CN104763603A - Cross energy collecting and converting device and application thereof - Google Patents

Cross energy collecting and converting device and application thereof Download PDF

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Publication number
CN104763603A
CN104763603A CN201510101894.8A CN201510101894A CN104763603A CN 104763603 A CN104763603 A CN 104763603A CN 201510101894 A CN201510101894 A CN 201510101894A CN 104763603 A CN104763603 A CN 104763603A
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cylinder
cover
urceolus
hydraulic
water conservancy
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CN104763603B (en
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于亮平
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F03MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
    • F03GSPRING, WEIGHT, INERTIA OR LIKE MOTORS; MECHANICAL-POWER PRODUCING DEVICES OR MECHANISMS, NOT OTHERWISE PROVIDED FOR OR USING ENERGY SOURCES NOT OTHERWISE PROVIDED FOR
    • F03G7/00Mechanical-power-producing mechanisms, not otherwise provided for or using energy sources not otherwise provided for

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Current-Collector Devices For Electrically Propelled Vehicles (AREA)
  • Wind Motors (AREA)

Abstract

The invention relates to a cross energy collecting and converting device and application thereof. The device comprises a hydraulic system, a cylinder group set, a high pressure pack and a synchronous pneumatic machine. The device is characterized in that an oil tube for an oil hole of each hydraulic cylinder of the hydraulic system is connected with an oil cylinder of a hydraulic pusher of at least one cylinder group set; an exhaust opening of the cylinder group set is connected with an air inlet of the high pressure pack through a high pressure air tube; an air outlet of the high pressure pack is connected with the air inlet in an outer barrel of the synchronous pneumatic machine through the high pressure air tube. The application is that the device is buried in a highway surrounded a crossroad of the highway to drive a generator to generate. The device has the advantages that the energy released by an automobile in running can be collected and converted into mechanical energy which can be reused and then converted into electricity energy, so as to achieve recycling of the energy; the whole operation is free of consumption of extra energy source, any fuel and material using as medium; no emission is caused, so that the pollution is avoided; the energy is clean energy.

Description

A kind of cross collection of energy conversion equipment and uses thereof
Technical field
The present invention relates to a kind of cross collection of energy conversion equipment and uses thereof, belong to collection of energy conversion equipment technical field.
Background technique
The energy is that human survival and social development are requisite, and the existing energy is generally divided into renewable energy sources and non-renewable energy resources.Usually, the energy utilizing the mineral fuel such as coal to produce is non-renewable energy resources, and water energy, solar energy, wind energy can be renewable energy sources.The major way of using energy source is electric energy.Electric energy mainly contains thermoelectricity, water power, wind-powered electricity generation, solar electrical energy generation and nuclear power.
Current energy field comprises developed country, certainly major part or conventional art---thermoelectricity.
Only have a few countries can utilize water energy, solar energy, wind energy, nuclear energy technology is few pitiful especially, water resources developed regions are all right, this is also power-saving technology the most clean on the earth, but because of continuing of production capacity, also the destruction of environment can be caused, as raised river (river) bed, to such an extent as to flooding not seen once in a hundred years also can be caused rainy season in normal upstream, what more have a headache is later desilting work, so this technology to some countries and regions no matter from technology, economy, or natural condition are all unable to reach.
Wind-powered electricity generation: wind energy is also that the mankind overcome energy consumption, pollution administration, the economy expected and clean technology, but blemish in an otherwise perfect thing is, it must be plateau physical features, and take huge land area, and sometimes also will by the restriction of natural resources---land resources in great shortage and right up and down season, so be feasible in some areas.
Everybody knows, the considerable benefit that heat energy is created, but this technology is the most formidable: coal is along with a large amount of exploitations, thermoelectricity: fewer and feweri, highly energy-consuming high pollution besides, thus often causes the huge wasting of resources, is thus obliged to go to drop into huge fund again and does technological transformation.So in following power industry, thermoelectricity is first by the technology of washing in a pan too.
Solar energy: with regard to solar energy, it and wind energy are about the same, equally also perplexed by some factor, and as long wet weather, floor space huge, and physical features must be selected higher and smooth, sunlight also will the area of abundance.So because of the limitation of conditions, any area can't be spread to.
Nuclear energy: speak of nuclear energy, if there is no war, natural disaster, and protection do good, it is the most popular clean energy resource in the world today, but fact proved, this energy does not make us optimistic, the fearful nuclear pollution threat to environment and the mankind, be one can not problem easily, once there is above-mentioned situation, disaster is endless.About the misery of nuclear leakage and fearful, Japanese government and nationally have deep feeling, they have a headache most, involve several generations and how to terminate this later and cannot terminate and disaster then in advance.
Build a nuclear power station and must have the financial support of rich technical force and abundance and huge maintenance overhaul troop, also have factory site problem, with continual protection and continuous corrective measure, whole chain is all in loaded down with trivial details with danger.
