WO2017143476A1 - 汽车内部空气增湿*** - Google Patents

汽车内部空气增湿*** Download PDF

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Publication number
WO2017143476A1
WO2017143476A1 PCT/CN2016/074237 CN2016074237W WO2017143476A1 WO 2017143476 A1 WO2017143476 A1 WO 2017143476A1 CN 2016074237 W CN2016074237 W CN 2016074237W WO 2017143476 A1 WO2017143476 A1 WO 2017143476A1
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WIPO (PCT)
Prior art keywords
air
humidifier
interior
humidification system
vehicle
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PCT/CN2016/074237
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English (en)
French (fr)
Inventor
刘均
刘新
徐为
欧阳张鹏
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深圳市元征科技股份有限公司
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Application filed by 深圳市元征科技股份有限公司 filed Critical 深圳市元征科技股份有限公司
Priority to CN201680002720.9A priority Critical patent/CN107074077A/zh
Priority to PCT/CN2016/074237 priority patent/WO2017143476A1/zh
Publication of WO2017143476A1 publication Critical patent/WO2017143476A1/zh

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60HARRANGEMENTS OF HEATING, COOLING, VENTILATING OR OTHER AIR-TREATING DEVICES SPECIALLY ADAPTED FOR PASSENGER OR GOODS SPACES OF VEHICLES
    • B60H3/00Other air-treating devices
    • B60H3/02Moistening ; Devices influencing humidity levels, i.e. humidity control
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60HARRANGEMENTS OF HEATING, COOLING, VENTILATING OR OTHER AIR-TREATING DEVICES SPECIALLY ADAPTED FOR PASSENGER OR GOODS SPACES OF VEHICLES
    • B60H3/00Other air-treating devices
    • B60H3/02Moistening ; Devices influencing humidity levels, i.e. humidity control
    • B60H3/022Moistening ; Devices influencing humidity levels, i.e. humidity control for only humidifying the air

