to swing, and the end of the mast 41 is tied with a whip 410.
  • the whip 410 is swung to the rear hip of the animal 100, and the livestock 100 feels Drive and work hard.
  • the above-mentioned mast 41 swings the power of the whip rope 410, and can be a motor device that acts as a general electromagnetic force, such as a magnetic repulsion mechanism, or a motor motor, etc., and is a general motor working device.
  • the pull sensor 42 provided inside the spurting device 4 can be a general electrical contact switch and supported by an interface of a spring 43 disposed inside, and the spring 43 is uncompressed.
  • the right surface of the rod 320 is pressed against the pull sensor 42 to cause a telecommunication command to command the whip. If the spring is compressed, the surface of the bar 320 is disengaged from the pull sensor 42 and represents that the livestock 100 has a serious and continuous operation.
  • the force of the front cymbal 32 is linked to the plane docking seat 31 via the docking rod 320 and the spring 43, and the plane docking seat 31 is transmitted to the radial lever 2, causing the lever drive system to generate electric power.
  • the livestock 100 To stop the operation of the system, it will instruct the livestock 100 to stop working by the auxiliary operation of the restraining device 34, which is to close the working circuit of the pull sensor 42 and simultaneously instruct the execution of the stopping device 34 to enter the work, and stop the device 34 from going to the peripheral device.
  • the auxiliary operation of the restraining device 34 There is a reel 340, and the end of the reins 340 is coupled to prevent the external component 101 of the livestock 100 from stopping.
  • the process is to issue a shutdown command to the system, and then the device 34 is stopped.
  • the power will occur, and the reins 340 will be pulled in a continuous manner or in an inching manner, and the animal 100 will be instructed to stop the rest of the animal 100.
  • the command, the spurting device 4 generates an electromechanical action via the connection of the power.
  • the livestock 100 is attached to the interlocking working system in any manner by means of a flexible belt body.
  • the livestock 100 of the present embodiment is sheathed by the traction device 3 to interlock the radial lever 2, and the yoke 33 is provided in response to the body of the livestock 100.
  • the shape of the watch is set to be a member for picking up the coupling force, and the yoke 33 is disposed at the front end of the front cymbal 32, as long as the front cymbal 32 is turned over and the reins 340 are disengaged, even if the yoke 33 can be turned up, the yoke 33, that is, from the camel part of the livestock 100, and the simple removal of the livestock 100, it is relatively easy to involve another livestock in the 100-generation work.
  • the rear end of the front cymbal 32 of the traction device 3 is laterally provided with a docking rod 320.
  • the docking rod 320 is combined in the interior of the spurting device 4 in a docking manner.
  • the portion is a fulcrum, and the front cymbal 32 is passive according to the fulcrum. Make a flat flip motion to easily replace the livestock 100.
  • the system operates the force created by the animal 100 to act on the radial lever 2, but since the radial lever 2 is elongated due to the length of the arm, the gravity effect occurs due to the elongation, causing the end to sag, especially the flat barge After the socket 31 or the spurting device 4, the end cantilever effect is apparent.
  • the support device 5 is suspended from the tripod 51, and the lower end of the tripod 51 is provided with an idler 52, and the idler 52 is Passive and positively reversible, and the running direction of the idler gear 52 is tangentially aligned with the circumferential line around which the livestock 100 is wound, so that the end of the radial lever 2 can be prevented from sagging by the assistance of the supporting device 5.
  • joint portion of the supporting device 5 can be in the hanging position of the plane docking seat 31 or the squeezing device 4.
  • the present invention can stabilize the walking inertia by the livestock 100, and the habit of being able to be driven and stopped.
  • the livestock 100 can live in life. Moderate exercise to increase its growth energy.
  • humanized management such as the observation and appeasement of emotional and physical status.
  • power generation when there is positive work efficiency, if the livestock 100 uses horses only Or ⁇ or cattle or elephants, most of the huge brute force of these animals will be combined, the system will be able to generate considerable power, in addition to providing self-sufficient use of electricity in the support, but also parallel power, power supply to the surrounding urban and rural use, etc. Or through the storage of the power storage device, the power supply timing can be controlled, and the economic effect of this borrowing power is worth promoting.
