WO2017152696A1 - Mur rideau en verre composite multifonctionnel à aspiration de poussière par induction électrostatique et à ventilation par convection à conduction thermique - Google Patents

Mur rideau en verre composite multifonctionnel à aspiration de poussière par induction électrostatique et à ventilation par convection à conduction thermique Download PDF

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Publication number
WO2017152696A1
WO2017152696A1 PCT/CN2016/111989 CN2016111989W WO2017152696A1 WO 2017152696 A1 WO2017152696 A1 WO 2017152696A1 CN 2016111989 W CN2016111989 W CN 2016111989W WO 2017152696 A1 WO2017152696 A1 WO 2017152696A1
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WO
WIPO (PCT)
Prior art keywords
air
plasma
fan
conductive
window
Prior art date
Application number
PCT/CN2016/111989
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English (en)
Chinese (zh)
Inventor
徐宝安
Original Assignee
淄博环能海臣环保技术服务有限公司
徐宝安
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Filing date
Publication date
Application filed by 淄博环能海臣环保技术服务有限公司, 徐宝安 filed Critical 淄博环能海臣环保技术服务有限公司
Publication of WO2017152696A1 publication Critical patent/WO2017152696A1/fr

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Classifications

    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B2/00Walls, e.g. partitions, for buildings; Wall construction with regard to insulation; Connections specially adapted to walls
    • E04B2/88Curtain walls
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B2/00Walls, e.g. partitions, for buildings; Wall construction with regard to insulation; Connections specially adapted to walls
    • E04B2/88Curtain walls
    • E04B2/885Curtain walls comprising a supporting structure for flush mounted glazing panels
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F1/00Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F7/00Ventilation
    • F24F7/007Ventilation with forced flow
    • F24F7/013Ventilation with forced flow using wall or window fans, displacing air through the wall or window
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F7/00Ventilation
    • F24F7/04Ventilation with ducting systems, e.g. by double walls; with natural circulation
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F8/00Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying
    • F24F8/10Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying by separation, e.g. by filtering
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F8/00Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying
    • F24F8/10Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying by separation, e.g. by filtering
    • F24F8/192Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying by separation, e.g. by filtering by electrical means, e.g. by applying electrostatic fields or high voltages
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F8/00Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying
    • F24F8/20Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying by sterilisation
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F8/00Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying
    • F24F8/30Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying by ionisation
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F2221/00Details or features not otherwise provided for
    • F24F2221/22Cleaning ducts or apparatus
    • F24F2221/225Cleaning ducts or apparatus using a liquid

Definitions

  • the present invention relates to a heat-conducting convection-ventilated electrostatic induction vacuum multi-functional composite glass curtain wall, and more particularly to a functional glass curtain wall that is highly efficient and energy-saving, and also relates to a plasma air purification device.
  • the present invention aims to provide a heat conduction convection ventilation static induction vacuum multi-functional composite glass curtain wall, which can not only effectively remove solid pollutants and gaseous pollutants in the air, but also can be used as lighting. Soundproof glass curtain wall.
  • a heat conduction convection ventilation static induction vacuum multi-functional composite glass curtain wall including a window frame, a glass curtain wall, and a vent.
  • a glass curtain wall of a heat-conducting convective-ventilated electrostatic induction vacuum multi-functional composite glass curtain wall which is a single-layer or composite solid single-layer or hollow indoor side glass, and a composite heat-conductive electrostatic induction interlayer sandwiched with a conductive adhesive film layer Glass, at least single-layer or composite solid single-layer or hollow outdoor side glass, supported by the heads provided at both ends, and the package is arranged in parallel and arranged with two layers of ventilation duct interlayers, the upper and lower ends of the glass curtain wall, It has a through-window window and three parallel-spaced glass, which are packaged in one window to form a composite glass.
  • the high voltage positive electrode of the positive electric high voltage generator is electrically connected to the conductive adhesive film layer sandwiched in the glass in the composite heat conduction electrostatic induction interlayer.
  • the surface of the composite heat conduction static induction glass of the wind heat exchange duct On the surface of the composite heat conduction static induction glass of the wind heat exchange duct, a negative electric layer is induced, so that the dust in the air flowing through the outer air inlet heat exchange duct is induced into positively charged dust, and the surface of the composite heat conduction static induction glass is Adsorption makes the air that enters the room outdoors clean.
  • On the left and right sides of the glass curtain wall there is a roulette chain transmission consisting of a driving reel, a passive roulette, and a scraper drive chain.
  • the chain of the roulette chain transmission is equidistantly symmetrically connected.
  • the two-wheeled roulette chain transmission device is divided into a pair of air passage cleaning scrapers disposed in the two-layer air passage interlayer to form a ventilation passage cleaning assembly.
  • the upper end of the glass curtain wall is connected to the wind window, and is provided with a cleaning component including a water pipe, a valve, a washing water pipe, and a washing water nozzle. Or cleaning components including water pipes, water storage tanks, valves, booster pumps, washing water pipes, and washing water nozzles.
  • the upper end of the glass curtain wall is connected to the wind window, and is provided with an upper exhaust air window ventilation module assembly including an upper communication damper, an inner upper inlet window, an upper inlet air passage, an inner upper exhaust window, and an upper exhaust duct.
  • the lower end of the glass curtain wall penetrates the wind window, and is provided with a lower exhaust air window ventilation module including a lower communication damper, an inner lower inlet window, a lower inlet air duct, an inner lower exhaust window, and a lower exhaust duct.
  • a lower exhaust air window ventilation module including a lower communication damper, an inner lower inlet window, a lower inlet air duct, an inner lower exhaust window, and a lower exhaust duct.
  • a cleaning sewage discharge device At the lower end of the composite glass curtain wall, there is a cleaning sewage discharge device.
  • the cleaning component device is sprayed on the glass on both sides of the two ventilation air passages, and the cleaning blade is cleaned by the air passage of the cleaning assembly.
  • the glass on both sides of the air duct is repeatedly scraped and ash removed. The scraped gray water is collected and discharged into the cleaning sewage discharge device at the bottom of the composite glass curtain wall.
  • the indoor temperature is low, so when the indoor cold air is heated, it will naturally rise.
  • the outdoor temperature is high, and it will naturally sink when the outdoor hot air cools.
  • the upper windshield is switched to the outer exhaust heat exchange air passage, and the upper inner air inlet window and the inner upper air exhaust window are closed, and the upper outer wind inlet window and the outer upper air exhaust window are linked.
  • the lower windshield is switched to the inner exhaust heat exchange duct, and the lower outer exhaust window and the outer lower air inlet window are closed, and the lower inner exhaust window and the inner lower air inlet window are linked.
  • the indoor cold air passes through the inner lower exhaust window and enters the inner exhaust heat exchange air passage.
  • the indoor discharge cold air is heated to raise the temperature, and the indoor discharge cold air temperature rises. High, naturally rising, discharged through the upper upper exhaust window.
  • the outdoor hot air enters the outer exhaust heat exchange air passage through the outer upper air inlet window, and the composite heat conduction static induction glass cools the outdoor hot air to lower the temperature, and the outdoor hot air temperature decreases, naturally sinks, through The inner lower inlet wind window enters the room to realize natural ventilation indoors and outdoors.
  • the indoor temperature is high, and therefore, the indoor hot air naturally sinks when it is cooled.
  • the outdoor temperature is low, and it will naturally rise when the outdoor cold air is heated.
  • the upper windshield is switched to the inner exhaust heat exchange duct, and the upper air inlet window and the inner upper air exhaust window of the upper end of the joint are connected, and the upper outer wind inlet window and the outer upper air exhaust window are closed. Switch the windshield to the outside exhaust heat exchange air duct, and link the lower side outdoor air inlet window and the outer lower air exhaust window to the lower end inner lower exhaust window and the inner lower air inlet window.
  • the indoor hot air is passed through the inner exhaust window, enters the inner intake and exhaust heat exchange air passage, and the composite heat conduction static induction glass cools the indoor exhaust hot air, causes the temperature to drop, the indoor discharge hot air temperature decreases, and naturally sinks. , discharged through the outer lower exhaust window.
