CN201461280U - Environment-friendly traffic power generating system - Google Patents

Environment-friendly traffic power generating system Download PDF

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CN201461280U
CN201461280U CN2009200956541U CN200920095654U CN201461280U CN 201461280 U CN201461280 U CN 201461280U CN 2009200956541 U CN2009200956541 U CN 2009200956541U CN 200920095654 U CN200920095654 U CN 200920095654U CN 201461280 U CN201461280 U CN 201461280U
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pressure
oil
solenoid valve
pipe
way
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王瑞良
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Abstract

The utility model relates to an environment-friendly traffic power generating system, which is characterized in that a power source from the dead weight and load of traveling vehicles outputs high-pressure oil with constant pressure and flow through a hydraulic power unit, a high-pressure concentrator, a high-pressure energy accumulator and a pressure energy collector; when the oil pressure in the pressure energy collector is lower than a working oil pressure, the energy accumulated in the high-pressure energy accumulator is used for supplementing high-pressure oil to the pressure energy collector; the pressure energy collector is connected with a flow distributing and collecting valve through a constant pressure and flow oil pipe and supplies high-pressure oil to an energy conversion device; and crank-link mechanisms arranged on the energy conversion device further output mechanical power with high torque and rotating speed to variable speed bevel gears, so as to drive a generator and an electric transmission and transformation device to output the power for electric equipment of traffic networks inside and outside the system after voltage and current stabilization as well as voltage regulation. The utility model has the advantages of clean and pollution-free energy source, sustainable environment-friendly effect, no consumption of resources, extra energy storage in rush hours, simple structure, convenient operation, high efficiency and low cost.

Description

Traffic environment-friendly power generation system
Technical field
The utility model relates to a kind of power generation system, particularly relates to a kind of each intersection of road that is fixed on and can save the natural resources traffic environment-friendly power generation system of environmental protection again for the required electricity consumption of traffic road.
Background technique
As everyone knows, at present, in the in great shortage spurt in prices of fuel, atmospheric pollution serious today, how fuel saving resource and environmental protection have become the focus that the whole world is extremely paid close attention to, but it is the power station and the affiliated mains supply of power source that the power supply system of existing road traffic now places one's entire reliance upon with the consumption of natural resource, yet, the energy consumption height of this kind substation, generating efficiency is low, the natural wastage of network is big, surplus electricity also can't be stored, and with natural resources existence condition and environmental limit development, this kind power supply mode will be subjected to severely restricts again.
Summary of the invention
The utility model provides a kind of being used for can save the natural resources traffic environment-friendly power generation system of environmental protection again for the required electricity consumption of traffic road for solving the technical problem that exists in the known technology.
The technological scheme that the utility model is taked for the technical problem that exists in the solution known technology is: it is characterized in that: it comprises hydraulic power unit W, high pressure cumulative, high-voltage energy storage and pressure energy collector H, and energy conversion device F and generating, power transmission and transformation device V:
1.. hydraulic power unit W: it includes cylinder head, have all-in-one-piece crown, A piston rod, A dust-proof cover and guide-localization groove on the cylinder head, also have A piston, cylinder body, spring and base, having seal ring on the A piston also is connected with the A piston rod with nut with oil ring, integral body is placed in the cylinder body, one side of cylinder body has buffering oilhole and buffering oil pocket, and the top of cylinder body cooperates with the A piston rod by seal ring and oil ring; Spring housing is in the outside of A dust-proof cover and cylinder body, and an end of spring withstands in the guide-localization groove, and the other end withstands on the top of base; A side has the high pressure oil oil outlet on the base, be placed with A pressure check valve and A little spring in the high pressure oil oil outlet, and be connected with the A high-pressure oil pipe by high-pressure oil duct, opposite side has the low pressure oilhole on the base, wherein also is placed with B pressure check valve and B little spring, and is connected with low pressure fuel pipe by the low pressure oil duct, have radiating fin on the base, the center position on base top has the A cushion hole, and cylinder body and base link into an integrated entity with bolt by seal ring, and base was fixed by the stone bolt and the end, hole; Be fixed with buffer at base one end, high pressure oil divides two-way to enter the high pressure concentrator and enter high-voltage energy storage device by the B pipeline by the A pipeline through the oil-collecting valve enters A two-way pressure sensitive solenoid valve by the A high-pressure oil pipe after;
