CN201914453U - Large aerostat of metal structure - Google Patents

Large aerostat of metal structure Download PDF

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Publication number
CN201914453U
CN201914453U CN2010205881633U CN201020588163U CN201914453U CN 201914453 U CN201914453 U CN 201914453U CN 2010205881633 U CN2010205881633 U CN 2010205881633U CN 201020588163 U CN201020588163 U CN 201020588163U CN 201914453 U CN201914453 U CN 201914453U
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aerostatics
main body
aerostat
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metal construction
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任永斌
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Abstract

Disclosed is a large aerostat of a metal structure. The aerostat mainly comprises a main body of an aerostat, arc-shaped connecting bands, solar batteries, plane connecting bands, vertical connecting strips, load, a winch, a mooring rope, a lifting cabin, a positioning rope, two horizontal fins, a vertical fin, a motor, a propeller, a platform, a supply airship, wind-driven electricity generators and lighter gas. The main body of the aerostat is made of thicker metal boards, and the weight of the main body of the aerostat and the weight of the load are offset by the bigger buoyancy which is produced by the enlarged volume of the aerostat; mutually independent gas chambers which are formed by thin-sheet materials are installed in the interior of the aerostat, and the thin-sheet materials are connected with the inner wall of the main body of aerostat. The large aerostat of the metal structure has a long service life and strong anti-damage capability and can safely use hydrogen as filling gas, and the filling gas cannot easily leak. The large aerostat of the metal structure paves a road for aerial hotels, aerial cities, aerial solar power stations and aerial wind power stations.