  • the outdoor cold air enters the outer inlet and outlet heat exchange air passage through the outer side into the wind window.
  • the composite heat conduction static induction glass Through the composite heat conduction static induction glass, the outdoor enters the cold air to raise the temperature, and the temperature of the outdoor cold air rises. Naturally rises, enters the room through the inner upper air inlet window, and realizes natural ventilation indoors and outdoors.
  • the indoor and outdoor temperature is measured by the temperature sensing device, and the upper and lower switching windshield are automatically switched by the servo device to realize automatic interlocking and automatic ventilation of the intake and exhaust dampers. Or through the end of the glass curtain wall, or the lower end through the wind window, the two-way fan with intake and exhaust is forced to ventilate.
  • a heat-conducting convective-ventilated electrostatic induction vacuum multi-functional composite glass curtain wall wherein a glass generator electrode and a plasma collector electrical conductor folding plate set are arranged in the upper and lower inlet window components of the glass curtain wall. Or an electric conductor fan, a plasma high voltage generator constitutes a plasma air purification combination module.
  • the plasma high voltage generator is a generator capable of generating positive and negative high voltage electricity, and the plasma high voltage generator is disposed in the casing of the combined module.
  • the plasma generating pole electrically insulated from the earth is composed of a metal needle array electrode, a wire mesh electrode, a wire, a zigzag type, a burr type or a fishbone type structure electrode.
  • the plasma is generated and connected to the high voltage negative electrode.
  • the plasma generating pole is integrally provided with the combined module housing, or in a separate combination.
  • the plasma collector pole electrical conductor flap set, or the electrical conductor fan is an electrical conductor flap set or an electrical conductor fan electrically insulated from the plasma generating pole, the combined module housing, the ground.
  • Plasma collector pole electrical conductor fold The plate set, or the electric conductor fan is electrically connected to the positive electrode of the plasma high voltage generator by a brush.
  • the high voltage negative electrode electrically connected to the plasma has an absolute value higher than the absolute value of the voltage of the high voltage positive electrode electrically connected to the plasma collector electrical conductor folded plate group or the electrical conductor fan.
  • the plasma collecting pole electrical conductor folding plate set, or the electric conductor fan is made of a metal material, or a plastic material as a substrate, coated with a metal or carbon material film layer on the substrate, or plasma collector conductance
  • the body folding plate group, or the electric conductor fan is made of a composite conductive material, or a plasma collecting pole electrical conductor folding plate group, or the electric conductor fan is a plastic electrically insulating substrate, and is made of a composite conductive film material.
  • An electric induction static induction grid is arranged in the casing of the air outlet side combination module of the modular module casing.
  • the electrical induction static induction grid is electrically insulated from the outlet side combination module housing, or the electrical conductor electrostatic induction grid and the outlet side combination module housing are electrically insulated and separated.
  • the plasma generating pole discharges the air, ionizes the air, and fills the air Negative ions, and the various pollutants in the air are also negatively charged.
  • Air with a large amount of negative ions and ozone passing through a plasma collection electrode fan with high voltage positive charge, negatively charged contaminants in the air, and positively charged plasma collector poles, or electrical conductor fans, violent Collision contact discharge, killing bacterial virus, decomposing organic matter, and trapping various pollutants with negative ions on the fins of the plasma collecting electrode fan, and the air is primary purified.
  • the airflow containing the charged contaminants flows forward, passing through the electrostatic induction grid of the electrical conductor in the casing of the air outlet side combination module of the combined module casing.
  • the windward surface induces a negatively charged film layer, which adsorbs a positive charge, and the leeward surface electrostatically induces a positively charged film layer, adsorbing a negative charge to achieve a second purification of the air and discharging it.
  • the plasma air purification module reaches a certain amount of ash, the plasma generator, the plasma collecting electrode fan, the combined module casing, and the air filter are cleaned and restored.
  • a heat-conducting convection-ventilated electrostatic induction vacuum multi-functional composite glass curtain wall, the inner and lower inlet window components of the glass curtain wall are sequentially provided with a plasma generating pole and electrically insulated from the plasma collector active fan.
  • the plasma high voltage generator is a generator that is connected to a power source and is capable of generating positive and negative high voltage power.
  • the inner air inlet of the air intake side combination module housing is electrically insulated from the combined module casing, the motor, the fan, and the base
  • the plasma is generated.
  • the plasma generation extremely includes a metal needle array electrode, a wire mesh electrode, a wire, a zigzag type, a thorn type or a fish bone type structure electrode.
  • the plasma generating pole is connected to the high voltage negative electrode.
  • the plasma generating pole is integrally arranged with the inlet side combined module casing, or is arranged in a split combination.
  • the fan is a plasma collecting electrode electrically insulated from the combined module casing, the plasma generating pole, the base, the motor, and the ground.
  • the fan is an electric conductor fan, and the fan is electrically insulated from the rotor shaft of the motor.
  • the fan and the positive electrode of the plasma high-voltage generator are electrically connected to the fan through a brush.
  • the absolute value of the high voltage negative electrode voltage of the plasma high voltage generator is higher than the absolute value of the high voltage positive electrode voltage.
  • the fan is made of a metal material, or a plastic material is used as a substrate, and a metal or carbon material film layer is coated on the substrate, or the fan is made of a composite conductive material, or the fan is a plastic electrically insulating substrate. Made of a composite conductive film material.
  • the conductive grid is an electrostatic induction collecting electrode electrically insulated from the combined module casing, the plasma generating pole, the base, the motor, and the ground.
  • the conductive mesh is made of a metal material, or the conductive mesh is a metal material surface. It is made of electric insulating material, or is made of plastic material as substrate, coated with metal or carbon material film on the substrate, or the conductive grid is made of composite conductive material, or the conductive grid is plastic electrically insulating base. The material is made of a composite conductive film material.
  • the conductive grid is electrically insulated from the casing of the air outlet side combination module, or the conductive grid and the air outlet side combination module are electrically insulated and separated.
  • the plasma air purification combination module first passes through the air inlet side of the combined module casing, and then passes through a plasma generating pole with a high voltage negative voltage, the plasma generating pole discharges the air, ionizes the air, and fills the air with negative ions, and Various pollutants in the air are also negatively charged. Air with a large amount of negative ions and ozone, sucked by a high-voltage positively charged plasma collecting electrode fan, air and a positively charged plasma collecting electrode fan, violent collision contact discharge, killing bacterial viruses, decomposing organic matter, and bringing The adsorption of various contaminants of negative ions is trapped on the fins of the fan, and the air is purified first.
  • the air After the air is pressurized by the active collector fan with the high-voltage positively charged plasma, the air enters the conductive grid, and a negatively charged surface is induced on the conductive grid to further adsorb positively charged various pollutants. , to achieve the second purification of air.
  • the conductive grid is a plasma collecting electrode electrically insulated from the combined module housing, the plasma generating pole, the base, the motor, and the ground.
  • the conductive grid is made of a metal material, or a plastic material is used as a substrate, and a metal or carbon material film layer is coated on the substrate, or the conductive grid is made of a composite conductive material, or the conductive grid is plastic.
  • the electrically insulating substrate is made of a composite conductive film material.
  • Conductive grid and air inlet side combination The module housing is electrically insulated and integrated, or the conductive grid is combined with the air inlet side combination module housing.
  • the conductive grid is electrically connected to the positive electrode of the plasma high voltage generator.
  • the absolute value of the high voltage negative electrode voltage of the plasma high voltage generator is higher than the absolute value of the high voltage positive electrode voltage.
  • the fan is an electrostatic induction collecting electrode electrically insulated from the combined module casing, the plasma generating pole, the base, the motor, the earth, the fan is an electric conductor fan, the fan is made of a metal material, or the fan is a metal material surface Made of electrically insulating material, or made of plastic material as substrate, coated with metal or carbon material film on the substrate, or fan made of composite conductive material, or fan for plastic electrically insulating substrate, composite Made of conductive film material.
