WO2023245996A1 - 一种具有喷雾功能的冷风扇 - Google Patents

一种具有喷雾功能的冷风扇 Download PDF

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WO2023245996A1
WO2023245996A1 PCT/CN2022/136444 CN2022136444W WO2023245996A1 WO 2023245996 A1 WO2023245996 A1 WO 2023245996A1 CN 2022136444 W CN2022136444 W CN 2022136444W WO 2023245996 A1 WO2023245996 A1 WO 2023245996A1
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water
mist
box
air
pipe
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PCT/CN2022/136444
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English (en)
French (fr)
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沈建君
沈泽
陈迪飞
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沈建君
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Publication of WO2023245996A1 publication Critical patent/WO2023245996A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F5/00Air-conditioning systems or apparatus not covered by F24F1/00 or F24F3/00, e.g. using solar heat or combined with household units such as an oven or water heater
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F6/00Air-humidification, e.g. cooling by humidification
    • F24F6/12Air-humidification, e.g. cooling by humidification by forming water dispersions in the air

Definitions

  • the utility model relates to the technical field of cooling fans, in particular to a cooling fan with a spray function.
  • a humidification component is usually installed at the air suction port of the air duct.
  • the flowing wind brings the moisture on the humidification component into the air duct, and then blows it out from the air outlet, which is the blown wind belt.
  • the utility model discloses a cooling fan with a spray function.
  • the mist outlet assembly includes a water box, a mist outlet box is provided in the water box through a partition, and the atomizer is located in the mist outlet box; a pipe fitting is passed between the water box and the water tank. Communicated, water is taken from the water tank under the action of the water pump in the water tank; a water tank is provided between the water box and the mist outlet box to introduce the water in the water box into the mist outlet box.
  • the above technical solution is further configured as follows: a lower mist pipe is provided inside the mist outlet box, and the mist rises and is sprayed downward through the lower mist pipe; the lower mist pipe is connected to the mist outlet pipe at the lower end of the mist outlet box; The mist outlet pipe and the mist outlet are connected through pipe fittings.
  • the above technical solution is further configured as follows: a box cover is provided above the mist box, the water channel is located on both sides of the partition connecting the mist box and the water box, and the lower end of the partition and the water box There is a water gap between the bottoms.
  • a further configuration of the above technical solution is that the mist outlet is provided on the inner wall of the air outlet ring.
  • a further configuration of the above technical solution is that a mist blowing fan is provided on the side of the box cover, and a blowing port is provided on the box cover, and the mist blowing fan blows air into the mist outlet box through the blowing port.
  • a further configuration of the above technical solution is that a water supply pipe extends from the lower end surface of the water box, the water supply pipe is connected to the water supply port on the water box, and the pipe fittings connect the water supply pipe and the water tank.
  • the above technical solution is further configured such that the downwater pipe extends upward to the inside of the water box.
  • the beneficial effects of the utility model are: compared with the existing technology, the utility model is provided with a mist outlet box to discharge mist, and at the same time, the mist outlet box and the water box are connected, so that the water tank can simultaneously provide the mist assembly and the humidification assembly for water supply. It increases cooling efficiency without consuming additional power.
  • Figure 1 is a schematic diagram of the exploded structure of the utility model.
  • Figure 2 is a schematic diagram of the internal structure of the mist box and water box.
  • Figure 3 is a schematic diagram of the bottom structure of the mist box and water box.
  • Figure 4 is a schematic diagram of the position and structure of the air outlet ring, water tank and humidification sheet.
  • Figure 5 is a schematic diagram of the location of the mist outlet.
  • the liquid water in the water tank 400 enters the mist outlet component under the action of the water pump (not shown in the figure) to form mist, which is then blown out through the mist outlet 201 to cool the wind blown by the fan.
