CN101270725B - Ceramic solar ventiduct - Google Patents

Ceramic solar ventiduct Download PDF

Info

Publication number
CN101270725B
CN101270725B CN2007100140083A CN200710014008A CN101270725B CN 101270725 B CN101270725 B CN 101270725B CN 2007100140083 A CN2007100140083 A CN 2007100140083A CN 200710014008 A CN200710014008 A CN 200710014008A CN 101270725 B CN101270725 B CN 101270725B
Authority
CN
China
Prior art keywords
ceramic
air
solar
vanadium
ceramic solar
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN2007100140083A
Other languages
Chinese (zh)
Other versions
CN101270725A (en
Inventor
曹树梁
许建华
蔡滨
王启春
石延岭
许建丽
谷胜利
杨玉国
修大鹏
王立刚
Original Assignee
曹树梁
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 曹树梁 filed Critical 曹树梁
Priority to CN2007100140083A priority Critical patent/CN101270725B/en
Priority to US12/302,489 priority patent/US20090229598A1/en
Priority to PCT/CN2007/001653 priority patent/WO2007137506A1/en
Priority to JP2009511323A priority patent/JP4991849B2/en
Priority to AU2007266395A priority patent/AU2007266395B2/en
Publication of CN101270725A publication Critical patent/CN101270725A/en
Application granted granted Critical
Publication of CN101270725B publication Critical patent/CN101270725B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24SSOLAR HEAT COLLECTORS; SOLAR HEAT SYSTEMS
    • F24S70/00Details of absorbing elements
    • F24S70/10Details of absorbing elements characterised by the absorbing material
    • F24S70/16Details of absorbing elements characterised by the absorbing material made of ceramic; made of concrete; made of natural stone
    • 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
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/40Solar thermal energy, e.g. solar towers
    • Y02E10/46Conversion of thermal power into mechanical power, e.g. Rankine, Stirling or solar thermal engines
    • 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
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/70Wind energy
    • Y02E10/72Wind turbines with rotation axis in wind direction

Landscapes

  • Engineering & Computer Science (AREA)
  • Ceramic Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Sustainable Development (AREA)
  • Sustainable Energy (AREA)
  • Thermal Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Photovoltaic Devices (AREA)
  • Compositions Of Oxide Ceramics (AREA)

Abstract

A ceramic solar energy air channel is formed by installing a ceramic solar panel and an air channel along the hillside and the peak, and flowing air current is used for driving an air turbine installation to generate electricity. Ceramic solar panel heat collectors are installed on the hillside exposed to the sun and the sloping field under the hillside by groups and are grouped from up to down and from left to right. Each group has a plurality of lengthwise rows. The heat collectors in the lengthwise row of the ceramic solar panel heat collectors are communicated with each other from up to down and from beginning to end; a lower opening is communicated with an air inlet pipe; an upper opening is communicated with a hot air branch channel; the air inlet pipe and the hot air branch channelhave certain obliquity with the horizontal. The air current direction is from down to up. The lower opening of the air inlet pipe is open, and the upper opening is closed. The lower opening of the hot air branch channel is closed, and the upper opening is communicated with a prime air channel. Air enters from the lower opening of the air inlet pipe, is heated by sunshine in the heat collectors and enters into the prime air channel upwards through the hot air branch channel to be exhausted from the upper opening of the prime air channel. The air turbine installations are installed at the inletof the air inlet pipe and the outlet of the prime air channel, the air forms the air current under the pressure difference to push turbines to drive the generator to generate electricity.