The mankind, in daily productive life, also also exist a large amount of energy wastes while the consumption energy.Such as: mineral energy, in the process travelled, is converted to mechanical energy by Motor Vehicle, by mechanical energy acting overcome friction and own wt, and the powered vehicle forward advanced is produced.Wasting huge energy in the process, if can be effectively used by the energy regenerating of waste, will huge contribution be produced to alleviating energy scarcity.
Summary of the invention
The object of this invention is to provide a kind of energy that can effectively waste in gathering machine motor-car running, and be converted to cross collection of energy conversion equipment that mechanical energy utilized again by the mankind and uses thereof.
The object of the invention is to be realized by following technological scheme:
Cross collection of energy conversion equipment of the present invention comprises hydraulic system, cylinder group, high pressure packet, synchronous pneumatic machine, it is characterized in that: hydraulic system comprises more than one tubular external fixing rack, cylindrical shape hydraulic pressure fixed cover is provided with in each external fixing rack, cylindrical shape hydraulic propping cover is provided with in hydraulic pressure fixed cover, equally spacedly on hydraulic pressure fixed cover inwall have chute, equally spacedly on the outer wall of hydraulic propping cover be provided with the slide plate corresponding with fixed cover chute, the slide plate of hydraulic propping cover coordinates with fixed cover chute, carry-over bar on one is fixed with at a upper lateral part of each slide plate, the inwall of hydraulic pressure fixed cover is provided with the tooth bar that engages with upper carry-over bar to moving gear, oil hydraulic cylinder is provided with in hydraulic propping cover, return spring is provided with between oil hydraulic cylinder and hydraulic propping cover, more than one external fixing rack is arranged side by side, each external fixing rack suitable for reading on be provided with top pressure playback cell body, be provided with one in each top pressure playback cell body and put forth effort top, put forth effort top between top for often adjacent two and be provided with an interactive pressing plate, each bottom of putting forth effort to push up is provided with a pressure longitudinal rod corresponding with oil hydraulic cylinder, pressure longitudinal rod is connected with the tooth bar connecting rod corresponding to moving gear with tooth bar in circumferentially horizontal distribution, the end of tooth bar connecting rod is provided with longitudinal rack push rod, the bottom of longitudinal rack push rod is connected with the lower carry-over bar engaged moving gear with tooth bar, the middle part of tooth bar connecting rod is provided with longitudinal spring depression bar, the lower end of longitudinal spring depression bar withstands on return spring, the bottom of pressure longitudinal rod connects with the piston in corresponding oil hydraulic cylinder, the oilhole of oil hydraulic cylinder is driveed in bottom, cylinder group comprises cylindrical housing, main shaft, before shell two ends are provided with, rear end cover, main shaft is through front, the center of rear end cover, with front, rear end cover is fixed by bearing, main shaft is fixed with connecting shaft arm, a hydraulic pusher is connected with at the inwall upper hinge of shell, hydraulic rod end and the connecting shaft arm of hydraulic pusher are hinged, equally spacedly vertically on main shaft be fixed with cylinder push-rod frame, cylinder push-rod frame is formed by the same cylinder push-rod vertical with main shaft that be that be circumferentially spacedly distributed, in the enclosure wall is fixed with at equal intervals the cylinder bracket identical with single cylinder push-rod frame upper cylinder push rod quantity, cylinder bracket has long strip base plate, the length direction of base plate is axial arranged along shell, equally spacedly on base plate be provided with vertical with base plate cylinder location regulator plate, cylinder location regulator plate has microscler adjustment hole, cylinder adjustable lever is installed with in adjustment hole, the cylinder corresponding with each cylinder push-rod is connected with at cylinder adjustable lever upper hinge, the cylinder column of each cylinder is hinged with corresponding cylinder push-rod, and the cylinder column end of each cylinder and outer casing inner wall are equipped with returning pull-spring, air exchange header is provided with in shell, air exchange header is provided with air inlet nozzle and exhaust nozzle, exhaust nozzle stretches out shell, and fix with shell, air inlet nozzle is connected with suction tude, suction tude stretches out shell, the end of suction tude is provided with air-strainer, suction tude is provided with one-way valve, the gas exchanges Guan Junyu air exchange header UNICOM of each cylinder, synchronous pneumatic machine comprises urceolus, inner core, water conservancy diversion rotating shaft, urceolus external wall cross-section is circular, cross section of inboard wall is oval, before urceolus, rear port is respectively equipped with front cover and rear end cover, before water conservancy diversion rotating shaft and urceolus, rear end cover is connected by bearing, the front port of the front cover of urceolus is provided with top cover, the front end of water conservancy diversion rotating shaft is closed in the front cover of urceolus, the rear end cover of urceolus is stretched out in rear end, the intracavity posterior end of inner core is circular arc, rear port and the water conservancy