WO2010099656A1 - Dispositif de puverisation pour condenser l'eau de conditionneur d'air - Google Patents

Dispositif de puverisation pour condenser l'eau de conditionneur d'air Download PDF

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Publication number
WO2010099656A1
WO2010099656A1 PCT/CN2009/070626 CN2009070626W WO2010099656A1 WO 2010099656 A1 WO2010099656 A1 WO 2010099656A1 CN 2009070626 W CN2009070626 W CN 2009070626W WO 2010099656 A1 WO2010099656 A1 WO 2010099656A1
Authority
WO
WIPO (PCT)
Prior art keywords
compression pump
nozzle
cam
driven wheel
pull rod
Prior art date
Application number
PCT/CN2009/070626
Other languages
English (en)
Chinese (zh)
Inventor
邓梁
Original Assignee
高勇
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 高勇 filed Critical 高勇
Priority to PCT/CN2009/070626 priority Critical patent/WO2010099656A1/fr
Publication of WO2010099656A1 publication Critical patent/WO2010099656A1/fr

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/22Means for preventing condensation or evacuating condensate
    • F24F13/222Means for preventing condensation or evacuating condensate for evacuating condensate
    • 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
    • F24F1/06Separate outdoor units, e.g. outdoor unit to be linked to a separate room comprising a compressor and a heat exchanger
    • F24F1/42Separate outdoor units, e.g. outdoor unit to be linked to a separate room comprising a compressor and a heat exchanger characterised by the use of the condensate, e.g. for enhanced cooling
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/22Means for preventing condensation or evacuating condensate
    • F24F13/222Means for preventing condensation or evacuating condensate for evacuating condensate
    • F24F2013/225Means for preventing condensation or evacuating condensate for evacuating condensate by evaporating the condensate in the cooling medium, e.g. in air flow from the condenser