  • the system is arranged automatically, in order to achieve the auxiliary operation of the electromechanical device, an electromechanical operation power supply 103 is provided, and a system switch 102 is generally provided as the overall control for the execution of the power generation, the system switch 102 is outside the working area of the livestock 100 when the remote setting system is running.
  • the sensing system is first stationary by the rotation speed sensor 14, and the first signal is sent to the mast 41 of the spurting device 4 to drive away, so that all the livestock 100 Starting to enter the power generation operation, during the process, the working state of the livestock 100 is sensed via the rotational speed sensor 14 (please refer to FIG. 3 and FIG.
  • the spurting device 4 operates the mast 41 to synchronously start the whips for all the working animals 100. In the process of power generation, if the system is running at a low speed, the speed sensor 14 senses the same pair of all working animals. 100, by the spurting device 4 synchronous execution of the spurt acceleration whip operation, the arrival speed is satisfied.
  • the spurting device 4 is arranged in a single traction device 3 (please cooperate with the reference) Referring to Figure 3), the independent systems are each provided with a pull sensor 42. If a single animal 100 of the group is working as a sloth, an instruction is given to the associated squirting device 4, the single The sluggish livestock 100 is spurred.
  • the output end of the power generating unit 12 may be provided with a frequency conversion device 17, or a device for changing voltage (not shown) due to the voltage requirements of the power demand terminal, so that the external current is required.
  • a frequency conversion device 17 or a device for changing voltage (not shown) due to the voltage requirements of the power demand terminal, so that the external current is required.
