CN203022911U - Engine waste gas power device - Google Patents

Engine waste gas power device Download PDF

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Publication number
CN203022911U
CN203022911U CN2013200383917U CN201320038391U CN203022911U CN 203022911 U CN203022911 U CN 203022911U CN 2013200383917 U CN2013200383917 U CN 2013200383917U CN 201320038391 U CN201320038391 U CN 201320038391U CN 203022911 U CN203022911 U CN 203022911U
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China
Prior art keywords
water
waste gas
pressure
switch
engine
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Expired - Lifetime
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CN2013200383917U
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Chinese (zh)
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矫明义
矫咪
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Individual
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Individual
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02TCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO TRANSPORTATION
    • Y02T10/00Road transport of goods or passengers
    • Y02T10/10Internal combustion engine [ICE] based vehicles
    • Y02T10/12Improving ICE efficiencies

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Abstract

The utility model discloses an engine waste gas power device, wherein an engine exhausts lots of high-temperature harmful gases during working, and equipment capable of adequately utilizing the engine tail gases is still inexistent. From composition, the engine waste gas power device disclosed by the utility model comprises a control displayer (10), wherein the control displayer is connected with an electromagnetic start switch (2) installed on an exhaust tube (1); the exhaust tube is connected with a steam generator (3); the steam generator is connected with a high-pressure gas storage cylinder (14) and a water supply preheating device (36) respectively; a water supply and heat supply device is connected with a water storage tank (30); the water storage tank is connected with a cooling radiator (28); the high-pressure gas storage cylinder and the water supply preheating device are connected with a steam engine (21); the steam engine is connected with a clutch (22) and a silicon rectification generator (19) respectively; and the clutch is connected with a transmission shaft (23). The engine waste gas power device disclosed by the utility model is used for converting engine tail gases to a power.