Description

Ceramic solar ventiduct
(1) technical field
The present invention relates to pottery and make and utilize the technical field of solar energy with ceramic products, be to be that black or dark large scale hollow ceramic plate are as solar absorber plate specifically with trade waste, natural minerals, compound and the conventional ceramic raw material manufacturing low cost that is rich in the period 4 transition metal, long-life integral body or surface, be called for short ceramic solar plate, the solar energy that utilizes ceramic solar plate to absorb provides the energy of the hot air of expanded by heating as generating, the alternative energy that solar energy is become can utilize on a large scale.
(2) background technique
The solar energy utilization mainly is divided into solar photovoltaic utilization, solar thermal utilization mode, solar thermal utilization mainly is a solar water heater at present, solar water heater is divided into closing-sunning type and circulating, circulating efficient is higher, its thermal collection body mainly adopts board-like thermal collection body of metal tube and vacuum glass tubular type thermal collection body, and the board-like thermal collection body of metal tube is also referred to as flat thermal collection body.Both all have the following disadvantages: 1. the board-like thermal collection body of metal tube mainly adopts materials such as copper, aluminium, glass tube with vacuum thermal collection body structure and manufacturing process relative complex, and the price of calculating both with every square metre of heat absorption area is all than higher.2. both all adopt the black sunlight absorbing coating that low temperature applies, the aging sunlight absorption rate that makes that has under long-term effect of sunlight to a certain degree decays, the degree of vacuum that metal is perishable, glass tube with vacuum is interior can progressively descend, and all is the major reason that causes life-span and efficiency.3. be combined as a whole with building owing to reasons such as material, structure, cost and life-span are difficult.
Some countries have carried out the development test of the solar energy thermal-power-generating mode of a kind of being referred to as " solar chimney " in recent years.The solar chimney power generation system mainly is made up of chimney heat collector (greenhouse, plane) and generator and energy storage device, by being produced air-flow by the air of Greenhouse Heating through center, greenhouse and chimney bottom, drives generator and generates electricity.The Manzanaries of nineteen eighty-two Germany scientific research personnel in the Madrid, ESP south builds up a 50KW solar chimney demonstrative project, first the notion of large greenhouse hot air flow promotion turbine generation come true.After this, on this basis, Eviro Mission company begins to plan 600km place to the west of Sydney, AUS, builds the solar chimney power station of 200MW.The high 1000m of its chimney, diameter 130m, being built in diameter is the center in the greenhouse, plane of 7000m.Its key technology, be in the certain temperature difference of the inside and outside creation in greenhouse, make the air guided inclination ceiling board place that moves to the center in the large-scale circular glasshouse produce the distinguished and admirable of a nearly constant speed, by being installed in 32 double shrouded wheel machine uninterruptable power generations round the clock of chimney bottom.Estimate that construction investment is 16~2,000,000,000 Australian Dollars.This project is still in the optimal design stage at present.The maximum characteristics of this mode are not have focusing system, not only can utilize scattered light, and have avoided every technical barrier of bringing because of optically focused.
" solar chimney " relies on the greenhouse, plane to carry out thermal-arrest, and upward flow in the dependence chimney stalk and inlet and outlet pressure difference cause distinguished and admirable, may have the following disadvantages:
1. about 30 ℃ of common greenhouse internal-external temperature difference, and solar thermal collector is carried out sky when shining, internal-external temperature difference can be above 120 ℃, by contrast, the Heat-collecting effect of " solar chimney " is lower, and still, existing solar thermal collector cost is too high, wherein the glass tube with vacuum thermal collection body is that the blind pipe of a sealing is difficult to form unobstructed air-flow, also makes to use to cause difficulty.
2. the chimney of diameter 130m, high 1000m may be a highest present artificial building, and technology and difficulty of construction may form very high cost in its building course.
Continued to quicken to exploit through nearly 200 years; fossil fuel resources such as coal, oil, rock gas are progressively exhausted; the mankind must search out at least a new extensive alternative energy in finite time now, otherwise the real energy crisis that modern society is fallen back significantly.Extensive application the same with nuclear fusion, the flammable hyrate in deep-sea, space solar power station, low-cost solar battery etc., low-cost, the long-life solar energy heat collector also may form the new extensive alternative energy.
The common recognition of scientific circles is at present: the solar radiant energy total amount that arrives earth top, than big several ten thousand times of the total amount that consumes the various energy on the earth, in case technical making a breakthrough makes it to have competitive ability on cost, solar energy can satisfy human most energy demand.
We need select the abundant area of solar energy in other words, be paved with solar collector and be that electric power can form the extensive alternative energy with the solar energy converting of collecting on promptly about 100,000 square kilometres of areas on the area that takes up an area of about ball top a thousandth, 100,000 square kilometres equal 1,000 hundred million square metres.