  • the plasma air purification combination module first passes through the air inlet side of the combined module casing, and then passes through a plasma generating pole with a high voltage negative voltage, the plasma generating pole discharges the air, ionizes the air, and fills the air with negative ions, and Various pollutants in the air are also negatively charged. Air with a large amount of negative ions and ozone is adsorbed by a high-voltage positively charged plasma collecting electrode conductive grid, air and a positively charged plasma collecting electrode conductive grid, violent collision contact discharge, killing bacterial virus, decomposing organic matter , and the adsorption of various pollutants with negative ions is trapped on the conductive grid, and the air is purified first. After being cleaned by the positive electrode conductive grid, the air enters the conductive fan, induces a negatively charged surface on the conductive fan, and further adsorbs positively charged various pollutants to achieve a second purification of the air.
  • a heat-conducting convection-ventilated electrostatic induction vacuum multi-functional composite glass curtain wall, the inner and lower inlet window components of the glass curtain wall are sequentially provided with a plasma generating pole, a plasma collecting grid, and a passive dust collecting
  • the electric conductor fan and the plasma high voltage generator constitute a plasma air purification combination module.
  • the plasma high voltage generator is a generator capable of generating positive and negative high voltage electricity, and the plasma high voltage generator is disposed in the casing of the combined module.
  • the plasma generating pole electrically insulated from the earth is a metal needle array electrode, a metal wire mesh electrode, a wire, a zigzag type, a thorn type or a fishbone type structure electrode.
  • the plasma generating pole is connected to the high voltage negative electrode.
  • the plasma generating pole is integrally provided with the combined module housing, or is provided in a separate combination.
  • the fan is electrostatically insulated from the combined module housing, the plasma generator, the base, the motor, and the ground.
  • the electrode should be collected.
  • the fan is an electric conductor fan.
  • the fan is made of a metal material, or the fan is made of an electrically insulating material coated on the surface of the metal material, or the plastic material is used as a substrate, and the metal or carbon material is coated on the substrate.
  • the film is made of, or the fan is made of a composite conductive material, or the fan is made of a plastic electrically insulating substrate and made of a composite conductive film material.
  • the conductive fan is disposed after the plasma generating electrode and before the plasma collecting electrode.
  • the conductive grid is a plasma collecting electrode that is electrically insulated from the combined module housing, the plasma generating pole, the base, the motor, and the ground.
  • the conductive grid is made of a metal material, or a plastic material is used as a substrate, and a metal or carbon material film layer is coated on the substrate, or the conductive grid is made of a composite conductive material, or the conductive grid is plastic.
  • the electrically insulating substrate is made of a composite conductive film material.
  • the conductive grid is electrically insulated from the wind-side combined module housing, or the conductive grid is combined with the air-side combination module housing.
  • the conductive grid is electrically connected to the positive electrode of the plasma high voltage generator.
  • the absolute value of the high voltage negative electrode voltage of the plasma high voltage generator is higher than the absolute value of the high voltage positive electrode voltage.
  • the plasma air purification combination module first passes through the air inlet side of the combined module casing, and then passes through a plasma generating pole with a high voltage negative voltage, the plasma generating pole discharges the air, ionizes the air, and fills the air with negative ions, and Various pollutants in the air are also negatively charged.
  • the plasma After the air is purified by the conductive fan induction collecting electrode, the plasma enters the conductive grid of the plasma collecting electrode with high voltage positive electricity, the air and the positively charged plasma collecting electrode conductive grid, violent collision contact discharge, killing the bacterial virus The organic matter is decomposed, and various pollutants with negative ions are adsorbed and trapped on the conductive grid to further purify the secondary air.
  • the conductive grid is an electrostatic induction collecting electrode electrically insulated from the combined module casing, the plasma generating pole, the base, the motor, and the ground.
  • the conductive mesh is made of a metal material, or the conductive mesh is a metal material surface. It is made of electrically insulating material, or made of plastic material as substrate, coated with metal or carbon material film on the substrate, or the conductive grid is made of composite conductive material, or the conductive grid is plastic electrically insulated.
  • the substrate is made of a composite conductive film material.
  • the conductive grid is integrated with the casing of the air outlet side module, or Body combination settings.
  • the fan is a plasma collecting electrode electrically insulated from the combined module casing, the plasma generating pole, the base, the motor, and the ground.
  • the fan is an electric conductor fan, and the fan is electrically insulated from the rotor shaft of the motor.
  • the fan and the positive electrode of the plasma high-voltage generator are electrically connected to the fan through a brush.
  • the fan is made of a metal material, or a plastic material is used as a substrate, and a metal or carbon material film layer is coated on the substrate, or the fan is made of a composite conductive material, or the fan is a plastic electrically insulating substrate. Made of a composite conductive film material.
  • the absolute value of the high voltage negative electrode voltage of the plasma high voltage generator is higher than the absolute value of the high voltage positive electrode voltage.
  • the plasma air purification combination module first passes through the air inlet side of the combined module casing, and then passes through a plasma generating pole with a high voltage negative voltage, the plasma generating pole discharges the air, ionizes the air, and fills the air with negative ions, and Various pollutants in the air are also negatively charged. Air with a large amount of negative ions and ozone enters the conductive grid, and on the surface of the conductive grid adjacent to the plasma generating pole, a positively charged surface is induced to adsorb various negatively charged contaminants.
  • a negatively charged surface is induced to adsorb positively charged various pollutants to achieve air Primary purification.
  • the air is purified by the conductive grid-inductive collecting electrode, it enters the plasma collecting electrode conductive fan with high-voltage positive electricity, air and positively charged plasma collecting electrode conductive fan, violent collision contact discharge, killing bacterial virus, decomposing organic matter, The adsorption of various pollutants with negative ions is trapped on the conductive fan to further purify the secondary air.
  • a heat conduction convection ventilation static induction vacuum multi-functional composite glass curtain wall, the inner upper and lower inlet window components of the glass curtain wall are sequentially provided with a plasma generating pole, a plasma grid collecting electrode, and a fan motor
  • the connected active dust electric conductor fan and the plasma high voltage generator constitute a plasma air purification combination module.
  • the plasma high voltage generator is a generator that is connected to a power source and is capable of generating positive and negative high voltage power.
  • a plasma generator pole electrically insulated from the combined module casing, the motor, the fan, and the base is disposed at the inner air inlet of the air inlet side combination module casing.
  • the plasma generation extremely includes a metal needle array electrode, a wire mesh electrode, a wire, a zigzag type, a thorn type or a fish bone type structure electrode.
  • the plasma generating pole is integrally arranged with the inlet side combined module casing, or is arranged in a split combination.
  • the conductive grid is a plasma collecting electrode electrically insulated from the combined module housing, the plasma generating pole, the base, the motor, and the ground.
  • the conductive grid is made of a metal material, or a plastic material is used as a substrate, and a metal or carbon material film layer is coated on the substrate, or the conductive grid is made of a composite conductive material, or the conductive grid is plastic.
  • the electrically insulating substrate is made of a composite conductive film material.
  • the conductive grid is electrically insulated from the casing of the inlet side combination module, or the conductive grid is combined with the air-insulated combination module housing.
  • the conductive grid is electrically connected to the positive electrode of the plasma high voltage generator.
  • the fan is a plasma collecting electrode electrically insulated from the combined module casing, the plasma generating pole, the base, the motor, and the ground.
  • the fan is an electric conductor fan, and the fan is electrically insulated from the rotor shaft of the motor.
  • the fan and the negative pole of the plasma high-voltage generator are electrically connected to the fan through a brush.
  • the fan is made of a metal material, or a plastic material is used as a substrate, and a metal or carbon material film layer is coated on the substrate, or the fan is made of a composite conductive material, or the fan is a plastic electrically insulating substrate. Made of a composite conductive film material.
  • the absolute value of the high voltage negative electrode voltage of the plasma high voltage generator is higher than the absolute value of the high voltage positive electrode voltage.