diversion rotating shaft of inner core are fixed, the front port of inner core is provided with inner core capping, at the front port of water conservancy diversion rotating shaft and urceolus, flow guide sleeve is provided with between front cover, flow guide sleeve and outer cylinder front end lid are fixed, be connected with water conservancy diversion axis of rotation, water conservancy diversion blind hole is had vertically at the front-end face center of water conservancy diversion rotating shaft, water conservancy diversion blind hole extends to close to inner core rear port position, the sidewall of water conservancy diversion rotating shaft has the spindle guide ostium with water conservancy diversion blind hole tail end UNICOM, water conservancy diversion rotating shaft is provided with more than one group internal layer flabellum group spaced apart, root of blade and the water conservancy diversion rotating shaft of internal layer flabellum group are fixed, end and inner core inwall are fixed, air guiding blind hole is had vertically at the front-end face of flow guide sleeve, the sidewall of flow guide sleeve has the flow guide sleeve exhaust port with air guiding blind hole tail end UNICOM, outer cylinder front end between the spring bearing and flow guide sleeve of water conservancy diversion rotating shaft front end covers and is provided with inner core suction port, the top cover of urceolus front cover is provided with inner cartridge vent, on flow guide sleeve, the front portion of flow guide sleeve exhaust port is provided with and regulates reflux cover, circumferentially equally spacedly on the outer wall of inner core be provided with outer stator blade, axial arranged all along inner core of each outer stator blade, the exterior edge face of outer stator blade has moving vane mounting groove along the length direction of outer stator blade, outer moving vane is provided with in moving vane mounting groove, outer moving vane and moving vane mounting groove are slidably connected, can inside and outsidely in moving vane mounting groove slide, and fit with the inwall of urceolus all the time in the exterior edge face of outer moving vane when inner core rotates, urceolus has urceolus suction port and urceolus relief opening, urceolus suction port and urceolus relief opening are greater than the spacing between two outer stator blades in lateral separation circumferentially, urceolus relief opening tracheae is connected with inner core suction port, the oilhole of each oil hydraulic cylinder of hydraulic system is connected with the oil cylinder of oil pipe with the hydraulic pusher of at least one cylinder group, the exhaust nozzle of cylinder group is connected with the suction port of high pressure packet by high-pressure air pipe, and the air outlet of high pressure packet is connected with the urceolus suction port of synchronous pneumatic machine by high-pressure air pipe.
Purposes of the present invention is: in the highway around the crossroad being embedded in highway, and drive electrical generators generates electricity.
Advantage of the present invention is: the energy that can discharge in Collection utilization car running process, converts the mechanical energy that can recycle to, and then convert electric energy to, realize the recycling of the energy; Whole service process does not consume additional energy source, does not need any fuel and material on the earth to do medium, zero-emission, pollution-free, belongs to high-quality and efficient clean energy resource; Whole machinery is imbedded in underground, by as the destruction of the natural disasteies such as floods, earthquake, hurricane, hail, does not take up an area, keeps in repair also very convenient; Can 24 hours continuous automatic operations, cost is extremely low.
Accompanying drawing explanation
Fig. 1 is structural representation of the present invention;
Fig. 2 is the structural representation of hydraulic system;
Fig. 3 is A-A sectional view of Fig. 2;
Fig. 4 is B-B sectional view of Fig. 2;
Fig. 5 is the structural representation putting forth effort top and interactive pressing plate;
Fig. 6 is the longitudinal sectional view of cylinder group;
Fig. 7 is the longitudinal sectional view of synchronous pneumatic machine.
Embodiment
With reference to accompanying drawing, the present invention includes hydraulic system, cylinder group, high pressure packet, synchronous pneumatic machine, hydraulic system comprises more than one tubular external fixing rack 5, cylindrical shape hydraulic pressure fixed cover 8 is provided with in each external fixing rack, cylindrical shape hydraulic propping cover 7 is provided with in hydraulic pressure fixed cover, equally spacedly on hydraulic pressure fixed cover inwall have chute 23, equally spacedly on the outer wall of hydraulic propping cover be provided with the slide plate 9 corresponding with fixed cover chute, the slide plate of hydraulic propping cover coordinates with fixed cover chute, carry-over bar 6 on one is fixed with at a upper lateral part of each slide plate, the inwall of hydraulic pressure fixed cover is provided with the tooth bar that engages with upper carry-over bar to moving gear 15, tooth bar is fixed the sidewall of moving gear by gear fixing rod 16 and locking nut and hydraulic pressure fixed cover, oil hydraulic cylinder 14 is provided with in hydraulic propping cover, the bottom of oil hydraulic cylinder is fixed in the oil cylinder fixing base 19 being located at hydraulic propping cover bottom symmetry center, return spring 10 is provided with between oil hydraulic cylinder and hydraulic propping cover, more than one external fixing rack is arranged side by side, each external fixing rack suitable for reading on be provided