WO2019072196A1 - 空气动力冲浪装置 - Google Patents

空气动力冲浪装置 Download PDF

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Publication number
WO2019072196A1
WO2019072196A1 PCT/CN2018/109731 CN2018109731W WO2019072196A1 WO 2019072196 A1 WO2019072196 A1 WO 2019072196A1 CN 2018109731 W CN2018109731 W CN 2018109731W WO 2019072196 A1 WO2019072196 A1 WO 2019072196A1
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WO
WIPO (PCT)
Prior art keywords
aerodynamic
surfing
surfing device
fan
surfboard
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PCT/CN2018/109731
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English (en)
French (fr)
Inventor
田瑜
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田瑜
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Publication date
Application filed by 田瑜 filed Critical 田瑜
Publication of WO2019072196A1 publication Critical patent/WO2019072196A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B63SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
    • B63BSHIPS OR OTHER WATERBORNE VESSELS; EQUIPMENT FOR SHIPPING 
    • B63B32/00Water sports boards; Accessories therefor
    • B63B32/60Board appendages, e.g. fins, hydrofoils or centre boards
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B63SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
    • B63BSHIPS OR OTHER WATERBORNE VESSELS; EQUIPMENT FOR SHIPPING 
    • B63B32/00Water sports boards; Accessories therefor
    • B63B32/10Motor-propelled water sports boards
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B63SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
    • B63BSHIPS OR OTHER WATERBORNE VESSELS; EQUIPMENT FOR SHIPPING 
    • B63B32/00Water sports boards; Accessories therefor
    • B63B32/40Twintip boards; Wakeboards; Surfboards; Windsurfing boards; Paddle boards, e.g. SUP boards; Accessories specially adapted therefor
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B63SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
    • B63HMARINE PROPULSION OR STEERING
    • B63H7/00Propulsion directly actuated on air

Definitions

  • the invention relates to an aerodynamic surfing device.
  • the current power surf equipment is cumbersome in that it uses water to propel the surfboard and installs motors, blades, pumps, turbines or jets under water to generate water propulsion.
  • motors, blades, pumps, turbines or jets under water to generate water propulsion.
  • seaweed or floating plastic bags When seaweed or floating plastic bags are wrapped around it, it may accidentally impede the advancement of water; in addition, water propulsion is difficult to control, especially when encountering undercurrents, there is a safety hazard.
  • the technical problem to be solved by the present invention is to provide an aerodynamic surfing device in order to overcome the defects in the prior art that hinder water propulsion and have potential safety hazards.
  • An aerodynamic surfing device is characterized in that it comprises a surfboard and at least one air propulsion assembly for providing air propulsion, the air propulsion assembly being coupled to the surfboard.
  • the air propulsion assembly is coupled to a front end of a top surface of the surfboard;
  • And/or the air propulsion assembly is coupled to a rear end of a top surface of the surfboard.
  • the air propulsion assembly includes a fan and a battery module
  • the battery module is disposed in the surfing skateboard
  • the fan is connected to the surfing skateboard
  • the battery module and the fan are Electrical connection between them.
  • the aerodynamic surfing device further includes a control unit electrically coupled to the fan and outputting a power control command to the fan.
  • control unit comprises a hand-held controller electrically connected to the fan, and the hand-held controller is connected to a front end of the surfing skateboard.
  • the aerodynamic surfing device further includes a control unit, the air propulsion assembly includes a directional control member, the control unit is electrically connected to the directional control member and outputs a directional control command to the directional control member .
  • the directional control member includes a fan, and the control unit is electrically connected to the fan and used to control the swing of the fan;
  • the directional control member includes a driving mechanism and a fan, the driving mechanism is coupled to the fan and used to drive the fan to swing, and the control unit is electrically connected to the driving mechanism;
  • the directional control member includes a drive mechanism coupled to the rudder and configured to drive the rudder swing, and a rudder, the control unit being electrically coupled to the drive mechanism.
  • the aerodynamic surfing device further includes a seat connected to a top surface of the surfing skateboard.
  • the aerodynamic surfing device further includes an underwater detecting module disposed at a bottom of the surfing skateboard and configured to detect an underwater target.
  • the aerodynamic surfing device further includes a GPS module, and the GPS module is disposed on the surfing skateboard and used to acquire location information.
  • the aerodynamic surfing device further includes an antenna assembly disposed on the surfboard and configured to receive and transmit wireless signals.