Definitions

  • the invention relates to the field of electronic technology, and in particular to an internal air humidification system for an automobile.
  • the main object of the present invention is to provide an internal air humidification system for an automobile, which aims to solve the technical problem of air drying inside the automobile.
  • the present invention provides an automotive interior air humidification system including a humidifier, an air quality monitoring device, and a main controller, wherein:
  • the air quality monitoring device is disposed inside the automobile and electrically connected to the main controller, configured to monitor air quality parameters in the vehicle, acquire monitoring data, and send the monitoring data to the main controller;
  • the main controller receives the monitoring data, and generates a control command according to the monitoring data to send to the humidifier;
  • the humidifier is disposed inside the automobile and electrically connected to the main controller, and is configured to increase the air humidity inside the automobile according to the received control instruction.
  • the main controller is connected to the car CAN bus and communicates with other devices connected to the CAN bus through the CAN protocol.
  • the system further includes a timer electrically connected to the humidifier for controlling the humidifier to operate for a preset time period separated by a preset time.
  • the system further includes setting means electrically connected to the main controller for receiving user setting information, and transmitting the user setting information to the main controller;
  • the main controller generates a corresponding control command according to the received user setting information and sends the corresponding control command to the humidifier.
  • a wireless communication device is further included, the wireless communication device being electrically connected to the setting device, the setting device wirelessly communicating with the mobile terminal by the wireless communication device.
  • the wireless communication device is a Bluetooth communication device and/or a mobile network communication device.
  • the air quality monitoring device is also disposed on a portable device carried by a person in the automobile.
  • the humidifier is provided with at least one air inlet and at least one air outlet, wherein:
  • the air inlet is used to provide a passage for air to enter the interior of the humidifier
  • the air outlet is used to provide a passage for the humidified air to enter the interior of the vehicle from inside the humidifier.
  • the humidifier is provided with a plurality of sets of air outlets, and the plurality of sets of air outlets are distributed according to a preset position.
  • the air outlet is provided with an air deflector for controlling the air outlet direction and/or the air outlet amount.
  • An internal air humidification system for an automobile monitors an internal air quality parameter of an automobile through an air quality monitoring device disposed inside the automobile, and obtains monitoring data, and transmits the monitoring data to the main controller. Receiving, by the main controller, the monitoring data is sent to the humidifier according to the monitoring data generation control instruction, and the humidifier increases the internal air humidity of the automobile according to the received control instruction, so that the internal air humidity of the automobile is maintained at Comfortable range.
  • FIG. 1 is a schematic view of an apparatus for an embodiment of an automobile interior air humidification system according to the present invention.
  • the invention provides an internal air humidification system for an automobile.
  • FIG. 1 there is shown a schematic view of an apparatus for an embodiment of an automotive interior air humidification system of the present invention.
  • the automotive interior air humidification system includes a humidifier 10, an air quality monitoring device 30, and a main controller 20.
  • the air quality monitoring device 30 is disposed in the interior of the automobile and electrically connected to the main controller 20 for monitoring air quality parameters in the vehicle, acquiring monitoring data, and transmitting the monitoring data to the main controller 20,
  • the air quality monitoring device 30 can also be disposed on a portable device carried by a person in the automobile.
  • the smart wristband carried by the person in the automobile is provided with the air quality monitoring device 30, and the air quality monitoring device 30 is provided.
  • the monitoring data is acquired and sent to the main controller 20.
  • the main controller 20 can communicate with the car CAN (Controller Area Network (Controller Area Network Bus) bus connection, communicating with other devices connected to the CAN bus through the CAN protocol;
  • the main controller 20 receives the monitoring data, and sends a control command to the humidifier 10 according to the monitoring data.
  • the humidifier 10 is disposed inside the automobile and electrically connected to the main controller 20 for The vehicle interior air humidity is increased according to the received control command, wherein the control command includes: opening, closing, increasing the air volume, reducing the air volume, and/or adjusting the wind direction.
  • the system further includes a timer electrically connected to the humidifier 10 for controlling the humidifier 10 to operate for a preset time period separated by a preset time.
  • the long-term operation of the humidifier 10 is avoided, and the energy consumption is reduced.
  • the timer further provides a setting function, which is convenient for the user to set the preset time of the timer and the preset time period.
  • the system further includes setting means 40 electrically connected to the main controller 20 for receiving user setting information, and transmitting the user setting information to the main controller 20;