2.. high pressure concentrator, high-voltage energy storage device and pressure energy collector H: the high pressure concentrator comprises the A counterweight and constitutes B dust-proof cover, A counter-balanced carriage and the plunger of one, counterweight is fixed on the A counter-balanced carriage with bolt and nut, the top of plunger case has seal ring and oil ring, bottom one end has the A oil inlet hole that is connected with the A pipeline, C pressure check valve and spring are housed in the A oil inlet hole, and the other end is that oil outlet passes through the C pipeline and is connected with B two-way pressure sensitive solenoid valve; Enter high-voltage energy storage device by the B pipeline, high-voltage energy storage device comprises the B counterweight and constitutes C dust-proof cover, B counter-balanced carriage and the B piston rod of one, the B piston rod is fixed with the B piston with nut, the B piston is placed in the loaded cylinder, the top of loaded cylinder is that guide cylinder has seal ring and oil ring and B rod seal sliding fit on it, the center of the bottom of loaded cylinder has the B cushion hole, the both sides of B cushion hole are respectively oil inlet hole and oil outlet, oil inlet hole is connected with the B pipeline, its oil outlet outer end is connected with pipe, and the other end of pipe is connected with B two-way pressure sensitive solenoid valve; B two-way pressure sensitive solenoid valve is connected with high pressure oil inlet opening on the pressure energy collector by pipeline, the pressure energy collector comprises the high pressure oil inlet opening, standby high pressure oil inlet opening, cylinder body, constant force spring, the C piston, low pressure induction oil pipe, have the low pressure inductive probe in the low pressure induction oil pipe, be connected with B two-way pressure sensitive solenoid valve by low pressure induction oil pipe, the ftercompction pipe is connected with oil sump with the high pressure liquid pump, constant pressure and flow oil pipe on the pressure energy collector is connected with flow divider-combiner, have the superpressure probe in another outlet, be connected with A two-way pressure sensitive solenoid valve by the D pipeline;
3.. energy conversion device F: the high pressure oil that enters the A flow divider-combiner by the constant pressure and flow oil pipe is divided into two-way, one the tunnel enters the B flow divider-combiner through the B high-pressure oil pipe, another road enters the C flow divider-combiner through the C high-pressure oil pipe, the high pressure oil that enters the B flow divider-combiner is divided into two-way again and enters A bidirectional high speed solenoid valve and B bidirectional high speed solenoid valve respectively by D high-pressure oil pipe and E high-pressure oil pipe respectively, go into the A oil sump after A reflow pipe on it gathers, A bidirectional high speed solenoid valve and B bidirectional high speed solenoid valve are controlled two groups of A two-way cylinders respectively, B two-way cylinder and A connecting rod, the B connecting rod; The high pressure oil that enters the C flow divider-combiner through the C high-pressure oil pipe is divided into two-way again and enters C bidirectional high speed solenoid valve and D bidirectional high speed solenoid valve by E high-pressure oil pipe and F high-pressure oil pipe respectively, go into the B oil sump after B reflow pipe on it gathers, C bidirectional high speed solenoid valve and D bidirectional high speed solenoid valve are controlled C two-way cylinder, B two-way cylinder and C connecting rod and D connecting rod respectively; Axle on A, B, C, the D four set of bell cranks linkage mechanisms and bearings are on casing, the place is equipped with sensing gear and sensor at the casing left hand crankshaft, have interface on the sensor, the shaft of C connecting rod cooperates with the large bevel gear key, is connected with generator by axle with the bevel pinion of large bevel gear engagement;
4.. generating, power transmission and transformation device V: generator is connected with the power transmission and transformation station by lead, have 1--n on the power transmission and transformation station and export electric port, the power transmission and transformation station is connected with the voltage stabilizing rectification charger with lead, and the voltage stabilizing rectification charger is connected with battery pack by lead, has external-connected port on the battery pack.