  • the antenna assembly includes a directional antenna, and the directional antenna is disposed on the surfboard;
  • the antenna assembly includes a planar antenna, and the planar antenna is disposed on the surfing skateboard;
  • the antenna assembly includes an omnidirectional antenna disposed on the surfboard.
  • the aerodynamic surfing device further comprises at least one landing platform, the landing platform has a storage space, the landing platform comprises a base and a movable cover, and a bottom of the base is disposed on the surfing skateboard Upper, the movable cover is hinged to the top of the base to open or close the storage space.
  • the landing platform is a drone landing platform, and the drone landing platform further includes a plurality of charging interfaces and a dynamic compensation mechanism, wherein the plurality of charging interfaces and the dynamic compensation mechanism are both located within the storage space;
  • top surface of the dynamic compensation mechanism provides a degree of freedom relative to the tilting motion of the drone along at least one axis to maintain the top surface of the dynamic compensation mechanism parallel to the landing surface of the drone.
  • the aerodynamic surfing device further includes a battery module and a water propulsion module for providing water propulsion power, wherein the battery module and the water propulsion module are both connected to the surfing skateboard, and The battery module is electrically connected to the water propulsion module.
  • the aerodynamic surfing device of the invention realizes the forward movement of the surfing skateboard by the air propulsion component, effectively avoids the accidental obstacle caused by the water propulsion, improves the safety and stability of the aerodynamic surfing device, and at the same time, the application range widely.
  • FIG. 1 is a schematic view showing the use state of an aerodynamic surfing device according to Embodiment 1 of the present invention.
  • FIG. 2 is a schematic structural view of an aerodynamic surfing device according to Embodiment 1 of the present invention, wherein the left and right arrows mean that the fans can swing toward the arrow direction respectively.
  • Fig. 3 is a schematic view showing the use state of the aerodynamic surfing device according to Embodiment 2 of the present invention.
  • Fig. 4 is a schematic view showing the use state of the aerodynamic surfing device according to Embodiment 3 of the present invention.
  • FIG. 5 is a schematic structural view of an aerodynamic surfing device according to Embodiment 4 of the present invention.
  • Fig. 6 is a schematic structural view of an aerodynamic surfing device according to Embodiment 5 of the present invention.
  • the aerodynamic surfing device of the embodiment of the present invention includes a surfboard 1 and at least one air propulsion assembly 2 for providing air propulsion, and the air propulsion assembly 2 is coupled to the surfboard 1.
  • the air propulsion unit 2 realizes the air to drive the surfboard 1 forward, realizing a new way of traveling, without using water propulsion to provide power, effectively avoiding the accidental obstacle caused by water propulsion, and improving the air.
  • the safety and stability of the power surf device at the same time, people can stand on the surfboard 1 for surfing and leisure, and can also be used for transportation or water rescue platforms, etc., and have a wide range of applications.
  • the number of air propulsion assemblies 2 is not limited and may be set according to the weight of the drive, ensuring that sufficient propulsive force is provided to drive the surfboard 1, and any number of air propulsion assemblies 2 may be located on the waterline at any position on the surfboard 1. .
  • the air propulsion assembly 2 can be coupled to the rear end of the top surface of the surfboard 1.
  • the air propulsion assembly 2 includes a fan and a battery module.
  • the battery module is disposed in the surfing skateboard 1.
  • the fan is connected to the surfing skateboard 1, and the battery module is electrically connected to the fan.
  • the surfboard 1 can be a sealed chamber to protect the battery module.
  • the battery module is used to power the fan so that the fan can rotate and provide air propulsion.
  • the fan in this embodiment may be an air propulsion system, but other types of air propulsion systems such as a turbine, a turbojet, a ramjet, a turbofan, a scramjet, and a rocket jet may also be considered.
  • the forward direction of the surfing skateboard 1 can be controlled by the human body. If the fan can swing, the forward direction of the surfboard 1 can be controlled by the swing of the fan.
  • the aerodynamic surfing device may also include a detection device, the person standing on the surfboard 1 tends to have one side or the other side (moving weight), and/or a combination of body movements (hip, leg, waist, etc.) , similar to the surf skateboard 1 that is currently controlled.
  • the detection device can detect these body manipulations, and the detection device detects and sends a corresponding control signal to change the direction of the fan.