with top pressure playback cell body 22, be provided with one in each top pressure playback cell body and put forth effort top 1, put forth effort top between top for often adjacent two and be provided with an interactive pressing plate 24, equally spacedly on the medial axis of interactive pressing plate be provided with interactive pressing plate vertical shaft 25, interactive pressing plate vertical shaft is across the outside of external fixing rack, its lower end spring seat supports, keep stable to make interactive pressing plate, each bottom of putting forth effort to push up is provided with a pressure longitudinal rod 2 corresponding with oil hydraulic cylinder, pressure longitudinal rod is connected with four tooth bar connecting rods 3 corresponding to moving gear with tooth bar in circumferentially horizontal distribution, the end of every toothed rack connecting rod is provided with longitudinal rack push rod 17, the bottom of longitudinal rack push rod is connected with the lower carry-over bar 12 engaged moving gear with tooth bar, the middle part of every toothed rack connecting rod is provided with longitudinal spring depression bar 4, the lower end of longitudinal spring depression bar is provided with spring bearer plate 13, the lower end of longitudinal spring depression bar withstands on return spring by spring bearer plate, the bottom of pressure longitudinal rod connects with the piston 11 in corresponding oil hydraulic cylinder, the oilhole of oil hydraulic cylinder is driveed in bottom, oilhole is connected with oil outlet tube 20, the position corresponding with oil outlet tube in the bottom of hydraulic pressure fixed cover longitudinally has oil outlet tube sliding-groove 18, oil outlet tube is stuck in oil outlet tube sliding-groove, cylinder group comprises cylindrical housing 30, main shaft 36, shell two ends are provided with front cover 34, rear end cover 27, main shaft is through front, the center of rear end cover, with front, rear end cover is fixed by bearing 26, main shaft is fixed with connecting shaft arm 37, the inwall of shell there is a hydraulic pusher 38 by hinge base 39 chain connection, hydraulic pusher is a hydraulic jack, hydraulic rod end and the connecting shaft arm of hydraulic pusher are hinged, equally spacedly vertically on main shaft be fixed with five cylinder push-rod framves, cylinder push-rod frame is made up of the cylinder push-rod 35 vertical with main shaft same four of being circumferentially spacedly distributed, in the enclosure wall is fixed with at equal intervals the cylinder bracket 32 identical with single cylinder push-rod frame upper cylinder push rod quantity, cylinder bracket has long strip base plate, the length direction of base plate is axial arranged along shell, base plate is fixed by adjusting screw rod 31 and supporting nut and shell, equally spacedly on base plate be provided with vertical with base plate cylinder location regulator plate 29, cylinder location regulator plate has microscler adjustment hole, cylinder adjustable lever 28 is installed with in adjustment hole, the cylinder 33 corresponding with each cylinder push-rod is connected with at cylinder adjustable lever upper hinge, the cylinder column of each cylinder is hinged with corresponding cylinder push-rod, and the cylinder column end of each cylinder and outer casing inner wall are equipped with returning pull-spring 43, air exchange header 45 is provided with in shell, air exchange header is provided with air inlet nozzle and exhaust nozzle 42, exhaust nozzle stretches out shell, and fix with shell, air inlet nozzle is connected with suction tude, suction tude stretches out shell, the end of suction tude is provided with air-strainer 44, suction tude is provided with one-way valve 21, the gas exchanges Guan Junyu air exchange header UNICOM of each cylinder, cylinder group base 40 is provided with in the bottom of shell, high pressure packet comprises high voltage package casing 50, high voltage package casing is provided with barometer 49 and safety valve 51, high pressure packet base 53 is provided with in high voltage package casing bottom, elastic bag 47 is provided with in high voltage package casing, the high pressure packet suction tude 52 with elastic bag UNICOM is provided with in one end of high voltage package casing, the other end is provided with the high pressure packet steam outlet pipe 48 with elastic bag UNICOM, is provided with anti feedback valve 54 in high pressure packet suction tude, is provided with saturated bleed valve 55 in high pressure packet steam outlet pipe, synchronous pneumatic machine comprises urceolus 67, inner core 66, water conservancy diversion rotating shaft 57, urceolus external wall cross-section is circular, cross section of inboard wall is eccentric circular, before urceolus, rear port is respectively equipped with front cover 61 and rear end cover 88, front cover and rear end cover are respectively by screw 62, pad 63, before seal ring 64 and urceolus, rear port is fixed, before water conservancy diversion rotating shaft and urceolus, rear end cover is connected by bearing 58, the front port of the front cover of urceolus is provided with top cover 69, the front end of water conservancy diversion rotating shaft is closed in the front cover of urceolus, the rear end cover of urceolus is stretched out in rear end, the intracavity posterior end of inner core is circular arc, rear port and the water conservancy diversion rotating shaft of inner core are fixed, the front port of inner core is provided with inner core capping 60, at the front port of water conservancy diversion rotating shaft and urceolus, water conservancy diversion copper sheathing 59 is provided with between front cover, water conservancy