Description

A kind of large-scale aerostatics of metal construction
Technical field
The utility model relates to a kind of large-scale aerostatics of metal construction, the aerostatics of a kind of large-scale metal construction made from metal and alloy sheets that swims in near-space especially for a long time.
Background technology
The aerocraft of filling with the gas that is lighter than air is referred to as aerostatics, aerostatics generally is divided into two kinds in balloon and dirigible, balloon is generally by the lighter-than-air gas composition of packing into of the air bag of softness, dirigible is the aerostatics with propelling unit, is divided into three kinds of blimp, rigid airship and blimps by the shell pattern.Modern dirigible generally all is a blimp, keep their profile, can only be to realize by gaseous tension in the air bag, and its chief component is an air bag, has been full of lighter-than-air gas so that lift to be provided in the air bag the inside, and the inside also has auxiliary balloon in addition.The air bag of modern dirigible by terylene, polyester fiber, step and artificial material such as draw to be made into, but actv. prevents the leakage of helium, and has long period of service.But, up to the present, the mankind also do not have a kind of large-scale floating hollow panel that can rest on near-space (1-12 km) for a long time, its reason is to use the material of existing balloon envelope and dirigible air bag, make large-scale floating hollow panel, though weight is light, but can not (rest in the air) for a long time such as going up a century decades, because balloon and dirigible bag material softness, life-span is short, the cost height, damage easily, gas leaks easily, the aerostatics volume is excessive, in case destroy, lose huge, so be not suitable for doing permanent large-scale floating hollow panel, resemble aerial hotel, the application in aerial city is also just imagined, the human also permanent platform of neither one near-space so far, this technology with human ability with manned moon landing and synchronous orbit space station is extremely unbecoming, but growth in the living standard along with people, can rest on air travel, go sightseeing, leisure, really be one illusioned, happy, romantic thing, the hope of this demand is more and more stronger, can stop skyborne for a long time so we need one, crash-resistant, the large-scale aerostatics that is not easy to destroy, but aerostatics is big more, need the gas of usefulness just many more, use helium cost height, because the hydrogen dirigible once exploded in history, cause many people death, mention the blanketing gas of hydrogen as manned aerostatics, people still have a lingering fear, and using metallic material to do the aerostatics main body is a kind of good selection.Though but that metallic material has is firm, period of service is long, numerous advantages such as be not easy to damage, density is big, and it is also big to conduct oneself with dignity, and the helium of filling is many, and the cost height is not born so the aerostatics of making of thick metal sheet also.
Summary of the invention
Short in order to overcome the material that has balloon or dirigible air bag now as the large-scale floating hollow panel life-span, use helium cost height, damage easily, can not forever stop skyborne shortcoming, the utility model provides metal case can use the scheme of hydrogen as the aerostatics blanketing gas safely as the large-scale aerostatics of floating empty main body, realized a kind of long life, survivability is strong, be not easy gas leakage, cheap large-scale aerostatics, be aerial hotel, aerial city, aerial solar power station, the realization of aerial wind power station is paved the way, even use helium, though cost is higher, cost has just reduced naturally but long-term use is on average got off, and uses hydrogen just not have this problem.
The technical scheme that its technical matters that solves the utility model adopts is:
1, solve that aerostatics is firm, safety, scheme that cost is low: adopt thick sheet metal to make the cheap hydrogen of the inner large volume of aerostatics main body+aerostatics+fill.
In order to make the aerostatics main body durable in use, the shell of aerostatics is that the aerostatics main body adopts thicker metal sheet manufacturing, in the aerostatics main body, fill than lighter-than-air gas, hydrogen or helium all are good selections, produce bigger buoyancy by the volume that increases aerostatics and offset the weight of self and the weight of load, the thickness of metal sheet can be greater than more than 0.5 millimeter, so just realized aluminium alloy plate, the main body of the material manufacture aerostatics of high strength such as steel plate, just can determine the thickness of aerostatics main body and the weight of load earlier, calculate the aerostatics that needs much volumes again, the aerostatics main body adopts thicker metal sheet like this, generally can both meet the demands by adjusted volume, in aerostatics, fill hydrogen or helium, if the consideration cost charges into the cost height of helium, the cost that charges into hydrogen is low, owing to used high-intensity metal sheet to make the main body of aerostatics, it is also as safe as a house to charge into hydrogen in the aerostatics main body.
2, load-bearing scheme: can bearing load in order to make aerostatics, on the aerostatics main body, there are many arc connecting bands to link to each other with the aerostatics main body, the arc connecting band can connect load; Also available many horizontal connecting bands are connected with the aerostatics main body, and horizontal connecting band also can be connected with load; Also can take many horizontal connecting bands and the cross connection of many arc connecting bands together, again with the load ways of connecting, this is load distribution the most uniform mode on the aerostatics main body; Be connected by vertical connecting strap between load and aerostatics main body, vertical connecting strap one end is connected on the load, and the other end is connected on the horizontal connecting band or on the arc connecting band, also can be connected to simultaneously on the intersection point of horizontal connecting band and arc connecting band.
3, energy scheme: in order to solve the energy problem of aerostatics, on the aerostatics main body, be furnished with solar cell, be furnished with aerogenerator in aerostatics main body appropriate location.
4, aerostatics gas safety scheme: for the gas that charges into that ensures aerostatics reduces spillage when breaking down, inside in the aerostatics main body, must adopt certain structure to realize these functions, the sheeting that the utility model adopts becomes a plurality of air chambers with aerostatics body interior space segmentation, each air chamber is separate, not exchange information, even damages such as perforation, crack appear in the aerostatics main body, the air chamber gas leakage that only closes on, most of valuable gas can not leak, do not influence the operation of whole aerostatics, for valuable time has been won in maintenance.