  • the air propulsion assembly 2 is coupled to the front end of the top surface of the surfboard 1 such that the air propulsion assembly 2 can blow a person when utilizing air for propulsion power, improving the comfort of use of the aerodynamic surfing device.
  • the front and rear ends of the surfboard 1 may be provided with an air propulsion assembly 2, and a person may stand in the middle of the surfboard 1.
  • the aerodynamic surfing device also includes a control unit 3 that is electrically coupled to the fan and that outputs a power control command to the fan.
  • the control unit 3 can control the switching of the fan so that the control of the forward and the stop of the surfing skateboard 1 can be controlled, and the control unit 3 can control the output power of the fan, so that the control of the forward speed of the surfing skateboard 1 can be controlled, thereby controlling the aerodynamic surfing device to advance, Stop and advance speed.
  • the control unit 3 may include a hand-held controller electrically connected to the fan, and the hand-held controller is coupled to the front end of the surfboard 1. The person stands on the surfboard 1 and holds the hand-held controller in hand to achieve stable standing and easy to use.
  • the control unit 3 and the fan may be in a signal connection control mode, that is, a wireless control mode, or may be a wired control mode. This embodiment is not limited thereto.
  • the air propulsion assembly 2 further includes a directional control member (not shown), and the control unit 3 is electrically connected to the directional control member and outputs a directional control command to the directional control member.
  • the direction control member can issue a direction control command to the direction control member, and the direction control member receives the direction control command and correspondingly changes the surfing direction of the surfing skateboard 1 according to the received direction control command, and the operation control direction is very convenient, the women and the Children can use it for ease of use and popularization.
  • the directional control member may include a fan, and the control unit 3 is electrically connected to the fan and used to control the swing of the fan.
  • the fan may be a fan that provides air propulsion power as described above, so that the fan can not only provide propulsion power but also swing, thereby achieving directional control of the surfboard 1.
  • the directional control member may also include a driving mechanism and a fan, the driving mechanism is coupled to the fan and used to drive the fan to swing, and the control unit 3 is electrically connected to the driving mechanism.
  • the control unit 3 is used for controlling the switch of the driving mechanism.
  • the driving mechanism can drive the driving fan to swing.
  • the independent fan can not swing, and the driving mechanism will drive the fan to sway, thereby realizing the direction control of the surfing skateboard 1.
  • the directional control member may further include a driving mechanism and a rudder, the driving mechanism is coupled to the rudder and used to drive the rudder swing, and the control unit 3 is electrically connected to the driving mechanism.
  • the bottom of the rudder is inserted into the water, and the control of the forward direction of the surfing skateboard 1 is realized by the swing of the rudder.
  • the drive mechanism in this embodiment may include any of the power-providing components known in the prior art, such as a cylinder, a motor, and the like. These structures are conventional structures and will not be described herein.
  • the aerodynamic surfing device also includes a seat 4 that is coupled to the top surface of the surfboard 1. The user can sit on the seat 4, improving the comfort of the aerodynamic surfing device.
  • the front end of the surfing skateboard 1 may be provided with a support rod
  • the control unit 3 may be mounted on the support rod
  • the user holds the support rod and is used to operate the control unit 3.
  • the aerodynamic surfing device also includes an underwater detection module 6 disposed at the bottom of the surfboard 1 for detecting underwater targets.
  • the underwater detection module 6 is used to detect other objects in the seawater, such as another ship, rocks, floating debris, etc., avoiding collision of the aerodynamic surfing device with objects in the water, and improving the safety of the aerodynamic surfing device.
  • the underwater detection module may be a sonar device.
  • the underwater detecting module 6 is mounted at the front end of the bottom of the surfboard 1, and the fins 5 are mounted at the rear end of the bottom of the surfboard 1.
  • the aerodynamic surfing device further includes a GPS module, and the GPS module is disposed on the surfing skateboard 1 and used to acquire position information.
  • the GPS module Through the GPS module, users on land can input GPS coordinates, and the user can stand on the shore and remotely control the aerodynamic surfing device, so that the aerodynamic surfing device can autonomously travel to a designated location, contact people who need help in the water, or no one. Shipping goods and supplies.
  • the aerodynamic surfing device further includes at least one landing platform 8 having a storage space 81 therein.
  • the landing platform 8 includes a base 82 and a movable cover 83.
  • the bottom of the base 82 is disposed on the surfing slide 1 and the movable cover 83 It is hinged to the top of the base 82 to open or close the storage space 81.