  • the main controller 20 generates a corresponding control command according to the received user setting information and sends the corresponding control command to the humidifier 10. It is foreseen that after receiving the user setting information, the main controller 20 monitors according to the current air quality.
  • the monitoring data transmitted by the device 30 generates the control command and simultaneously transmits it to the humidifier 10, and the humidifier 10 operates in accordance with the control command.
  • the system is directly configured by the automobile manufacturer to communicate with other devices that access the CAN bus via the automotive CAN bus.
  • the technical solution of the present invention monitors the current internal air quality of the automobile through the air quality monitoring device 30, acquires monitoring data, and transmits the monitoring data to the main controller 20; meanwhile, the main controller 20 receives the monitoring data according to The monitoring data generation control instruction is sent to the humidifier 10; the humidifier 10 operates according to the control instruction, so that when the air inside the automobile is dry, the system automatically runs to increase the internal air humidity of the automobile to create comfort.
  • the vehicle interior air humidification system further includes a wireless communication device 50, the wireless communication device 50 is electrically connected to the setting device 40, and the setting device 40 passes the wireless communication device. 50 wirelessly communicating with the mobile terminal, it is foreseen that when the user cannot perform user setting on the setting device 40 for personal reasons, the user can communicate with the wireless communication device 50 through the mobile terminal, and the user setting information is passed through the The wireless communication device 50 transmits to the setting device 40.
  • the wireless communication device 50 is a Bluetooth communication device. Because the Bluetooth communication device has the characteristics of short-distance, low-power, stable communication, the user can send user setting information to the mobile terminal device paired with the Bluetooth communication device.
  • the setting device 40 is described.
  • the wireless communication device 50 is a mobile network communication device, and the mobile network communication device accesses the Internet, so that the user can remotely send user setting information to the setting device 40 through the Internet.
  • the humidifier 10 in the automotive interior air humidification system is provided with at least one air inlet and at least one air outlet, wherein the air inlet is used to enter the humidifier for air.
  • the air outlet is provided for providing a passage for the humidified air to enter the interior of the vehicle from the inside of the humidifier 10. It is foreseen that the air inlet can increase the length of the pipeline to be disposed outside the vehicle, and the air outside the vehicle enters.
  • the humidifier 10 detects the humidity of the outside air to generate a detection result, and humidifies the outside air according to the detection result, and the humidified air passes through the air outlet. Enter the interior of the car.
  • the humidifier 10 is provided with a plurality of sets of air outlets, which are arranged in the interior of the automobile according to a preset position, and the main control system controls the air humidity according to the air outlets of the respective air outlets.
  • the air outlets of the air outlets allow the occupants at different air outlets to obtain different air humidity.
  • the distributed air outlets can also quickly adjust the air humidity inside the vehicle.
  • the air outlet is provided with an air guiding plate for controlling the air blowing direction and/or the air outlet amount, and is similar to the air guiding plate provided by the air conditioning air outlet, and the air guiding plate passes through the opening size to the air outlet.
  • the amount of outflow is controlled, and the direction of the air outlet of the air outlet is controlled by the angle of inclination of the air deflector, and it is foreseen that the air deflector controls the wind direction and/or the air volume. It can be controlled by a control command sent by the main controller 20.
  • the air quality monitoring device 30 comprises a plurality of sets of sensor groups distributed inside the automobile
  • the sensor group may comprise at least one temperature sensor, at least one humidity sensor, at least one oxygen concentration sensor And/or at least one negative ion concentration sensor.
  • the humidifier 10 controls the corresponding air outlet according to the air humidity around each air outlet, the occupants at different air outlets obtain different air humidity.
  • the sensor group may further include a positioning device that acquires location information of the current sensor group such that the monitoring data sent by the air quality monitoring device 30 to the main controller 20 carries location information.
  • the air quality monitoring device 30 can be disposed on a portable device carried by an occupant, and the air quality monitoring device 30 monitors the air quality of the wearer's surroundings when the occupant enters the interior of the vehicle. Obtaining monitoring data, and transmitting the monitoring data to the main controller 20, the main controller 20 receives the monitoring data, and sends a control command according to the monitoring data to the humidifier 10, The humidifier 10 is disposed inside the automobile and electrically connected to the main controller 20 for increasing the humidity of the interior air of the automobile according to the received control command.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Air-Conditioning For Vehicles (AREA)
  • Air Conditioning Control Device (AREA)
  • Air Humidification (AREA)

