Disc-Type Air Ecosystem Box With Modular Seasonal Air Handling
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Solution Overview
Problem
Traditional air handling units are inflexible and energy-intensive, requiring all functions to be activated simultaneously, which increases material and space usage and contradicts the principles of energy-saving and environmental sustainability, especially in transition seasons.
Innovation Solution
A disc-type air ecosystem box with a modular design that allows functions to be connected in parallel, featuring a power module, health processing module, summer load module, winter comfort module, safety module, and air supply module, which can be selectively activated based on air quality and season, incorporating features like ultraviolet sterilization, electrostatic filtration, and PM2.5 detection, and utilizing a frequency conversion motor and thermotube reheat coil.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If traditional air handling units integrate multiple functions (filtration, cooling, heating, humidification, sterilization) to meet diverse air quality requirements, then the system can handle various air quality conditions, but energy consumption increases and material usage increases
Solution Approach 1:
The air handling unit is divided into multiple independent functional modules (primary filtration module, middle-effect electrostatic filtration module, surface cooling module, heating module, humidification module, sterilization module) that can operate independently. Each module is a separate component with its own control, allowing selective activation based on air quality conditions and seasonal requirements, thereby reducing energy consumption while maintaining versatility.
Solution Approach 2:
The system employs dynamic control where modules are selectively activated or deactivated based on real-time air quality monitoring and environmental conditions. The controller adjusts which modules operate to match current needs, enabling the system to adapt its functionality dynamically rather than running all modules continuously, thus optimizing energy efficiency.
2Adaptability or versatility
If traditional air handling units integrate multiple functions to handle diverse air quality conditions, then the system can meet various air quality requirements, but material usage and space occupation increase
Solution Approach 1:
By segmenting the air handling unit into modular components, each function occupies its own dedicated space rather than requiring a large integrated structure. The modular design allows for compact arrangement of individual modules and enables selective installation based on space constraints and specific air quality requirements, reducing overall space occupation while maintaining adaptability.
3Stability of the object's composition
If traditional air handling units are completely assembled with fixed functions to ensure system stability, then the system structure is stable, but flexibility to adapt to different seasons and air quality conditions is reduced
Solution Approach 1:
The system maintains structural stability through a fixed framework while segmenting functional components into separate modules. This modular architecture allows the stable structural backbone to remain intact while enabling flexible reconfiguration of functional modules based on seasonal and air quality requirements, thus preserving both stability and adaptability.
Solution Approach 2:
The controller dynamically adjusts which modules are active based on seasonal conditions and air quality monitoring, allowing the system to adapt its functional composition while maintaining structural stability. The dynamic control enables flexible operation without compromising the stable structural framework.
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
The modular design saves 66% space, 24% material, and 43% energy compared to traditional units, with intelligent module switching and an ecological monitor for adaptive performance, ensuring efficient operation and reduced environmental impact.
Implementation Method 1
The health processing module further comprises an ultraviolet sterilizing device
Implementation Method 2
The health processing module further comprises an ultraviolet sterilizing device and a middle-effect electrostatic filter
Implementation Method 3
The summer load module further comprises a surface cooling coil and a thermotube reheat coil
Implementation Method 4
The summer load module further comprises a surface cooling coil and a thermotube reheat coil
Implementation Method 5
The winter comfort module further includes a heating coil and a humidifier
Implementation Method 6
The winter comfort module further includes a heating coil and a humidifier
Data Source
AI summary
The present invention relates to a disc-type air ecosystem box. The disc-type air ecosystem box includes a housing, and the housing is provided to accommodate a power module, a health processing module, a summer load module, a winter comfort module, a safety module, and an air supply module. The health processing module, the summer load module, the winter comfort module, and the safety module are located on the periphery of the power module, and the air supply module is located behind the power module. The present invention further discloses an air-conditioning method for said disc-type air ecosystem box.