  • the landing platform 8 can act as a deployment station on the water.
  • the number of landing platforms 8 is not limited.
  • the landing platform 8 is a drone landing platform, and the drone landing platform further includes a plurality of charging interfaces and a dynamic compensation mechanism, wherein the plurality of charging interfaces and the dynamic compensation mechanism are located in the storage space 81; wherein the top surface of the dynamic compensation mechanism
  • the degree of freedom relative to the tilting movement of the drone 9 along at least one axis is provided to maintain the top surface of the dynamic compensation mechanism parallel to the landing surface of the drone 9.
  • the drone landing platform acts as a deployment station for the drone 9 on the water, similar to the deployment station of the aircraft carrier in which the aircraft is deployed, from which the drone 9 can fly to perform the mission, and the drone 9 can return and land in the landing platform 8 For charging / maintenance, etc.
  • the dynamic compensation mechanism can automatically adjust/automatically level the top surface of the dynamic compensation mechanism, that is, the landing surface of the drone 9, thereby enabling the drone 9 to land safely. Go to the drone landing platform.
  • the aerodynamic surfing device also includes an antenna assembly 7 disposed on the surfboard 1 for receiving and transmitting wireless signals.
  • the antenna assembly 7 can transmit and receive video links and data links from drones 9, transmission towers, ships, aircraft, satellites, submarines, and the like.
  • the antenna assembly 7 may include a directional antenna disposed on the surfboard 1.
  • the antenna assembly 7 may include a panel antenna that is disposed on the surfboard 1.
  • the antenna assembly 7 may include an omnidirectional antenna disposed on the surfboard 1.
  • the aerodynamic surfing device may also include a camera for capturing and transmitting video and photos through the antenna assembly 7 to a user on land.
