Wind-Driven Bubble Generator With Adjustable Air Intake
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Solution Overview
Problem
Existing wind-powered bubble devices lack adjustable air intake mechanisms, are difficult to maintain and clean, have limited mounting options, and are not environmentally adaptable, restricting their application in outdoor and inflatable settings.
Innovation Solution
A wind-driven bubble generating device with a rotatable air regulating mechanism, modular design, and flexible mounting options, utilizing environmental wind to adjust airflow and bubble output, featuring a detachable structure for easy maintenance and multiple mounting methods.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If wind-powered bubble devices use fixed-size air inlets, then the structure is simple, but the device cannot adapt to varying wind conditions and fails to start under light wind
Solution Approach 1:
The patent applies the dynamics principle by making the air inlet adjustable rather than fixed. The air inlet can be dynamically opened or closed to adapt to different wind conditions, allowing the device to start under light wind by opening the inlet and preventing excessive air influx under strong wind by closing it. This dynamic adjustment resolves the contradiction between adaptability and structural simplicity.
2Ease of repair
If wind-powered bubble devices use integrated closed structures, then the device is compact, but maintenance and cleaning become extremely difficult
Solution Approach 1:
The patent applies segmentation by dividing the device into separable components, specifically making the bubble generating ring detachable from the main body. This allows the ring to be easily removed for cleaning and maintenance without disassembling the entire device, resolving the contradiction between compact integrated structure and ease of maintenance.
3Adaptability or versatility
If traditional electric bubble devices use motors to drive fans or pumps, then the bubble generation is stable, but the device requires external power supply and batteries
Solution Approach 1:
The patent applies self-service by using wind power from the environment to directly drive the bubble generating mechanism without requiring external power supplies or batteries. The wind itself serves as the energy source, enabling the device to operate autonomously in outdoor settings and eliminating the complexity of power management systems.
4Adaptability or versatility
If wind-powered bubble devices allow only horizontal placement, then the mounting structure is simple, but the application potential on vertical surfaces is limited
Solution Approach 1:
The patent applies universality by designing a mounting structure that can accommodate both horizontal and vertical placement orientations. The base body is equipped with mounting structures that adapt to different surface types and orientations, enabling the device to be installed on walls, tents, inflatable castles, and other carriers regardless of their orientation, thus expanding application potential without significantly increasing mounting system complexity.
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
Enables precise control of air intake and bubble output, simplifies maintenance, and expands application scenarios to various environments, ensuring hygiene and reliability without external power.
Implementation Method 1
a wind-driven pneumatic assembly, the pneumatic assembly being driven to rotate by airflow
Data Source
AI summary
According to a wind-driven bubble generating device. The device requires no external power supply and is driven only by environmental wind. By setting a user-interactive linear regulating mechanism, the core advantage of accurately controlling air inlet volume and bubble output volume based on wind power is realized, significantly enhancing energy efficiency ratio and user experience. The movement of the device adopts a quickly detachable and assemblable modular design, which simplifies cleaning, replacement and maintenance, greatly prolonging the service life of products and ensuring hygiene. Various mounting and fixing methods allow the device to be flexibly adapted to various wind-energy-utilizing places including inflatable castles and tents, greatly expanding its application scenarios. The device has the advantages of reasonable overall structural design, good sealing performance, liquid and air leakage prevention, simple and intuitive operation, safety and reliability, and has a huge market application prospect.