Solar electrical energy generation mainly is solar energy power generating and solar energy thermal-power-generating at present, solar energy thermal-power-generating can be divided into the high temperature generating of optically focused, tracking mode and the low-temperature electricity-generating of heat collector mode again, the sunshine collector of photovoltaic generation is a solar cell, the trap of high temperature generating is reflector and solar tracking system, and the trap of low-temperature electricity-generating mainly is plate-tube type collector metal device and glass tube with vacuum.The common drawback of these traps is that cost is higher at present, life-span is shorter, usually cost is every square metre hundreds of extremely thousands of yuans, life-span is 5 years to 20 years, various generator set are very ripe, its cost and life-span relative fixed, solar energy is the low density energy, the upper limit is every square metre of 1KW approximately, in any case it is accurate, complicated, advanced trap all can not be collected more energy, so collect the trap that solar energy needs huge area, the prime cost of solar electrical energy generation is determined by trap, key is the cost and the life-span of trap, the cost of the in general existing trap several times that need descend, and the life-span increases several times simultaneously, relative conventional energy resource, solar electrical energy generation just can be competitive.
Produce black ceramic in the past and must add Co, Cr, Ni, Mn, Fe grade in an imperial examination phase transitional element all around, price is very expensive, it is the method that one of raw material is produced various black ceramic goods with the tailings in vanadium extraction that the Chinese invention patent CN85102464 that the inventor declares and obtains " production method and the goods thereof of black ceramic goods raw material ", CN86104984 " a kind of pottery powder " have narrated, and this black ceramic is called vanadium-titanium black ceramic.This invention is that nine external state invention patent certificates are declared and obtained to title with " ceramic powder and goods thereof " (Ceramrc powder and drticles) again, is respectively U. S. Patent 4737477, Japan Patent 1736801, English, method, moral, austrian patent (EUROPEAN PATENT OFFICE) 0201179, Australian Patent 578815, Singapore's patent 1009/91, Finnish patent 81336 and Hong Kong patent 1077/1991.The twentieth century later stage eighties inventor has declared " black ceramic solar tile ", " black ceramic parapet-type solar thermal collector ", patents such as " black ceramic solar energy roofs ", the beginning of this century, the inventor declared " ceramic solar plate ", " manufacture method of composite ceramics hollow solar heat-collection plate ", " structure and material on a kind of new type solar energy roof ", " manufacturing of ceramic solar board heat collector and installation method ", " method of compounding solid netted black porcelain sunlight absorbing layer on ceramic solar plate ", " black ceramic composite ceramic solar panel ", patents such as " ceramic hollow sheeting cementation and formation method and application thereof ".
Described tailings in vanadium extraction is that vanadium titano-magnetite obtains vanadium-bearing hot metal through melting, vanadium-bearing hot metal obtains vanadium slag through blowing, vanadium slag adds auxiliary material and carries out roasting, and roasting material is carried out wet extraction vanadium extraction salt, and the remaining residue as waste is tailings in vanadium extraction behind the extraction vanadic salts.
Tailings in vanadium extraction is rich in the period 4 transition metal, as: (Fe 2O 3+ FeO) 50-70, TiO5-9, MnO4-7, CrO 30.002-3, V 2O 50.2-2, SiO 212-26, Al 2O 32-4, CuO0.9-2, MgO0.6-2, Na 2O2-6, K 2O0.012-0.12, tailings in vanadium extraction until through melting process, are always ater at normal temperatures with through the high-temperature roasting of different temperatures.
China's year output tailings in vanadium extraction is about 300,000 tons at present, and the main place of production is Sichuan, Hebei, Liaoning etc., and representative enterprise is Panzhihua Iron, second chemical plant, Chengde, Jinzhou vanadium industry company etc.Tailings in vanadium extraction is rich in Fe, Cr, Mn, V, Ti grade in an imperial examination phase element complex compound all around, account for about 80% of gross weight, it is a kind of very special trade waste, wherein the extraction of any composition and utilization all can not show a candle to the Economy of corresponding natural minerals, and their aggregate is a kind of very stable ceramic black colorant, the manufacturing that the artificial for a long time Co for preparing is ceramic black colorant must be through strict prescription, meticulous, complicated processing just can obtain the ceramic black colorant that is colour-stable, about 200,000 yuan of common prices per ton.Tailings in vanadium extraction is not only stable ceramic black colorant, and itself also is good basalt raw material, and hundred-percent tailings in vanadium extraction just can produce that physicochemical property is good, the exsertile vanadium-titanium black ceramic goods of photo-thermal transformational.
Vanadium-titanium black ceramic was invented in 1984, on April 1st, 1985 began to declare patent, 1986 by technical evaluation, vanadium-titanium black ceramic can be made hollow solar heat-collection plate, far-infrared radiation element, the art work, decorative panel for building etc., wherein the current production rate maximum is the vanadium-titanium black ceramic decorative panel for building, the at present main place of production is Guangdong, Shanghai, and representative enterprise is the great ceramics factory in east, Foshan City, the grand basic special cermacis in Shanghai company etc.China's ceramic building decorative sheet (ceramic wall and floor bricks) output occupies first place in the world, Annual output accounts for Gross World Product about 50% for 4,000,000,000 square metres, because the vanadium-titanium black ceramic decorative sheet uses a large amount of tailings in vanadium extraction, took a large amount of stockyards in the past, the present price of tailings in vanadium extraction that becomes vanadium extraction factory heavy burden has reached 160-300 unit/T.Therefore whole nation tailings in vanadium extraction output factory obtains year up to ten million units of net income, and vanadium-titanium black ceramic is decorated the several hundred million units of hair plates annual sales.The eighties in 20th century, the beginning of the nineties are with up to ten thousand square metres of 300 * 300 millimeters vanadium-titanium black ceramic hollow solar plates of gypsum mould grouting forming method trial-production, manufacturing and use vanadium-titanium black ceramic solar water heater are more than hundreds of, directly be built in nearly thousand square metres of vanadium-titanium black ceramic solar water heaters on the roof, adopt brick, cement housing, magnesite housing, water vat water storage box and the special ceramic water storage box of making, purpose is progressively to develop into vanadium-titanium black ceramic solar energy roof.0.09 square