  • the aerodynamic surfing device may also include sensors for detecting the specific location of the drone 9 and signaling to the user.
  • the aerodynamic surfing device may further include a battery module and a water propulsion module for providing water propulsion power.
  • the battery module and the water propulsion module are both connected to the surfing skateboard 1, and the battery module is electrically connected to the water propulsion module.
  • Both the water propulsion module and the air propulsion assembly 2 in the aerodynamic surfing device can provide forward propulsion power for the surfboard 1 to ensure the use of the aerodynamic surfing device, and at the same time, the user can select the propulsion mode from the main control unit. .

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  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • Ocean & Marine Engineering (AREA)
  • Steering Devices For Bicycles And Motorcycles (AREA)
  • Motorcycle And Bicycle Frame (AREA)

Abstract

一种空气动力冲浪装置,其包括冲浪滑板(1)和至少一个用于提供空气推进力的空气推进组件(2),所述空气推进组件(2)连接于所述冲浪滑板(1),通过空气推进组件(2)实现空气来驱动冲浪滑板(1)的向前推进,有效避免了因用水推进而产生的意外阻碍,提高了空气动力冲浪装置的安全稳定性,应用范围广泛。

Description

空气动力冲浪装置
本申请要求申请日为2017年10月10日的美国专利申请62/570,515的优先权。本申请引用上述美国专利申请的全文。
技术领域
本发明涉及一种空气动力冲浪装置。
背景技术
目前的动力冲浪设备种类繁杂,都是使用水来推进冲浪滑板,在水下安装马达、叶片、泵、涡轮或者喷射等部件来产生水推进动力。当海藻或者浮动塑料袋缠绕在其中时可能会意外地阻碍用水推进;此外,水推进很难控制,特别是在遇到暗流时,存在安全隐患。
发明内容
本发明要解决的技术问题是为了克服现有技术中的阻碍用水推进,存在安全隐患等缺陷,提供一种空气动力冲浪装置。
本发明是通过下述技术方案来解决上述技术问题:
一种空气动力冲浪装置,其特点在于,其包括冲浪滑板和至少一个用于提供空气推进力的空气推进组件,所述空气推进组件连接于所述冲浪滑板。
较佳地,所述空气推进组件连接于所述冲浪滑板的顶面的前端;
和/或,所述空气推进组件连接于所述冲浪滑板的顶面的后端。
较佳地,所述空气推进组件包括有风扇和电池模组,所述电池模组设置于所述冲浪滑板内,所述风扇连接于所述冲浪滑板上,所述电池模组与所述风扇之间电连接。
较佳地,所述空气动力冲浪装置还包括有控制单元,所述控制单元电连 接于所述风扇并向所述风扇输出功率控制指令。
较佳地,所述控制单元包括有手持控制器,所述手持控制器电连接于所述风扇,所述手持控制器连接于所述冲浪滑板的前端。
较佳地,所述空气动力冲浪装置还包括有控制单元,所述空气推进组件包括有方向控制件,所述控制单元电连接于所述方向控制件并向所述方向控制件输出方向控制指令。
较佳地,所述方向控制件包括有风扇,所述控制单元电连接于所述风扇并用于控制所述风扇的摆动;
或者,所述方向控制件包括有驱动机构和风扇,所述驱动机构连接于所述风扇并用于驱动所述风扇摆动,所述控制单元电连接于所述驱动机构;
或者,所述方向控制件包括有驱动机构和方向舵,所述驱动机构连接于所述方向舵并用于驱动所述方向舵摆动,所述控制单元电连接于所述驱动机构。