  • the plasma air purification combination module first passes through the air inlet side of the combined module casing, and then passes through a plasma generating pole with a high voltage negative electricity, the plasma generating pole discharges the air, ionizes the air, and fills the air with negative ions, and Various pollutants in the air are also negatively charged. Air with a large amount of negative ions and ozone is adsorbed by a high-voltage positively charged plasma collecting electrode conductive grid, air and a positively charged plasma collecting electrode conductive grid, violent collision contact discharge, killing bacterial virus, decomposing organic matter , and the adsorption of various pollutants with negative ions is trapped on the conductive grid, and the air is purified first.
  • the air After the air is purified by the positive electrode conductive grid, the air enters the conductive fan, the air and the negatively charged plasma collecting electrode fan, violently collide, kill the bacterial virus, decompose the organic matter, and pollute the various ions with positive ions.
  • the adsorption of the material is trapped on the fins of the fan, and the air is further purified, and the purified air is discharged through the combined module casing.
  • the fan is a plasma collecting electrode that is electrically insulated from the combined module housing, the plasma generating pole, the base, the motor, and the ground.
  • the fan is an electrical conductor fan, and the fan is electrically insulated from the rotor shaft of the motor.
  • the fan and the positive electrode of the plasma high-voltage generator are electrically connected to the fan through a brush.
  • the fan is made of a metal material, or a plastic material is used as a substrate, and a metal or carbon material film layer is coated on the substrate, or the fan is made of a composite conductive material, or the fan is a plastic electrically insulating substrate. Made of a composite conductive film material. Guide The electric fan and the positive electrode of the plasma high-voltage electric generator are electrically connected to the conductive fan through a brush.
  • the conductive grid is a plasma collecting electrode electrically insulated from the combined module housing, the plasma generating pole, the base, the motor, and the ground.
  • the conductive grid is made of a metal material, or a plastic material is used as a substrate, a metal or carbon material film layer is coated on the substrate, or the conductive grid is made of a composite conductive material.
  • the conductive grid is electrically insulated from the casing of the inlet side combination module, or the electrically conductive grid and the inlet side combination module housing are electrically insulated and separated.
  • the conductive grid is electrically connected to the negative electrode of the plasma high voltage generator.
  • the absolute value of the high voltage negative electrode voltage of the plasma high piezoelectric generator is higher than the absolute value of the high voltage positive electrode voltage.
  • the plasma air purification combination module first passes through the air inlet side of the combined module casing, and then passes through a plasma generating pole with a high voltage negative voltage, the plasma generating pole discharges the air, ionizes the air, and fills the air with negative ions, and Various pollutants in the air are also negatively charged. Air with a large amount of negative ions and ozone, and a collector fan with high-voltage positive electricity, violent collision contact discharge, killing bacteria and viruses, decomposing organic matter, and trapping various pollutants with negative ions on the conductive fan, air Get primary purification.
  • the air flowing through the conductive fan continues to travel, and the negatively charged plasma collecting electrode conductive grid, contact discharge, further killing the bacterial virus, decomposing the organic matter, and the positive ions
  • the pollutants are adsorbed and trapped on the conductive grid, and after being further purified by the negative electrode conductive grid, the air is discharged through the combined module casing grille.
  • the plasma air purification module reaches a certain amount of ash, the plasma generator, the plasma collecting electrode fan, the combined module casing, and the air filter are cleaned and restored.
  • a heat-conducting convection-ventilated electrostatic induction vacuum multi-functional composite glass curtain wall, the inner and lower inlet window components of the glass curtain wall are sequentially provided with a plasma generating pole, a plasma grid collecting electrode, and a fan motor
  • the connected active dust electric conductor fan and the plasma high voltage generator constitute a plasma air purification combination module.
  • the plasma high voltage generator is a generator that is connected to a power source and is capable of generating positive and negative high voltage power.
  • the air inlet side of the air inlet side module housing is provided with a plasma generator pole electrically insulated from the combined module housing, motor, fan, and base.
  • the plasma generation extremely includes a metal needle array electrode, a wire mesh electrode, a wire, a zigzag type, a thorn type or a fish bone type structure electrode.
  • the plasma generator is connected to the high voltage negative electrode.
  • the plasma generating pole is integrally arranged with the inlet side combined module casing, or is arranged in a split combination.
  • One side of the conductive grid is electrically insulated from the combined module housing, the plasma generator, the base, the motor, and the ground. Plasma collection electrode.
  • One side of the conductive grid is made of a composite electrically insulating film layer on one side of the metal material surface, or a plastic material is used as a substrate, and a metal or carbon material film layer is coated on one side of the substrate, or one side conductive mesh
  • the grid is made of a composite electrically insulating film layer on one side of the composite conductive material.
  • One side of the conductive grid is electrically insulated from the casing of the inlet side combination module, or one side of the conductive grid and the inlet side of the combination module are electrically insulated and separated.
  • the fan is a plasma collecting electrode electrically insulated from the combined module casing, the plasma generating pole, the base, the motor, and the ground.
  • the fan is an electric conductor fan, and the fan is electrically insulated from the rotor shaft of the motor.
  • the fan and the positive electrode of the plasma high-voltage generator are electrically connected to the fan through a brush.
  • the fan is made of a metal material, or a plastic material is used as a substrate, and a metal or carbon material film layer is coated on the substrate, or the fan is made of a composite conductive material, or the fan is a plastic electrically insulating substrate. Made of a composite conductive film material.
  • the absolute value of the high voltage negative electrode voltage of the plasma high voltage generator is higher than the absolute value of the high voltage positive electrode voltage.
  • the plasma air purification combination module first passes through the air inlet side of the combined module casing, and then passes through a plasma generating pole with a high voltage negative voltage.
  • the plasma generating pole discharges the air, ionizes the air, fills the air with negative ions, and makes the air in the air.
  • Various pollutants are also negatively charged.
  • the air with a large amount of negative ions and ozone is electrically insulated by a conductive grid layer on one side of the plasma adjacent to the side of the plasma, and is electrostatically induced by a positively charged film layer.
  • the collector electrode with high voltage and negative charge is electrically conductive.
  • the conductive side of the grid absorbs positively charged contaminants, repels negatively charged contaminants, and the air is primarily cleaned.
  • the fan is a plasma collecting electrode electrically insulated from the combined module housing, the plasma generating pole, the base, the motor, and the ground.
  • the fan is a conductive fan on one side, and one side of the conductive fan is electrically insulated from the rotor shaft of the motor.
  • One side of the conductive fan is made of a composite electric insulating film layer on one side of the metal material, or the fan is made of a composite electric insulating film layer on one side of the composite conductive material.
  • the conductive fan is adjacent to the plasma generating pole, and has an electric insulating film layer, and the conductive fan is electrically connected with the negative electrode of the plasma high-voltage electric generator, and the conductive wind is passed through
  • the electrically insulating film layer of the fan electrostatically induces a positive electrode film layer on the side adjacent to the plasma generating pole.
  • the conductive fan and the negative electrode of the plasma high-voltage generator are electrically connected to the conductive fan through a brush.
  • the conductive grid is a plasma collecting electrode electrically insulated from the combined module housing, the plasma generating pole, the base, the motor, and the ground.
  • the conductive grid is made of a metal material, or a plastic material is used as a substrate, and a metal or carbon material film layer is coated on the substrate, or the conductive grid is made of a composite conductive material, or the conductive grid is plastic.
  • the electrically insulating substrate is made of a composite conductive film material.
  • the conductive grid is electrically insulated from the wind-side combined module housing, or the conductive grid is combined with the air-side combination module housing.
  • the conductive grid is electrically connected to the positive electrode of the plasma high voltage generator.
  • the absolute value of the high voltage negative electrode voltage of the plasma high voltage generator is higher than the absolute value of the high voltage positive electrode voltage.