metre of 300 * 300 millimeters vanadium-titanium black ceramic solar plate veneer area, water capacity 0.9kg, water temperature can reach 100 ℃ during the vexed solarization of single-glass veneer, the vanadium-titanium black ceramic solar water heater obtains the first prize in Shandong Province solar water heater the whole province comparation and assessment in 1987, water quality before and after the heating of vanadium-titanium black ceramic solar water heater is not found visible variation after testing, using solar plate more than 10 years not have fades, corrosion, the aging sign that waits, but gypsum mould grouting moulding vanadium-titanium black ceramic hollow solar plate method, shaping efficiency is low, consume a large amount of gypsum, moulding large scale solar plate yield rate is low, small size plate joint is too much, install loaded down with trivial details, be difficult to develop into the large-scale industrial production method, be difficult to realize the large-scale promotion use.The large scale solar plate with the trial-production of vacuum extrusion molding of inventor's recent development, shaping efficiency exceeds tens of times than gypsum mould grouting method, and scalable several times to tens times of board dimension can develop forming mass production and application.
The most important characteristic of vanadium-titanium black ceramic is the photo-thermal transfer characteristic, vanadium-titanium black ceramic is typical energy and material, inventor's more practical large scale vanadium-titanium black ceramic solar plate of research and development and be that surface layer is the vanadium-titanium black ceramic composite ceramic solar panel of matrix with the conventional ceramic with the vanadium-titanium black ceramic with all strength is used for vanadium-titanium black ceramic solar energy roof for this reason.Whole nation tailings in vanadium extraction quantum of output can be produced about 1,500 ten thousand square metres of practical large scale vanadium-titanium black ceramic solar plate per year, can be and make its Annual output of vanadium-titanium black ceramic composite ceramic solar panel above 1,000,000,000 square metres, the photo-thermal transfer process betides body surface, and both performances can accomplish there is no significant difference.
About 700 yuan of present one ton of solid hair plates of vanadium-titanium black ceramic, about 3000 yuan of cast iron, 4500 yuan of steel, 24000 yuan of aluminiums, 70000 yuan of copper materials are compared its proportion and are differed 3 times with iron and steel, be that the porcelain plate volume that identical currency is bought is that iron and steel is more than 10 times, and the porcelain corrosion resistance life-span can be longer more than 10 times than iron and steel, can think that ceramic material is more corrosion-resistant than any metal, every square metre of vanadium-titanium black ceramic or composite ceramic solar panel weight can be less than 40kg.Ceramic material is cheap to be because that big, widely distributed, the haul distance of raw material reserves is short, processing temperature can be lower than 1200 ℃, processing technology is simple, it is that these factors are difficult to change because the raw material reserves are few, effective content is low, haul distance is far away, about 1600 ℃ or need electrolysis for production, processing technology complexity of processing temperature that metallic material costs an arm and a leg.So conventional ceramic, vanadium-titanium black ceramic or be that the surface is that matrix is fit to make the solar energy heating body with the general ceramic material with the vanadium-titanium black ceramic, both are more suitable for making the solar energy heating body after outstanding.
Vanadium-titanium black ceramic can a large amount of energy that absorb in the sunlight during by solar radiation, and sunlight absorption rate can reach 0.9, and through test, in latitude 37 degree areas, summer, fine 1 square metre of vanadium-titanium black ceramic solar plate can be heated to 10kg water 100 ℃.Vanadium-titanium black ceramic is good optical-thermal conversion material, is novel energy and material.Vanadium-titanium black ceramic black is pure, physicochemical property is good, at present be used to produce the decorative panel for building of solid surface polishing in a large number, low production cost, about 12 millimeters of vanadium-titanium black ceramic decorative sheet thickness, 25 yuan every square metre of the hair plates retail valencys that does not polish, producer price can be about 17 yuan, its sales volume has reached several hundred million units, the vanadium-titanium black ceramic decorative sheet utilizes just that vanadium-titanium black ceramic black is pure, decorative effect is sedate, serious this characteristic, and the photo-thermal transfer characteristic that itself has does not obtain sufficient development and utilization as yet.Vanadium-titanium black ceramic intensity height, bending strength 45~100MPa, almost double than common porcelain brick, cheap for manufacturing cost, not burn into do not wear out, do not fade, nontoxic, harmless, "dead", fire through thousands of degree temperature and to form, through accelerated ageing, do not find the sunlight absorption rate attenuation problem, can have almost permanent working life, be fit to very much make the solar energy heating body, easily combine with building, be used for the solar energy roof, its intensity is about ten times on common tile, service time can with the building the same life-span.
Most ceramic productss have certain whiteness requirement, so the too high raw material of iron-holder is used in restriction, ceramic solar plate and the present solid hair plates of the vanadium-titanium black ceramic surface of mass production are black, no whiteness requirement, so raw material sources are more extensive, cost of material is lower, the about 12mm of the solid hair plates thickness of vanadium-titanium black ceramic, mostly be 800 * 800mm sheet material, cost of production can be lower than 17 yuans every square metre, and ceramic solar plate is a hollow sheet material, and we can be 20~40mm at present pilot sample total thickness, wall thickness 2~5mm, the veneer area can be greater than 0.5m 2Its every square metre raw material consumption can be equal to or less than the solid hair plates of vanadium-titanium black ceramic, both compare its raw material processing, moulding, drying, burn till, has comparativity, ceramic solar plate has increased the sealing-in operation of two ends, when realizing mass production, both one-tenth should have comparativity, and the cost of production estimation of ceramic solar plate is 1.5~3 times of the solid hair plates of vanadium-titanium black ceramic.Burn into is not aging, black side is not faded, sunlight absorption rate can not decay, and can think that should be supreme a century decades its working life for ceramic solar plate.