较佳地,所述空气动力冲浪装置还包括有座椅,所述座椅连接于所述冲浪滑板的顶面。
较佳地,所述空气动力冲浪装置还包括有水下探测模块,所述水下探测模块设置于所述冲浪滑板的底部并用于对水下目标进行探测。
较佳地,所述空气动力冲浪装置还包括有GPS模块,所述GPS模块设置于所述冲浪滑板并用于获取位置信息。
较佳地,所述空气动力冲浪装置还包括有天线组件,所述天线组件设置于所述冲浪滑板上并用于接收和发送无线信号。
较佳地,所述天线组件包括有定向天线,所述定向天线设置于所述冲浪滑板上;
和/或,所述天线组件包括有平板天线,所述平板天线设置于所述冲浪滑板上;
和/或,所述天线组件包括有全向天线,所述全向天线设置于所述冲浪滑 板上。
较佳地,所述空气动力冲浪装置还包括有至少一个着陆平台,所述着陆平台内具有存储空间,所述着陆平台包括有底座和可运动盖,所述底座的底部设置于所述冲浪滑板上,所述可运动盖铰接于所述底座的顶部以打开或者封闭所述存储空间。
较佳地,所述着陆平台为无人机着陆平台,所述无人机着陆平台还包括有多个充电接口和动态补偿机构,多个所述充电接口和所述动态补偿机构均位于所述存储空间内;
其中,所述动态补偿机构的顶面提供相对于无人机沿着至少一个轴线的倾斜运动的自由度,以便保持所述动态补偿机构的顶面与所述无人机的着陆面平行。
较佳地,所述空气动力冲浪装置还包括有电池模组和用于提供水推进动力的水推进模组,所述电池模组和所述水推进模组均连接于所述冲浪滑板,且所述电池模组与所述水推进模组电连接。
在符合本领域常识的基础上,上述各优选条件,可任意组合,即得本发明各较佳实例。
本发明的积极进步效果在于:
本发明的空气动力冲浪装置,通过空气推进组件实现空气来驱动冲浪滑板的向前推进,有效避免了因用水推进而产生的意外阻碍,提高了空气动力冲浪装置的安全稳定性;同时,应用范围广泛。
附图说明
图1为本发明实施例1的空气动力冲浪装置的使用状态示意图。
图2为本发明实施例1的空气动力冲浪装置的结构示意图,其中左右两个箭头是指风扇可以分别朝向箭头方向摆动。
图3为本发明实施例2的空气动力冲浪装置的使用状态示意图。
图4为本发明实施例3的空气动力冲浪装置的使用状态示意图。
图5为本发明实施例4的空气动力冲浪装置的结构示意图。
图6为本发明实施例5的空气动力冲浪装置的结构示意图。
附图标记说明:
冲浪滑板1
空气推进组件2
控制单元3
座椅4
翅片5
水下探测模块6
天线组件7
着陆平台8
存储空间81
底座82
可运动盖83
无人机9
具体实施方式
下面通过实施例的方式并结合附图来更清楚完整地说明本发明,但并不因此将本发明限制在的实施例范围之中。
实施例1
如图1和图2所示,本发明实施例的空气动力冲浪装置包括冲浪滑板1和至少一个用于提供空气推进力的空气推进组件2,空气推进组件2连接于冲浪滑板1。通过空气推进组件2实现空气来驱动冲浪滑板1的向前推进,实现了一种全新的上旅行方式,无需采用水推进来提供动力,有效避免了因用水推进而产生的意外阻碍,提高了空气动力冲浪装置的安全稳定性;同时, 人可以站在冲浪滑板1上冲浪休闲,也可以用于运送或者水上救援平台等,应用范围广泛。
空气推进组件2的数量不作限定,可以根据驱动的重量来设置,保证提供足够的推进力来驱动冲浪滑板1,可以有任意数量的空气推进组件2位于冲浪滑板1上的任何位置在水位线上。空气推进组件2可以连接于冲浪滑板1的顶面的后端。
空气推进组件2包括有风扇和电池模组,电池模组设置于冲浪滑板1内,风扇连接于冲浪滑板1上,电池模组与风扇之间电连接。冲浪滑板1内可以是密封的腔室,对电池模组起到保护作用。电池模组用于对风扇提供电力,使得风扇能够旋转并提供空气推动力。其中,本实施例中的风扇可以为空气推进系统,但也可以考虑其他类型的空气推进系统,例如涡轮,涡轮喷气,冲压喷射,涡轮风扇,超燃冲压发动机和火箭喷射等。
空气动力冲浪装置在使用时,冲浪滑板1的前进方向可以通过人的身体来控制。若风扇可以摆动时,可以通过风扇的摆动来控制冲浪滑板1的前进方向。当然,空气动力冲浪装置还可以包括有检测装置,人站在冲浪滑板1上倾向于一侧或另一侧(移动重量),和/或通过身体运动(臀部,腿部,腰部等)的组合,类似于目前通常控制的冲浪滑板1。检测装置可以检测到这些身体操纵,由检测装置检测到并发出相应的控制信号,从而来改变风扇的方向。
实施例2
如图3所示,本实施例的空气动力冲浪装置结构与实施例1的相同部分不再复述,仅对不同之处作说明。空气推进组件2连接于冲浪滑板1的顶面的前端,使得空气推进组件2在利用空气做推进动力时能够对人进行吹风,提高了空气动力冲浪装置的使用舒适度。当然,冲浪滑板1上前后端都可以设置有空气推进组件2,人可以站立在冲浪滑板1的中间位置。
实施例3