Definitions

  • the present invention relates to an air conditioning refrigeration technology, particularly an air conditioning condensate atomizing spray device.
  • An object of the present invention is to provide an air conditioning condensate atomizing spray device, which can be used to collect and condense water after being collected, sprayed on the surface of the radiator of the air conditioner, reduce the condensation temperature, reduce the condensation pressure, and achieve energy saving. efficacy.
  • Air conditioning condensate atomizing spray device including geared motor, cam, driven wheel, drawbar compression pump, check valve, water storage cylinder and nozzle, geared motor is driven by cam, cam is driven by linear reciprocating motion of driven wheel
  • the rotating shaft of the driven wheel is connected with the pull rod, and the driven wheel is linearly reciprocated by the rotating shaft, and the pulling rod controls the compression pump to work.
  • the compression pump has a water outlet and a water inlet, and the water inlet passes through the hose and the check valve and the air conditioner condensate
  • the water storage tank is connected, and the water outlet is connected to the nozzle through a check valve and a hose.
  • the rotating wheel of the driven wheel is also embedded with a rotating roller sleeved on the other rotating roller shaft, and the two sets of rotating roller shafts are respectively connected by connectors.
  • the compression pump is a plug compression pump, and the plug compression pump is composed of a plug cap, a piston, a sealing jaw and a cylinder.
  • the pull rod passes through the plug cylinder cover and is fixed in the central hole of the piston.
  • the radial edge of the piston is clamped to the sealing jaw, and the sealing jaw is tangentially sealed to the inner diameter wall of the cylinder.
  • the pull rod is driven by the geared motor, the cam and the driven wheel. The linear reciprocating motion pulls the piston to reciprocate in the cylinder to make the compression pump act as a suction or discharge fluid.
  • the compression pump is a bellows compression pump, the drawbar is fixed at one end of the corrugated compression pump, and the drawbar is driven by a geared motor
  • the cam and the driven wheel act linearly reciprocatingly, and the drawbar pulls the bellows compression pump as an action of sucking or discharging the fluid.
  • the nozzle is composed of a nozzle seat and a nozzle core, the nozzle seat has a guiding inner cone hole and a sprayed narrow hole, and the nozzle core is mounted with a nozzle core, and the two sides of the nozzle core are respectively a flow guiding slope, and the fluid passes through the nozzle
  • the flow guiding slope on both sides of the core cylinder generates a swirling force, and then conducts through the inner cone hole of the nozzle seat, and the mist is sprayed by the narrow hole.
  • the present invention provides a pressure spray device for condensing water utilization of an air conditioner. After collecting the condensed water, the condensed water is atomized by a pressurizing device and then sprayed on the surface of the radiator of the air conditioner. After the condensed water is atomized and sprayed on the surface of the radiator of the air conditioner, the condensed water can be evaporated, and the condensed water evaporation process will effectively remove the heat. When the air conditioner is operated in the summer hot season, the condensing temperature can be significantly reduced after the auxiliary cooling. Reduce the condensing pressure.
  • the device for pressurizing the condensed water of the present invention is a plunger pump or a bellows structure, a check valve is installed at the water outlet of the pressurizing device, and a single plug is installed at the water inlet of the booster device.
  • a check valve is installed at the water outlet of the pressurizing device
  • a single plug is installed at the water inlet of the booster device.
  • the atomizing nozzle is composed of a nozzle core and a nozzle seat.
  • the nozzle core is a column type, and the inclined sides are inclined on both sides of the column type, and the inclined surfaces are inclined in the same direction.
  • the needle is turned, the nozzle core is installed in a nozzle seat of a tapered hole, and the pressure fluid is flowed through the inclined surface of the nozzle core to form a swirling fluid, and the pressure swirling fluid is ejected through the narrow hole of the taper hole in the nozzle seat, and is ejected.
  • the swirling fluid is formed into a mist, and the spray cone is disposed in a high temperature region of the condenser of the air conditioner, and the mist of the condensed water sprayed in the high temperature region is rapidly evaporated and vaporized, and the vaporization of the condensed water mist causes a significant cooling effect.
  • the present invention uses a reduction motor to drive a supercharging device to operate the supercharging device at a slower supercharging frequency to achieve a thermal effect that prevents excessive speed.
  • the present invention also operates with a cam mechanism, utilizing the long and short diameter characteristics of the cam, the long diameter is to push the piston, and the short diameter to pull the piston.
  • the one-way valve of the present invention is sealed with a steel ball and a sealing jaw, so that the structure is simple and the failure is reduced.
  • the positive significance of the invention is that the condensed water and the radiator are not only exposed to sensible heat exchange, but also have latent heat exchange caused by mass exchange, part of the water is evaporated into water vapor, and the vaporized subtropical zone takes a lot of heat (water The latent heat of vaporization is about 2450kJ/kg). Evaporation of the condensate reduces the condensation temperature of the condenser because the condensation capacity of the air-cooled condenser is limited by the ambient dry bulb temperature, while the evaporative condenser is limited to the ambient wet bulb temperature, while the wet bulb temperature is generally lower than the dry bulb temperature. Low 8-14 ° C, so its condensation temperature is reduced, studies have shown that the evaporative condensing system can save 20-40% compared to other condensing systems.