Description

The engine exhaust power plant
technical field:
the utility model relates to a kind of engine exhaust power plant.
background technique:
motor is discharged a large amount of harmful gases such as carbon monoxide at work, has caused environmental pollution, and these gases are all high-temperature gas, have certain energy, but does not also have at present a kind of equipment can take full advantage of these engine exhausts.
summary of the invention:
the purpose of this utility model is to provide a kind of engine exhaust power plant.
above-mentioned purpose realizes by following technological scheme:
a kind of engine exhaust power plant, its composition comprises: control display device, described control display device is connected with the electromagnetic starting switch on being arranged on outlet pipe, described outlet pipe is connected with steam generator, described steam generator respectively with the high-pressure gas cylinder, the pre-temperature device that supplies water connects, described water and heat provision device is connected with water storage box, described water storage box is connected with cooling radiator, described high-pressure gas cylinder, the pre-temperature device of described water supply is connected with steam engine respectively, described steam engine respectively with clutch, silicon rectification generator connects, described clutch is connected with transmission shaft.
described engine exhaust power plant, described silicon rectification generator is connected with charger, and described charger is connected with storage battery, and described storage battery is connected with power-supply controller, and described power-supply controller is connected with DC generator.
described engine exhaust power plant, described electromagnetic pneumatic switch is connected with waste gas crossover tee switch A, described waste gas crossover tee switch A is connected with connecting rod, described connecting rod is connected with waste gas crossover tee switch B, described waste gas crossover tee switch A, described waste gas crossover tee switch B are arranged in described outlet pipe, on described outlet pipe, baffler are installed.
described engine exhaust power plant, be equipped with cooling electric fan, water transport pump on described cooling radiator, described water transport pump is connected with the one way stop peturn valve on being arranged on described water storage box, and described cooling radiator is connected with waste gas exhaust pipe.
described engine exhaust power plant, on described water storage box, raw water service pump is installed, described raw water service pump is connected with the pressure limiting switch on being arranged on the pre-temperature device of described water supply, there is the water storage box water inlet on described water storage box, between the pre-temperature device of described water storage box and described water supply, return pipe is installed, backwater pressure limiting safety check is installed on described return pipe.
described engine exhaust power plant, be equipped with high-pressure water supply pump on the pre-temperature device of described water supply, and described high-pressure water supply pump is connected with the high pressure one way stop peturn valve on being arranged on described steam generator.
described engine exhaust power plant, described control display device respectively be arranged on described steam generator on pressure transducer, temperature transducer be connected, liquid level display, water level control float are installed on described steam generator, described water level is controlled float and is connected with level switch, has safety valve A on described steam generator.
described engine exhaust power plant, described steam generator is connected by high pressure gas pipeline with the high-pressure gas cylinder, on described high pressure gas pipeline, high-pressure check valve is installed, electromagnetism alarm switch, safety valve B are installed on described high-pressure gas cylinder, between described high-pressure gas cylinder and described steam engine, air flow controller are installed.
described engine exhaust power plant, be separately installed with heating pipe in the pre-temperature device of described water storage box and described water supply.
beneficial effect:
the high-temp waste gas that the utility model utilizes motor to discharge, make this device produce powerful power, reached the purpose of energy-saving and emission-reduction.
the engine exhaust power plant, first from water storage box water inlet (pressure limiting tank lid), water is filled with to water storage box, the opening controller power switch, make water transport pump work, water in water tank is filled into to the pre-temperature device that supplies water, by the high pressure water injection pump work, by high pressure water positive opening high pressure one way stop peturn valve, water is injected into to steam generator, after water is injected into to normal water level, touch level switch by float floating lever, high-pressure service pump cuts out, complete the injecting process.
when engine running, waste gas is directly to be discharged by exhaust port, this equipment work, start the controller power switch, to electromagnetic pneumatic switch, power, pull waste gas crossover tee switch A, then pull waste gas crossover tee switch B by connecting rod, waste gas crossover tee switch A, waste gas crossover tee switch B are closed exhaust passage simultaneously.Make high-temp waste gas enter steam generator, heat to the water in steam generator, produce high pressure steam, enter into the high-pressure gas cylinder by high pressure gas pipeline by high-pressure check valve again, after pressurized gas reach rated pressure, again by the air flow control valve to the steam power machine air feed, make steam-driven generator work produce power.By clutch by transmission of power to transmission shaft, then by transmission shaft by transmission of power to power mechanism.And the power transmission that steam-driven generator can be produced makes the generator generating to silicon rectification generator.Charge a battery by charger, after electric abundance, power to direct current motor by power-supply controller, direct current motor is rotated, drive drive clutch, with pneumatic motor, make transmission shaft incite somebody to action more powerful transmission of power to power mechanism simultaneously.The high-temp waste gas that pneumatic motor produces is input to waste gas by pneumatic tube in the pre-temperature device that supplies water through collecting, then heats to the water of pre-temperature device by heating pipe, to the high pressure steam cooling, the high-temperature water in pre-temperature device is injected in steam generator by high-pressure service pump simultaneously.By pneumatic tube, high-temp waste gas is circulated in water tank.By the water in the heating pipe feed tank, heat simultaneously to steam cooling.By pneumatic tube, waste gas is input to cooling radiator, by the cooling electric fan, to the waste steam forced cooling, makes it be liquefied as water.By water transport pump, waste water is filled in water tank by conduit pipe and one way stop peturn valve, reaches the purpose of recycling.