  • ice cubes can be placed in the mist discharging assembly in this embodiment to form cold mist and improve the cooling efficiency.
  • the circuit board 1 in the housing 100 is provided with a humidity sensor 1001.
  • the humidity sensor senses that the humidity exceeds the set value
  • the circuit board 1 controls the water pump to slow down the water supply or stop the water supply.
  • the atomization efficiency of the mist emitting component is reduced and mist is reduced.
  • a water supply pipe 610 extends from the lower end surface of the water box 600.
  • the water supply pipe 610 is connected to the water supply port 601 on the water box 600.
  • Pipe fittings connect the water supply pipe 610 Connected to water tank 400.
  • a UV sterilization lamp 900 is provided in the middle of the pipe.
  • the liquid water in the water tank 400 enters the water box 600 along the pipe through the water inlet 601 under the action of the water pump.
  • the water pump stops operating and liquid water cannot be supplied.
  • the liquid water in the water box 600 enters the water supply pipe 610 along the water supply inlet 601 for discharge, and flows back into the water tank 400 .
  • mist outlet 201 is provided on the inner wall of the air outlet ring portion 200.
  • the mist outlet 201 blows out mist alone, and the wind from the air duct 310 blows out in an annular shape from the air outlet ring 200 and is located around the mist outlet 201 .
  • the mist spreads into the surrounding wind, and the user feels the cool wind after cooling.
  • the mist outlet assembly includes a water box 600.
  • a mist outlet box 500 is provided in the water box 600 through a partition, and an atomizer (not shown) is located in the outlet.
  • the water box 600 and the water tank 400 are connected through pipe fittings, and water is taken from the water tank 400 under the action of the water pump in the water tank 400; a water tank 540 is provided between the water box 600 and the mist outlet box 500.
  • the water in the water box 600 is introduced into the mist outlet box 500 .
  • a box cover 530 is provided above the mist box 500, and the water channel 540 is located on both sides of the partition connecting the mist box 500 and the water box 600, and the lower end of the partition and the water box 600 There is a water gap between the bottoms.
  • a lower mist pipe 510 is provided inside the mist outlet box 500, and the mist rises and is sprayed downward through the lower mist pipe 510;
  • the mist pipe 510 is connected to the mist pipe 520 at the lower end of the mist box 500; the mist pipe 520 and the mist outlet 201 are connected through pipe fittings.
  • the lower mist pipe 510 is arranged inside the mist outlet box 500 and faces upward.
  • the atomizer converts the mist converted from liquid water to float upward, fills the space above and then squeezes into the upper port of the lower mist pipe 510. And enter the mist outlet pipe 520 along the lower mist pipe 510 . At this time, the liquid water is below the mist outlet box 500 and has not reached the upper port of the lower mist pipe 510, so it will not enter the lower mist pipe 510.
  • the upper end of the lower mist pipe 510 is higher than the upper end of the water channel 540 .
  • the atomizing part of the atomizer must be in contact with liquid water to perform atomization, so the liquid water in the atomizer box 500 needs to have a certain depth.
  • the liquid water when the liquid water enters the water tank 540, the liquid water cannot enter the lower mist pipe 510. Therefore, the upper end of the lower mist pipe 510 is higher than the water tank 540, and the water tank 540 cannot be installed. At the bottom of the fog box 500.
  • the lid 530 of the mist box 500 can be opened, and the user can clean or replace the atomizer.
  • the wind wheel 320 in the air duct 310 assembly 300 operates, sucking in external wind from the air suction port.
  • the air outside the housing 100 enters the air suction port, it first passes through the humidification sheet 700, and a small amount of moisture on the humidification sheet 700 is removed from the air suction port. It is brought into the air duct 310, so that the blown wind contains water vapor, and in a high temperature environment, the water vapor evaporates and absorbs heat, making the user feel cold wind.
  • the downwater pipe 630 extends upward to the inside of the water box 600 .
  • the liquid water in the water box 600 can enter the pipe fitting along the down pipe 630 to replenish the humidification component.
  • the upper end of the water box 600 is provided with a cover 620 .
  • mist box 500 can also be installed in conjunction with the water box 600 .