Abstract

一种汽车内部空气增湿***,包括增湿器(10)、空气质量监测装置(30)和主控制器(20),其中:所述空气质量监测装置(30),设置于汽车内部与主控制器(20)电连接,用于对汽车内空气质量参数进行监测,获取监测数据,并将所述监测数据发送给所述主控制器(20);所述主控制器(20)接收所述监测数据,并根据所述监测数据生成控制指令发送给所述增湿器(10);所述增湿器(10)设置于汽车内部与主控制器(20)电连接,用于根据接收到的所述控制指令增加汽车内部空气湿度。该汽车内部空气增湿***使得汽车内部空气干燥时,通过增湿器(10)增加汽车内部空气湿度,使汽车内部有一个舒适的驾乘环境。

Description

汽车内部空气增湿***
技术领域
本发明涉及电子技术领域,尤其涉及汽车内部空气增湿***。
背景技术
随着汽车的普及,人们出行方式越来越多的选择以汽车为主要出行交通工具,同时,城市发展也导致人们在出行时,出行的距离不断增加,这使得人们将会有更多的时间花在路上,而汽车作为主要的出行交通工具,使得人们将会有更多的时间在汽车里,由于汽车内部空间相对封闭,且相对于载客量较大的汽车内部空气很难与外界空气进行有效的交换,使得汽车内部空气质量变差,且汽车行驶时,多使用空调对汽车内部空气温度进行控制,使得汽车内部空气干燥,现有的解决办法仅通过外接增湿器对汽车内部空气进行增湿,但汽车内部空间比较狭小,使得外接增湿器给汽车驾乘人员带来诸多不便。
发明内容
本发明的主要目的在于提供一种汽车内部空气增湿***,旨在解决汽车内部空气干燥的技术问题。
为实现上述目的,本发明提供一种汽车内部空气增湿***,包括增湿器、空气质量监测装置和主控制器,其中:
所述空气质量监测装置,设置于汽车内部与主控制器电连接,用于对汽车内空气质量参数进行监测,获取监测数据,并将所述监测数据发送给所述主控制器;
所述主控制器接收所述监测数据,并根据所述监测数据生成控制指令发送给所述增湿器;
所述增湿器设置于汽车内部与主控制器电连接,用于根据接收到的所述控制指令增加汽车内部空气湿度。
优选地,所述主控制器与汽车CAN总线连接,通过CAN协议与连接在CAN总线上的其他装置进行通信。
优选地,所述***还包括定时器,与所述增湿器电连接,用于控制所述增湿器相隔预设时间运行预设的时间周期。
优选地,所述***还包括设置装置,与所述主控制器电连接,用于接收用户设置信息,同时将所述用户设置信息发送给所述主控制器;
所述主控制器根据接收到的所述用户设置信息生成相应的控制指令发送给所述增湿器。
优选地,还包括无线通信装置,所述无线通信装置与所述设置装置电连接,所述设置装置通过所述无线通信装置与移动终端进行无线通信。
优选地,所述无线通信装置为蓝牙通信装置和/或移动网络通信装置。
优选地,所述空气质量监测装置还设置于汽车内人员携带的便携式设备上。
优选地,所述增湿器设有至少一个进风口和至少一个出风口,其中:
所述进风口用于为空气进入增湿器内部提供通道;
所述出风口用于为增湿后的空气从增湿器内部进入汽车内部提供通道。
优选地,所述增湿器设有多组出风口,所述多组出风口按预设位置分布。
优选地,所述出风口设有导风板,用于对出风方向和/或出风量进行控制。
本发明实施例提出的一种汽车内部空气增湿***,通过设置于汽车内部的空气质量监测装置对汽车内部空气质量参数进行监测并获得监测数据,并将所述监测数据发送给主控制器,主控制器接收所述监测数据根据所述监测数据生成控制指令发送给所述增湿器,所述增湿器根据接收到的所述控制指令增加汽车内部空气湿度,使得汽车内部空气湿度保持在让人舒适的范围内。
附图说明
图1为本发明汽车内部空气增湿***一实施例的装置示意图。
本发明目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明的一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
需要说明,本发明实施例中所有方向性指示(诸如上、下、左、右、前、后……)仅用于解释在某一特定姿态(如附图所示)下各部件之间的相对位置关系、运动情况等,如果该特定姿态发生改变时,则该方向性指示也相应地随之改变。
本发明提出一种汽车内部空气增湿***。
参照图1,图1为本发明汽车内部空气增湿***一实施例的装置示意图。
本发明实施例中,所述汽车内部空气增湿***包括增湿器10、空气质量监测装置30和主控制器20。
所述空气质量监测装置30,设置于汽车内部与主控制器20电连接,用于对汽车内空气质量参数进行监测,获取监测数据,并将所述监测数据发送给所述主控制器20,其中,所述空气质量监测装置30还可以设置于汽车内人员携带的便携式设备上,例如,汽车内人员所携带的智能手环设有所述空气质量监测装置30,所述空气质量监测装置30获取监测数据后发送给所述主控制器20,可以预见的,所述主控制器20可以与汽车CAN(Controller Area Network,控制器局域网总线)总线连接,通过CAN协议与连接在CAN总线上的其他装置进行通信;