when the pre-temperature device that supplies water because of lack of water pressure during lower than rated pressure, the pressure limiting switch cuts out automatically, making to control electromagnetic pneumatic switch by control display device auto-breaking closes, waste gas crossover tee switch A, waste gas crossover tee switch B are closed automatically, waste gas is entered to the pathway closure of steam generator, waste gas is directly discharged by outlet pipe, guarantees safety.
the electromagnetism alarm switch cuts out during higher than rated pressure automatically when gas receiver pressure, by controlling the display device auto-breaking, electromagnetic pneumatic switch is closed, waste gas crossover tee switch A, waste gas crossover tee switch B are closed automatically, waste gas is entered to the pathway closure of steam generator, waste gas is directly discharged by outlet pipe, guarantees safety.
pressure transducer passes to pressure to control the display device indicated pressure.
temperature transducer passes to temperature to control the display device indicated temperature.
after safety valve A, safety valve B ultrasonic are crossed rated pressure, automatic vent reduces pressure, and guarantees safety.
the accompanying drawing explanation:
accompanying drawing 1 is structural representation of the present utility model.
embodiment:
embodiment 1:
a kind of engine exhaust power plant, its composition comprises: control display device 10, described control display device is connected with the electromagnetic starting switch 2 on being arranged on outlet pipe 1, described outlet pipe is connected with steam generator 3, described steam generator respectively with high-pressure gas cylinder 14, the pre-temperature device 36 that supplies water connects, described water and heat provision device is connected with water storage box 30, described water storage box is connected with cooling radiator 28, described high-pressure gas cylinder, the pre-temperature device of described water supply is connected with steam engine 21 respectively, described steam-driven generator respectively with clutch 22, silicon rectification generator 19 connects, described clutch is connected with transmission shaft 23.
embodiment 2:
according to the described engine exhaust power plant of embodiment 1, described silicon rectification generator is connected with charger 16, described charger is connected with storage battery 17, and described storage battery is connected with power-supply controller 18, and described power-supply controller is connected with DC generator 20.
embodiment 3:
according to the described engine exhaust power plant of embodiment 1 or 2, described electromagnetic pneumatic switch and waste gas crossover tee switch A, piece number: 43 connect, described waste gas crossover tee switch A is connected with connecting rod 42, described connecting rod and waste gas crossover tee switch B, piece number: 41 connect, and described waste gas crossover tee switch A, described waste gas crossover tee switch B are arranged in described outlet pipe, and baffler 38 is installed on described outlet pipe.
embodiment 4:
according to embodiment 1 or 2 or 3 described engine exhaust power plant, cooling electric fan 27, water transport pump 29 are installed on described cooling radiator, described water transport pump is connected with the one way stop peturn valve 25 on being arranged on described water storage box, and described cooling radiator is connected with waste gas exhaust pipe 26.
embodiment 5:
according to embodiment 1 or 2 or 3 or 4 described engine exhaust power plant, raw water service pump 33 is installed on described water storage box, described raw water service pump is connected with the pressure limiting switch 34 on being arranged on the pre-temperature device of described water supply, there is water storage box water inlet 24 on described water storage box, between the pre-temperature device of described water storage box and described water supply, return pipe 31 is installed, backwater pressure limiting safety check 32 is installed on described return pipe.
embodiment 6:
according to embodiment 1 or 2 or 3 or 4 or 5 described engine exhaust power plant, on the pre-temperature device of described water supply, high-pressure water supply pump 37 is installed, described high-pressure water supply pump is connected with the high pressure one way stop peturn valve 40 on being arranged on described steam generator.
embodiment 7:
according to embodiment 1 or 2 or 3 or 4 or 5 or 6 described engine exhaust power plant, described control display device respectively be arranged on described steam generator on pressure transducer 6, temperature transducer 7 be connected, liquid level display 4, water level control float 5 are installed in described steam generator, described water level is controlled float and is connected with level switch 39, there is safety valve A on described steam generator, piece number: 8.
embodiment 8:
according to embodiment 1 or 2 or 3 or 4 or 5 or 6 or 7 described engine exhaust power plant, described steam generator is connected by high pressure gas pipeline 11 with the high-pressure gas cylinder, high-pressure check valve 9 is installed on described high pressure gas pipeline, electromagnetism alarm switch 12, safety valve B are installed on described high-pressure gas cylinder, piece number: 13, between described high-pressure gas cylinder and described steam engine, air flow controller 15 is installed.
embodiment 9:
according to embodiment 1 or 2 or 3 or 4 or 5 or 6 or 7 or 8 described engine exhaust power plant, in the pre-temperature device of described water storage box and described water supply, be separately installed with heating pipe 35.