Advantage and the good effect that the utlity model has are: utilize the deadweight of moving vehicle and the load-carrying power source as system, pass through hydraulic power unit, the high pressure cumulative, high-voltage energy storage and pressure energy collector, the high pressure oil of output constant pressure and flow, again through energy conversion device and generating, the power transmission and transformation device is outwards exported three electric currents respectively and direct current passes through lead, required direct current and the required three-phase electricity of outside transit equipment in the supply system, its energy source cleanliness without any pollution, environmental protection is sustainable, be not subjected to the zone, the restriction of physical environment and resource and influence, do not consume any resource, the hydraulic energy of being created can also store in rush-hour and store " hydraulic pressure energy " replacement " electric energy ", and whole system is simple in structure, be convenient to operation, energy saving, the efficient height, cost is low.
Description of drawings
Fig. 1 integral installation schematic representation of the present utility model;
Fig. 2 is an overall structure schematic representation of the present utility model;
Fig. 3 is a hydraulic power unit W structural representation;
Fig. 4 is the structural representation of cylinder body 6;
Fig. 5 is the A-A sectional schematic diagram of Fig. 4;
Fig. 6 is the structural representation of base 8;
Fig. 7 is the B-B sectional schematic diagram of base 8;
Fig. 8 is the C-C sectional schematic diagram of base 8;
Fig. 9 is Fig. 7 schematic top plan view;
Figure 10 is the linkage structure schematic representation of a plurality of hydraulic power unit W;
Figure 11 is the linkage structure schematic representation of Fig. 8 backsight;
Figure 12 is the structural representation of high pressure concentrator 28;
Figure 13 is the structural representation of high-voltage energy storage device 39;
Figure 14 is the structural representation of pressure energy collector 50;
Figure 15 is the structural representation of energy conversion device F;
Figure 16 is the structural representation of bent axle 87;
Figure 17 is the structural representation of sensing gear 88;
Figure 18 is the structural representation of sensor 89;
Figure 19 is the ECU (Electrical Control Unit) schematic representation.
Among Fig. 1-Figure 19: 1. crown, 2.A piston rod, 3.A dust-proof cover, 4. guide-localization groove, 5.A piston, 6. cylinder body, 7. spring, 8. base, 9. buffering oilhole, 10. buffering oil pocket, 11. high pressure oil oil outlets, 12.A pressure check valve, 13.A little spring, 14. high-pressure oil ducts, 15.A high-pressure oil pipe, 16. the low pressure oilhole, 17.B pressure check valve, 18.B little spring, 19. the low pressure oil duct, 20. low pressure fuel pipes, 21. radiating fin, 22.A cushion hole, 23. buffers, 24. oil-collecting valves, 25.A two-way pressure sensitive solenoid valve, 26.A pipeline, 27.B pipeline, 28. the high pressure concentrator, 29.A counterweight, 30.B dust-proof cover, 31.A counter-balanced carriage, 32. plungers, 33. plunger cases, 34.A oil inlet hole, 35.C pressure check valve, 36. oil outlets, 37.C pipeline, 38.B two-way pressure sensitive solenoid valve, 39. high-voltage energy storage devices, 40.B counterweight, 41.C dust-proof cover, 42.B counter-balanced carriage, 43.B piston rod, 44.B piston, 45. loaded cylinder, 46.B cushion hole, 47. oil inlet holes, 48. pipes, 49. pipeline, 50. the pressure energy collector, 51. high pressure oil inlet openings, 52. standby high pressure oil inlet openings, 53. cylinder body, 54. constant force spring, 55. C piston 55,56. low pressure induction oil pipe, 57. ftercompction pipe, 58. the high pressure liquid pump, 59. superpressures probe, 60. constant pressure and flow oil pipes, 61.A flow divider-combiner, 62.B high-pressure oil pipe, 63.B flow divider-combiner, 64.C high-pressure oil pipe, 65.C flow divider-combiner, 66.D high-pressure oil pipe, 67.E high-pressure oil pipe, 68.A bidirectional high speed solenoid valve, 69.B bidirectional high speed solenoid valve, 70.A reflow pipe, 71.A oil sump, 72.A two-way cylinder, 73.B two-way cylinder, 74.A crank-connecting rod machine 75.B connecting rod, 76.E high-pressure oil pipe, 77.F high-pressure oil pipe, 78.C bidirectional high speed solenoid valve, 79.D the bidirectional high speed solenoid valve, 80.B reflow pipe, 81.B oil sump, 82.C two-way cylinder, 83.B two-way cylinder, 84.C connecting rod, 85.D connecting rod, 86. casing, 87. bent axle, 88. sensing gears, 89. sensors, 90. interface, 91. shaft, 92. large bevel gears, 93. bevel pinions, 94. generator, 95. the power transmission and transformation station, the electric port of 96. outputs, 97. voltage stabilizing rectification chargers, 98. battery pack, 99. external-connected port, 100. low pressure fuel pumps, 101. oil storage pools, 102.D pipeline, 103. automatically controlled ECU unit.