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Sustainable Development (AREA)
  • Dispersion Chemistry (AREA)
  • Air Humidification (AREA)

Abstract

本实用新型涉及一种具有喷雾功能的冷风扇,包括壳体以及设在壳体上方的出风环部,所述壳体内部设有容置腔,容置腔内设有用于提供吹风的风道组件和用于供水的水箱,壳体上设有进风口,风道组件从进风口吸取的风经出风环部的出风口吹出,还包括设置在所述出风环部上端的出雾组件,所述出雾组件和所述水箱连通,由水箱供水,将液态水转化成雾气从出风环部的出雾口吹出。本实用新型的有益效果在于:与现有技术相比,本实用新型设置出雾盒进行出雾,同时将出雾盒和水盒连通,使水箱同时给出雾组件和加湿组件进行供水,在增加降温效率的同时不额外消耗功率。

Description

一种具有喷雾功能的冷风扇 技术领域
本实用新型涉及冷风扇技术领域,尤其涉及一种具有喷雾功能的冷风扇。
背景技术
近年来由于温室效应的影响,造成全球气温逐年升高,每到夏季气候即热得令人无法忍受,于一些较为炎热地区国家中,超过30度以上的高温时常可见,更不要说在一些位处于热带气候的地区了,而且随着温室效应的影响加深,此种炎热气候的情况更是越趋严重,甚至连冬天也常让人热得受不了,也因此各式各样能让民众感到较为凉爽舒适之散热、降温用品,可说是民众日常生活中必备的物品之一。
其中,就一般用来散热、降温之电器设备而言,不外乎冷气、风扇等,该冷气于使用上极为耗费电力,于现今各种资源短缺、原物料上涨的社会中,冷气的使用对使用者来说,于其电费支出上系为一极大的负担,至于该风扇于使用上由于仅由扇叶风力吹送进行散热、降温,无法有效将温度大幅降低,其效果较为不佳,尤其在较为闷热的环境中,该风扇的使用效果更是有所限制。
现有技术中为了使冷风扇吹出冷风,通常在风道的吸风口处设置加湿组件,通过流动的风将加湿组件上的水分带入到风道内,再从出风口吹出,是吹出的风带有少量水汽,从而达到降温的效果。
但是,由于设备体积的限制,风道的吸风能力也受到限制,因此仅仅能吸入较少量的水分,其降温效果受限,不能满足使用者的需要。
实用新型内容
为了解决现有技术中存在的问题,本实用新型公开了一种带喷雾功能 的冷风扇。
一种具有喷雾功能的冷风扇,包括壳体以及设在壳体上方的出风环部,所述壳体内部设有容置腔,容置腔内设有用于提供吹风的风道组件和用于供水的水箱,壳体上设有进风口,风道组件从进风口吸取的风经出风环部的出风口吹出,其特征在于:还包括设置在所述出风环部上端的出雾组件,所述出雾组件和所述水箱连通,由水箱供水,将液态水转化成雾气从出风环部的出雾口吹出。
上述技术方案的进一步设置为:所述出雾组件包括水盒,所述水盒内通过隔板设置有出雾盒,雾化器位于所述出雾盒内;水盒和水箱之间通过管件连通,在水箱内水泵的作用下从水箱取水;所述水盒和所述出雾盒之间设置有过水槽将水盒内的水引入到出雾盒内。
上述技术方案的进一步设置为:所述出雾盒的内部设有下雾管,雾气上升通过下雾管向下喷出;所述下雾管和所述出雾盒下端的出雾管衔接;所述出雾管和所述出雾口之间通过管件连通。
上述技术方案的进一步设置为:所述出雾盒的上方设置有盒盖,所述过水槽位于所述出雾盒和所述水盒衔接的隔板两侧,且隔板的下端和水盒底部之间设有过水间隙。
上述技术方案的进一步设置为:所述下雾管的上端高于所述过水槽的上端。
上述技术方案的进一步设置为:所述出雾口设置在所述出风环部的内圈壁上。
上述技术方案的进一步设置为:所述盒盖的侧部还设有吹雾风扇,所述盒盖上开设有吹风口,所述吹雾风扇通过所述吹风口向出雾盒内吹风。
上述技术方案的进一步设置为:所述壳体内还设有加湿组件,所述加湿组件包括有加湿片,所述水盒内设有下水管,水盒下水,在加湿片上形 成水帘,所述加湿片位于所述风道组件的吸风口和壳体的进风口之间。
