IP Library › Granted Patent US 10,227,956
Granted Patent B2
US 10,227,956 · App. 15/357,117 · Granted Mar 12, 2019

Fuel vaporizing system

Inventor: Gerald W Rowley (Delray Beach, FL)
Assignee: Diesel Solutions, LLC
F02M31/125F02M25/025F02M25/028F02M25/0222F02M25/0224F02M25/0225F02M27/02F02M27/045F02M31/16F02M35/02441Y02T10/121Y02T10/126
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Quick Facts
Patent No.
US 10,227,956
App. No.
15/357,117
Granted
Mar 12, 2019
Kind
B2
Abstract

A fuel heater and vaporizing system comprising an engine; a source of fuel coupled to the engine through a fuel supply line; multiple stages of thermal sources thermally coupled to the fuel supply line between the source of fuel and the engine, wherein the multiple stages of thermal sources are configured to heat the fuel; at least one catalyst system configured to supply a source of ions and H 2 coupled to the fuel supply, and a sustainable water injection sub-system coupled to the engine, the sustainable water injection sub-system configured to inject water vapor into the engine.

Claims (42)

1. A fuel heater and vaporizing system comprising:

an engine;

a source of fuel coupled to the engine through a fuel supply line;

multiple stages of thermal energy sources thermally coupled to the fuel supply line between the source of fuel and the engine, wherein the multiple stages of thermal energy sources are configured to heat the fuel; wherein the multiple stages of thermal sources comprise a first stage comprising a fuel line coil coupled to an electrical source, wherein the fuel line coil is configured to produce thermal energy from resistive heat using electrical power from the electrical source, the fuel line coil configured to transfer thermal energy to the fuel inside the fuel line coil;

at least one catalyst system coupled to the fuel, said at least one catalyst system configured to supply a source of ions and H 2 to said fuel; and

a sustainable water injection sub-system coupled to the engine, the sustainable water injection sub-system configured to inject water vapor into the engine.

2. The fuel heater and vaporizing system of claim 1 , further comprising an additional stage coupled to an engine control unit of the engine, the additional stage comprising a circuit for use in conjunction with at least one of an engine control unit and powertrain control module of the engine.

3. The fuel heater and vaporizing system of claim 1 , wherein the electrical source comprises at least one of a battery and a charging system of the engine.

4. The fuel heater and vaporizing system of claim 1 , wherein the multiple stages of thermal sources comprise a second stage, the second stage comprising a second stage heater comprising a fin and tube heat exchanger, wherein an engine coolant is a source of thermal energy, the second stage heater configured to transfer the thermal energy of the engine coolant to the fuel.

5. The fuel heater and vaporizing system of claim 1 , wherein the multiple stages of thermal sources comprise a fourth stage, the fourth stage comprising an inductive heater coupled to the fuel supply line, wherein the inductive heater is configured to utilize magnetic resonance to induce heat into the fuel supply line proximate the fourth stage.

6. The fuel heater and vaporizing system of claim 5 , wherein the fuel line proximate the fourth stage comprises material that generates thermal energy responsive to the inductive heater.

7. The fuel heater and vaporizing system of claim 1 , wherein the fuel supply line is configured to flow the fuel through the multiple stages of thermal sources, wherein the fuel is heated and vaporized and contains ions and H2, and flows to at least one fuel injector of the engine.

8. The fuel heater and vaporizing system of claim 1 , wherein the source of water comprises at least one of condensate from an engine air conditioning evaporator and an auxiliary water and methanol tank.

9. A fuel heater and vaporizing system comprising:

an engine;

a source of fuel coupled to the engine through a fuel supply line;

multiple stages of thermal energy sources thermally coupled to the fuel supply line between the source of fuel and the engine, wherein the multiple stages of thermal energy sources are configured to heat the fuel;

wherein the multiple stages of thermal sources comprise a third stage comprising a third stage heat exchanger, the third stage heat exchanger comprising an inner fuel housing having an electric cartridge style heater thermally coupled to the fuel; the third stage further comprising a stage three coolant housing surrounding the inner fuel housing, the stage three coolant housing configured to contain engine coolant and transfer thermal energy from the engine coolant to the fuel in the inner fuel housing, the third stage comprising the catalyst system coupled to the fuel;

at least one catalyst system coupled to the fuel, said at least one catalyst system configured to supply a source of ions and H 2 to said fuel; and

a sustainable water injection sub-system coupled to the engine, the sustainable water injection sub-system configured to inject water vapor into the engine.

10. The fuel heater and vaporizing system of claim 9 , wherein the catalyst system comprises a catalyst holder and a plurality of at least one of rods and ribbons of dissimilar metals within the catalyst holder for creating a galvanic response reaction with the fuel.

11. The fuel heater and vaporizing system of claim 10 , wherein the plurality of rods and ribbons include a plurality of rods and ribbons formed from a first material and at least one rod/ribbon formed from a second material.

12. The fuel heater and vaporizing system of claim 11 , wherein the first material is aluminum or an aluminum alloy, or nickel chrome alloy and the second material is one of zinc, a zinc alloy, and zinc plated steel.

13. The fuel heater and vaporizing system of claim 1 , wherein the sustainable water injection sub-system comprises:

a housing fluidly coupled to a source of water;

a float switch located in the housing and configured to activate a submersible pump responsive to a liquid level in the housing;

a water injector fluidly coupled to the submersible pump, the water injector located in an air intake housing of the engine;

an ultrasonic transducer fluidly coupled downstream of the water injector, the transducer configured to create a fine mist or vapor of water; and

an open cell foam air filter downstream of the water injector, the open cell foam air filter configured to pass the fine mist or vapor of water into an engine air intake passage.

14. A process for heating and vaporizing a fuel flowing in a fuel supply line to be supplied to an end use device comprises:

heating the fuel by flowing the fuel through multiple stages of thermal sources thermally coupled to the fuel supply line between the source of fuel and the end use device; wherein heating the fuel further comprises:

heating the fuel supply line by electrical resistance in the fuel supply line at a first stage;

heating the fuel supply line by heat transfer across a tube and fin heat exchanger from engine coolant at a second stage;

heating the fuel supply line from thermal energy generated in an electrical cartridge heater and heat transfer from the engine coolant in a hybrid heater at a third stage, wherein said at least one catalyst system is located in the third stage; and

heating the fuel supply line by inductive heat supplied from an inductive heater coupled to the fuel supply line at a fourth stage;

cracking the fuel with at least one catalyst system configured to supply a source of ions coupled to the fuel supply line; and

passing a fine mist or vapor of water into an engine air intake passage, the fine mist of water being created by a sustainable water injection sub-system coupled to the end use device.

15. The process of claim 14 , wherein creating the fine mist further comprises:

collecting water from at least one of condensate from a condenser and an auxiliary water tank.

16. The process of claim 14 , wherein said condensate is recycled from the end use device air conditioning system.

17. The process of claim 14 , further comprising:

providing a precise variable adjustable low voltage offsetting circuit for use in conjunction with at least one of an engine control unit and powertrain control module of the end use device by use of an additional stage coupled to at least one of the engine control unit and powertrain control module of the end use device.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 12, 2018
From: ROWLEY, GERALD W.
To: DIESEL SOLUTIONS, LLC
Reel/Frame 045173/0983 →
Continuity (2)
Continuation In Part 15006213 · Jan 26, 2016
Related Publication 20170211523A1 · Jul 27, 2017