5, shape keeps scheme: under the situation of load-carrying, the big more easy deformation more of aerostatics volume, in order to keep the profile of aerostatics main body, sheeting is connected to the inwall of aerostatics main body by sheeting and floating empty phosphor bodies junction, because sheeting has certain tensile strength, keep certain shape to play certain effect to the aerostatics main body.
6, aerostatics and ground dough figurine, thing exchange scheme: in order to make aerostatics and ground exchange people and thing, establish winch on the aerostatics, the winch connection cable, hawser connects gondola, positioning rope is arranged below the gondola; In order to ensure that weather than aerostatics under the condition of severe and ground exchange people and thing, is provided with platform on aerostatics, stopping on the platform has the supply dirigible.
Description of drawings
Below to Brief Description Of Drawings.
Fig. 1 is a kind of large-scale aerostatics scheme drawing of metal construction.
1. aerostatics main bodys among the figure, 2. aerostatics middle part, 3. aerostatics head, 4. aerostatics afterbody, 5. arc connecting band, 6. solar cell, 7. horizontal connecting band, 8. horizontal connecting band point of connection, 9. vertical connecting strap, 10. load, 11. load point of connection, 12. windows, 13. winch, 14. hawsers, 15. gondolas, 16. positioning ropes, 17. horizontal tail, 18. normal limbs, 19. engines, 20. screw propeller, 21. platforms, 22. supply dirigibles.
Fig. 2 is a kind of large-scale aerostatics inner structure scheme drawing of metal construction.
1. aerostatics main bodys among the figure, 5. arc connecting band, 7. horizontal connecting band, 9. vertical connecting strap, 10. load, 11. load point of connection, 23. sheetings, 24. air chambers, 25. sheetings and floating empty phosphor bodies junction, 26. aerogenerators.
The specific embodiment
In the embodiment of Fig. 1, Fig. 2, we are that example further specifies the utility model with the large-scale aerostatics of realizing a kind of metal construction:
In Fig. 1, aerostatics main body 1 comprises aerostatics middle part 2, aerostatics head 3, in the aerostatics afterbody 4, aerostatics main body 1 is a metal construction shell, the employing metal sheet is welded, be full of lighter gas in aerostatics main body 1 inside, be cost-cutting, can charge into hydrogen, make aerostatics can produce buoyancy, on aerostatics main body 1, many arc connecting bands 5 are arranged, arc connecting band 5 also is can be metal construction, as be metal construction, reality is certain thickness metal tape, generally thick than aerostatics main body cover, be welded on the aerostatics main body 1, on aerostatics main body 1, be furnished with solar cell 6, for expendable weight, use thin-film solar cells, practical now thin film solar cell technologies can reach 0.1 kilowatt/kilogram technology, can satisfy the aerostatics requirement light fully to the solar cell requirement, many horizontal connecting bands 7 are arranged in the horizontal direction of aerostatics main body 1, arc connecting band 5 links together by horizontal connecting band point of connection 8 with horizontal connecting band 7, vertical connecting strap 9 one ends are connected on the horizontal connecting band 7, the other end is connected the load point of connection 11 on the load 10, load 10 can be aerial hotel, aerial city or other load, if as aerial hotel or aerial city, its inside is divided into the room of a lot of difference in functionalitys, the intensity height must be used in these rooms, lightweight material, on load 10, have a plurality of windows 12, winch 13 is arranged on the aerostatics, gondola 15 is connected on the winch by hawser 14, positioning rope 16 is arranged on the gondola 15, gondola 15 can move up and down under the folding and unfolding of hawser 14, hawser needs long enough, can gondola 15 be put down ground from the high-altitude of several kms, near gondola 15 is placed to ground, with positioning rope 16 bolts on the ground with fixing gondola 15, gondola 15 can convey goods or personnel, certainly to could use under the situation preferably in weather condition, if wind is big, use gondola 15 just to have any problem, in order to overcome this situation, below aerostatics, be provided with a platform 21, on platform 21, can stop supply dirigible 22, can realize thing between ground and the aerostatics and people's exchange with supply dirigible 22, be convenient to the goods and materials that the supply aerostatics needs, transport passenger and staff; Horizontal tail 17, normal limb 18 play a part stable, engine 19 can be an electrical motor, also can be diesel engine, spark ignition engine, also can be the combination of two kinds of engines, when the electric power that provides of solar cell 6 is enough by day, provide propulsive effort by electric power, at the night that does not have sunlight, can provide power by combustion engine, the power that is provided by engine 19 rotates screw propeller 20, drives aerostatics and advances.
In Fig. 2, arc connecting band 5 links to each other with horizontal connecting band 7, if employing metal, can link together by welding manner, vertical connecting strap 9 also is can be metal construction, the one end can be welded on the horizontal connecting band 7, the other end is connected by load point of connection 11 with load 10, the total weight of load 10 is born by vertical connecting strap 9, because vertical connecting strap 9 is to be welded on horizontal connecting band 7, horizontal connecting band 7 is welded on arc connecting band 5 and the aerostatics main body 1, this weight is finally born by the buoyancy that aerostatics produces, in order to protect the valuable gas that charges in the aerostatics main body when breaking down, to reduce spillage, and the shape that keeps aerostatics main body 1, inside in aerostatics main body 1, must adopt certain structure to realize these functions, the sheeting 23 that the utility model adopts is divided into a plurality of air chambers 24 with aerostatics main body 1 inner space, each air chamber is separate, even perforation appears in aerostatics main body 1, damages such as crack, the air chamber gas leakage that only closes on, most of valuable gas can not leak, do not influence the operation of whole aerostatics, for valuable time has been won in maintenance, sheeting 23 is connected to the inwall of aerostatics main body 1 by sheeting and floating empty phosphor bodies junction 25, because sheeting 23 has certain intensity, can make aerostatics main body 1 keep certain shape; , aerogenerator 26 has been installed on aerostatics, unite power supply with solar cell 6, ensured the power supply of aerostatics.
The selection of aerostatics main body and annex material:
Aerostatics main body 1: can use aluminum alloy, ferro-alloy, stainless steel and other metal materials, the shell done of the metal sheet of same thickness just is under same load, the volume that the metal needs that density is big is wanted is bigger, which kind of by adjusted volume,, generally can both meet the demands no matter use Metal and Alloy.