上述技术方案的进一步设置为:所述水盒的下端面上延伸设有上水管,所述上水管和所述水盒上的上水口衔接,管件将所述上水管和水箱连通。
上述技术方案的进一步设置为:所述下水管向上延伸到所述水盒的内部。
本实用新型的有益效果在于:与现有技术相比,本实用新型设置出雾盒进行出雾,同时将出雾盒和水盒连通,使水箱同时给出雾组件和加湿组件进行供水,在增加降温效率的同时不额外消耗功率。
附图说明
图1为本实用新型的分解结构示意图。
图2为出雾盒和水盒内部的结构示意图。
图3为出雾盒和水盒的底部结构示意图。
图4为出风环部、水箱以及加湿片的位置结构示意图。
图5为出雾口的位置示意图。
图6为壳体内各部件的位置结构示意图。
附图上标注:100、壳体;200、出风环部;201、出雾口;300、风道组件;320、风轮;310、风道;400、水箱;500、出雾盒;501、进水口;510、下雾管;520、出雾管;530、盒盖;540、过水槽;600、水盒;610、上水管;620、盖部;630、下水管;700、加湿片;601、上水口;800、吹雾风扇;531、吹风口;900、UV杀菌灯;1、电路板;1001、湿度传感器。
具体实施方式
为更进一步阐述本实用新型为实现预定实用新型目的所采取的技术手段及功效,以下结合附图及较佳实施例,对依据本实用新型的具体实施方式、结构、特征及其功效,详细说明如后。
参照图1所示,本实施例公开了一种具有喷雾功能的冷风扇,包括壳体100以及设在壳体100上方的出风环部200,所述壳体100内部设有容置腔,容置腔内设有用于提供吹风的风道310组件300和用于供水的水箱400,壳体100上设有进风口,风道310组件300从进风口吸取的风经出风环部200的出风口吹出,还包括设置在所述出风环部200上端的出雾组件,所述出雾组件和所述水箱400连通,由水箱400供水,将液态水转化成雾气从出风环部200的出雾口201吹出。
水箱400内的液态水在水泵(图中未画出)的作用下进入到出雾组件形成雾气,再通过出雾口201吹出,给风扇吹出的风进行降温。
优选的,本实施例中的出雾组件内可以放置冰块,使之形成冷雾,提高降温效率。
为了对冷风扇内部进行湿度监控,壳体100内的电路板1上设置有湿度传感器1001,当湿度传感器感应到湿度超过设定值时,电路板1控制水泵减缓上水速度或者停止上水,同时降低出雾组件的雾化效率,减少出雾。
参照图2和图3所示,所述水盒600的下端面上延伸设有上水管610,所述上水管610和所述水盒600上的上水口601衔接,管件将所述上水管610和水箱400连通。
优选的,为了对水盒600内的液态水进行杀菌处理,管件的中部设置有UV杀菌灯900。
水箱400内的液态水在水泵的作用下沿着管件通过上水口601进入到水盒600内。当冷风扇关闭时,水泵停止运作,液态水不能进行上水,而位于水盒600内的液态水则沿着上水口601进入到上水管610内进行下水,回流到水箱400内。
参照图5所示,优选的,所述出雾口201设置在所述出风环部200的 内圈壁上。
出雾口201单独吹出雾气,风道310的风在出风环部200呈环状吹出,且位于出雾口201的周部。雾气扩散到周部的吹出的风中,使用者感受到的是降温后的冷风。
参照图2和图3所示,具体的,所述出雾组件包括水盒600,所述水盒600内通过隔板设置有出雾盒500,雾化器(未画出)位于所述出雾盒500内;水盒600和水箱400之间通过管件连通,在水箱400内水泵的作用下从水箱400取水;所述水盒600和所述出雾盒500之间设置有过水槽540将水盒600内的水引入到出雾盒500内。
具体的,所述出雾盒500的上方设置有盒盖530,所述过水槽540位于所述出雾盒500和所述水盒600衔接的隔板两侧,且隔板的下端和水盒600底部之间设有过水间隙。
水箱400内的液态水沿着管件进入到水盒600内,当水盒600内的液态水到达设定高度时,即,液态水能够进入到水盒600区域的过水槽540内,并且通过过水槽540内的过水间隙进入到出雾盒500区域的过水槽540内,直到进入到出雾盒500内,经过出雾盒500内的雾化器作用,将液态水转化成雾气。