  • the system utilizes the planar docking station 31 as a horizontal docking traction device 3 so that it can be horizontally swung to allow the livestock 100 to reversing, such as a smooth, counterclockwise rotational commutation, which is reversed.
  • the same power that allows the power generation system 10 to generate magnetic field cuts can also allow the left and right limbs of the livestock 100 to develop in a balanced manner.
  • the present invention takes advantage of the habits of the livestock 100 (please refer to the various figures shown above), which can generate electricity via the conversion of the passive device 1, and the passive device 1 is placed on the plane of the ground plane, and the electric power is generated by the planar rotary motion.
  • the passive device 1 as a whole can be set up for demolition, so that damage or rest can be reduced to the ground, and the linkage of the transmission 13 can be changed, which can change the working characteristic of the speed matching power generating unit 12, and the radial seat 11 of the passive device 1 rotates slowly.
  • the power operation shaft can be more stable in power operation, and the system switch 102 provided by the system can be set off-site, and the manager does not need to enter.
  • maintaining the physical safety of managers is a revolutionary invention.

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  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Environmental Sciences (AREA)
  • Animal Husbandry (AREA)
  • Biodiversity & Conservation Biology (AREA)
  • Connection Of Motors, Electrical Generators, Mechanical Devices, And The Like (AREA)
  • Housing For Livestock And Birds (AREA)

Abstract

一种豢养兽力发电系统包括:一可平置于地表,工作轴呈垂直的被动装置(1),其上端设有一辐向座(11);一机电操作电源(103);一系统开关(102);二支以上的辐向杠杆(2),以等角方式分别辐向延伸结合于辐向座;多组的平面驳接座(31),结合在辐向杠杆的末端;一转速传感器(14),感知工作轴的转速;多组与平面驳接座对应数量的牵引装置(3),驳接在平面驳接座上,每一牵引装置分别设有鞭策装置(4),鞭策装置根据转速传感器的指令操作。本系统借力牲畜运动产生杠杆力矩,带动发电系统旋转以产生电力,并藉由鞭策装置及制止装置的辅助管理,使牲畜发电作业操作更为稳定。

Description

豢养兽力发电系统 技术领域
本发明属于一种发电系统,特别涉及一种豢养兽力发电系统。
背景技术
有关电力或电子工作的器材,随着人口的激长而激增,人类对于电力的要求,也日益增高,尽管发电采用绿能,但也因光电元件的生产,必须工业生产,且效率尚有一大段的距离追求,时下也利用风力、潮力、水力…等绿化设施制造电力。