Embodiment:
For further understanding summary of the invention of the present utility model, characteristics and effect, following examples for example, and conjunction with figs. now are described in detail as follows, and see also Fig. 1-Figure 19.
As shown in Figure 1: the utility model mainly comprises hydraulic power unit W, high pressure cumulative, high-voltage energy storage and pressure energy collector H, energy conversion device F and generating, power transmission and transformation device V, said apparatus all is installed in the hole at right-angled intersection place of road with bolt, have only that crown 1 on the cylinder head of hydraulic power unit W is outer to be exposed at ground, structure and effect of above-mentioned each device be described in detail in detail respectively below:
As Fig. 2-shown in Figure 11: when automotive dead weight with when having truck in walking, the crown 1 of the cylinder head that compressing hydraulic power unit W exposes and produce power resources, hydraulic power unit W includes cylinder head, have all-in-one-piece crown 1 on the cylinder head, A piston rod 2, A dust-proof cover 3 and guide-localization groove 4, also has A piston 5, cylinder body 6, spring 7 and base 8, have seal ring and oil ring on the A piston 5, in case leak-stopping oil, and be connected with A piston rod 2 with nut, A piston rod 2 and A piston 5 are placed in the cylinder body 6, as Fig. 4, shown in Figure 5: a side of cylinder body 6 has buffering oilhole 9 and buffering oil pocket 10, and the top of cylinder body 6 cooperates with A piston rod 2 by seal ring and oil ring; Spring 7 is enclosed within the outside of A dust-proof cover 3 and cylinder body 6, and an end of spring 7 withstands in the guide-localization groove 4, and the other end withstands on the top of base 8; As Fig. 3, a side has high pressure oil oil outlet 11 on the base 8 shown in Figure 6, be placed with A pressure check valve 12 and A little spring 13 in the high pressure oil oil outlet 11, and be connected with A high-pressure oil pipe 15 by high-pressure oil duct 14, opposite side has low pressure oilhole 16 on the base 8, wherein also be placed with B pressure check valve 17 and B little spring 18, and be connected with low pressure fuel pipe 20 by low pressure oil duct 19, have radiating fin 21 on the base 8, heat in cylinder body 6 and the base 8 can be loose outward with cooling, the center position on base 8 tops has A cushion hole 22, when A piston 5 is descending, play buffering and prevent percussion, cylinder body 6 and base 8 link into an integrated entity with bolt by seal ring, as Fig. 1, shown in Figure 7: as to be fixed with buffer 23 at base 8 one ends, it plays impact that suppresses high pressure oil and the effect of eliminating pressure pulsation, and base 8 was fixed by the stone bolt and the end, hole; When automobile passes through, crown 1 above the compressing cylinder head, then A piston rod 2 drives A piston 5 descending compression fluid in cylinder body 6, form high pressure oil, this high pressure oil backs down B pressure check valve 17 by the high pressure oil oil outlet 11 on the base 8 and compresses B little spring 18, enter high-pressure oil duct 14 and through oil-collecting valve 24 enters A two-way pressure sensitive solenoid valve 25 by A high-pressure oil pipe 15 after, divide two-way to enter the high pressure concentrator and enter high-voltage energy storage device by A pipeline 26 respectively by B pipeline 27; After the garage, under the effect of spring 7, A piston 5 in the cylinder body 6 is up, spring 7 has played buffer function, at this moment, as shown in Figure 1: low pressure fuel pump 100 extracts fluid by low pressure fuel pipe 20 input low pressure oil ducts 19 from oil storage pool 101, after negative pressure occurring because of A piston 5 is up and inhaling out B pressure check valve 17, low pressure oil enters in low pressure oilhole 16 and the cylinder body 6, until with B counterweight 40 balances;