为了将雾气和未转化的液态水分离,避免液态水随着雾气一起吹出,所述出雾盒500的内部设有下雾管510,雾气上升通过下雾管510向下喷出;所述下雾管510和所述出雾盒500下端的出雾管520衔接;所述出雾管520和所述出雾口201之间通过管件连通。
优选的,下雾管510设置在出雾盒500的内部并且朝上设置,雾化器将液态水转化成的雾气向上飘,将上方的空间充盈之后挤入到下雾管510的上端口,并且沿着下雾管510进入到出雾管520内。此时,液态水在出雾盒500的下方,并未到达下雾管510的上端口,因此不会进入到下雾管 510内。
优选的,所述下雾管510的上端高于所述过水槽540的上端。
雾化器的雾化部分要与液态水接触才能进行雾化,因此出雾盒500内的液态水需要有一定的深度。同时,液态水进入到过水槽540的同时,又不能使液态水进入到下雾管510内,因此,下雾管510的上端位置要高于过水槽540的位置,并且,过水槽540不能设置在出雾盒500的底部。
优选的,出雾盒500的盒盖530可以打开,使用者可以对雾化器进行清理或更换。
为了加速出雾盒500内的雾气运动,所述盒盖530的侧部还设有吹雾风扇800,所述水盒600上位于所述出雾盒500的侧部开设有吹风口531,所述吹雾风扇800通过所述吹风口531向出雾盒500内吹风。
液态水在出雾盒500内被转化成雾气后,聚集在出雾盒500的上方,吹气风扇通过吹风口531朝出雾盒500内部进行吹气,吹动雾气流动,从而加速了雾气的运动,使雾气加速从下雾管510吹出。
参照图4所示,本实施例中,所述壳体100内还设有加湿组件,所述加湿组件包括有加湿片700,所述水盒600内设有下水管630,水盒600下水,在加湿片700上形成水帘,所述加湿片700位于所述风道310组件300的吸风口和壳体100的进风口之间。
风道310组件300内的风轮320运行,从吸风口将外部的风吸入,壳体100外部的空气进入到吸风口时,先经过加湿片700,将加湿片700上的少量水分从吸风口带入到风道310内,从而使得吹出的风带有水汽,并且在高温环境下,水汽蒸发吸热,使使用者感受到冷风。
下水管630通过管件给加湿组件进行补水时,在加湿片700内形成水帘,使加湿片700能够均匀渗水。
优选的,所述下水管630向上延伸到所述水盒600的内部。
只有当水盒600内的液态水的高度到达下水管630的上管口,液态水才能够沿着下水管630进入到管件,给加湿组件补水。
优选的,水盒600的上端设有盖部620。
使用者可以打开盖部620往水盒600内添加冰块等,以提高降温效果。
本实施例中,出雾盒500设置在水盒600的内部,即,水盒600的盖部620位于出雾盒500的上方。
在其他实施例中,出雾盒500也可以和水盒600衔接设置。
本实用新型的使用方式与现有技术中的冷风扇一致,在此不做赘述。
本实用新型的工作原理:水箱内的液态水在水泵的作用下进入到水盒内,并且一部分液态水经过过水槽进入到出雾盒内,在雾化器的作用下形成雾气在出雾盒内上升,并且沿着下雾管及出雾管从出雾口吹出,进行降温。另一部分液态水沿着水盒的下水管进入到加湿组件内给加湿片补水,形成湿冷的风。冷风扇关闭时,水泵不工作,水盒内的液态水经过上水管回流到水箱内。
本实施例中加湿组件的结构及原理跟现有技术中冷风扇中的加湿组件一致,在此不做赘述。
以上所述,仅是本实用新型的较佳实施例而已,并非对本实用新型作任何形式上的限制,虽然本实用新型已以较佳实施例揭示如上,然而并非用以限定本实用新型,任何本领域技术人员,在不脱离本实用新型技术方案范围内,当可利用上述揭示的技术内容做出些许更动或修饰为等同变化的等效实施例,但凡是未脱离本实用新型技术方案内容,依据本实用新型的技术实质对以上实施例所作的任何简介修改、等同变化与修饰,均仍属于本实用新型技术方案的范围内。