如图4所示,本实施例的空气动力冲浪装置结构与实施例1的相同部分不再复述,仅对不同之处作说明。空气动力冲浪装置还包括有控制单元3,控制单元3电连接于风扇并向风扇输出功率控制指令。控制单元3可以控制风扇的开关,使得能够对冲浪滑板1前进和停止的控制,控制单元3可以控制风扇的输出功率,使得能够对冲浪滑板1前进速度的控制,从而控制空气动力冲浪装置前进、停止以及前进的速度。
控制单元3可以包括有手持控制器,手持控制器电连接于风扇,手持控制器连接于冲浪滑板1的前端。人站在冲浪滑板1上,并手握住手持控制器,实现站立稳定,且使用方便。
控制单元3与风扇可以为信号连接控制方式,即无线控制方式,也可以采用有线控制方式。本实施例再次不作限定。
在本实施例中,空气推进组件2还包括有方向控制件(图中未示出),控制单元3电连接于方向控制件并向方向控制件输出方向控制指令。通过控制单元3能够对方向控制件发出方向控制指令,方向控制件接收到方向控制指令并根据接收到的方向控制指令来相应地改变冲浪滑板1的冲浪方向,操作控制推进方向非常方便,妇女和儿童都可以操作使用,便于使用和推广普及。
方向控制件可以包括有风扇,控制单元3电连接于风扇并用于控制风扇的摆动。该风扇可以为上述提供空气推进动力的风扇,使得风扇不仅能够提供推进动力,还可以摆动,从而实现对冲浪滑板1的方向控制。
方向控制件也可以包括有驱动机构和风扇,驱动机构连接于风扇并用于驱动风扇摆动,控制单元3电连接于驱动机构。控制单元3用于控制驱动机构的开关,驱动机构能够驱动驱动风扇摆动,该独立的风扇并不能摆动,通过驱动机构将会带动风扇的摇摆,从而实现冲浪滑板1的方向控制。
方向控制件还可以包括有驱动机构和方向舵,驱动机构连接于方向舵并用于驱动方向舵摆动,控制单元3电连接于驱动机构。方向舵的底部插入至 水中,通过方向舵的摆动来实现对冲浪滑板1的前进方向的控制。
本实施例中的驱动机构可以包括现有已知的任何提供动力的元器件,例如气缸、电机等结构。这些结构均为常规结构,故在此不作赘述。
实施例4
如图5所示,本实施例的空气动力冲浪装置结构与实施例3的相同部分不再复述,仅对不同之处作说明。空气动力冲浪装置还包括有座椅4,座椅4连接于冲浪滑板1的顶面。使用者可以坐在座椅4上,提高了空气动力冲浪装置的使用舒适度。其中,冲浪滑板1的前端可以设置支撑杆,控制单元3可以安装在支撑杆上,使用者握住支撑杆并用于操作控制单元3。
实施例5
如图6所示,本实施例的空气动力冲浪装置结构与实施例1的相同部分不再复述,仅对不同之处作说明。空气动力冲浪装置还包括有水下探测模块6,水下探测模块6设置于冲浪滑板1的底部并用于对水下目标进行探测。通过水下探测模块6用于检测海水中的其他物体,例如另一艘船,岩石,漂浮的碎片等,避免了空气动力冲浪装置与水中物体发生碰撞现象,提高了空气动力冲浪装置的安全性。其中,水下探测模块可以为声呐装置。
水下探测模块6安装于冲浪滑板1的底部的前端,翅片5安装于冲浪滑板1的底部的后端。
空气动力冲浪装置还包括有GPS模块,GPS模块设置于冲浪滑板1并用于获取位置信息。通过GPS模块使得陆地上的用户可以输入GPS坐标,用户可以站在岸上并远程控制空气动力冲浪装置,实现空气动力冲浪装置可以自主地行进到指定位置,接触需要水中帮助的人,也可以无人运送货物和物资。
空气动力冲浪装置还包括有至少一个着陆平台8,着陆平台8内具有存储空间81,着陆平台8包括有底座82和可运动盖83,底座82的底部设置于冲浪滑板1上,可运动盖83铰接于底座82的顶部以打开或者封闭存储空 间81。着陆平台8可以充当水上的部署站。其中,着陆平台8的数量不作限定。
着陆平台8为无人机着陆平台,无人机着陆平台还包括有多个充电接口和动态补偿机构,多个充电接口和动态补偿机构均位于存储空间81内;其中,动态补偿机构的顶面提供相对于无人机9沿着至少一个轴线的倾斜运动的自由度,以便保持动态补偿机构的顶面与无人机9的着陆面平行。无人机着陆平台充当水上的无人机9的部署站,类似于部署飞机的航空母舰的部署站,无人机9可以从中飞行以执行任务,无人机9可以返回并降落在着陆平台8内以进行充电/维护等。无人机9在着陆至无人机着陆平台时,通过动态补偿机构能够自动调节/自动调平动态补偿机构的顶面,即无人机9的着陆面,从而实现无人机9安全地着陆到无人机着陆平台上。
空气动力冲浪装置还包括有天线组件7,天线组件7设置于冲浪滑板1上并用于接收和发送无线信号。天线组件7可以发送和接收来自无人机9、传输塔、船、飞机、卫星、潜艇等的视频链路和数据链路。其中,天线组件7可以包括有定向天线,定向天线设置于冲浪滑板1上。天线组件7可以包括有平板天线,平板天线设置于冲浪滑板1上。天线组件7可以包括有全向天线,全向天线设置于冲浪滑板1上。
空气动力冲浪装置还可以包括有相机,相机用于拍摄并通过天线组件7传输视频、照片至陆地上的用户。空气动力冲浪装置还可以包括传感器,传感器用于检测无人机9的具体位置并发出信号至用户。