diversion copper sheathing and outer cylinder front end lid are fixed, be connected with water conservancy diversion axis of rotation, water conservancy diversion blind hole 83 is had vertically at the front-end face center of water conservancy diversion rotating shaft, the port of water conservancy diversion blind hole is provided with spindle guide stem bar 82, circlip 68 is provided with between spindle guide stem bar and water conservancy diversion rotating shaft, water conservancy diversion blind hole extends to close to inner core rear port position, the sidewall of water conservancy diversion rotating shaft has the spindle guide ostium 84 with water conservancy diversion blind hole tail end UNICOM, water conservancy diversion rotating shaft is provided with more than one group internal layer flabellum group spaced apart, blade 70 root and the water conservancy diversion rotating shaft of internal layer flabellum group are fixed, end and inner core inwall are fixed, air guiding blind hole 80 is had vertically at the front-end face of water conservancy diversion copper sheathing, the sidewall of water conservancy diversion copper sheathing has the flow guide sleeve exhaust port 81 with air guiding blind hole tail end UNICOM, the sidewall of water conservancy diversion copper sheathing has oilhole 79, outer cylinder front end between the spring bearing and water conservancy diversion copper sheathing of water conservancy diversion rotating shaft front end covers and is provided with inner core suction port 76, the top cover of urceolus front cover is provided with inner cartridge vent 77, on water conservancy diversion copper sheathing, the front portion of flow guide sleeve exhaust port is provided with and regulates reflux cover 65, circumferentially equally spacedly on the outer wall of inner core be provided with outer stator blade 71, axial arranged all along inner core of each outer stator blade, the exterior edge face of outer stator blade has moving vane mounting groove along the length direction of outer stator blade, moving vane mounting groove sidewall has the positioning hole 72 of axis and moving vane mounting groove sidewalls orthogonal, slip positioning rod 73 is installed with in positioning hole, outer moving vane 89 is arranged on the slip positioning rod in moving vane mounting groove, be slidably connected with moving vane mounting groove, outer moving vane can inside and outsidely in moving vane mounting groove be slided, and fit with the inwall of urceolus all the time in the exterior edge face of outer moving vane when inner core rotates, urceolus has urceolus suction port 75 and urceolus relief opening 74, urceolus suction port and urceolus relief opening are greater than the spacing between two outer stator blades in lateral separation circumferentially, urceolus relief opening tracheae is connected with inner core suction port, cavity between urceolus and inner core forms a power house 85, cavity in inner core forms secondary power room 86, synchronous pneumatic machine base 78 is provided with in the bottom of urceolus, the oil outlet tube that the oilhole of each oil hydraulic cylinder of hydraulic system connects stretches out the sidewall of external fixing rack, and be connected with the filler opening 41 of the oil cylinder of the hydraulic pusher of ten cylinder groups with high-pressure oil pipe 46, the exhaust nozzle of cylinder group is connected with the suction port of high pressure packet suction tude by high-pressure air pipe 56, pressurized gas divide two-way to be connected with two urceolus suction ports of synchronous pneumatic machine, to make the pressurized gas entering synchronous pneumatic machine more stable by high-pressure air pipe by a gasotron 87 by the air outlet of high pressure packet steam outlet pipe.
During application, be embedded in by device of the present invention in highway around road cross, all interactive pressing plates are all exposed on road surface and repeatedly roll for the vehicle travelled.
Working procedure of the present invention is as follows:
Wheel back and forth the rolling interactive pressing plate of the present invention of vehicle, makes the oil hydraulic cylinder of hydraulic system do work, and promotes cylinder group and continues to produce pressurized gas, through high pressure packet supercharging, promotes the work of synchronous pneumatic machine, and then drive electrical generators generating.
Working principle of the present invention is as follows:
Hydraulic system: in time having wheel to roll to interactive pressing plate, put forth effort top and all enter the playback groove 22 that bears down on one, now end face and whole body top maintain an equal level, be depressed along with putting forth effort top, piston 11, tooth bar connecting rod 3, spring connecting rod 4, spring bearer plate 13 is simultaneously depressed, in piston and return spring 10 run to while stop, upper carry-over bar 6 also runs to middle stop, form a reversing motion and lower carry-over bar 12 do a reverse vertical motion upwards because upper carry-over bar promotes tooth bar to moving gear 15, drive hydraulic propping cover 7, oil hydraulic cylinder 14 and oil cylinder fixing base 19 and hydraulic pressure slide plate 9 move upward.When piston drops to 1/2nd position in cylinder body, under the promotion of upper carry-over bar, the gearing of lower carry-over bar in the middle of two tooth bars, drive hydraulic propping cover, hydraulic propping cover holder oil hydraulic cylinder simultaneous equal and rise 1/2nd, hydraulic oil is pushed to the hydraulic pusher 38 of cylinder group by high-pressure oil pipe 46, and the work started cylinder group, until complete the work of hydraulic system to a cylinder group stroke.