所述主控制器20接收所述监测数据,并根据所述监测数据生成控制指令发送给所述增湿器10,所述增湿器10设置于汽车内部与主控制器20电连接,用于根据接收到的所述控制指令增加汽车内部空气湿度,其中,所述控制指令包括:打开、关闭、增大出风量、减小出风量和/或调整出风方向。
进一步的,由于汽车内部空气质量变化较为缓慢,因此所述***还包括定时器,与所述增湿器10电连接,用于控制所述增湿器10相隔预设时间运行预设的时间周期,避免所述增湿器10长期运行,减少能耗,可以预见的,所述定时器还提供设置功能,便于用户设置所述定时器预设时间及预设的时间周期。
进一步的,为方便使用,所述***还包括设置装置40,与所述主控制器20电连接,用于接收用户设置信息,同时将所述用户设置信息发送给所述主控制器20;所述主控制器20根据接收到的所述用户设置信息生成相应的控制指令发送给所述增湿器10,可以预见的,主控制器20接收到所述用户设置信息后,根据当前空气质量监测装置30发送的监测数据,生成所述控制指令,同时发送给所述增湿器10,所述增湿器10根据所述控制指令进行工作。
优选地,为增加所述***的有效性,所述***由汽车生产厂商生产是直接配置,通过汽车CAN总线与其他接入CAN总线的装置进行通信。
本发明技术方案通过空气质量监测装置30监测当前汽车内部空气质量,获取监测数据,并将所述监测数据发送给所述主控制器20;同时所述主控制器20接收所述监测数据,根据所述监测数据生成控制指令发送给所述增湿器10;所述增湿器10根据所述控制指令工作,使在汽车内部空气干燥时,所述***自动运行增加汽车内部空气湿度,创造舒适的汽车内部环境。
进一步的,在一实施例中,所述汽车内部空气增湿***还包括无线通信装置50,所述无线通信装置50与所述设置装置40电连接,所述设置装置40通过所述无线通信装置50与移动终端进行无线通信,可以预见的,当用户因为个人原因无法在设置装置40上进行用户设置时,用户可通过移动终端与所述无线通信装置50进行通信,将用户设置信息通过所述无线通信装置50发送给所述设置装置40。
进一步的,所述无线通信装置50为蓝牙通信装置,由于蓝牙通信装置具有短距离低功耗稳定通信的特点,因此用户可以通过与所述蓝牙通信装置配对的移动终端设备发送用户设置信息给所述设置装置40。
进一步的,所述无线通信装置50为移动网络通信装置,移动网络通信装置接入互联网,使得用户可以远程通过互联网发送用户设置信息给所述设置装置40。
进一步的,在又一实施例中,所述汽车内部空气增湿***中的增湿器10设有至少一个进风口和至少一个出风口,其中,所述进风口用于为空气进入增湿器10内部提供通道;所述出风口用于为增湿后的空气从增湿器10内部进入汽车内部提供通道,可以预见的,所述进风口可增加延长管道设置于汽车外部,汽车外部空气进入所述增湿器10内部后,增湿器10对所述外部空气湿度进行检测,生成检测结果,根据所述检测结果对所述外部空气进行增湿,增湿后的空气通过所述出风口进入汽车内部。
进一步的,为控制汽车内部各区域的空气湿度,所述增湿器10设有多组出风口,按预设位置分布设置于汽车内部,主控制***根据各出风口周围的空气湿度控制对应的出风口出风,使得位于不同出风口的驾乘人员获得不同的空气湿度,同时,分布设置的出风口也可以快速对汽车内部空气湿度进行调整。
进一步的,所述出风口设有导风板,用于对出风方向和/或出风量进行控制,类似空调出风口设置的导风板,所述导风板通过开口大小对所述出风口的出风量进行控制,通过所述导风板的倾斜角度对所述出风口的出风方向进行控制,可以预见的,所述出风口导风板对出风方向和/或出风量的控制,可以由所述主控制器20发送的控制指令控制。
可以预见的,所述空气质量监测装置30包括多组传感器组,所述多组传感器组分布设置于汽车内部,所述传感器组可以包括至少一个温度传感器、至少一个湿度传感器、至少一个氧气浓度传感器和/或至少一个负离子浓度传感器,进一步的,为实现所述增湿器10根据各出风口周围的空气湿度控制对应的出风口出风,使得位于不同出风口的驾乘人员获得不同的空气湿度,所述传感器组还可以包括定位装置,获取当前传感器组的位置信息,使得所述空气质量监测装置30发送给所述主控制器20的监测数据带有位置信息。
可以预见的,所述空气质量监测装置30可以设置于驾乘人员所携带的便携式设备上,所述驾乘人员进入汽车内部时,所述空气质量监测装置30监测佩戴者周围环境的空气质量,获得监测数据,并将所述监测数据发送给所述主控制器20,所述主控制器20接收所述监测数据,并根据所述监测数据生成控制指令发送给所述增湿器10,所述增湿器10设置于汽车内部与主控制器20电连接,用于根据接收到的所述控制指令增加汽车内部空气湿度。
以上仅为本发明的优选实施例,并非因此限制本发明的专利范围,凡是利用本发明说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本发明的专利保护范围内。