Claims (10)

  1. 一种具有喷雾功能的冷风扇,包括壳体(100)以及设在壳体(100)上方的出风环部(200),所述壳体(100)内部设有容置腔,容置腔内设有用于提供吹风的风道组件(300)和用于供水的水箱(400),壳体(100)上设有进风口,风道(310)组件(300)从进风口吸取的风经出风环部(200)的出风口吹出,其特征在于:还包括设置在所述出风环部(200)上端的出雾组件,所述出雾组件和所述水箱(400)连通,由水箱(400)供水,将液态水转化成雾气从出风环部(200)的出雾口(201)吹出。
  2. 根据权利要求1所述的具有喷雾功能的冷风扇,其特征在于:所述出雾组件包括水盒(600),所述水盒(600)内通过隔板设置有出雾盒(500),雾化器位于所述出雾盒(500)内;水盒(600)和水箱(400)之间通过管件连通,在水箱(400)内水泵的作用下从水箱(400)取水;所述水盒(600)和所述出雾盒(500)之间设置有过水槽(540)将水盒(600)内的水引入到出雾盒(500)内。
  3. 根据权利要求2所述的具有喷雾功能的冷风扇,其特征在于:所述出雾盒(500)的内部设有下雾管(510),雾气上升通过下雾管(510)向下喷出;所述下雾管(510)和所述出雾盒(500)下端的出雾管(520)衔接;所述出雾管(520)和所述出雾口(201)之间通过管件连通。
  4. 根据权利要求2所述的具有喷雾功能的冷风扇,其特征在于:所述出雾盒(500)的上方设置有盒盖(530),所述过水槽(540)位于所述出雾盒(500)和所述水盒(600)衔接的隔板两侧,且隔板的下端和水盒(600)底部之间设有过水间隙。
  5. 根据权利要求3所述的具有喷雾功能的冷风扇,其特征在于:所述下雾管(510)的上端高于所述过水槽(540)的上端。
  6. 根据权利要求3所述的具有喷雾功能的冷风扇,其特征在于:所述出雾口(201)设置在所述出风环部(200)的内圈壁上。
  7. 根据权利要求4所述的具有喷雾功能的冷风扇,其特征在于:所述 盒盖(530)的侧部还设有吹雾风扇(800),所述盒盖(530)上开设有吹风口(531),所述吹雾风扇(800)通过所述吹风口(531)向出雾盒(500)内吹风。
  8. 根据权利要求2所述的具有喷雾功能的冷风扇,其特征在于:所述壳体(100)内还设有加湿组件,所述加湿组件包括有加湿片(700),所述水盒(600)内设有下水管(630),水盒(600)下水,在加湿片(700)上形成水帘,所述加湿片(700)位于所述风道组件(300)的吸风口和壳体(100)的进风口之间。
  9. 根据权利要求2所述的具有喷雾功能的冷风扇,其特征在于:所述水盒(600)的下端面上延伸设有上水管(610),所述上水管(610)和所述水盒(600)上的上水口(601)衔接,管件将所述上水管(610)和水箱(400)连通。
  10. 根据权利要求8所述的具有喷雾功能的冷风扇,其特征在于:所述下水管(630)向上延伸到所述水盒(600)的内部。
PCT/CN2022/136444 2022-06-22 2022-12-05 一种具有喷雾功能的冷风扇 WO2023245996A1 (zh)

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