Cylinder group: when hydraulic oil enters hydraulic pusher 38 through high-pressure oil pipe 46, propulsion device advances the connecting shaft arm 37 on cylinder group main shaft 36, and drive 20 cylinder push-rods 35 combining with main shaft to 20 groups of cylinders 33 cause one forward the camber line pushing action of 45 degree go to do work simultaneously.Main shaft is connected with the cylinder push-rod of 20 groups of symmetrical equivalent, five, each direction, be contained on a line in main shaft four faces respectively, equally four cylinder bracket 32 are housed shell 30 inwall is corresponding with cylinder push-rod, bracket is equipped with equidistant five symmetrical compression cylinders 33, when hydraulic system often does a merit, 20 groups of cylinders are just pressed into the secondary pressurized gas of 20 cylinders simultaneously in high pressure packet inner bag, when hydraulic piston and cylinder piston return time, the returning pull-spring 43 on the top be connected by the cylinder regualting frame of the return spring in hydraulic system and cylinder group and cylinder push-rod and cylinder push-rod is retracted original position, so just complete the inflation of one-period.Return-air principle: while two system returns, the one-way valve 21 of air exchange header 45 is opened, and is again sucked after air-strainer 44 filtering by air in each cylinder as inflation is next time prepared.
High pressure packet: high pressure packet is store the device from the pressurized gas of cylinder group, arrive anti feedback valve 54 at high pressure draught again through high-pressure air pipe 56 and enter elastic bag 47, and a kind of counter pressure is formed to elastic bag, elastic bag is made up of high elastic rubber, have and resistance toly suppress telescopic resilience, its volume is 1/3rd of high voltage package casing inner space, when gas constantly enters elastic bag and makes elastic bag volume constantly expand with the laminating of high voltage package casing internal layer, elastic bag can cause continuous continuous pressure to gas, the saturated venting valve 55 of high pressure packet is opened instantaneously, along high-pressure air pipe, through gasotron 87 rectification, (effect of rectifier mainly plays integration air-flow to high pressure draught, in case gas thickness is uneven, being directed at synchronous pneumatic machine can not uniform motion), a power house 85 is entered from the urceolus suction port 75 of synchronous pneumatic machine, synchronous pneumatic machine is started working.
Synchronous pneumatic machine: high pressure draught enters synchronous pneumatic machine power house 85 by urceolus suction port 75 after integrating shunting, the cross section of a power house is interior eccentric circle, such design not only meets aerodynamic force logic but also can excavate the maximization of energy and play the maximum potential of energy, after air-flow enters eccentric circle power house, first a powerful Driving force is formed to outer stator blade 71, along with the expansion gradually of eccentric space, the centrifugal force that outer moving vane 89 produces because outer stator blade runs up makes outer moving vane eject from the moving vane mounting groove of outer stator blade, make the dead air cavity forming eccentric space in a power house, thus be directed at playing again flowed energy, when outer moving vane runs to minimum eccentric point, while eccentric angle starts to diminish gradually, outer moving vane is regained gradually because of diminishing gradually of eccentric space, during to smallest point, outer moving vane is just completely retracted in the moving vane mounting groove of outer stator blade.When after the promotion that air-flow is quiet to skin, moving vane completes one-period, gas is discharged by urceolus relief opening 74, again enters in synchronous pneumatic machine by inner core suction port 76, so far completes whole flow processs of a power.Secondary power starts: the gas entered by inner core suction port 76, air guiding blind hole 80 along water conservancy diversion copper sheathing enters secondary power room 86 by flow guide sleeve exhaust port 81, again through regulating reflux cover 65 reflux, form one powerful impact air-flow forward, promotion is suppressed to the blade 70 of internal layer flabellum group, thus be directed at running up of internal layer flabellum group, to form the secondary kinetic energy of synchronous pneumatic machine, through the high velocity air of internal layer flabellum group finally by spindle guide ostium 84, water conservancy diversion blind hole 83, spindle guide stem bar 82, discharge from inner cartridge vent 77.The synchronous pneumatic machine of more than one is connected in series, the inner cartridge vent 77 of First synchronous pneumatic machine connects the urceolus suction port of second synchronous pneumatic machine by second gasotron with high-pressure air pipe, by that analogy, the work of multiple stage of can connecting synchronous pneumatic machine, the water conservancy diversion rotating shaft output terminal of every platform synchronous pneumatic machine all connects a set of generator set and generates electricity.
Concrete arrangement of the present invention is: within zebra stripes, in units of group, layout is as follows; South-north direction right wing face, 10 × 10=100 group is installed on upper trade, and on right wing face, trade is also 10 × 10=100 group in the same way.Under south-north direction left face, trade is also 10 × 10=100 group, left face, trade is descended also to be 10 × 10=100 group in the same way, on east-west right wing face, 10 × 10=100 group is installed on trade, and going up trade in the same way is also 10 × 10=100 group, and 10 × 10=100 group is installed on east-west lower trade, right wing face, descend trade east-west in the same way, also be 10 × 10=100 group, the top of putting forth effort often organizing device to interact with one another series winding, under the effect of interactive pressing plate, single work also can interact, and will reach the effect of getting twice the result with half the effort.