Ceramic raw material mainly is meant china clay, quartzy, feldspar, the large-size ceramic solar plate does not have the whiteness requirement, can adopt the most common, the cheap ceramic raw material that iron-holder is higher, the earth all accumulates a large amount of these type of raw materials of the root of Dahurian angelica everywhere, a large amount of trade wastes and natural minerals are rich in the period 4 transitional element, be enough to provide corresponding black table surface layer even the required black ceramic material of whole solar plate, as long as realize technological break-through, the technology that the large-size ceramic solar plate is produced, method, cost and conventional ceramic wall floor tile such as vanadium-titanium black ceramic decorative sheet etc. have comparativity, can be extensive, produce the large-size ceramic solar plate cheaply, only China just has the throughput of producing 4000000000 square metres of ceramic wall and floor bricks per year, the ceramic wall and floor bricks manufacturing shop that China is maximum, a factory building takes up an area of 1000 mu, 100,000,000 square metres of throughput, so as long as market demand, economically feasible, ceramics can be produced than the more large-size ceramic solar plate of ceramic wall and floor bricks both at home and abroad, can in 10 years, make and surpass 1,000 hundred million square metres large-size ceramic solar plate, usually the ceramic products firing temperature is about 1200 ℃, ceramic products is high bond energy mineral, performance is highly stable, nearly all ceramic products can both be accomplished not corrode, not aging, do not fade, nontoxic, harmless, "dead", sunlight absorption rate is unattenuated, have higher intensity and good weatherability, can have and go up century-old working life.
The large-size ceramic solar plate can be used for making solar water heater, builds the solar energy roof, for building provides hot water, air-conditioning, heating installation, in the abundant area of sunlight, the large size electricity generating device is built in barren beach, hills, mountain region, desert as western part of China, makes solar energy really become the extensive alternative energy.
(3) summary of the invention
Purpose of the present invention: ceramic solar plate and air channel are installed formation " ceramic solar ventiduct " along hillside and mountain peak, drive the air turbine generating with airflow flowing.
The present invention is achieved in that
With tailings in vanadium extraction or (with) other be rich in the period 4 transition metal industrial residue or (with) be rich in the period 4 transition metal metalliferous mineral or (with) be rich in the compound and the conventional ceramic raw material of period 4 transition metal, with method moulding such as the vacuum extruding machine extrude, drying, it is the ceramic porous plate of solid netted black porcelain that sintering is made integral black or top layer black or top layer, the pottery ventilating hole plate, the pottery hollow sheeting, the porous ceramics telescopic lap splice, the telescopic lap splice of single hole pottery, the pottery turnover mouth of pipe, the pottery end plate, bring the ceramic end plate of outlet spout into, a big mouth of pipe ceramic end plate, big mouth of pipe ceramic jacket connects end plate etc., ceramic joint also can adopt the goods of black silicon rubber product or other ageing-resistant made to replace with the end plate of bringing outlet into, described goods can be used sintering, glued joint, socket, methods such as combination form ceramic solar plate, the major path ceramic solar plate, major path combined type ceramic solar plate etc., solar plate combined with thermal insulating material and transparent cover plate then becomes ceramic solar board heat collector, the both sides of heat collector and various supporters can be installed all around are beneficial to the installation of solar thermal collector, check, maintenance.
Ceramic solar ventiduct electricity generating device: ceramic solar board heat collector grouping is installed in slope under endroit and the hillside, grouping up and down, the some files of every component, heat collector in ceramic solar board heat collector file head and the tail up and down communicates, end opening communicates with air intake pipe, suitable for readingly communicate with the hot blast by-path, air intake pipe all becomes certain inclination angle with the hot blast by-path with horizontal plane, airflow direction from bottom to top, the air intake pipe end opening opens wide, sealing suitable for reading, the sealing of hot blast by-path end opening, suitable for reading and total air channel communicates, and air enters heat collector from the air intake pipe end opening and is upwards entered total air channel through the hot blast by-path by the sunlight heating, from the discharge suitable for reading of total air channel, air intake pipe inlet forms negative pressure, and total ducting outlet place forms malleation, in air intake pipe inlet and total ducting outlet place air turbine is installed, air forms air-flow under pressure difference, promote turbine and drive generator for electricity generation.
Described ceramic solar plate is divided into ceramic hollow sheeting, ceramic ventilating hole plate, ceramic half ventilating hole plate, ceramic porous plate.
Described ceramic solar board heat collector is divided into ceramic hollow sheeting heat collector, ceramic ventilating hole plate heat collector, ceramic half ventilating hole plate heat collector, ceramic porous board heat collector, the hollow sheeting heat collector is bottom and all around in conjunction with the heat collector of thermal-protective material, ventilating hole plate, half ventilating hole plate, porous slab heat collector be bottom and both sides in conjunction with the heat collector of thermal-protective material, the heat collector top covers transparent cover plate.
Described ceramic solar board heat collector file is communicated and forms according to flow direction series connection, head and the tail by ceramic solar board heat collector.
Described ceramic solar board heat collector file is communicated and forms according to flow direction series connection, head and the tail by ceramic solar plate, and solar plate bottom or bottom and both sides are laid thermal-protective material in advance, and the top covers transparent cover plate.