Arc connecting band 5, horizontal connecting band 7: be generally than the suitable thicker metal tape of shell, as long as intensity is enough, the non-metal band also can use, and just need couple together the weight of bearing load.
Solar cell 6: owing to consider weight, select thin-film solar cells comparatively desirable, now there has been 0.1 kilowatt/kilogram product to sell, just 1 ton of one 100 kilowatts solar-electricity station battery gross weight, can satisfy the demand of the daily electricity consumption of aerostatics fully, solar cell 6 is installed in aerostatics main body 1 surface.
Load 10: determine as required, but can consider to use the material light, that intensity is big that if use as aerial hotel, the room can just need to consider the intensity and the weight of material by ground hotel facilities configuration.
Winch 13, hawser 14, gondola 15, positioning rope 16: winch 13 be used to control gondola 15 about, gondola 15 is used for aerostatics and ground exchange goods and materials, personnel etc. up and down, so hawser 14 requires certain length and intensity, positioning rope 16 is one section rope below the gondola 15, when gondola 15 rocks during near ground indefinitely, draw positioning rope 16 fixing earlier.
Horizontal tail 17, normal limb 18 play the effect of stabilized flight, during making with reference to the dirigible manufacturing technology.
Engine 19, screw propeller 20: be used to drive aerostatics and advance, engine 19 can be electrical motor, combustion engine etc., for environmental protection, preferably uses the solar cell electricity can drive aerostatics and advances.
Platform 21, supply dirigible 22: platform 21 can be used as the daily routines place, also can stop supply dirigible 22, and supply dirigible 22 is used for weather aerostatics and ground exchange goods and materials and personnel's usefulness up and down when abominable.
Sheeting 23, air chamber 24: sheeting 23 can use metal and non-metallic material, as long as it is light, enough tensile strengths are arranged just, sheeting 23 is connected the inwall of aerostatics main body 1, air chamber 24 is surrounded by sheeting 23, and the big I of air chamber 24 is determined according to parameters such as the volume of aerostatics main body 1, safety factor, weight.
Aerogenerator 26: being used for aerial wind-power electricity generation, particularly night does not have under the situation of solar power, and aerogenerator 26 can replenish the part energy, must consider weight during manufacturing.
It is floating empty in order to illustrate that even the utility model has used thicker metal sheet also can realize, suppose that below big shaped metal aerostatics of manufacturing carries out the estimation of omiting at the beginning of to the utility model, as long as the weight of aerostatics main body is less than buoyancy that it produced, aerostatics just can swim in the air for a long time, so the weight and the buoyancy of following estimation aerostatics main body, as for the weight of load and other appurtenances, can regulate by changing aerostatics volume size and outer casing thickness.
Suppose: the aerostatics main body be one long 300 meters, 100 meters of diameters cylindrical, adopt the thick high-strength aluminium alloy plate of 3mm to be welded, wherein be full of hydrogen or helium, aluminum alloy density is calculated by 2750 kilograms per cubic meter, float on the high aerial of 3000 meters of height above sea level, the high aerial density of air that height above sea level is 3000 meters is 0.8 kilograms per cubic meter slightly.
The volume of aerostatics=3.14 * 50 meter * 50 meters * 300 meters=2355000 cubic meters;
Aerostatics is with 906 tons of thickness * 2750 kilograms per cubic meter=(2 * 3.14 * 50 meters * 300 meters+2 * 3.14 * 50 meters * 50 meters) * 0.003 meter * 2750 kilograms per cubic meter of the face area * aluminum alloy of the density=aluminum alloy of the volume * aluminum alloy of the quality=aluminum alloy of aluminum alloy=(94200 sq ms+15700 sq ms) * 0.003 meter * 2750 kilograms per cubic meter=906675 kilogram ≈.
Density of air=2355000 cubic meters * 0.8 kilograms per cubic meter=1884000 of the volume * place height of the buoyancy ≈ aerostatics that aerostatics produces kilogram=1884 tons.
Poor=1884 of buoyancy and aerostatics body weight tons-906 tons=978 tons.
As seen, as long as being no more than 978 tons, the gross weight of load and miscellaneous part just can make a huge aerostatics swim in 3000 meters high aerial for a long time, aerial hotel, aerial city will no longer be illusion, but can realize, perhaps the someone says that this investment is excessive, but can realize the long-term floating skyborne large-scale aerostatics of a long period (more than decades), its economic benefit is very considerable, investment has no relations more greatly, such as there being every day 1000 people (to omit 70 tons of weight, only account for the minimum part of aerostatics buoyancy) tourism in the above, go sightseeing, leisure, by 5000 yuan of/day calculating, one day volume of business is approximately 5,000,000 yuan, and 1 year is 1,800,000,000, estimates about the 1 year cost of just recouping capital outlay.
In order to prove that the aerostatics main body can use thicker metal sheet manufacturing, we give one example and illustrate.
Suppose: the aerostatics main body is long 3000 meters, the cylinder that diameter is 1000 meters, adopt the steel plate of 1 cm thick to be welded, wherein be full of hydrogen or helium, steel plate density is calculated by 7.8 tons/cubic meter, aerostatics swims in 3000 meters high aerial, and 3000 meters aerial density of airs are 0.8 kilograms per cubic meter slightly.
The volume of aerostatics=3.14 * 500 meter * 500 meters * 3000 meters=2355000000 cubic meters;
Aerostatics is with face area * steel plate thickness * 7800 kilograms per cubic meter=(2 * 3.14 * 500 meters * 3000 meters+2 * 3.14 * 500 meters * 500 meters) * 0.01 meter * 7800 kilograms per cubic meter=(9420000 sq ms+1570000 sq ms) * 0.01 meter * 7800 kilograms per cubic meter=857220000 of the density=steel plate of the volume * steel plate of the quality=steel plate of steel plate kilogram=857220 tons=85.722 ten thousand tons.
Density of air=2355000000 cubic meters * 0.8 kilograms per cubic meter=1884000000 of the volume * place height of the buoyancy ≈ aerostatics that aerostatics produces kilogram=1884000 tons=188.4 ten thousand tons.
Poor=188.4 ten thousand of buoyancy and aerostatics body weight tons-85.722 ten thousand tons=102.678 ten thousand tons.
Even as seen one long 3000 meters, 1000 meters of diameters, the large-scale floating empty body that adopts the steel plate of 1 cm thick to be welded floats on the high-altitude of height above sea level 3000, deadweight is outer can also to provide about 1,000,000 tons buoyancy for load and other attendant equipments except bearing.Owing to adopted the steel plate of 1 cm thick, floating empty body case is firm unusually, be not easy to destroy, let alone gas leakage, estimation can stop more than one thousand years aloft, because period of service is long, it is not high to divide the back cost, still has investment value.