When any one group interactive pressing plate of a wheel to hydraulic system of a car rolls, with be connected mutually below interactive pressing plate put forth effort to push up and work simultaneously, often organize hydraulic system and drive 10 cover cylinder group works, often overlap cylinder group and be assembled with 10 cover cylinders, that is a wheel of a car can cause the aeration quantity of 400 cylinders time × 2 groups=800 cylinders time, time so up-downgoing two green light clear region covered by a car, it will be 4 to take turns × 800 cylinders, 3200 × 10, the aeration quantity that 32000 × 2 region=64000 cylinders are secondary, with this, we are not difficult to know, the clearance in each traffic light cycle, every four crossings calculate with 20 train numbers, 40 cars that just have that so descending crossing (north and south) splits clearance simultaneously pass through, namely summation=2560000 cylinder time the aeration quantity of 64000 cylinders × 40 train numbers of a car is to high pressure packet, equally, the clearance of splitting in an east-west green light cycle of vehicle is also that the aeration quantity of 2560000 cylinders time is to high pressure packet.
Like this, the continuous process of the vehicle continuous-flow type on four road surfaces, also just constantly high pressure packet is inflated to, the summation of the said equipment inflation is greater than the total release of high pressure packet forever, because the air displacement of high pressure packet is control through saturation volume valve and with the normal operation guaranteeing main frame, so the air displacement of high pressure packet is less than the aeration quantity of the said equipment forever, to guarantee to make series winding power synchronous pneumatic motor constant and high-efficiency operation, and drive electrical generators group exports powerful electric energy.

Claims (2)

1. a cross collection of energy conversion equipment, comprise hydraulic system, cylinder group, high pressure packet, synchronous pneumatic machine, it is characterized in that: hydraulic system comprises more than one tubular external fixing rack, cylindrical shape hydraulic pressure fixed cover is provided with in each external fixing rack, cylindrical shape hydraulic propping cover is provided with in hydraulic pressure fixed cover, equally spacedly on hydraulic pressure fixed cover inwall have chute, equally spacedly on the outer wall of hydraulic propping cover be provided with the slide plate corresponding with fixed cover chute, the slide plate of hydraulic propping cover coordinates with fixed cover chute, carry-over bar on one is fixed with at a upper lateral part of each slide plate, the inwall of hydraulic pressure fixed cover is provided with the tooth bar that engages with upper carry-over bar to moving gear, oil hydraulic cylinder is provided with in hydraulic propping cover, return spring is provided with between oil hydraulic cylinder and hydraulic propping cover, more than one external fixing rack is arranged side by side, each external fixing rack suitable for reading on be provided with top pressure playback cell body, be provided with one in each top pressure playback cell body and put forth effort top, put forth effort top between top for often adjacent two and be provided with an interactive pressing plate, each bottom of putting forth effort to push up is provided with a pressure longitudinal rod corresponding with oil hydraulic cylinder, pressure longitudinal rod is connected with the tooth bar connecting rod corresponding to moving gear with tooth bar in circumferentially horizontal distribution, the end of tooth bar connecting rod is provided with longitudinal rack push rod, the bottom of longitudinal rack push rod is connected with the lower carry-over bar engaged moving gear with tooth bar, the middle part of tooth bar connecting rod is provided with longitudinal spring depression bar, the lower end of longitudinal spring depression bar withstands on return spring, the bottom of pressure longitudinal rod connects with the piston in corresponding oil hydraulic cylinder, the oilhole of oil hydraulic cylinder is driveed in bottom, cylinder group comprises cylindrical housing, main shaft, before shell two ends are provided with, rear end cover, main shaft is through front, the center of rear end cover, with front, rear end cover is fixed by bearing, main shaft is fixed with connecting shaft arm, a hydraulic pusher is connected with at the inwall upper hinge of shell, hydraulic rod end and the connecting shaft arm of hydraulic pusher are hinged, equally spacedly vertically on main shaft be fixed with cylinder push-rod frame, cylinder push-rod frame is formed by the same cylinder push-rod vertical with main shaft that be that be circumferentially spacedly distributed, in the enclosure wall is fixed with at equal intervals the cylinder bracket identical with single cylinder push-rod frame upper cylinder push rod quantity, cylinder bracket has long strip base plate, the length direction of base plate is axial arranged along shell, equally spacedly on base plate be provided with vertical with base plate cylinder location regulator plate, cylinder location regulator plate has microscler adjustment hole, cylinder adjustable lever is installed with in adjustment hole, the cylinder corresponding with each cylinder push-rod is connected with at cylinder adjustable lever upper hinge, the cylinder column of each cylinder is hinged with corresponding cylinder push-rod, and the cylinder column end of each cylinder and outer casing inner wall are equipped with returning pull-spring, air exchange header is provided with in shell, air exchange header is provided with air inlet nozzle and