  • the plasma air purification combination module first passes through the air inlet side of the combined module casing, and then passes through a plasma generating pole with a high voltage negative voltage, the plasma generating pole discharges the air, ionizes the air, and fills the air with negative ions, and Various pollutants in the air are also negatively charged. Air with a large amount of negative ions and ozone, an electrically insulating film layer compounded on the side adjacent to the plasma, electrostatically induced positively charged film layer, conductive electrode side with high-voltage negative collector electrode, positively charged with adsorption Contaminants, repel negatively charged contaminants, and the air is primary cleaned.
  • the air flowing through the conductive fan continues to travel, and the positively charged plasma collecting electrode conductive grid violently collides with the contact discharge, further kills the bacterial virus, decomposes the organic matter, and traps the various pollutants with negative ions in the conductive network.
  • the air is discharged through the combined module casing grille.
  • the plasma air purification module reaches a certain amount of ash, the plasma generator, the plasma collecting electrode fan, the combined module casing, and the air filter are cleaned and restored.
  • the lower inlet window combination module housing is made of plastic.
  • the plasma high voltage generator is provided with a metal shield and grounded.
  • the plasma high voltage generator is mounted in the combined module housing.
  • the fan includes an axial fan and a cross flow fan.
  • a heat conduction convection ventilation static induction vacuum multi-functional composite glass curtain wall, the motor rotor shaft and the fan spindle connection end are provided with a permanent magnet toothed disk, or a ferromagnetic material toothed disk, Fan
  • the main shaft connecting end is a toothed disc corresponding to the permanent magnet toothed disc of the motor rotor shaft, the fan main shaft is connected with the end toothed disc, is a toothed disc made of ferromagnetic material, or is made of a permanent magnet material. plate.
  • the permanent magnet toothed disc of the motor rotor shaft and the fan spindle connecting end permanent magnet toothed disc are connected to the suction surface, and are provided with an electrically insulating material layer.
  • a heat conduction convection ventilation static induction vacuum multi-functional composite glass curtain wall, the plasma collection electrode fan, the brush connected with the positive electrode of the plasma high voltage electric generator is made of graphite material, the brush passes the spring, or the electric
  • the brush is provided with a ferromagnetic material, and is electrically connected to the fan main shaft by suction.
  • a heat-conducting convection-ventilated electrostatic induction vacuum multi-functional composite glass curtain wall, the combination module casing is provided with a ferromagnetic material, or a buckle made of a permanent magnet, a plasma generating pole, and an inlet air
  • the ferromagnetic material corresponding to the buckle on the side combination module casing, or the buckle made of the permanent magnet, the plasma generating pole and the inlet side combined module casing, are combined by the female snap buckle.
  • the remote control includes a mobile phone that is remotely controlled via a wireless network.
  • the motor is wrapped in the casing of the combined module, the stator of the motor is fixed inside the casing of the combined module, and the stator core of the motor is grounded.
  • the heat conduction convection ventilation static induction vacuum multi-functional composite glass curtain wall can not only efficiently exchange the required oxygen-rich fresh air under the energy-saving state, but also can realize air purification, low cost, light collection, sound insulation, and realization of glass.
  • the curtain wall is high-strength and versatile.
  • FIG. 1 and 2 are schematic diagrams showing a cross-sectional structure of a heat conduction convection ventilation static induction multi-function composite glass curtain wall according to the present invention
  • FIG. 3 and 4 are schematic views showing a heat conduction convection ventilation static induction multi-function composite composite glass curtain wall according to the present invention, and a cross-sectional structure of the second embodiment in summer and winter;
  • FIG. 5 and FIG. 6 are schematic diagrams showing a heat conduction convection ventilation static induction multi-function composite composite glass curtain wall according to the present invention, and a cross-sectional structure of the third embodiment in summer and winter;
  • FIG. 7 and FIG. 8 are schematic diagrams showing a heat conduction convection ventilation static induction multi-function composite composite glass curtain wall according to the present invention, and a cross-sectional structure of the fourth embodiment in summer and winter;
  • FIGS. 9 and 10 are schematic diagrams of a heat conduction convection ventilation static induction multi-function composite composite glass curtain wall according to the present invention, and a cross-sectional structure of the fifth embodiment in summer and winter;
  • FIGS. 15, 16 are a heat conduction convection ventilation static induction vacuum multi-functional composite glass curtain wall according to the present invention.
  • a heat conduction convection ventilation static induction vacuum multi-functional composite glass curtain wall comprising a window frame, a glass curtain wall and a vent, wherein the glass curtain wall is a single layer or a hollow indoor side glass (10), and is electrically conductive.
  • the composite thermal conduction electrostatic induction interlayer of the adhesive film layer (25) is provided with a glass (11), a single layer or a hollow outdoor side glass (26), and is arranged in parallel by a head spacer (20) provided at both ends.
  • the upper and lower ends of the glass curtain wall are provided with a through-window window (6), three parallel-arranged glass, which are integrally packaged by the window frame (32) to form a composite glass curtain wall;
  • the end of the curtain wall, or the lower end is provided with a throughwind window (6), or a two-way fan (22) for inlet and exhaust; a high-voltage positive electrode of the positive high-voltage generator (17), and a composite heat-conductive electrostatic induction adhesive
  • the conductive adhesive film layer (25) sandwiched between the glass (11) is electrically connected; when the outdoor air passes through the upper and lower inner wind inlet windows (15), the outer air inlet heat exchange air passage ⁇ , the dust in the outdoor air Composite heat conduction
  • the electric induction glass (11), through the high-voltage positive electric induction of the sandwiched conductive film induces a negative electric layer on the surface of the composite heat-conducting electrostatic induction glass (11) of the outer air inlet and outlet air passage, so that the
  • the surface water film is adsorbed to purify the air entering the room; the left and right sides of the glass curtain wall are provided with a wheel consisting of a driving wheel (21), a driven wheel (31), and a scraper drive chain (12).
  • the chain cable transmission device, the chain cable (12) of the roulette chain transmission device is equidistantly symmetrically arranged to connect the two-wheeled roulette chain transmission device, and is arranged on two layers
  • a pair of air duct cleaning scrapers (16) in the air duct interlayer form a ventilation duct cleaning component;
  • the upper end of the glass curtain wall penetrates the wind window (6), and is provided with a water pipe (1), a valve, a washing water pipe (4) ), the cleaning unit of the cleaning water nozzle (9); or the cleaning of the water pipe (1), the water storage tank (2), the valve, the booster pump (3), the washing water pipe (4), the washing water nozzle (9)
  • the upper end of the glass curtain wall runs through the windshield (6) and is provided with an upper damper (2
  • the gas module assembly; the lower end of the composite glass curtain wall is provided with a cleaning sewage discharge device (19); when the dust on both sides of the composite heat conduction static induction glass (11) reaches a set amount, the cleaning component device is replaced by two The glass spray water on both sides of the air duct is cleaned by the air passage cleaning blade (16) of the cleaning assembly, and the glass on both sides of the two ventilation ducts is repeatedly scraped and ash removed; the scraped gray water is collected in the composite glass It is discharged from the cleaning sewage discharge device (19) at the bottom of the curtain wall.
  • the indoor temperature is low, so when the indoor cold air is heated, it will naturally rise; the outdoor temperature is high, and the outdoor hot air will naturally sink after cooling; in the summer, the upper windshield (28), Switch to the outer exhaust heat exchange air duct, and close the upper inner air inlet window (5), the inner upper exhaust window (8), the upper outer side upper air inlet window (27), and the outer upper air exhaust window (29). ; The lower windshield (34) is switched to the inner exhaust heat exchange air duct, and the lower outer exhaust window (23) and the outer lower air inlet window (24) are closed, and the lower inner side is exhausted.
  • the indoor temperature is high, so when the indoor hot air is cooled, it will naturally sink; the outdoor temperature is low, and the outdoor cold air will naturally rise when heated; in the winter, the upper windshield (28), Switch to the inner exhaust heat exchange air duct, link the upper inner air inlet window (5) and the inner upper exhaust window (8), and close the upper outer side upper air inlet window (27) and the outer upper air exhaust window (29).