The high pressure concentrator, high-voltage energy storage device and pressure energy collector H: as Fig. 1, shown in Figure 12: when system pressure just often, after entering A two-way pressure sensitive solenoid valve 25 by A high-pressure oil pipe 15, the A pipeline 26 of leading up to enters high pressure concentrator 28, high pressure concentrator 28 comprises A counterweight 29, constitute the B dust-proof cover 30 of one, A counter-balanced carriage 31 and plunger 32, counterweight 29 usefulness bolt and nuts are fixed on the A counter-balanced carriage 31, the top of plunger case 33 has seal ring and oil ring, bottom one end has the A oil inlet hole 34 that is connected with A pipeline 26, C pressure check valve 35 and spring are housed in the A oil inlet hole 34, with high pressure oil adverse current that prevents to enter from A pipeline 26 and the pressure that keeps plunger case 33 inner fluids, the high pressure oil that enters upwards promotes plunger 32 until with the downward equilibrium of forces of A counterweight 29 time, high pressure oil through the oil outlet 36 of the plunger case 33 bottom the other ends by C pipeline 37 with constant pressure and flow fluid in B two-way pressure sensitive solenoid valve 38 and pipeline 49 incoming pressure energy collectors 50; When system overpressure, change the road to another road by A two-way pressure sensitive solenoid valve 25, superpressure fluid enters as Fig. 1 by B pipeline 27, in the high-voltage energy storage device 39 shown in Figure 13, high-voltage energy storage device 39 comprises B counterweight 40, constitute the C dust-proof cover 41 of one, B counter-balanced carriage 42 and B piston rod 43, B piston rod 43 usefulness nuts are fixed with B piston 44, B piston 44 is placed in the loaded cylinder 45, the top of loaded cylinder 45 is that guide cylinder has seal ring on it and oil ring cooperates with B piston rod 43 sealed sliding, the center of the bottom base of loaded cylinder 45 has B cushion hole 46, the both sides of B cushion hole 46 are respectively oil inlet hole 47 and oil outlet, oil inlet hole 47 is connected with B pipeline 27, its oil outlet outer end is connected with pipe 48, superpressure fluid in the pipe 48 is connected through managing 48 B two-way pressure sensitive solenoid valve 38 and the DC electrical source that are connected with the other end, and the superpressure probe 59 and the D pipeline 102 that are connected on the pressure energy collector 50 send signal to A two-way pressure sensitive solenoid valve 25, make A two-way pressure sensitive solenoid valve 25 change fuel feeding in the road direction high-voltage energy storage device 39, play the effect of deposit high pressure oil, promptly store " hydraulic pressure energy "; When system comes back to normal oil pressure, B two-way pressure sensitive solenoid valve 38 is carried high pressure oil by the high pressure oil inlet opening 51 of pipeline 49 on pressure energy collector 50, as Fig. 1, shown in Figure 14: pressure energy collector 50 comprises high pressure oil inlet opening 51, (standby high pressure hydraulic fluid port 52 uses when emergent in standby high pressure oil inlet opening 52, high pressure oil backs down pressure check valve high pressure oil is pressed in the cylinder body 53), cylinder body 53, constant force spring 54 (purpose is the constant and elimination pulsation of guaranteeing in the pressure energy collector 50 of oil pressure), C piston 55, low pressure induction oil pipe 56, have the low pressure inductive probe in the low pressure induction oil pipe 56, be connected with B two-way pressure sensitive solenoid valve 38 by low pressure induction oil pipe 56, when the oil pressure in the pressure energy collector 50 is lower than operating oil pressure, being installed in low pressure inductive probe on the pressure energy collector 50 and low pressure induction oil pipe 56 passes to B two-way pressure sensitive solenoid valve 38 with low-voltage signal it is commutated to the pipe 48 of high pressure accumulator 28, energy with the deposit of high-voltage energy storage device 28 is that pressure energy collector 50 replenishes high pressure oils to satisfy operating oil pressure, ftercompction pipe 57 is connected with oil sump with high pressure liquid pump 58, its effect is when hydraulic power unit W and high-voltage energy storage device 28 provide the high-pressure work fluid that satisfies drive mechanism (being energy conversion equipment F) can not for pressure energy collector 50, artificial emergency start high pressure liquid pump 58 oil suction liquid and satisfy required operating oil pressure from oil sump by the oil pressure in the ftercompction pipe 57 supplementary pressure energy collectors 50, being installed in superpressures probe 59 in another outlet of pressure energy collector 50 is connected on the A two-way pressure sensitive solenoid valve 25 by D pipeline 102 and transmits superpressure signal in pressure energy collector 50 chambeies, allow A two-way pressure sensitive solenoid valve 25 change the road, at this moment, outlet on the pressure energy collector 50 is connected with flow divider-combiner 61 by constant pressure and flow oil pipe 60, and supplies with work fluid to energy conversion device F; As Fig. 1, energy conversion device F shown in Figure 15 is divided into two-way by the high pressure oil that constant pressure and flow oil pipe 60 enters A flow divider-combiner 61, one the tunnel enters B flow divider-combiner 63 through B high-pressure oil pipe 62, another road enters C flow divider-combiner 65 through C high-pressure oil pipe 64, the high pressure oil that enters B flow divider-combiner 63 is divided into two-way again and enters A bidirectional high speed solenoid valve 68 and B bidirectional high speed solenoid valve 69 by D high-pressure oil pipe 66 and E high-pressure oil pipe 67 respectively, go into A oil sump 71 after A reflow pipe 70 on it gathers, A bidirectional high speed solenoid valve 68 and B bidirectional high speed solenoid valve 69 are controlled two groups of A two-way cylinders 72 respectively, B two-way cylinder 73 and A connecting rod 74, B connecting rod 75; The high pressure oil that enters C flow divider-combiner 65 through C high-pressure oil pipe 64 is divided into two-way again and enters C bidirectional high speed solenoid valve 78 and D bidirectional high speed solenoid valve 79 by E high-pressure oil pipe 76 and F high-pressure oil pipe 77 respectively, goes into B oil sump 81 after the B reflow pipe 80 on it gathers; C bidirectional high speed solenoid valve 78 and D bidirectional high speed solenoid valve 79 are controlled C two-way cylinder 82, B two-way cylinder 83 and C connecting rod 84 and D connecting rod 85 respectively; A, B, C, D four set of bell cranks linkage mechanisms 74,75,84, axle on 85 and bearings are on casing 86, as Fig. 1, Figure 15-shown in Figure 180: 87 places are equipped with sensing gear 88 and R sensor 89 at casing 86 left hand crankshafts, R sensor 89 transmits the bent axle turn signal, corner signal, bottom dead center position signal on the rod journal, by as Fig. 1, the automatically controlled ECU of prior art shown in Figure 19 unit is to A, B, C, D bidirectional high speed solenoid valve 68,69,78,79 send command signal, make it by under the A-C-D-B sequence control on-off direct current situation, A, B, C, D bidirectional high speed solenoid valve 68,69,78,79 commutate at a high speed makes A, B, C, D two-way cylinder 72,75,82,83 together with A, B, C, D four set of bell cranks linkage mechanisms 74,75,84,85 also press the A-C-D-B sequentially-operating, have interface 90 on the R sensor 89, the shaft 91 of C connecting rod 84 is exported to large bevel gear 92 with high pulling torque and high-revolving machine power, is connected with generator 94 by axle with the bevel pinion 93 of large bevel gear 92 engagements; Generating, power transmission and transformation device V: generator 94 sends three-phase electricity and is connected with power transmission and transformation station 95 by three-phase conducting wire, output to the means of transportation of external application three-phase electricity consumption after the voltage stabilization and current stabilization power transformation by electric port 96 of the output of 1-----n three-phase electricity and lead, and be 97 power supplies of voltage stabilizing rectification charger, the system of voltage stabilizing rectification charger 97 is that system is connected with battery pack 98 by lead with direct current port one 04, have external-connected port 99 on the battery pack 98, can externally supply direct current.