Claims (10)

1. the large-scale aerostatics of a metal construction comprises the gas of filling in aerostatics main body (1) and the aerostatics main body (1), it is characterized in that: aerostatics main body (1) adopts the metal sheet manufacturing, is filled with gas in aerostatics main body (1).
2. the large-scale aerostatics of a kind of metal construction as claimed in claim 1 is characterized in that: the gas of filling in aerostatics main body (1) is hydrogen.
3. the large-scale aerostatics of a kind of metal construction as claimed in claim 1 is characterized in that: on aerostatics main body (1), have many arc connecting bands (5) to link to each other with aerostatics main body (1).
4. the large-scale aerostatics of a kind of metal construction as claimed in claim 1, it is characterized in that: many horizontal connecting bands (7) are connected with aerostatics main body (1).
5. the large-scale aerostatics of a kind of metal construction as claimed in claim 1 is characterized in that: on aerostatics main body (1), many horizontal connecting bands (7) and arc connecting band (5) cross connection are together.
6. the large-scale aerostatics of a kind of metal construction as claimed in claim 1, it is characterized in that: between load (10) and aerostatics main body (1), be connected by vertical connecting strap (9), vertical connecting strap (9) one ends are connected on the load (10), the other end is connected on the horizontal connecting band (7) or on the arc connecting band (5), also can be connected to simultaneously on the intersection point of horizontal connecting band (7) and arc connecting band (5).
7. the large-scale aerostatics of a kind of metal construction as claimed in claim 1 is characterized in that: be furnished with solar cell (6) and aerogenerator (26) is installed on aerostatics main body (1).
8. the large-scale aerostatics of a kind of metal construction as claimed in claim 1, it is characterized in that: inside in aerostatics main body (1), the sheeting (23) that adopts is divided into a plurality of air chambers (24) with aerostatics main body (1) inner space, and each air chamber (24) is separate, not exchanges information.
9. the large-scale aerostatics of a kind of metal construction as claimed in claim 1 is characterized in that: sheeting (23) is connected to the inwall of aerostatics main body (1) by sheeting and floating empty phosphor bodies junction (25).
10. the large-scale aerostatics of a kind of metal construction as claimed in claim 1, it is characterized in that: establish winch (13) on the aerostatics, winch (13) connection cable (14), hawser (14) connects gondola (15), positioning rope (16) is arranged below the gondola (15), be provided with platform (21) on aerostatics, stopping on the platform has supply dirigible (22).
CN2010205881633U 2010-10-30 2010-10-30 Large aerostat of metal structure Expired - Fee Related CN201914453U (en)