Claims (9)

1. engine exhaust power plant, its composition comprises: control display device, it is characterized in that: described control display device is connected with the electromagnetic starting switch on being arranged on outlet pipe, described outlet pipe is connected with steam generator, described steam generator respectively with the high-pressure gas cylinder, the pre-temperature device that supplies water connects, described water and heat provision device is connected with water storage box, described water storage box is connected with cooling radiator, described high-pressure gas cylinder, the pre-temperature device of described water supply is connected with steam engine respectively, described steam engine respectively with clutch, silicon rectification generator connects, described clutch is connected with transmission shaft.
2. engine exhaust power plant according to claim 1, it is characterized in that: described silicon rectification generator is connected with charger, described charger is connected with storage battery, and described storage battery is connected with power-supply controller, and described power-supply controller is connected with DC generator.
3. engine exhaust power plant according to claim 1 and 2, it is characterized in that: described electromagnetic pneumatic switch is connected with waste gas crossover tee switch A, described waste gas crossover tee switch A is connected with connecting rod, described connecting rod is connected with waste gas crossover tee switch B, described waste gas crossover tee switch A, described waste gas crossover tee switch B are arranged in described outlet pipe, on described outlet pipe, baffler are installed.
4. engine exhaust power plant according to claim 1 and 2, it is characterized in that: cooling electric fan, water transport pump are installed on described cooling radiator, described water transport pump is connected with the one way stop peturn valve on being arranged on described water storage box, and described cooling radiator is connected with waste gas exhaust pipe.
5. engine exhaust power plant according to claim 1 and 2, it is characterized in that: on described water storage box, raw water service pump is installed, described raw water service pump is connected with the pressure limiting switch on being arranged on the pre-temperature device of described water supply, there is the water storage box water inlet on described water storage box, between the pre-temperature device of described water storage box and described water supply, return pipe is installed, backwater pressure limiting safety check is installed on described return pipe.
6. engine exhaust power plant according to claim 1 and 2, it is characterized in that: on the pre-temperature device of described water supply, high-pressure water supply pump is installed, described high-pressure water supply pump is connected with the high pressure one way stop peturn valve on being arranged on described steam generator.
7. engine exhaust power plant according to claim 1 and 2, it is characterized in that: described control display device respectively be arranged on described steam generator on pressure transducer, temperature transducer be connected, liquid level display, water level control float are installed on described steam generator, described water level is controlled float and is connected with level switch, has safety valve A on described steam generator.
8. engine exhaust power plant according to claim 1 and 2, it is characterized in that: described steam generator is connected by high pressure gas pipeline with the high-pressure gas cylinder, on described high pressure gas pipeline, high-pressure check valve is installed, electromagnetism alarm switch, safety valve B are installed on described high-pressure gas cylinder, between described high-pressure gas cylinder and described steam engine, air flow controller are installed.
9. engine exhaust power plant according to claim 1 and 2, is characterized in that: in the pre-temperature device of described water storage box and described water supply, be separately installed with heating pipe.
CN2013200383917U 2013-01-24 2013-01-24 Engine waste gas power device Expired - Lifetime CN203022911U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2013200383917U CN203022911U (en) 2013-01-24 2013-01-24 Engine waste gas power device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2013200383917U CN203022911U (en) 2013-01-24 2013-01-24 Engine waste gas power device

Publications (1)

Publication Number Publication Date
CN203022911U true CN203022911U (en) 2013-06-26

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CN2013200383917U Expired - Lifetime CN203022911U (en) 2013-01-24 2013-01-24 Engine waste gas power device

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CN (1) CN203022911U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103047047A (en) * 2013-01-24 2013-04-17 矫明义 Engine waste gas power device and application method thereof

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103047047A (en) * 2013-01-24 2013-04-17 矫明义 Engine waste gas power device and application method thereof
CN103047047B (en) * 2013-01-24 2015-12-02 矫明义 Engine exhaust power plant and using method

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C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20130626

Effective date of abandoning: 20151202

C25 Abandonment of patent right or utility model to avoid double patenting