Its advantage is: utilize the deadweight of driving vehicle and load-carrying as the power source of system, pass through hydraulic power unit, the high pressure cumulative, high-voltage energy storage and pressure energy collector, the hydraulic oil of output constant voltage crossing current, again through energy conversion device and generating, the power transmission and transformation device is outwards exported respectively three electric currents and direct current passes through lead, required direct current and the required three-phase electricity of outside transit equipment in the feed system, its energy source cleanliness without any pollution, environmental protection is sustainable, be not subjected to the zone, the restriction of natural environment and resource and impact, do not consume any resource, the hydraulic energy of creating can also store in rush-hour and store " hydraulic energy " replacement " electric energy ", and whole system is simple in structure, convenient operation, energy savings, the efficient height, cost is low.

Claims (1)

1. traffic environment-friendly power generation system, it is characterized in that: it comprises hydraulic power unit W, high pressure concentrator, high-voltage energy storage device and pressure energy collector H, energy conversion device F and generating, power transmission and transformation device V:
1.. hydraulic power unit W: it includes cylinder head, have all-in-one-piece crown (1), A piston rod (2), A dust-proof cover (3) and guide-localization groove (4) on the cylinder head, also have A piston (5), cylinder body (6), spring (7) and base (8), having seal ring on the A piston (5) also is connected with A piston rod (2) with nut with oil ring, integral body is placed in the cylinder body (6), one side of cylinder body (6) has buffering oilhole (9) and buffering oil pocket (10), and the top of cylinder body (6) cooperates with A piston rod (2) by seal ring and oil ring; Spring (7) is enclosed within the outside of A dust-proof cover (3) and cylinder body (6), and an end of spring (7) withstands in the guide-localization groove (4), and the other end withstands on the top of base (8); The last side of base (8) has high pressure oil oil outlet (11), be placed with A pressure check valve (12) and A little spring (13) in the high pressure oil oil outlet (11), and be connected with A high-pressure oil pipe (15) by high-pressure oil duct (14), base (8) is gone up opposite side and is had low pressure oilhole (16), wherein also be placed with B pressure check valve (17) and B little spring (18), and be connected with low pressure fuel pipe (20) by low pressure oil duct (19), have radiating fin (21) on the base (8), the center position on base (8) top has A cushion hole (22), cylinder body (6) links into an integrated entity with bolt by seal ring with base (8), and base (8) was fixed by the stone bolt and the end, hole; Have low pressure fuel pump (100) and oil sump (101) on the low pressure fuel pipe (20), end at base (8) is fixed with buffer (23), high pressure oil divides two-way to enter the high pressure concentrator and enter high-voltage energy storage device by B pipeline (27) by A pipeline (26) after oil-collecting valve (24) enters A two-way pressure sensitive solenoid valve (25) by A high-pressure oil pipe (15);
2.. high pressure concentrator, high-voltage energy storage device and pressure energy collector H: high pressure concentrator (28) comprises A counterweight (29) and constitutes B dust-proof cover (30), A counter-balanced carriage (31) and the plunger (32) of one, counterweight (29) is fixed on the A counter-balanced carriage (31) with bolt and nut, the top of plunger case (33) has seal ring and oil ring, bottom one end has the A oil inlet hole (34) that is connected with A pipeline (26), C pressure check valve (35) and spring are housed in the A oil inlet hole (34), and the other end is that oil outlet (36) is connected with B two-way pressure sensitive solenoid valve (38) by C pipeline (37); Enter high-voltage energy storage device (39) by B pipeline (27), high-voltage energy storage device (39) comprises B counterweight (40), with the C dust-proof cover (41) that constitutes one, B counter-balanced carriage (42) and B piston rod (43), B piston rod (43) is fixed with B piston (44) with nut, B piston (44) is placed in the loaded cylinder (45), the top of loaded cylinder (45) is that guide cylinder has seal ring on it and oil ring cooperates with B piston rod (43) sealed sliding, the center of the bottom of loaded cylinder (45) has B cushion hole (46), the both sides of B cushion hole (46) are respectively oil inlet hole (47) and oil outlet, oil inlet hole (47) is connected with B pipeline (27), its oil outlet outer end is connected with pipe (48), and the other end of pipe (48) is connected with B two-way pressure sensitive solenoid valve (38); B two-way pressure sensitive solenoid valve (38) is connected with high pressure oil inlet opening (51) on the pressure energy collector (50) by pipeline (49), pressure energy collector (50) comprises high pressure oil inlet opening (51), standby high pressure oil inlet opening (52), cylinder body (53), constant force spring (54), C piston (55), low pressure induction oil pipe (56), have the low pressure inductive probe in the low pressure induction oil pipe (56), be connected with B two-way pressure sensitive solenoid valve (38) by low pressure induction oil pipe (56), ftercompction pipe (57) is connected with oil sump with high pressure liquid pump (58), constant pressure and flow oil pipe (60) on the pressure energy collector (50) is connected with flow divider-combiner (61), have superpressure probe (59) in another outlet, be connected with A two-way pressure sensitive solenoid valve (25) by D pipeline (102);
3.. energy conversion device F: the high pressure oil that enters A flow divider-combiner (61) by constant pressure and flow oil pipe (60) is divided into two-way, one the tunnel enters B flow divider-combiner (63) through B high-pressure oil pipe (62), another road enters C flow divider-combiner (65) through C high-pressure oil pipe (64), the high pressure oil that enters B flow divider-combiner (63) is divided into two-way again and enters A bidirectional high speed solenoid valve (68) and B bidirectional high speed solenoid valve (69) respectively by D high-pressure oil pipe (66) and E high-pressure oil pipe (67) respectively, go into A oil sump (71) after A reflow pipe (70) on it gathers, A bidirectional high speed solenoid valve (68) and B bidirectional high speed solenoid valve (69) are controlled two groups of A two-way cylinders (72) respectively, B two-way cylinder (73) and A connecting rod (74), B connecting rod (75); The high pressure oil that enters C flow divider-combiner (65) through C high-pressure oil pipe (64) is divided into two-way again and enters C bidirectional high speed solenoid valve (78) and D bidirectional high speed solenoid valve (79) by E high-pressure oil pipe (76) and F high-pressure oil pipe (77) respectively, go into B oil sump (81) after B reflow pipe (80) on it gathers, C bidirectional high speed solenoid valve (78) and D bidirectional high speed solenoid valve (79) are controlled C two-way cylinder (82), B two-way cylinder (83) and C connecting rod (84) and D connecting rod (85) respectively; Axle on A, B, C, the D four set of bell cranks linkage mechanisms (74,75,84,85) and bearings are on casing (86), locate to be equipped with sensing gear (88) and sensor (89) at casing (86) left hand crankshaft (87), have interface (90) on the sensor (89), the shaft (91) of C connecting rod (84) cooperates with large bevel gear (92) key, is connected with generator (94) by axle with the bevel pinion (93) of large bevel gear (92) engagement;
4.. generating, power transmission and transformation device V: generator (94) is connected with power transmission and transformation station (95) by lead, have 1-----n on the power transmission and transformation station (95) and export electric port (96), power transmission and transformation station (95) is connected with voltage stabilizing rectification charger (97) with lead, voltage stabilizing rectification charger (97) is connected with battery pack (98) by lead, has external-connected port (99) on the battery pack (98).
CN2009200956541U 2009-02-25 2009-02-25 Environment-friendly traffic power generating system Expired - Lifetime CN201461280U (en)

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Application Number Priority Date Filing Date Title
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Application Number Priority Date Filing Date Title
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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101503991A (en) * 2009-02-25 2009-08-12 王瑞良 Traffic environment-friendly power generation system
CN105134516A (en) * 2015-06-30 2015-12-09 国网上海市电力公司 Idle kinetic energy collecting and storing power generation device
CN105697252A (en) * 2014-12-09 2016-06-22 廖人立 Wheel-pressure type power generation device for vehicle

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101503991A (en) * 2009-02-25 2009-08-12 王瑞良 Traffic environment-friendly power generation system
CN101503991B (en) * 2009-02-25 2013-04-03 王瑞良 Traffic environment-friendly power generation system
CN105697252A (en) * 2014-12-09 2016-06-22 廖人立 Wheel-pressure type power generation device for vehicle
CN105134516A (en) * 2015-06-30 2015-12-09 国网上海市电力公司 Idle kinetic energy collecting and storing power generation device
WO2017000091A1 (en) * 2015-06-30 2017-01-05 国网上海市电力公司 Device for generating power by means of collecting and storing idle kinetic energy
CN105134516B (en) * 2015-06-30 2018-03-20 国网上海市电力公司 Unused kinetic energy collecting storage and power generation apparatus

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