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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102030099A (en) * 2010-10-30 2011-04-27 任永斌 Large-scale aerostat with metal structure
CN102795332A (en) * 2012-08-30 2012-11-28 湖南航天机电设备与特种材料研究所 Wind and light complementary power generation tethered balloon
CN105015756A (en) * 2015-07-23 2015-11-04 北京天航华创科技股份有限公司 Wind power generation and heat dissipation and cooling-integrated structure for stratospheric airship
CN107089315A (en) * 2017-04-25 2017-08-25 哈尔滨工业大学 Modularization floating island
CN110729947A (en) * 2019-09-23 2020-01-24 中国科学院光电研究院 Mooring ball energy system and control method

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102030099A (en) * 2010-10-30 2011-04-27 任永斌 Large-scale aerostat with metal structure
CN102795332A (en) * 2012-08-30 2012-11-28 湖南航天机电设备与特种材料研究所 Wind and light complementary power generation tethered balloon
CN105015756A (en) * 2015-07-23 2015-11-04 北京天航华创科技股份有限公司 Wind power generation and heat dissipation and cooling-integrated structure for stratospheric airship
CN105015756B (en) * 2015-07-23 2017-03-08 北京天航华创科技股份有限公司 A kind of stratospheric airship wind power generation radiating and cooling integral structure
CN107089315A (en) * 2017-04-25 2017-08-25 哈尔滨工业大学 Modularization floating island
CN107089315B (en) * 2017-04-25 2019-05-03 哈尔滨工业大学 Modularization floating island
CN110729947A (en) * 2019-09-23 2020-01-24 中国科学院光电研究院 Mooring ball energy system and control method

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Granted publication date: 20110803

Termination date: 20121030