在由人类豢养的牲畜其动态能量,因豢养庞大,可代换大量能源应为重视,得有中国台湾专利第103204182案,利用一类似跑步机的方式,设施诱料引诱牲畜跑动,藉以发出电力,但利诱性经时日,易于被牲畜看破,必须耗用人力摧促,才能持续作业。
发明内容
本发明的目的在于提供一种豢养兽力发电系统,其主体为一被动装置,设于地皮平面上,被动装置辐向等角设有辐向杠杆,提供牲畜连动,藉由牲畜徒步前进习性,造就被动装置运转以连续发生电流。
本发明是这样实现的,一种豢养兽力发电系统,它包含有:一可平置于地表,工作轴呈垂直的被动装置,上端设有一辐向座,辐向座经一变速 器联动一发电单元,底部由一底盘固定支持,并使辐向座能呈水平状安排;一机电操作电源﹔一系统开关﹔二支以上的辐向杠杆,以等角方式分别辐向延伸结合于上述的辐向座;多组的平面驳接座,结合在辐向杠杆的末端;一转速传感器,感知工作轴的转速;多组与平面驳接座对应数量的牵引装置,分别驳接在上述的平面驳接座,以及每一牵引装置,分别设有鞭策装置,鞭策装置受到上述转速传感器所指令操作。
所述的牵引装置设有一可翻起的前辕,外端结合一轭檐。前辕后端设有驳接杆,驳接在上述鞭策装置,鞭策装置联结上述平面驳接座。前辕的外端,设有一制止装置,经由工作电力驱动一缰绳伸缩。
所述的鞭策装置内部设有一拉掣传感器,拉掣传感器为受到前述驳接杆前后移动所作动伸缩之一弹簧张开时所触动,触动后发出指令指使鞭策装置操作一甩杆发生甩鞭动作。
进一步的,在发电单元输出端,经一变频装置输出稳定电力。
所述的被动装置的工作轴设有一受系统开关所操作之煞车装置。
所述的被动装置经由一系统开关所管理,系统开关指向系统运转时,电性连接一转速传感器,转速传感器电性连接上述鞭策装置。系统开关设在远程,避开系统运转时的地面绕行工作范围。
所述的被动装置经由一系统开关所管理,系统开关指向系统运转时系统开关指向系统运转时,电性连接一拉掣传感器,拉掣传感器电性连接上述鞭策装置。
所述的系统开关命令系统停机时,指令转速传感器停机,同时指令煞车装置动作,及指令一制止装置作动缰绳指示牲畜停止动作。
所述的平面驳接座可变换平面角度,以变换牲畜运动方向。
本发明提供了一种在地皮平面上,设有平面周转的发电系统,借力牲畜运动产生平面回转造就电力。
本发明在辐向杠杆一端组合一可平面翻起的牵引装置,以提供牲畜动力联结,并提供联结组卸操作利便。
本发明在牵引装置后端设有一鞭策装置,在牲畜怠惰的情况下可执行鞭策维持工作稳定。
本发明在牵引装置一端设有一制止装置,经缰绳而指令牲畜工作。
本发明系统规划有机电感应及控制装置,执行管理辅助。
本发明提供藉由豢养牲畜的活动习性,制造旋转动力以切割电流发生电力,利用一发电系统,设有等角分设的辐向杠杆,借力牲畜运动产生杠杆力矩,带动系统旋转,以造就电力,并藉由鞭策装置及制止装置的管理辅助,使牲畜发电作业操作度更为稳定。
附图说明
图1为本发明发电系统的实施俯视图。
图2为本发明被动装置的系统侧视图。
图3为本发明利用牲畜连动系统之装置示意图。
图4为鞭策装置部份结构示意图。
图5为本发明机电控制之流程配置图。
图6为本发明发电系统的另一方向实施示意图。
符号说明:
发电系统10       牲畜100          外配件101
被动装置1        辐向座11         系统开关102
发电单元12       变速器13         转速传感器14
底盘15           固定装置150      煞车装置16
辐向杠杆2        牵引装置3        平面驳接座31
前辕32           制止装置34       轭檐33
缰绳340          鞭策装置4        甩杆41
拉掣传感器42     鞭绳410          驳接杆320
工作轴心S        弹簧43           支撑装置5
脚架51           惰轮52           变频装置17
机电操作电源103
具体实施方式
有关本发明的系统动作说明,请参阅图示说明如下,首先请先参阅图1、图2所示,本发明提供一种利用牲畜100的习性乖顺进行旋转运动,以激发出电力的发电系统10。
发电系统10的主体为利用一被动装置1架置于地皮的平面上,所设的被动装置1设有辐向座11,辐向座11水平等角辐向分设有辐向杠杆2,辐向杠杆2的末端,经由一牵引装置3联结牲畜100,利用牲畜100的前进徒步习性,造成平面旋转运动,进而带动被动装置1的发电单元12激发出电流,其中该被动装置1为的工作轴心S为垂直地表,上端水平设有辐向座11,经一变速器13而连动发电单元12,联动轴也可加置一般稳定转动速率之惯性轮(图 上未示),使系统运转更为稳定,被动装置1底部设有一底盘15,平面跨置在地皮表面,藉由固定装置150固定。
被动装置1,设有煞车装置16作用于工作轴心S,以及变速器13和转速传感器14,其中变速器13可提供辐向座11的旋转速度与发电单元12产生转速比,煞车装置16在于休止决定时可对系统做止定,煞车装置16为摩擦煞止的装置,它可采机械连动,或电机掣动等一般习用机构,只要对于发电单元12能产生止定的作用即可。