  • the indoor and outdoor temperature is measured by the temperature sensing device, and the upper and lower switching windshield is automatically switched by the servo device to realize automatic interlocking of the intake and exhaust damper, automatic air exchange; or through the glass.
  • the end of the curtain wall, or the lower end of the windshield (6), is provided with a two-way fan (22) for forced air exchange.
  • the dust in the outdoor air is combined with the heat conduction static induction glass (11), which is carried by the sandwiched conductive film.
  • the high-voltage positive electric induction induces a negative electric layer on the surface of the composite heat-conducting electrostatic induction glass (11) on the outer air-inlet heat exchange duct, so that the dust in the air flowing through the outer air-inlet heat exchange duct is induced to be positively charged.
  • the electric dust is adsorbed by the surface of the composite heat-conducting electrostatic induction glass (11), so that the air entering the room outdoors can be purified.
  • the cleaning assembly device When the dust on both sides of the composite heat conduction static induction glass (11) reaches a set amount, the cleaning assembly device is sprayed on the water on both sides of the two ventilation air passages, and is cleaned by the air passage of the cleaning assembly.
  • the scraper (16) repeatedly wipes the ash from the glass on both sides of the two ventilation ducts; the scraped gray water is collected and discharged in the cleaning sewage discharge device (19) at the bottom of the composite glass curtain wall.
  • FIGS. 3 and 4 The second embodiment is shown in FIGS. 3 and 4:
  • a heat conduction convection ventilation static induction vacuum multi-functional composite glass curtain wall comprising a window frame, a glass curtain wall and a vent, wherein the glass curtain wall is a single layer or a hollow indoor side glass (10), and is electrically conductive.
  • the composite thermal conduction electrostatic induction interlayer of the adhesive film layer (25) is provided with a glass (11), a single layer or a hollow outdoor side glass (26), and is arranged in parallel by a head spacer (20) provided at both ends.
  • the upper and lower ends of the glass curtain wall are provided with a through-window window (6), three parallel-arranged glass, which are integrally packaged by the window frame (32) to form a composite glass curtain wall;
  • the end of the curtain wall, or the lower end is provided with a throughwind window (6), or a two-way fan (22) for inlet and exhaust; a high-voltage positive electrode of the positive high-voltage generator (17), and a composite heat-conductive electrostatic induction adhesive
  • the conductive adhesive film layer (25) sandwiched between the glass (11) is electrically connected; when the outdoor air passes through the upper and lower inner wind inlet windows (15), it enters the outside.
  • the air inlet heat exchange duct ⁇ the dust in the outdoor air is combined with the heat conduction static induction glass (11), the high-voltage positive electric induction by the sandwiched conductive film, and the composite heat conduction static induction glass in the outer air inlet heat exchange duct ( On the surface of 11), a negative electric layer is induced, so that dust in the air flowing through the outer air inlet and outlet air passage is induced into positively charged dust, which is adsorbed by the surface of the composite heat conduction static induction glass (11).
  • the air entering the indoor outdoor room is purified; in the air inlet window (5) on the inner side of the upper air inlet duct of the upper exhaust air window ventilation module assembly, an upper inlet window plasma purifier (38) is provided; In the inner upper air inlet window (5) of the upper air inlet duct of the exhaust window ventilating module assembly, an upper inlet window plasma purifier (38) is provided; and the lower inlet air ventilating module assembly is placed under the air inlet module In the inner lower air inlet window (15) of the air duct, there is a lower inlet window plasma purifier generating electrode (40); the plasma purifier generating electrode (40) has a generating pole voltage higher than the collector voltage, so that It further purifies the air on the collector and enriches the supplemental air with negative ions; when the dust reaches the set value, the collector and the generator of the plasma purifier generating electrode (40) can be removed for cleaning and reduction; On the left and right sides of the curtain wall, there is a roulette chain transmission device, and the chain of the roulette chain transmission
  • the air curtain window ventilation module assembly the lower end of the glass curtain wall passes through the wind window (6), and includes a lower contact damper (34), an inner lower inlet window (15), a lower inlet air duct, and a lower exhaust window. (23), the lower exhaust air window ventilation module assembly of the lower exhaust air duct; the lower end of the composite glass curtain wall is provided with a cleaning sewage discharge device (19); when both sides of the composite heat conduction static induction glass (11) After the adsorption dust reaches the set amount, the cleaning component is installed.
  • the indoor temperature is low, so when the indoor cold air is heated, it will rise naturally; the outdoor temperature is high, and it will naturally sink when the outdoor hot air cools; in summer, the upper windshield (28) switches to the outer row.
  • the gas heat exchange air passage, linkage closes the upper inner side upper air inlet window (5), the inner upper exhaust window (8), the upper side of the upper side upper inlet wind window (27), the outer upper upper air window (29); the lower switching block
  • the air partition (34) is switched to the inner exhaust heat exchange duct, and the lower outer lower exhaust window (23) and the outer lower inlet window (24) are closed, and the lower inner lower exhaust window (13) is linked.
  • the inner side enters the wind window (15); the indoor cold air passes through the inner lower exhaust window (13), enters the inner exhaust heat exchange air passage, and heats the indoor discharge cold air through the composite heat conduction static induction glass (11), so that The temperature rises, the indoor discharge cold air temperature rises, rises naturally, and is discharged through the outer upper exhaust window (29); the outdoor hot air enters the outer exhaust heat exchange duct through the outer upper inlet window (27).
  • the composite heat conduction static induction glass (11) the outdoor hot air is cooled down, the temperature is lowered, the outdoor hot air temperature is lowered, and the temperature is naturally lowered.
  • the inner lower air inlet window (15) enters the room to realize natural ventilation indoors and outdoors. .
  • the indoor temperature is high, so when the indoor hot air is cooled, it will naturally sink; the outdoor temperature is low, and the outdoor cold air will naturally rise when heated; in winter, the upper windshield (28), Switch to the inner exhaust heat exchange air duct, link the upper inner air inlet window (5) and the inner upper exhaust window (8), and close the upper outer side upper air inlet window (27) and the outer upper air exhaust window (29).
  • the indoor and outdoor temperature is measured by the temperature sensing device, and the upper and lower switching windshield is automatically switched by the servo device to realize automatic interlocking of the intake and exhaust damper, automatic air exchange; or through the glass.
  • the end of the curtain wall, or the lower end of the windshield (6), is provided with a two-way fan (22) for forced air exchange.
  • the dust in the outdoor air is combined with the heat conduction static induction glass (11), which is carried by the sandwiched conductive film.
  • High pressure Positive electric induction on the surface of the composite heat conduction static induction glass (11) of the outer air inlet heat exchange duct, a negative electric layer is induced, so that the dust in the air flowing through the outer air inlet heat exchange duct is induced to be positively charged.
  • the dust is adsorbed by the surface of the composite heat-conducting electrostatic induction glass (11), so that the air entering the room outdoors can be purified.
  • the cleaning assembly device When the dust on both sides of the composite heat conduction static induction glass (11) reaches a set amount, the cleaning assembly device is sprayed on the water on both sides of the two ventilation air passages, and is cleaned by the air passage of the cleaning assembly.
  • the scraper (16) repeatedly wipes the ash from the glass on both sides of the two ventilation ducts; the scraped gray water is collected and discharged in the cleaning sewage discharge device (19) at the bottom of the composite glass curtain wall.
  • FIGS. 5 and 6 The third embodiment is shown in FIGS. 5 and 6:
  • a heat conduction convection ventilation static induction vacuum multi-functional composite glass curtain wall comprising a window frame, a glass curtain wall and a vent, wherein the glass curtain wall is a single layer or a hollow indoor side glass (10), and is electrically conductive.
  • the composite thermal conduction electrostatic induction interlayer of the adhesive film layer (25) is provided with a glass (11), a single layer or a hollow outdoor side glass (26), and is arranged in parallel by a head spacer (20) provided at both ends.
