IP Library › Granted Patent US 10,590,594
Granted Patent B2
US 10,590,594 · App. 15/823,810 · Granted Mar 17, 2020

Magnetic induction heating system and dehydrator

Inventor: Elberto Berdut-Teruel (San Juan, PR)
D06F58/26F26B11/00
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Quick Facts
Patent No.
US 10,590,594
App. No.
15/823,810
Granted
Mar 17, 2020
Kind
B2
Abstract

A magnetic field thermal generator has one or more heat elements comprised of rotating pipes placed so they travel across the magnetic field generated by the magnetic field chamber, with said magnetic field being generated by either permanent magnets or electromagnets. The relative motion of the heat element to the magnetic flux from the magnetic field magnets results in heat generation. When placed in series, the thermal generator may be used to dry items and/or to generate hydrogen.

Claims (23)

1. A product dehydrator system comprising;

a series of conduits connecting one or more chambers;

one or more said chambers containing gas heating components;

one or more said chambers containing gas moving components;

one or more said chambers containing product drying components; wherein said product drying components; are comprised of a drying tumbler assembly comprised of solid wall insulated housing having within it a rotating tumbler made from a mesh material and having porous walls, said rotating tumbler having one or more angled blades having a scoop shape that avoids right angles at any point, each blade having a curved blended base with no sharp angles at the blade base to said rotating tumbler, forming a constant radius curve shaped blade base on both sides of said blade base so that each blade lifts and drops portions of product within said tumbler to create a product cascade past an airflow stream going horizontally from an entry opening located on a side of said solid wall insulated housing to an exit opening located on an opposite side in said tumbler assembly's solid walls, both said openings being connected to portions of said series of conduits, said solid walls also having one or more venting openings at said walls' top, for venting of portions of said airflow stream out of said series of conduits and into the atmosphere;

said gas heating means are provided by operation of a magnetic field thermal generator comprising:

a hollow cylinder with magnetic field generating components placed around said cylinder's concentric longitudinal axis;

one or more orbital pipes located inside said hollow cylinder, so that each said orbital pipe is capable of rotating along said hollow cylinder's concentric longitudinal axis, with each said orbital pipe having at least one metal portion directly exposable to the magnetic field generated by said hollow cylinder magnetic field generating components, wherein one or more of said orbital pipes is freely rotatable about said pipe's concentric axis of rotation, wherein said axis of rotation is parallel to and offset from the longitudinal axis of said magnetic cylinder, and located inside the inner surface of said hollow magnetic cylinder so that any rotation of each said orbital pipe is due solely to the effect of the magnetic field induced on said orbital pipe by said magnetic cylinder rotation;

a skeleton holding one or more said orbital pipes; and

a mechanism for rotating said magnetic cylinder around the magnetic cylinder's longitudinal axis; and

said gas moving means are comprised of a fan.

2. The apparatus of claim 1 wherein;

said magnetic field generating components are comprised of alternating N-pol and S-pol permanent magnets.

3. The system of claim 2 further comprising;

hydrogen separation means.

4. The apparatus of claim 2 wherein;

said orbital pipes are comprised of ferrous metals.

5. The apparatus of claim 2 wherein;

said orbital pipes are comprised of non-ferrous metals.

6. The apparatus of claim 2 wherein;

said orbital pipes are comprised of a combination of ferrous and non-ferrous metals.

7. The apparatus of claim 2 wherein;

said orbital pipes are comprised of a combination of metallic and non-metallic materials.

Continuity (1)
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