  • FIG. 1 is a schematic view of a system for condensing water atomizing spray device of an air conditioner according to the present invention
  • Figure 2 is a cross-sectional view taken along line A-A of Figure 1;
  • Figure 3 is a plan view of Figure 1;
  • Figure 4 is a cross-sectional view taken along line B-B of Figure 3;
  • FIG. 5 is a schematic view showing a multi-nozzle of the air conditioning condensate atomizing spray device system of the present invention
  • FIG. 6 is a schematic view showing a compression structure of a bellows of an air conditioning condensate atomizing spray device system of the present invention
  • Figure 7 is a schematic view showing the structure of a plug compression pump
  • FIG. 8 is a schematic view showing the transmission mechanism of the air conditioning condensate atomizing spray device of the present invention.
  • Figure 9 is a cross-sectional view taken along line C-C of Figure 8.
  • Figure 10 is a three-way schematic diagram
  • Figure 11 is a straight through diagram
  • Figure 12 is a schematic view of the installation of the straight through and the connector
  • Figure 13 is a schematic view showing the structure of a bellows compression pump
  • Figure 14 is a schematic view of the structure of the check valve
  • Figure 15 is a schematic view of the nozzle
  • Figure 15A is a schematic view of a nozzle holder
  • Figure 15B is a schematic view of a nozzle core
  • Figure 15C is a right side view of Figure 15B;
  • Figure 15D is a left side view of Figure 15B;
  • Figure 15E is a bottom view of Figure 15B
  • Figure 15F is a plan view of Figure 15B
  • Figure 16 is a schematic view of the connector.
  • the sub- 5-4 sleeve is placed on the rotating roller shaft 5-5, and the driven wheel 4 tangentially mounted to the cam 2 is embedded with a rotating roller 5-4, and the rotating roller 5-4 is sleeved on the rotating roller shaft 5 -5, the two sets of rotating roller shafts 5-5 are respectively connected by the connector 5-3, the driven wheel 4 is fixed by the rotating shaft 5-2, the rotating shaft 5-2 is connected with the pulling rod 5-1, and the pulling rod 5-1 passes through
  • the plug caps 5-8 are placed in the center hole of the piston 5-6 (see Figure 7), the radial edges of the pistons 5-6 are clip-mounted seals 5-7, the seals 5-7 and the outlets are The inner diameter wall of the cylinder 5-9 of the water inlet is tangentially sealed.
  • the cam 2 rotates accordingly, the cam 2 rotates to pull the driven wheel 4 to reciprocate linearly, and the driven wheel 4 moves up and down to pull the rod 5-1 to make a straight line.
  • the pull rod 5-1 is linearly reciprocated to pull the piston 5-6 to reciprocate in the cylinder 5-9, and the piston 5-6 reciprocates in the cylinder 5-9 to suck or discharge the fluid.
  • the nozzle core 15-1 is mounted in the nozzle holder 15-2, and the nozzle core 15-1 is respectively on both sides of the cylinder.
  • the flow guiding slopes 15-la and 15-lb generate a swirling force when the fluid passes through the flow guiding slopes 15-la and 15-lb ⁇ on both sides of the cylinder of the nozzle core 15-1 at a certain speed, and the swirling fluid passes through the nozzle holder.
  • the slit 15-2b is rotated and sprayed, and the fluid passing through the slit 15-2b is sprayed in a mist.
  • Fig. 6 when the geared motor 1 rotates to drag the cam 2 to the long diameter horizontal position, the driven wheel 4 is dragged, the center of the cam 2 is coupled with the plug compression pump 5 or with the bellows compression pump 5A ( As shown in Fig. 5, Fig. 10 to Fig. 13), the distance is increased, the lever 5-1 is dragged, and the piston 5-6 moves in the cylinder 5-9, and the moving direction is the outlet of the cylinder 5-9. On the contrary, a negative pressure is generated in the cylinder 5-9, the steel ball 6-1 in the check valve 6 is sucked, and the steel ball 6-1 in the suction check valve 6 is close to the ⁇ ' type seal ⁇ 6-2.
  • the contact acts as a sealing, so that the fluid entering the hose 8 does not flow backward, the cylinder 5-9 is connected to the other hose seat 16 through hole and connected to the hose 12, and then the check valve 10 is connected through the connecting nozzle 9, the cylinder Negative pressure ⁇ is generated in the body 5-9, the steel ball 6-1 of the check valve 10 is lifted and floated, and the steel ball 6-1 is lifted and floated away from the ⁇ '-type seal ⁇ 6-2, and the fluid passes, The condensed water condensed from the evaporator of the air conditioner passes through the water inlet 3 and the condensed water that has entered the water storage cylinder 11 is sucked into the cylinder 5-9.
  • the middle section of the connecting nozzle 7 is a threaded section 7-1, and the small end is a tapered section 7-2.
  • the connecting nozzle 7 is connected with the connecting straight 13 to install a ⁇ , a tapered section
  • the 7-2 is tightly fitted with the tapered bore in the straight through hole 13 to provide a sealing action.
  • the rotating roller 5-4 and the rotating roller shaft 5-5 are embedded in the cam 2 and the driven wheel 4, and when the cam 2 pulls the connector 5-3, the roller 5-4 is rotated.
  • the cymbal cam 2 makes a circular motion
  • the connector 5-3 pulls the pull rod 5-1 for linear motion
  • the rotating roller 5-4 rolls in the convex edge of the cam 2 to eliminate the circular motion. Converts the relative motion friction of a linear motion.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Nozzles (AREA)

