IP Library › Granted Patent US 11,135,892
Granted Patent B2
US 11,135,892 · App. 15/774,550 · Granted Oct 5, 2021

Vehicle air conditioning systems and methods employing rotary engine driven compressor

Inventor: Michael Andrews (Bellingham, WA)
Assignee: TIGER TOOL INTERNATIONAL INCORPORATED
B60H1/00B60H1/3222B60H1/3226B60K15/03B60K25/02B60K2025/022
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Quick Facts
Patent No.
US 11,135,892
App. No.
15/774,550
Granted
Oct 5, 2021
Kind
B2
Abstract

An air conditioning system comprises a compressor, a rotary engine, and a condenser. The rotary engine comprises at least one drive shaft. The at least one drive shaft is operatively connected to the compressor and to the fuel tank. The condenser is operatively connected to the compressor. The evaporator is operatively connected to the condenser and to the compressor. The rotary engine combusts fuel to rotate the at least one drive shaft. Rotation of the at least one drive shaft operates the compressor to cause working fluid to flow such that the evaporator air conditions the passenger compartment.

Claims (43)

1. An air conditioning system for a vehicle comprising a fuel tank containing diesel fuel and a vehicle main engine operatively connected to the fuel tank, where the vehicle defines a passenger compartment and the vehicle main engine operates using the diesel fuel, the air conditioning system comprising:

a compressor sub-system comprising

a compressor;

a rotary engine configured to operate on diesel fuel, where the rotary engine

comprises at least one drive shaft directly connected to the compressor,

and

is operatively connected to the fuel tank;

a condenser operatively connected to the compressor; and

an evaporator operatively connected to the condenser and to the compressor; wherein

the rotary engine combusts diesel fuel from the fuel tank to rotate the at least one drive shaft; and

rotation of the at least one drive shaft operates the compressor to cause working fluid to flow such that the evaporator air conditions the passenger compartment.

2. An air conditioning system as recited in claim 1 , in which the vehicle further comprises an alternator, wherein the at least one drive shaft is operatively connected to the alternator.

3. An air conditioning system as recited in claim 1 , further comprising:

a low side tap operatively connected between the evaporator and the compressor; and

a receiver dryer, high side tap, and expansion valve operatively connected between the condenser and the evaporator.

4. A method of air conditioning a vehicle comprising a fuel tank containing diesel fuel and a vehicle main engine operatively connected to the fuel tank, where the vehicle defines a passenger compartment and the vehicle main engine operates using the diesel fuel, the method comprising the steps of:

providing a rotary engine comprising at least one drive shaft, where the rotary engine is configured to operate on diesel fuel;

providing a compressor;

forming a compressor sub-system by directly connecting the at least one drive shaft of the rotary engine to the compressor;

operatively connecting a condenser to the compressor;

operatively connecting an evaporator to the condenser and to the compressor;

operatively connecting the rotary engine to the fuel tank to combust diesel fuel from the fuel tank to rotate the at least one drive shaft;

operating the rotary engine such that rotation of the at least one drive shaft operates the compressor to cause working fluid to flow such that the evaporator air conditions the passenger compartment.

5. A method as recited in claim 4 , further comprising the steps of operatively connecting the at least one drive shaft of the rotary engine to an alternator.

6. A method as recited in claim 4 , further comprising the steps of:

operatively connecting a low side tap between the evaporator and the compressor; and

operatively connecting a receiver dryer, high side tap, and expansion valve between the condenser and the evaporator.

7. An air conditioning system for a vehicle comprising a fuel tank containing diesel fuel, an alternator, and a vehicle main engine operatively connected to the fuel tank, where the vehicle defines a passenger compartment and the vehicle main engine operates using the diesel fuel, the air conditioning system comprising:

a compressor sub-system comprising

a compressor;

a rotary engine configured to operate on diesel fuel, where the rotary engine

comprises at least one drive shaft, where

the at least one drive shaft is operatively and directly connected to the compressor,

the at least one drive shaft is operatively connected to the alternator; and

is operatively connected to the fuel tank;

a condenser operatively connected to the compressor; and

an evaporator arranged to air condition the passenger compartment of the vehicle, where the evaporator is operatively connected to the condenser and to the compressor; wherein

the rotary engine combusts diesel fuel from the fuel tank to rotate the first and second drive shafts;

rotation of the at least one drive shaft operates the compressor to cause working fluid to flow such that the evaporator air conditions the passenger compartment; and

rotation of the at least one drive shaft of the rotary engine operates the alternator.

8. An air conditioning system as recited in claim 7 , further comprising:

a low side tap operatively connected between the evaporator and the compressor; and

a receiver dryer, high side tap, and expansion valve operatively connected between the condenser and the evaporator.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 10, 2018
From: ANDREWS, MICHAEL
To: TIGER TOOL INTERNATIONAL INCORPORATED
Reel/Frame 046125/0645 →
Continuity (2)
Provisional Application 62286841 · Jan 25, 2016
Related Publication 20200254849A1 · Aug 13, 2020