Claims (20)

  1. 一种汽车内部空气增湿***,其特征在于,包括增湿器、空气质量监测装置和主控制器,其中:
    所述空气质量监测装置,设置于汽车内部与主控制器电连接,用于对汽车内空气质量参数进行监测,获取监测数据,并将所述监测数据发送给所述主控制器;
    所述主控制器接收所述监测数据,并根据所述监测数据生成控制指令发送给所述增湿器;
    所述增湿器设置于汽车内部与主控制器电连接,用于根据接收到的所述控制指令增加汽车内部空气湿度。
  2. 如权利要求1所述的汽车内部空气增湿***,其特征在于,所述主控制器与汽车CAN总线连接,通过CAN协议与连接在CAN总线上的其他装置进行通信。
  3. 如权利要求2所述的汽车内部空气增湿***,其特征在于,所述***还包括定时器,与所述增湿器电连接,用于控制所述增湿器相隔预设时间运行预设的时间周期。
  4. 如权利要求3所述的汽车内部空气增湿***,其特征在于,所述***还包括设置装置,与所述主控制器电连接,用于接收用户设置信息,同时将所述用户设置信息发送给所述主控制器;
    所述主控制器根据接收到的所述用户设置信息生成相应的控制指令发送给所述增湿器。
  5. 如权利要求4所述的汽车内部空气增湿***,其特征在于,还包括无线通信装置,所述无线通信装置与所述设置装置电连接,所述设置装置通过所述无线通信装置与移动终端进行无线通信。
  6. 如权利要求5所述的汽车内部空气增湿***,其特征在于,所述无线通信装置为蓝牙通信装置和/或移动网络通信装置。
  7. 如权利要求1所述的汽车内部空气增湿***,其特征在于,所述空气质量监测装置设置于汽车内人员携带的便携式设备上。
  8. 如权利要求2所述的汽车内部空气增湿***,其特征在于,所述空气质量监测装置设置于汽车内人员携带的便携式设备上。
  9. 如权利要求3所述的汽车内部空气增湿***,其特征在于,所述空气质量监测装置设置于汽车内人员携带的便携式设备上。
  10. 如权利要求4所述的汽车内部空气增湿***,其特征在于,所述空气质量监测装置设置于汽车内人员携带的便携式设备上。
  11. 如权利要求5所述的汽车内部空气增湿***,其特征在于,所述空气质量监测装置设置于汽车内人员携带的便携式设备上。
  12. 如权利要求6所述的汽车内部空气增湿***,其特征在于,所述空气质量监测装置设置于汽车内人员携带的便携式设备上。
  13. 如权利要求1所述的汽车内部空气增湿***,其特征在于,所述增湿器设有至少一个进风口和至少一个出风口,其中:
    所述进风口用于为空气进入增湿器内部提供通道;
    所述出风口用于为增湿后的空气从增湿器内部进入汽车内部提供通道。
  14. 如权利要求2所述的汽车内部空气增湿***,其特征在于,所述增湿器设有至少一个进风口和至少一个出风口,其中:
    所述进风口用于为空气进入增湿器内部提供通道;
    所述出风口用于为增湿后的空气从增湿器内部进入汽车内部提供通道。
  15. 如权利要求3所述的汽车内部空气增湿***,其特征在于,所述增湿器设有至少一个进风口和至少一个出风口,其中:
    所述进风口用于为空气进入增湿器内部提供通道;
    所述出风口用于为增湿后的空气从增湿器内部进入汽车内部提供通道。
  16. 如权利要求4所述的汽车内部空气增湿***,其特征在于,所述增湿器设有至少一个进风口和至少一个出风口,其中:
    所述进风口用于为空气进入增湿器内部提供通道;
    所述出风口用于为增湿后的空气从增湿器内部进入汽车内部提供通道。
  17. 如权利要求5所述的汽车内部空气增湿***,其特征在于,所述增湿器设有至少一个进风口和至少一个出风口,其中:
    所述进风口用于为空气进入增湿器内部提供通道;
    所述出风口用于为增湿后的空气从增湿器内部进入汽车内部提供通道。
  18. 如权利要求6所述的汽车内部空气增湿***,其特征在于,所述增湿器设有至少一个进风口和至少一个出风口,其中:
    所述进风口用于为空气进入增湿器内部提供通道;
    所述出风口用于为增湿后的空气从增湿器内部进入汽车内部提供通道。
  19. 如权利要求13所述的汽车内部空气增湿***,其特征在于,所述增湿器设有多组出风口,所述多组出风口按预设位置分布。
  20. 如权利要求13所述的汽车内部空气增湿***,其特征在于,所述出风口设有导风板,用于对出风方向和/或出风量进行控制。
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