空气动力冲浪装置还可以包括有电池模组和用于提供水推进动力的水推进模组,电池模组和水推进模组均连接于冲浪滑板1,且电池模组与水推进模组电连接。空气动力冲浪装置中的水推进模组和空气推进组件2都可以为冲浪滑板1提供向前推进的动力,保证了空气动力冲浪装置的使用,同时,用户可以通过控制单元来自主选择推进的方式。
虽然以上描述了本发明的具体实施方式,但是本领域的技术人员应当理 解,这些仅是举例说明,在不背离本发明的原理和实质的前提下,可以对这些实施方式做出多种变更或修改。因此,本发明的保护范围由所附权利要求书限定。

Claims (15)

  1. 一种空气动力冲浪装置,其特征在于,其包括冲浪滑板和至少一个用于提供空气推进力的空气推进组件,所述空气推进组件连接于所述冲浪滑板。
  2. 如权利要求1所述的空气动力冲浪装置,其特征在于,所述空气推进组件连接于所述冲浪滑板的顶面的前端;
    和/或,所述空气推进组件连接于所述冲浪滑板的顶面的后端。
  3. 如权利要求1所述的空气动力冲浪装置,其特征在于,所述空气推进组件包括有风扇和电池模组,所述电池模组设置于所述冲浪滑板内,所述风扇连接于所述冲浪滑板上,所述电池模组与所述风扇之间电连接。
  4. 如权利要求3所述的空气动力冲浪装置,其特征在于,所述空气动力冲浪装置还包括有控制单元,所述控制单元电连接于所述风扇并向所述风扇输出功率控制指令。
  5. 如权利要求4所述的空气动力冲浪装置,其特征在于,所述控制单元包括有手持控制器,所述手持控制器电连接于所述风扇,所述手持控制器连接于所述冲浪滑板的前端。
  6. 如权利要求1所述的空气动力冲浪装置,其特征在于,所述空气动力冲浪装置还包括有控制单元,所述空气推进组件包括有方向控制件,所述控制单元电连接于所述方向控制件并向所述方向控制件输出方向控制指令。
  7. 如权利要求6所述的空气动力冲浪装置,其特征在于,所述方向控制件包括有风扇,所述控制单元电连接于所述风扇并用于控制所述风扇的摆动;
    或者,所述方向控制件包括有驱动机构和风扇,所述驱动机构连接于所述风扇并用于驱动所述风扇摆动,所述控制单元电连接于所述驱动机构;
    或者,所述方向控制件包括有驱动机构和方向舵,所述驱动机构连接于 所述方向舵并用于驱动所述方向舵摆动,所述控制单元电连接于所述驱动机构。
  8. 如权利要求1所述的空气动力冲浪装置,其特征在于,所述空气动力冲浪装置还包括有座椅,所述座椅连接于所述冲浪滑板的顶面。
  9. 如权利要求1所述的空气动力冲浪装置,其特征在于,所述空气动力冲浪装置还包括有水下探测模块,所述水下探测模块设置于所述冲浪滑板的底部并用于对水下目标进行探测。
  10. 如权利要求1所述的空气动力冲浪装置,其特征在于,所述空气动力冲浪装置还包括有GPS模块,所述GPS模块设置于所述冲浪滑板并用于获取位置信息。
  11. 如权利要求1所述的空气动力冲浪装置,其特征在于,所述空气动力冲浪装置还包括有天线组件,所述天线组件设置于所述冲浪滑板上并用于接收和发送无线信号。
  12. 如权利要求11所述的空气动力冲浪装置,其特征在于,所述天线组件包括有定向天线,所述定向天线设置于所述冲浪滑板上;
    和/或,所述天线组件包括有平板天线,所述平板天线设置于所述冲浪滑板上;
    和/或,所述天线组件包括有全向天线,所述全向天线设置于所述冲浪滑板上。
  13. 如权利要求1所述的空气动力冲浪装置,其特征在于,所述空气动力冲浪装置还包括有至少一个着陆平台,所述着陆平台内具有存储空间,所述着陆平台包括有底座和可运动盖,所述底座的底部设置于所述冲浪滑板上,所述可运动盖铰接于所述底座的顶部以打开或者封闭所述存储空间。
  14. 如权利要求13所述的空气动力冲浪装置,其特征在于,所述着陆平台为无人机着陆平台,所述无人机着陆平台还包括有多个充电接口和动态补偿机构,多个所述充电接口和所述动态补偿机构均位于所述存储空间内;
    其中,所述动态补偿机构的顶面提供相对于无人机沿着至少一个轴线的倾斜运动的自由度,以便保持所述动态补偿机构的顶面与所述无人机的着陆面平行。
  15. 如权利要求1所述的空气动力冲浪装置,其特征在于,所述空气动力冲浪装置还包括有电池模组和用于提供水推进动力的水推进模组,所述电池模组和所述水推进模组均连接于所述冲浪滑板,且所述电池模组与所述水推进模组电连接。
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US11878775B2 (en) 2021-07-13 2024-01-23 Kai Concepts, LLC Leash system and methods of use

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