Abstract

L'invention concerne un dispositif de pulvérisation pour condenser l'eau de conditionneur d'air, qui comporte un moteur réducteur de vitesse (1), une came (2), un connecteur (5-3), un arbre de rotation (5-2), une roue entraînée (4), une tirette (5-1), une pompe à compression (5, 5A), des soupapes de retenue (6, 10), un cylindre de stockage d'eau (11) et une buse (15). Le moteur réducteur de vitesse (1) entraîne la came (2). La came (2) entraîne la roue entraînée (4) l'amenant à un mouvement de va-et-vient. La tirette (5-1) commande le mouvement de la pompe à compression (5, 5A). Le sommet de la pompe à compression (5, 5A) comporte une admission et une sortie. Une extrémité d'un tuyau souple (12) est reliée à une base (16) de tuyau souple qui se trouve sur l'admission de la pompe à compression (5, 5A), et l'autre extrémité est reliée à la soupape de retenue (10) qui se trouve sur le cylindre de stockage d'eau (11). Une extrémité d'un tuyau souple (8) est reliée à la soupape de retenue (6), et l'autre extrémité à la buse (15). Ce dispositif permet de recueillir la condensation de l'eau de conditionneur d'air qui est mise sous pression par la pompe à pression (5, 5A), et pulvérisée par la buse (15). On l'a pulvérise ensuite sur la surface du condenseur du conditionneur d'air. Ainsi, on peut réduire la pression de condensation et la température de condensation.
PCT/CN2009/070626 2009-03-03 2009-03-03 Dispositif de puverisation pour condenser l'eau de conditionneur d'air WO2010099656A1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PCT/CN2009/070626 WO2010099656A1 (fr) 2009-03-03 2009-03-03 Dispositif de puverisation pour condenser l'eau de conditionneur d'air

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/CN2009/070626 WO2010099656A1 (fr) 2009-03-03 2009-03-03 Dispositif de puverisation pour condenser l'eau de conditionneur d'air

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WO2010099656A1 true WO2010099656A1 (fr) 2010-09-10

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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102878628A (zh) * 2012-11-08 2013-01-16 宣建民 一种空调节能***
CN103206744A (zh) * 2012-01-13 2013-07-17 葛永乐 雾化冷却式节能机房空调
CN103225854A (zh) * 2012-01-31 2013-07-31 葛永乐 雾化冷却式节能中央空调
CN105135656A (zh) * 2015-09-21 2015-12-09 范爱苏 一种带管道连接件的空调冷凝水排出装置
CN116984070A (zh) * 2023-09-26 2023-11-03 云南云陶文化产业有限公司 一种附带颗粒筛选功能的陶器原料研磨装置

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0507267A2 (fr) * 1991-04-03 1992-10-07 Moulinex Conditionneur d'air
CN2378672Y (zh) * 1999-06-19 2000-05-17 刘畅 空调机滴水雾化处理装置
US20030041604A1 (en) * 2001-09-05 2003-03-06 Ching-Shiang Jang Device for enhancing efficiency of air-conditioner
CN2682327Y (zh) * 2004-03-23 2005-03-02 吴俊云 一种车用空调高效蒸发冷却装置
CN2736682Y (zh) * 2004-09-28 2005-10-26 周春观 一种能调节空气湿度的空调机
CN1760550A (zh) * 2004-10-17 2006-04-19 邓梁 金属膜隔膜泵
CN101382337A (zh) * 2007-09-03 2009-03-11 厦门伟通节能科技有限公司 空调冷凝水雾化喷洒装置

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0507267A2 (fr) * 1991-04-03 1992-10-07 Moulinex Conditionneur d'air
CN2378672Y (zh) * 1999-06-19 2000-05-17 刘畅 空调机滴水雾化处理装置
US20030041604A1 (en) * 2001-09-05 2003-03-06 Ching-Shiang Jang Device for enhancing efficiency of air-conditioner
CN2682327Y (zh) * 2004-03-23 2005-03-02 吴俊云 一种车用空调高效蒸发冷却装置
CN2736682Y (zh) * 2004-09-28 2005-10-26 周春观 一种能调节空气湿度的空调机
CN1760550A (zh) * 2004-10-17 2006-04-19 邓梁 金属膜隔膜泵
CN101382337A (zh) * 2007-09-03 2009-03-11 厦门伟通节能科技有限公司 空调冷凝水雾化喷洒装置

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103206744A (zh) * 2012-01-13 2013-07-17 葛永乐 雾化冷却式节能机房空调
CN103225854A (zh) * 2012-01-31 2013-07-31 葛永乐 雾化冷却式节能中央空调
CN102878628A (zh) * 2012-11-08 2013-01-16 宣建民 一种空调节能***
CN105135656A (zh) * 2015-09-21 2015-12-09 范爱苏 一种带管道连接件的空调冷凝水排出装置
CN116984070A (zh) * 2023-09-26 2023-11-03 云南云陶文化产业有限公司 一种附带颗粒筛选功能的陶器原料研磨装置
CN116984070B (zh) * 2023-09-26 2023-12-08 云南云陶文化产业有限公司 一种附带颗粒筛选功能的陶器原料研磨装置

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