exhaust nozzle, exhaust nozzle stretches out shell, and fix with shell, air inlet nozzle is connected with suction tude, suction tude stretches out shell, the end of suction tude is provided with air-strainer, suction tude is provided with one-way valve, the gas exchanges Guan Junyu air exchange header UNICOM of each cylinder, synchronous pneumatic machine comprises urceolus, inner core, water conservancy diversion rotating shaft, urceolus external wall cross-section is circular, cross section of inboard wall is oval, before urceolus, rear port is respectively equipped with front cover and rear end cover, before water conservancy diversion rotating shaft and urceolus, rear end cover is connected by bearing, the front port of the front cover of urceolus is provided with top cover, the front end of water conservancy diversion rotating shaft is closed in the front cover of urceolus, the rear end cover of urceolus is stretched out in rear end, the intracavity posterior end of inner core is circular arc, rear port and the water conservancy diversion rotating shaft of inner core are fixed, the front port of inner core is provided with inner core capping, at the front port of water conservancy diversion rotating shaft and urceolus, flow guide sleeve is provided with between front cover, flow guide sleeve and outer cylinder front end lid are fixed, be connected with water conservancy diversion axis of rotation, water conservancy diversion blind hole is had vertically at the front-end face center of water conservancy diversion rotating shaft, water conservancy diversion blind hole extends to close to inner core rear port position, the sidewall of water conservancy diversion rotating shaft has the spindle guide ostium with water conservancy diversion blind hole tail end UNICOM, water conservancy diversion rotating shaft is provided with more than one group internal layer flabellum group spaced apart, root of blade and the water conservancy diversion rotating shaft of internal layer flabellum group are fixed, end and inner core inwall are fixed, air guiding blind hole is had vertically at the front-end face of flow guide sleeve, the sidewall of flow guide sleeve has the flow guide sleeve exhaust port with air guiding blind hole tail end UNICOM, outer cylinder front end between the spring bearing and flow guide sleeve of water conservancy diversion rotating shaft front end covers and is provided with inner core suction port, the top cover of urceolus front cover is provided with inner cartridge vent, on flow guide sleeve, the front portion of flow guide sleeve exhaust port is provided with and regulates reflux cover, circumferentially equally spacedly on the outer wall of inner core be provided with outer stator blade, axial arranged all along inner core of each outer stator blade, the exterior edge face of outer stator blade has moving vane mounting groove along the length direction of outer stator blade, outer moving vane is provided with in moving vane mounting groove, outer moving vane and moving vane mounting groove are slidably connected, can inside and outsidely in moving vane mounting groove slide, and fit with the inwall of urceolus all the time in the exterior edge face of outer moving vane when inner core rotates, urceolus has urceolus suction port and urceolus relief opening, urceolus suction port and urceolus relief opening are greater than the spacing between two outer stator blades in lateral separation circumferentially, urceolus relief opening tracheae is connected with inner core suction port, the oilhole of each oil hydraulic cylinder of hydraulic system is connected with the oil cylinder of oil pipe with the hydraulic pusher of at least one cylinder group, the exhaust nozzle of cylinder group is connected with the suction port of high pressure packet by high-pressure air pipe, and the air outlet of high pressure packet is connected with the urceolus suction port of synchronous pneumatic machine by high-pressure air pipe.
2. a purposes for cross collection of energy conversion equipment according to claim 1, is characterized in that: in the highway around the crossroad being embedded in highway, and drive electrical generators generates electricity.
CN201510101894.8A 2015-03-09 2015-03-09 A kind of highway collection of energy conversion equipment around crossroad and application thereof Expired - Fee Related CN104763603B (en)

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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20070085342A1 (en) * 2005-10-19 2007-04-19 Dimitrios Horianopoulos Traffic-actuated electrical generator apparatus
CN2921354Y (en) * 2006-05-26 2007-07-11 冯超 Road vehicle roll pressure energy conversion utilizing device
GB2461860A (en) * 2008-07-11 2010-01-20 John Martin Dunn Driving an electricity generator using the kinetic, gravitational or air pressure forces present in the flow of vehicular or pedestrian traffic or sea waves
CN101813076A (en) * 2009-02-19 2010-08-25 王兴春 Pavement generating set
KR20120007303A (en) * 2010-07-14 2012-01-20 김용경 Power generation apparatus using hump

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20070085342A1 (en) * 2005-10-19 2007-04-19 Dimitrios Horianopoulos Traffic-actuated electrical generator apparatus
CN2921354Y (en) * 2006-05-26 2007-07-11 冯超 Road vehicle roll pressure energy conversion utilizing device
GB2461860A (en) * 2008-07-11 2010-01-20 John Martin Dunn Driving an electricity generator using the kinetic, gravitational or air pressure forces present in the flow of vehicular or pedestrian traffic or sea waves
CN101813076A (en) * 2009-02-19 2010-08-25 王兴春 Pavement generating set
KR20120007303A (en) * 2010-07-14 2012-01-20 김용경 Power generation apparatus using hump

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