Described total air channel is leaned on mountain shape and is built, and height difference is 200~3000m between total ducting outlet and the minimum import of air intake pipe.
Described total air channel and hot blast by-path are insulation pipes.
The length of described ceramic solar board heat collector file is 5~100m.
Described ceramic solar ventiduct removes the turbo machine of air intake pipe and air intake pipe inlet, in total air channel and hot blast by-path turbo machine is being installed step by step.
(4) description of drawings
Describe characteristics of the present invention in detail below in conjunction with accompanying drawing:
Fig. 1 represents the ceramic porous solar plate in the ceramic solar plate, ceramic through hole solar plate, ceramic hollow solar plate and brings the end plate of outlet spout into.
Fig. 2 represents ceramic hollow solar board heat collector and Placement thereof.
Fig. 3 represents to connect end plate by a big mouth of pipe ceramic end plate, ceramic through hole solar plate, porous ceramics telescopic lap splice, ceramic porous solar plate, the telescopic lap splice of single hole pottery, big mouth of pipe ceramic jacket, through the major path combined type ceramic solar plate column that splicing forms, thermal-protective material is laid in bottom or bottom and both sides, the top covers transparent cover plate then becomes the ceramic solar board heat collector file.
Fig. 4 represents to connect end plate, ceramic half through hole solar plate, the elasticity zone circle of ageing-resistant flexible material manufacturing, the ceramic porous solar plate major path combined type ceramic solar plate column through being socketed to form by the big mouth of pipe elastic sleeve of ageing-resistant flexible material manufacturing, and thermal-protective material is laid in bottom or bottom and both sides, the top covers transparent cover plate then becomes the ceramic solar board heat collector file.
Fig. 5 represents air intake pipe, ceramic solar board heat collector file, hot blast by-path, the annexation between total air channel and the mounting point of air turbine of ceramic solar ventiduct, the ceramic solar board heat collector file that this figure represents with ceramic hollow solar board heat collector connect up and down, head and the tail communicate composition.
Fig. 6 represents that ceramic solar ventiduct is close to the mountain and leans on the slope and build, and expression air intake pipe, hot blast by-path, total air channel be position and annexation separately, and this figure has omitted the ceramic solar board heat collector file between air intake pipe and the hot blast by-path.
Among the figure:
1---ceramic porous solar plate 2---ceramic through hole solar plate 3---is brought the ceramic end plate of outlet spout into
4---ceramic hollow solar plates 5---are by ceramic hollow solar plate and thermal-protective material is formed, the pottery of transparent cover plate is not installed as yet
Porcelain hollow solar board heat collector 6---ageing-resistant flexible interface and stainless steel pipe collar 7---adhesive material
A 8---big mouth of pipe ceramic end plate 9---porous ceramics telescopic lap splice 10---single hole pottery telescopic lap splices
The big mouth of pipe elastic sleeve of ageing-resistant flexible material manufacturing connects end plate to 11---big mouth of pipe ceramic jacket connects end plate 12---
13---ceramic half through hole solar plate 14---elasticity zone circle 15 that ageing-resistant flexible material is made---air intake pipes
16---the total air channels of ceramic solar board heat collector file 17---hot blast by-path 18---
19---exhaust outlet air turbine generator set 20---intake grill air turbine generator set
(5) specific embodiments
Embodiment
1. on abundant regional deserted mountain of sunlight and the barren beach under the deserted mountain, build ceramic solar ventiduct, total air channel from the top, mountain peak forward Yang Shanpo extend on the barren beach, barren beach is to mountain peak overhead height difference 1500m, total air channel is built in vertical and 5 kilometers of top, inclination hillside length overalls, build 5 kilometers of the barren beach top length of substantially flat in, 10 kilometers of total air channel length overalls, make total air channel inclination 0.5~2 degree of building on the barren beach, total ducting outlet section diameter maximum, be 160m, progressively attenuate downwards, total both sides, air channel connect the hot blast by-path every 50 meters, be installed into airduct, each long 5 kilometers, the hot blast by-path is the highest with total joint, air channel, tail end is downward-sloping, 0.1~2 degree tilts, hot blast by-path and total joint, air channel diameter 8m, progressively attenuate downwards, air intake pipe is built in parallel below at a distance of 50m with the hot blast by-path, both length, the inclination angle is approximate, the thickest section diameter 6m of air intake pipe, the ceramic solar board heat collector file is installed between hot blast by-path and air intake pipe, is higher than the air intake pipe place with hot blast by-path joining portion, inclination 0.1-2 degree, the ceramic solar board heat collector file that adopts the major path as Fig. 4 to be flexible coupling, promptly adopt the big mouth of pipe elastic sleeve of silicone rubber manufacturing to connect end plate, the elasticity zone circle, pottery half ventilating hole plate, ceramic porous plate, ceramic half ventilating hole plate, porous slab length 1.5m, width 700mm, total thickness 30mm, wall thickness 3mm is a matrix with the conventional ceramic, the solid netted vanadium-titanium black ceramic sunlight absorbing layer of surface recombination.
2. as embodiment's 1 described ceramic solar ventiduct, wherein arch structure are all adopted in air intake pipe, hot blast by-path, total air channel, and adopting as shown in Figure 3, major path glueds joint the ceramic solar board heat collector file.
3. as embodiment's 1 described ceramic solar ventiduct, wherein double-deck inflation structure is adopted in air intake pipe, hot blast by-path, total air channel.
4. as embodiment's 1 described ceramic solar ventiduct, wherein adopt with heat air pressure from the moulding structure in air intake pipe, hot blast by-path, total air channel.
5. as embodiment's 1 described ceramic solar ventiduct, remove the turbo machine of air intake pipe and air intake pipe inlet, in total air channel and hot blast by-path, turbo machine is installed step by step.