  • the upper and lower ends of the glass curtain wall are provided with a through-window window (6), three parallel-arranged glass, which are integrally packaged by the window frame (32) to form a composite glass curtain wall;
  • the end of the curtain wall, or the lower end is provided with a throughwind window (6), or a two-way fan (22) for inlet and exhaust; a high-voltage positive electrode of the positive high-voltage generator (17), and a composite heat-conductive electrostatic induction adhesive
  • the conductive adhesive film layer (25) sandwiched between the glass (11) is electrically connected; when the outdoor air passes through the upper and lower inner wind inlet windows (15), the outer air inlet heat exchange air passage ⁇ , the dust in the outdoor air Composite heat conduction
  • the electric induction glass (11), through the high-voltage positive electric induction of the sandwiched conductive film induces a negative electric layer on the surface of the composite heat-conducting electrostatic induction glass (11) of the outer air inlet and outlet air passage, so that the
  • the cleaning assembly the upper end of the glass curtain wall extends through the wind window (6), and includes an upper contact damper (28), an inner upper inlet window (5), an upper inlet air duct, an inner upper exhaust window (8), and upper The upper exhaust ventilation window ventilation module assembly of the exhaust air duct; the lower end of the glass curtain wall passes through the wind window (6), and includes a lower contact damper (34), an inner lower inlet window (15), and a lower inlet air Air duct, lower exhaust window (23), lower exhaust air window ventilation module assembly of the lower exhaust air duct; when the dust on both sides of the composite heat conduction static induction glass (11) reaches a set amount, Cleaning the component device, spraying water on the glass on both sides of the two ventilation air passages, cleaning the scraping plate (16) through the air passage of the cleaning assembly, and repeatedly scraping and removing the glass on both sides
  • the indoor temperature is low, so when the indoor cold air is heated, it will rise naturally; the outdoor temperature is high, and it will naturally sink when the outdoor hot air cools; in summer, the upper windshield (28) switches to the outer row.
  • the gas heat exchange air passage, linkage closes the upper inner side upper air inlet window (5), the inner upper exhaust window (8), the upper side of the upper side upper inlet wind window (27), the outer upper upper air window (29); the lower switching block
  • the air baffle (34) is switched to the inner exhaust heat exchange air duct, and the lower outer lower exhaust window (23) and the outer lower air inlet window (24) are closed, and the lower inner lower exhaust window (13) is linked.
  • the inner side enters the wind window (15); the indoor cold air passes through the inner lower exhaust window (13), enters the inner exhaust heat exchange air passage, and heats the indoor discharge cold air through the composite heat conduction static induction glass (11), so that The temperature rises, the indoor discharge cold air temperature rises, rises naturally, and is discharged through the outer upper exhaust window (29); the outdoor hot air enters the outer exhaust heat exchange duct through the outer upper inlet window (27). Static heat conduction through composite heat conduction Should be glass (11), right Outdoors enters the hot air to cool down, so that the temperature is lowered, the outdoor hot air temperature is lowered, and it naturally sinks. It enters the room through the inner lower inlet window (15) to realize natural ventilation indoors and outdoors.
  • the indoor temperature is high, so when the indoor hot air is cooled, it will naturally sink; the outdoor temperature is low, and the outdoor cold air will naturally rise when heated; in the winter, the upper windshield (28), Switch to the inner exhaust heat exchange air duct, link the upper inner air inlet window (5) and the inner upper exhaust window (8), and close the upper outer side upper air inlet window (27) and the outer upper air exhaust window (29).
  • the upper and lower switching windshield is automatically switched by the servo device, and the automatic linkage switching between the intake and exhaust dampers is realized, and the air is automatically exchanged; or through the glass.
  • the end of the curtain wall, or the lower end of the windshield (6), is provided with a two-way fan (22) for forced air exchange.
  • the dust in the outdoor air is combined with the heat conduction static induction glass (11), which is carried by the sandwiched conductive film.
  • the high-voltage positive electric induction induces a negative electric layer on the surface of the composite heat-conducting electrostatic induction glass (11) on the outer air-inlet heat exchange duct, so that the dust in the air flowing through the outer air-inlet heat exchange duct is induced to be positively charged.
  • the electric dust is adsorbed by the surface of the composite heat-conducting electrostatic induction glass (11), so that the air entering the room outdoors can be purified.
  • the cleaning assembly device When the dust on both sides of the composite heat-conductive electrostatic induction glass (11) reaches a set amount, the cleaning assembly device is sprayed on the water on both sides of the two ventilation air passages, and is cleaned by the air passage of the cleaning assembly.
  • the scraper (16) repeatedly wipes the ash from the glass on both sides of the two ventilation ducts; the scraped gray water is collected and discharged in the cleaning sewage discharge device (19) at the bottom of the composite glass curtain wall.
  • the plasma air purifier can further achieve the purification of the exchange into the indoor air, and enrich the air with negative ions.
  • FIGS. 7 and 8 The fourth embodiment is shown in FIGS. 7 and 8:
  • a heat conduction convection ventilation static induction vacuum multifunctional composite glass curtain wall comprising a window frame, a glass curtain wall and a vent, wherein the glass curtain wall is a single layer or a hollow indoor side glass (10), and is electrically conductive.
  • the composite thermal conduction electrostatic induction interlayer of the adhesive film layer (25) is provided with a glass (11), a single layer or a hollow outdoor side glass (26), and is arranged in parallel by a head spacer (20) provided at both ends.
  • the upper and lower ends of the glass curtain wall are provided with a through-window window (6), three parallel-arranged glass, which are integrally packaged by the window frame (32) to form a composite glass curtain wall;
  • the end of the curtain wall, or the lower end is provided with a throughwind window (6), or a two-way fan (22) for inlet and exhaust; a high-voltage positive electrode of the positive high-voltage generator (17), and a composite heat-conductive electrostatic induction adhesive
  • the conductive adhesive film layer (25) sandwiched between the glass (11) is electrically connected; when the outdoor air passes through the upper and lower inner wind inlet windows (15), the outer air inlet heat exchange air passage ⁇ , the dust in the outdoor air Composite heat conduction
  • the electric induction glass (11), through the high-voltage positive electric induction of the sandwiched conductive film induces a negative electric layer on the surface of the composite heat-conducting electrostatic induction glass (11) of the outer air inlet and outlet air passage, so that the
  • a lower inlet plenum generator electrode (24) is provided in the lower inlet window (24) of the lower inlet duct of the lower intake and exhaust window ventilating module assembly connected thereto ( 43) ;
  • a lower inlet window plasma purifier generating electrode (40) and a lower inlet window are provided in the inner lower inlet window (15) of the lower inlet air duct of the lower exhaust air ventilating module assembly.
  • the plasma purifier collects the fan (48); in the inner air inlet window (5) of the upper inlet air duct of the upper exhaust air window ventilation module assembly connected thereto, the upper inlet window positive ion generator electrode is provided ( 42); isometric
  • the generating voltage of the electrode of the daughter purifier is higher than the voltage of the collector fan (48) of the plasma purifier, so that the air is further purified on the collector, and the supplemental air is enriched with negative ions; when the dust reaches the setting Value ⁇ , the plasma purifier generating electrode, the plasma purifier collector fan (48), the positive ion generator electrode (42) generating electrode are cleaned and restored; the left and right sides of the glass curtain wall are provided with a roulette chain
  • the cable transmission device, the chain of the roulette chain transmission device is equidistantly symmetrically provided with a pair of air passage cleaning scrapers (16) connected to the two side air passage interlayers.
  • the upper end of the glass curtain wall is connected to the wind window (6), and is provided with a cleaning component including a water pipe (1), a valve, a cleaning water pipe (4), a washing water nozzle (9), or a water pipe ( 1), the water storage tank (2), the valve, the booster pump (3), the cleaning water pipe (4), the cleaning water nozzle (9) cleaning assembly;
  • the upper end of the glass curtain wall is connected to the wind window (6), Including Contact the damper (28), the inner upper inlet window (5), the upper inlet duct, the inner upper exhaust window (8), the upper exhaust duct ventilation module of the upper exhaust duct; the lower end of the glass curtain wall On the windshield (6), there is a lower contact damper
  • the indoor temperature is low, so when the indoor cold air is heated, it will rise naturally; the outdoor temperature is high, and it will naturally sink when the outdoor hot air cools; in summer, the upper windshield (28) switches to the outer row.
