Infrared Resonance Fluid Supply for Liquid-Fuel Atomization

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Solution Overview

Problem

Conventional fluid supply devices are limited to a single type of liquid and lack flexibility in controlling multiple fluid supplies, especially for gaseous fuels, leading to inefficiencies in combustion processes.

Innovation Solution

A fluid supply device with multiple fluid supply units, each equipped with a resonance material to rearrange molecules into small molecules, integrated with a controller to manage airflow and valve states, and featuring liquid level warning systems for efficient atomization and vaporization of different liquids.

Engineering Contradictions & Design Principles

VSEngineering Contradiction Analysis

1Adaptability or versatility

If a single fluid supply unit is used, then the device structure is simple, but it can only handle one type of liquid and lacks flexibility for controlling multiple fluid supplies

Engineering Contradiction:
Improvecapability to handle multiple types of liquidsVSAvoidstructure complexity
Core Design Contradiction:
Adaptability or versatilityVSDevice complexity

Solution Approach 1:

The fluid supply device is divided into multiple independent fluid supply units, each capable of handling a specific type of liquid. Each unit includes its own container body, resonance material, and control valve, allowing independent operation and selection of different liquids without increasing overall system complexity

Inventive Principle:
Principle #1Segmentation

Solution Approach 2:

Each fluid supply unit is designed with a universal structure that can be configured for different liquid types through the selection of appropriate resonance materials and control settings, enabling the system to handle multiple liquid types (liquid fuel, gaseous fuel, photocatalyst liquid) with a standardized platform

Inventive Principle:
Principle #6Universality (Multi-functionality)

2Productivity

If resonance material is added to rearrange molecules, then atomization and vaporization efficiency is improved, but device complexity increases

Engineering Contradiction:
Improveatomization and vaporization efficiencyVSAvoiddevice structure complexity
Core Design Contradiction:
ProductivityVSDevice complexity

Solution Approach 1:

The resonance material is integrated directly into the container body structure, allowing it to automatically rearrange liquid molecules into smaller molecules through resonance effects without requiring external control mechanisms or additional energy input, thereby improving atomization efficiency while maintaining simple device structure

Inventive Principle:
Principle #25Self-service

Solution Approach 2:

The resonance material changes the molecular parameters of the liquid by rearranging molecules into smaller units, which fundamentally alters the atomization and vaporization characteristics of the liquid, enabling more efficient combustion without adding complex device components

Inventive Principle:
Principle #35Parameter changes

3Ease of operation

If multiple fluid supply units are integrated with a controller, then control convenience is improved, but device complexity increases

Engineering Contradiction:
Improvecontrol convenienceVSAvoidcontrol system complexity
Core Design Contradiction:
Ease of operationVSDevice complexity

Solution Approach 1:

Multiple fluid supply units are merged into a single integrated system with a common controller that manages all units through a unified control interface. The controller coordinates the operation of multiple units, allowing convenient control of different liquid supplies through a single device while maintaining the modular structure of individual units

Inventive Principle:
Principle #5Merging (Combining)

4Productivity

If liquid nano-catalyst is introduced into the combustion chamber, then combustion efficiency is improved, but the device cannot handle gaseous fuels

Engineering Contradiction:
Improvecombustion efficiencyVSAvoidfuel type compatibility
Core Design Contradiction:
ProductivityVSAdaptability or versatility

Solution Approach 1:

The fluid supply device is designed as a multi-functional system that can handle both liquid fuels and gaseous fuels through separate fluid supply units. The liquid fuel unit introduces liquid nano-catalyst for enhanced combustion efficiency, while the gaseous fuel unit provides compatibility with gas fuels, making the overall system universally applicable to different fuel types

Inventive Principle:
Principle #6Universality (Multi-functionality)

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

Enhances combustion efficiency by utilizing hydrogen as a secondary energy source and reducing carbon emissions, while improving fuel savings and exhaust gas pollution through photocatalytic water decomposition and optimized liquid delivery.

Implementation Method 1

the resonance material has an infrared wavelength to rearrange molecules of the target liquid in the container body to small molecules

Methodology Applied
Scientific EffectInfrared radiation: Infrared Radiation

Implementation Method 2

the air pump is connected to the intake pipe or the exit pipe to drive the working fluid to flow through each of the fluid supply units and output from the exit pipe to form an output flow

Methodology Applied
Scientific EffectPumping: Pump

Implementation Method 3

a valve unit coupled with the controller, arranged in the containing space and having an ON state and an OFF state

Methodology Applied
Scientific EffectValve control: Valve

Data Source

PatentUS20250334082A1Fluid Supply Device and Fluid Supply Unit for Increasing Combustion Efficiency
Publication Date: 2025.10.30 HAO WEI ENVIRONMENTAL TECH CO LTD
  • US20250334082A1 patent drawing
  • US20250334082A1 patent drawing
  • US20250334082A1 patent drawing

AI summary

A fluid supply device for improving combustion efficiency is provided. The fluid supply device includes a controller and a fluid supply unit coupled to the controller. The fluid supply unit includes an outer housing and a container body having a resonance material, wherein the container body is configured in the outer housing and has a containing space for accommodating a target liquid, and the resonance material is configured adjacent to the target liquid. The resonance material has an infrared ray wavelength to rearrange molecules of the target liquid in the container body to small molecules to increase the combustion efficiency of an internal/external combustion machine, and the controller can adjust the supply volume of the target liquid according to a predefined rule based on an obtained information from the fluid supply unit and/or the internal/external combustion machines, so that the internal/external combustion machine can achieve the best combustion efficiency.