所设的转速传感器14,会感应被动装置1被平面带动的运转速度,该转速传感器14也可是电子式,从发电单元12取出电流值的大小变化作为计算参考,进而比对出所求的工作数据,转速传感器14的设置为一般的机电实施技术,于此请容不再赘述。
辐向座11为等角辐射状设置,每一等角的位置延伸有辐状的辐向杠杆2,其末端提供对应数量的牲畜100牵引,当然系统只利用单只牲畜100也可拉动,但会使系统因偏心转动发生分力,而消耗牲畜100的总额工作能量。
发电系统10系统有等角辐向分设的辐向杠杆2,所牵引的牲畜100为对称点施力牵引,如至少通过中心对称的两支辐向杠杆2,其末端对称执行牲畜100牵引,因此该被动装置1所设的辐向座11,最佳的辐向分设数量为双数,较容易取得对称角位均分施力的工作组合。
请再参阅图3及图4所示,辐向杠杆2的末端,经由一平面驳接座31以水平方式驳接一牵引装置3而联结牲畜100,牲畜100经由管理者的号令,它会依其行动习性而不停走动,于是工作出如第1图的旋转以驱动被动装置1激发出电力。
牲畜100具有惰性,则在其后端可设有一模拟甩鞭驱杆方式催促牲畜100动作的鞭策装置4,该鞭策装置4设有一拉掣传感器42,拉掣传感器42的变动依据为藉由前辕32的后端驳接杆320被拉动后之前后位移所决定,当拉掣传感器42在前辕32往前拉动的时候即无反应,代表牲畜100为稳定施力工作,该牵引施力经平面驳接座31传达给辐向杠杆2,以对系统推转,当牲畜100怠惰使步调缓慢后,前辕32的驳接杆320会往后退,触动拉掣传感器42,拉掣传感器42即发生一讯号,指令甩杆41挥动操作,甩杆41的末端绑结有一鞭绳410,当甩杆41向下挥动时,则鞭绳410即甩向牲畜100的后臀,牲畜100则感觉被驱动而奋发往前。
上述的甩杆41挥动鞭绳410的动力,可为一般电磁力作用的电机装置,如磁力斥动机构,或电机马达带动等,为一般的电机工作装置。
鞭策装置4内部所设的拉掣传感器42,可为一般的电性触接动作开关,并藉由一设置于内部的弹簧43的接口支持,在弹簧43未被压缩的情况之下,驳接杆320右表面即压触拉掣传感器42,使发生电讯命令指挥甩鞭,若弹簧有被压缩的情况下驳接杆320表面即脱离拉掣传感器42,并代表牲畜100有认真持续工作。
前辕32的力度经驳接杆320及弹簧43连动到平面驳接座31,平面驳接座31传达给辐向杠杆2,而造成杠杆作用驱动系统发生电力。
要停止系统运转时,则藉由一制止装置34的辅助作业,它会指令牲畜100停工,其作法为关闭拉掣传感器42的工作回路,同时指令执行制止装置34进入工作,制止装置34往外设有一缰绳340,缰绳340末端联结可制止牲畜100停止动作的外配件101,过程为系统发出停机的指令,则制止装置34 会发生动力,以连续拉持,或寸动方式拉动缰绳340,经外配件101带动而指示牲畜100停止休息。
上述利用鞭绳410驱赶和利用缰绳340提示牲畜100的工作状态,为模拟牛或驴或马的工作习性,应对设计出自动就近指示的装置,其中制止装置34可经由电路的连接,而受到工作指令,鞭策装置4经由电力的连接,而产生机电动作。
牲畜100为可利用挠性带体以任何方式绑接连动工作系统,本实施牲畜100为受牵引装置3所穿套,以联动辐向杠杆2,所设的轭檐33是因应牲畜100的身躯表形状,而设曲形可供挑担联结动力的构件,轭檐33设于前辕32的前端,只要翻转前辕32同时脱开缰绳340,即使轭檐33可往上翻上,轭檐33即脱离牲畜100的驼部,而简便脱卸牲畜100,相对可简便牵入体力满足的另一牲畜100代位工作。
牵引装置3所设的前辕32后端横向设有驳接杆320,驳接杆320以驳接方式组合在鞭策装置4内部,该部位为一支点,前辕32依据该支点被动后,可作平面翻仰动作,以简易更替牲畜100。
系统运转牲畜100造就的力量,为作用向辐向杠杆2,但由于辐向杠杆2因力臂长度关系辐向伸长,因伸长而发生重力效应,使末端下垂,尤其是加置平面驳接座31或鞭策装置4之后,末端悬臂效应即明显。
为了对抗该悬臂重力问题,得可在辐向杠杆2的末端位置,辅助设有一支撑装置5,该支撑装置5垂下设有脚架51,脚架51下端装置有惰轮52,惰轮52为被动且可正反转,及惰轮52的运转方向与牲畜100所绕行的圆周线为切线对正,如此藉由支撑装置5的辅助,可避免辐向杠杆2末端下垂。
另外支撑装置5的结合部位,尚可在平面驳接座31或鞭策装置4的垂下位置。
本发明藉由牲畜100可被催促而稳定徒步前进的惯性,和可被驱赶及制止动作的习性,在豢养成长过程中,除了可利用其工作动力发生电力之外,更可让牲畜100在生活中得到适度的运动,使其生长能量增加,实施时,辅以人性化管理,如情绪及体能状态的观察及安抚,对于借力发电,当有正面作业的效益,况且牲畜100若采用马只或驴或牛或大象,该等动物的庞大蛮力多数集结合作下,系统将可发生可观的电力,除提供豢养场所的电力自足使用,更可并联市电,供电给周边城乡使用等,或经由蓄电装置的储存,可控制供电时机,此借力经济效应值得推广。