Claims (3)

1. ceramic solar ventiduct, it is characterized in that the top layer with tailings in vanadium extraction and the manufacturing of conventional ceramic raw material is black porcelain, matrix is that the ceramic solar plate of conventional ceramic is formed ceramic solar board heat collector, ceramic solar board heat collector grouping is installed in slope under endroit and the hillside, grouping up and down, the some files of every component, heat collector in ceramic solar board heat collector file head and the tail up and down communicates, end opening communicates with air intake pipe, suitable for readingly communicate with the hot blast by-path, air intake pipe all becomes certain inclination angle with the hot blast by-path with horizontal plane, airflow direction from bottom to top, the air intake pipe end opening opens wide, sealing suitable for reading, the sealing of hot blast by-path end opening, suitable for reading and total air channel communicates, air enters heat collector from the air intake pipe end opening and is upwards entered total air channel through the hot blast by-path by the sunlight heating, from the discharge suitable for reading of total air channel, air intake pipe inlet forms negative pressure, total ducting outlet place forms malleation, in air intake pipe inlet and total ducting outlet place air turbine is installed, air forms air-flow under pressure difference, promote turbine and drive generator for electricity generation, described tailings in vanadium extraction is that vanadium titano-magnetite obtains vanadium-bearing hot metal through melting, vanadium-bearing hot metal obtains vanadium slag through blowing, vanadium slag adds auxiliary material and carries out roasting, and roasting material is carried out wet extraction vanadium extraction salt, the remaining residue as waste behind the extraction vanadic salts.
2. ceramic solar ventiduct according to claim 1 is characterized in that described ceramic solar plate is that the top layer is that solid netted black porcelain, matrix are the vertical netty composite ceramic solar plate of black ceramic of conventional ceramic.
3. ceramic solar ventiduct according to claim 1 is characterized in that described ceramic solar plate is that the top layer is that solid netted vanadium-titanium black ceramic, matrix are the solid netted vanadium-titanium black ceramic composite ceramic solar panels of conventional ceramic.
CN2007100140083A 2006-05-25 2007-03-22 Ceramic solar ventiduct Expired - Fee Related CN101270725B (en)

