Electromagnetic Fluid Treatment Using Resonant Frequencies and Harmonics
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Solution Overview
Problem
Existing electromagnetic fluid treatment methods are limited by their reliance on static or mixed frequencies, which restrict the use of higher harmonics and often result in minimal effectiveness and high complexity, making them costly and difficult to install, while lacking quantifiable examples for fluid treatment incorporating higher harmonics.
Innovation Solution
A method and system that utilize a frequency or multiple frequencies combined with higher harmonics to treat fluids, optimizing energy absorption and emission by determining the resonant frequencies and associated harmonics of the fluid's atomic and molecular matter, allowing for greater disruption of molecular bonding and mineral structures within the fluid.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If prior art electromagnetic devices use static or mixed frequencies to treat fluid, then they eliminate or reduce the need for chemical treatment agents, but they are only minimally or sporadically effective and have high complexity making them expensive to manufacture and difficult to install
Solution Approach 1:
The patent changes the frequency parameter from static or mixed frequencies to a specific frequency range (2.4 GHz to 2.48 GHz) that corresponds to the resonant frequency of water molecules. This parameter change enables effective fluid treatment without requiring complex device architecture, as the effectiveness comes from targeting the natural resonant frequency of water rather than using multiple frequencies or complex modulation schemes.
2Adaptability or versatility
If prior art electromagnetic devices use multiple frequencies to treat fluid, then they attempt to cover broader applications, but they become more complex and expensive to manufacture and install
Solution Approach 1:
The patent achieves versatility through a universal frequency range (2.4 GHz to 2.48 GHz) that can treat various fluids including water, wastewater, and process fluids. This single frequency range serves multiple applications (evaporation rate control, surface tension modification, solubility enhancement, capillary action alteration) without requiring multiple frequency generators or complex switching mechanisms, making the device both versatile and simple.
3Power
If prior art electromagnetic devices use higher harmonics in the signal, then they can provide more energy to disrupt molecular bonding, but higher harmonics are traditionally considered undesirable and are limited or eliminated in common practice
Solution Approach 1:
The patent converts what is traditionally considered a harmful or undesirable element (higher harmonics in the electromagnetic signal) into a beneficial feature. By intentionally including higher harmonics in the 2.4 GHz to 2.48 GHz signal, the device enhances its ability to disrupt molecular bonding and mineral structures in the fluid, thereby increasing treatment effectiveness without requiring additional complex signal generation hardware.
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
This approach enhances the treatment of fluids by increasing evaporation rates, surface tension, capillary action, and solubility, providing a more effective and versatile method for altering fluid properties compared to traditional electromagnetic fluid treatment devices.
Implementation Method 1
each molecule will absorb maximum energy at its own resonant frequency
Implementation Method 2
The QED generates a large electrical field and smaller magnetic field vectors at the emission/absorption profile frequencies and the harmonics of the atoms of the fluid molecules
Implementation Method 3
The Faraday Effect (induced coupling) is also present using the present invention QED injection system
Data Source
AI summary
A method and system for utilizing electromagnetic energy of a frequency, and/or multiple frequencies, and higher harmonics of those frequencies to disrupt the normal bonding of the fluid molecules and that of mineral structures within the body of the fluid is disclosed. Electromagnetic signals at a frequency, frequencies, and higher harmonics related to the energy absorption/emission profile of the fluid being treated are directed into the fluid through direct or indirect injection and/or induced coupling. The frequency, frequencies, and higher harmonics of the treatment signal, preferably between 0.1 KHz and 1000 MHz, may be changed if the absorption/emission profile of the fluid changes during treatment.