请再参阅图5所示,系统中在于自动执行的设置,为达到机电设备辅助操作,而设有一机电操作电源103,总体设有一系统开关102,以作为发电执行与否的总控制,系统开关102为远程设离系统运转时,牲畜100绕行的工作面积范围外,启动后,首先经转速传感器14感应系统为静止,首发一讯号给鞭策装置4的甩杆41操作驱赶,让全数牲畜100起步进入发电操作,过程中,是经由转速传感器14感应牲畜100的工作状态(请配合图3及图4所示),转速传感器14直接进行一催促起动的指令,同步传达给派用中的每一鞭策装置4操作甩杆41,以对所有预备工作的牲畜100同步发生甩鞭催促起步动作,在发电的过程中,若系统运转速度不足,转速传感器14感知后,相同对所有工作中的牲畜100,藉鞭策装置4同步执行鞭策加速的甩鞭操作,到达速度满足。
另一方面,鞭策装置4是分别安排在单一的牵引装置3之中(请配合参 阅图3),独立系统各设有拉掣传感器42,在群体的牲畜100之中,若其中之单一牲畜100工作为怠惰时,即发生指令指示给该所属的鞭策装置4,对该单只怠惰的牲畜100发生鞭策动作。
系统开关102要执行停机,则发生一指令,同步指示煞车装置16和制止装置34发出停机作业。
另外在运转系统中,发电单元12的输出端,可附设有一变频装置17,或因电力需求端要求电压不等,而设有变压的装置(图上未示),使外送电流得到需求工作条件。
请再参阅图6所示,系统利用平面驳接座31为水平驳接牵引装置3,因此它可水平摆向,以让牲畜100换向如顺、逆时钟的旋转换向,该反向旋转相同可让发电系统10发生磁场切割的电力,转换方向也可让牲畜100的左右肢体可得均衡的发展。
本发明利用了牲畜100的习性(请参阅前示各图),它可经由被动装置1的转换而发生电力,利用被动装置1为平面置放在地皮平面上,藉由平面的旋转运动发生电力,被动装置1整体可为拆迁的设置,所以对地皮可减少破坏或休养,以及可经由变速器13的联动,它可改变转速匹配发电单元12工作特性需求,被动装置1的辐向座11缓慢旋转,可增加安全的筹码,或经由惯性轮(图上未示)的轴转辅助,可让发电工作轴动力作业更稳定,系统所设的系统开关102,可场外设置,管理者无须就入周转工作范围内,维护管理者肢体安全,实为一革新的发明。

Claims (12)

  1. 一种豢养兽力发电系统,其特征在于它包含有:一可平置于地表,工作轴呈垂直的被动装置,上端设有一辐向座,辐向座经一变速器联动一发电单元,底部由一底盘固定支持,并使辐向座能呈水平状安排;一机电操作电源﹔一系统开关﹔二支以上的辐向杠杆,以等角方式分别辐向延伸结合于上述的辐向座;多组的平面驳接座,结合在辐向杠杆的末端;一转速传感器,感知工作轴的转速;多组与平面驳接座对应数量的牵引装置,分别驳接在上述的平面驳接座,以及每一牵引装置,分别设有鞭策装置,鞭策装置受到上述转速传感器所指令操作。
  2. 根据权利要求1所述的豢养兽力发电系统,其特征为牵引装置设有一可翻起的前辕,外端结合一轭檐。
  3. 根据权利要求2所述的豢养兽力发电系统,其特征为前辕后端设有驳接杆,驳接在上述鞭策装置,鞭策装置联结上述平面驳接座。
  4. 根据权利要求2所述之豢养兽力发电系统,其特征为前辕的外端,设有一制止装置,经由工作电力驱动一缰绳伸缩。
  5. 根据权利要求1所述的豢养兽力发电系统,其特征为鞭策装置内部设有一拉掣传感器,拉掣传感器为受到前述驳接杆前后移动所作动伸缩之一弹簧张开时所触动,触动后发出指令指使鞭策装置操作一甩杆发生甩鞭动作。
  6. 根据权利要求1所述的豢养兽力发电系统,其特征为在发电单元输出端,经一变频装置输出稳定电力。
  7. 根据权利要求1所述的豢养兽力发电系统,其特征为被动装置的工 作轴设有一受系统开关所操作之煞车装置。
  8. 根据权利要求1所述的豢养兽力发电系统,其特征为被动装置经由一系统开关所管理,系统开关指向系统运转时,电性连接一转速传感器,转速传感器电性连接上述鞭策装置。
  9. 根据权利要求8所述的豢养兽力发电系统,其特征为系统开关设在远程,避开系统运转时的地面绕行工作范围。
  10. 根据权利要求1所述的豢养兽力发电系统,其特征为被动装置经由一系统开关所管理,系统开关指向系统运转时系统开关指向系统运转时,电性连接一拉掣传感器,拉掣传感器电性连接上述鞭策装置。
  11. 根据权利要求1所述的豢养兽力发电系统,其特征为系统开关命令系统停机时,指令转速传感器停机,同时指令煞车装置动作,及指令一制止装置作动缰绳指示牲畜停止动作。
  12. 根据权利要求1所述的豢养兽力发电系统,其特征为平面驳接座可变换平面角度,以变换牲畜运动方向。
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