Priority Applications (5)

Application Number Priority Date Filing Date Title
CN2007100140083A CN101270725B (en) 2007-03-22 2007-03-22 Ceramic solar ventiduct
US12/302,489 US20090229598A1 (en) 2006-05-25 2007-05-22 method for making large-sized hollow ceramic plate
PCT/CN2007/001653 WO2007137506A1 (en) 2006-05-25 2007-05-22 A method for making ceramic large-size hollow plate and products thereof
JP2009511323A JP4991849B2 (en) 2006-05-25 2007-05-22 Manufacturing method and applied products of large size hollow ceramic plate
AU2007266395A AU2007266395B2 (en) 2006-05-25 2007-05-22 A method for making ceramic large-size hollow plate and products thereof

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2007100140083A CN101270725B (en) 2007-03-22 2007-03-22 Ceramic solar ventiduct

Related Child Applications (1)

Application Number Title Priority Date Filing Date
CN2009101607519A Division CN101634274B (en) 2007-03-22 2007-03-22 Black enamel composite ceramic solar plate and solar windhole

Publications (2)

Publication Number Publication Date
CN101270725A CN101270725A (en) 2008-09-24
CN101270725B true CN101270725B (en) 2010-06-23

Family

ID=40004911

Family Applications (1)

Application Number Title Priority Date Filing Date
CN2007100140083A Expired - Fee Related CN101270725B (en) 2006-05-25 2007-03-22 Ceramic solar ventiduct

Country Status (1)

Country Link
CN (1) CN101270725B (en)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN201992891U (en) * 2010-01-04 2011-09-28 曹树梁 Composite ceramic solar heat-collecting solid plate

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN86103616A (en) * 1986-05-20 1987-12-02 山东省新材料研究所 Integral black ceramic solar energy collector
CN1221855A (en) * 1998-01-01 1999-07-07 赵松奇 Hillside solar greenhouse wind-making generating system
CN1291683A (en) * 2000-09-30 2001-04-18 张朋心 Strong and stable wind-driven mechanism and its application
CN1566625A (en) * 2003-07-01 2005-01-19 舒新燕 Wind dam type runoff perpendicular shaft wind power generator

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN86103616A (en) * 1986-05-20 1987-12-02 山东省新材料研究所 Integral black ceramic solar energy collector
CN1221855A (en) * 1998-01-01 1999-07-07 赵松奇 Hillside solar greenhouse wind-making generating system
CN1291683A (en) * 2000-09-30 2001-04-18 张朋心 Strong and stable wind-driven mechanism and its application
CN1566625A (en) * 2003-07-01 2005-01-19 舒新燕 Wind dam type runoff perpendicular shaft wind power generator

Also Published As

Publication number Publication date
CN101270725A (en) 2008-09-24

Similar Documents

Publication Publication Date Title
CN101092841B (en) Structure and material for new type solar energy roof
WO2007137506A1 (en) A method for making ceramic large-size hollow plate and products thereof
CN101311141A (en) Method for preparing large size hollow ceramic plate and use products thereof
CN102296758B (en) Using method of black ceramic tile
CN101408343B (en) Seal connecting method of porous ceramic plate column
CN203640382U (en) Greenhouse building of solar chimney power station
CN101603357B (en) Ceramic solar roof
CN101275540B (en) Ceramic solar energy heat-collection field hot water electric generating apparatus
CN202581875U (en) Composite solar panel with heat-collecting and heat-insulating integration
CN101270725B (en) Ceramic solar ventiduct
CN101514106B (en) Trough-type ceramic solar plate
CN101592404A (en) Ceramic solar plate with air heat insulating layer
CN101634274B (en) Black enamel composite ceramic solar plate and solar windhole
Sopian et al. Experimental studies on building integrated photovoltaic thermal collectors with different absorber design
CN206449902U (en) A kind of solar energy collector in high efficiency
CN202452723U (en) Metallurgical slag-sprayed solar thermal collector
CN201340104Y (en) Vertical heat-collecting plate solar chimney power plant
CN101303173B (en) Ceramic solar plate heat collector wall surface
CN101144651B (en) Ceramic solar board heat collector manufacture and mounting method
CN105370501B (en) Utilize the solar heat air-flow power generation wind gathering exhaust tower of massif sealing type pressure
CN101655077B (en) Hot water generating device of compound ferrite porcelain solar heat collection field
CN1978892A (en) Efficient solar heat air-flow generating system
CN2557882Y (en) Plane board type solar energy focusing heat-collector
CN219458938U (en) Venturi type ventilation device for double power generation of turbine and solar cell panel
CN201488334U (en) Novel solar air heater

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20100623