  • the gas heat exchange air passage, linkage closes the upper inner side upper air inlet window (5), the inner upper exhaust window (8), the upper side of the upper side upper inlet wind window (27), the outer upper upper air window (29); the lower switching block
  • the air partition (34) is switched to the inner exhaust heat exchange duct, and the lower outer lower exhaust window (23) and the outer lower inlet window (24) are closed, and the lower inner lower exhaust window (13) is linked.
  • the inner side enters the wind window (15); the indoor cold air passes through the inner lower exhaust window (13), enters the inner exhaust heat exchange air passage, and heats the indoor discharge cold air through the composite heat conduction static induction glass (11), so that The temperature rises, the indoor discharge cold air temperature rises, rises naturally, and is discharged through the outer upper exhaust window (29); the outdoor hot air passes through the outer upper inlet window
  • the indoor temperature is high, so when the indoor hot air is cooled, it will naturally sink; the outdoor temperature is low, and the outdoor cold air will naturally rise when heated; in the winter, the upper windshield (28), Switch to the inner exhaust heat exchange air duct, link the upper inner air inlet window (5) and the inner upper exhaust window (8), and close the upper outer side upper air inlet window (27) and the outer upper air exhaust window (29).
  • the indoor and outdoor temperature is measured by the temperature sensing device, and the upper and lower switching windshield is automatically switched by the servo device to realize automatic interlocking of the intake and exhaust damper, automatic air exchange; or through the glass.
  • the end of the curtain wall, or the lower end of the windshield (6), is provided with a two-way fan (22) for forced air exchange.
  • the dust in the outdoor air is combined with the heat conduction static induction glass (11), which is carried by the sandwiched conductive film.
  • the high-voltage positive electric induction induces a negative electric layer on the surface of the composite heat-conducting electrostatic induction glass (11) on the outer air-inlet heat exchange duct, so that the dust in the air flowing through the outer air-inlet heat exchange duct is induced to be positively charged.
  • the electric dust is adsorbed by the surface of the composite heat-conducting electrostatic induction glass (11), so that the air entering the room outdoors can be purified.
  • the cleaning assembly device When the dust on both sides of the composite heat conduction static induction glass (11) reaches a set amount, the cleaning assembly device is sprayed on the water on both sides of the two ventilation air passages, and is cleaned by the air passage of the cleaning assembly.
  • the scraper (16) repeatedly wipes the ash from the glass on both sides of the two ventilation ducts; the scraped gray water is collected and discharged in the cleaning sewage discharge device (19) at the bottom of the composite glass curtain wall.
  • the plasma air purifier can further achieve the purification of the exchange into the indoor air, and enrich the air with negative ions.
  • FIGS. 9 and 10 The fifth embodiment is shown in FIGS. 9 and 10:
  • a heat conduction convection ventilation static induction vacuum multi-functional composite glass curtain wall characterized in that: a plasma air body purification is arranged in an air passage of an inner upper inlet window (5) and an inner lower inlet window (15) a finned electrode near the inner upper inlet window (5) and the inner lower inlet window (15), which is a positively charged collector, and corresponding to the metal needle array electrode, the wire mesh electrode
  • the electrode of the linear, zigzag, star, spur or fishbone structure electrode is a negatively charged generator; the absolute value of the negative voltage with negative charge is higher than the absolute value of the positive collector voltage; Or in the air channel of the outer upper inlet window (27) and the outer lower inlet window (24), including metal needle array electrode, wire mesh electrode, wire, serrated, star, thorn type Or a positively charged electrode of a fishbone structure electrode; a positive charge of the pollutant in the incoming air, attracted by a composite heat conduction static induction glass (11) with a negatively charged film layer, discharge neutral
  • the plasma air purifier can further purify the exchange into the indoor air and enrich the air with negative ions.
  • FIGS. 11 and 12 The sixth embodiment is shown in FIGS. 11 and 12:
  • a heat conduction convection ventilation static induction vacuum multi-functional composite glass curtain wall, the plasma air purifier is different from other embodiments, has its own characteristics, can further realize the exchange into the indoor air purification, and make the air rich Contains negative ions.
  • Other features are similar to other embodiments and will not be described again.
  • FIGS. 13 and 14 The seventh embodiment is shown in FIGS. 13 and 14:
  • the device has its own characteristics, which can further realize the purification of the exchange into the indoor air, and enrich the air with negative ions.
  • Other features are similar to the other embodiments described above and will not be described again.
  • FIGS. 15 and 16 The eighth embodiment is shown in FIGS. 15 and 16:
  • a heat conduction convection ventilation static induction vacuum multi-functional composite glass curtain wall, the plasma air purifier is different from other embodiments, has its own characteristics, can further realize the exchange into the indoor air purification, and make the air rich Contains negative ions.
  • Other features are similar to the other embodiments described above and will not be described again.
  • FIGS. 17 and 18 The ninth embodiment is as shown in FIGS. 17 and 18:
  • a heat conduction convection ventilation static induction vacuum multi-functional composite glass curtain wall, the plasma air purifier is different from other embodiments, has its own characteristics, can further realize the exchange into the indoor air purification, and make the air rich Contains negative ions.
  • Other features are similar to the other embodiments described above and will not be described again.
  • the tenth embodiment is as shown in FIGS. 19 and 20:
  • a heat conduction convection ventilation static induction vacuum multi-functional composite glass curtain wall, the plasma air purifier is different from other embodiments, has its own characteristics, can further realize the exchange into the indoor air purification, and make the air rich Contains negative ions.
  • Other features are similar to the other embodiments described above and will not be described again.
  • FIGS. 21 and 22 The eleventh embodiment is shown in FIGS. 21 and 22:
  • a heat conduction convection ventilation static induction vacuum multi-functional composite glass curtain wall, the plasma air purifier is different from other embodiments, has its own characteristics, can further realize the exchange into the indoor air purification, and make the air rich Contains negative ions.
  • Other features are similar to the other embodiments described above and will not be described again.

Abstract

La présente invention concerne un mur rideau en verre composite multifonctionnel à aspiration de poussière par induction électrostatique et à ventilation par convection à conduction thermique, qui comprend un cadre de fenêtre (32), une mur rideau en verre, et une ouverture de ventilation, le mur rideau en verre comprenant un verre côté intérieur (10), un verre composite à induction électrostatique à conduction thermique (11) qui se trouve de part et d'autre d'une couche de film adhésif conducteur (25), et un verre côté extérieur (26), une couche sandwich qui comporte un conduit de ventilation à double couche séparé en parallèle enveloppé au moyen de têtes de support séparées agencées aux deux extrémités, et les extrémités supérieure et inférieure du mur rideau en verre étant pourvues d'une fenêtre de ventilation d'air. Le présent mur rideau en verre présente les fonctions d'aspiration de poussière, de purification d'air, d'éclairage et de ventilation.
PCT/CN2016/111989 2016-03-06 2016-12-25 Mur rideau en verre composite multifonctionnel à aspiration de poussière par induction électrostatique et à ventilation par convection à conduction thermique WO2017152696A1 (fr)

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CN113738044A (zh) * 2021-09-06 2021-12-03 江苏言信环境科技有限公司 净化室用保温高牢固性净化夹芯板

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CN106765627A (zh) * 2016-11-23 2017-05-31 深圳市捷鸿森电子科技有限公司 一种空气净化器
CN110552447B (zh) * 2019-09-20 2020-11-10 广东宏科建设股份有限公司 一种幕墙通风结构
CN112546781B (zh) * 2020-02-26 2022-07-22 苏州维格纳信息科技有限公司 一种节能环保的高层建筑雾霾连续治理净化装置
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CN112090204B (zh) * 2020-08-11 2022-08-23 安徽龙钰徽派古建工艺制品有限公司 一种具有粉尘收集功能的砖瓦生产用切割设备
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