IP Library › Granted Patent US 11,370,264
Granted Patent B2
US 11,370,264 · App. 16/700,590 · Granted Jun 28, 2022

Multifunction reservoir for a secondary loop, climate control system and a secondary loop climate control system incorporating that multifunction reservoir

Inventors: Jing He (Novi, MI); Loren John Lohmeyer, III (Monroe, MI); Angelo Patti (Pleasant Ridge, MI); Manfred Koberstein (Troy, MI)
Assignee: Ford Global Technologies, LLC
B60H1/00028B60H1/00492B60H1/00885B60H1/00899B60H1/32281F24F5/001F24F5/0021F25B9/008F25B25/005F25D3/005F25D17/02F28D20/02B60H2001/00928B60H2001/3288B60H2001/3297F25B2400/121
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,370,264
App. No.
16/700,590
Granted
Jun 28, 2022
Kind
B2
Abstract

Secondary loop air conditioning and heat pump systems include a reservoir with a capsule holding a phase change material.

Claims (19)

1. A secondary loop air conditioning system, comprising:

a refrigerant loop adapted to circulate a refrigerant between a compressor, a condenser, an expansion device and a chiller;

a coolant loop adapted to circulate a coolant between said chiller, a pump, a first cooler and a reservoir having an integrated phase change material feature, wherein said reservoir comprises a coolant vessel and said integrated phase change material feature comprises one or more capsules and a phase change material in said one or more capsules, and wherein the coolant vessel is configured to hold at least said one or more capsules;

an inlet port and an outlet port in said coolant vessel, wherein said inlet port is disposed near a midline of the coolant vessel and said outlet port is generally disposed closer to a bottom of the coolant vessel; and

a modulating functionality feature at one of said inlet port and said outlet port to adjust coolant flow rate, wherein said modulating functionality feature is a solenoid valve configured to adjust the coolant flow rate through pulse width modulation of a control signal, and wherein a frequency of the pulse modulation is determined by at least a heat exchanger capacity, a heat exchanger geometric profile, said inlet port, and an air inlet.

2. The secondary loop air conditioning system of claim 1 , wherein said phase change material has phase change temperature below 15 degree Celsius.

3. The secondary loop air conditioning system of claim 2 , wherein said phase change material is selected from a first group of materials consisting of paraffins or salt hydrates.

4. The secondary loop air conditioning system of claim 3 , wherein each of the one or more capsules includes an outer wall made from a material selected from a second group of metallic materials consisting of aluminum, copper, stainless steel, and carbon steel.

5. The secondary loop air conditioning system of claim 1 , further including a second cooler in said coolant loop to provide an air conditioning function to two different zones of a motor vehicle.

6. The secondary loop air conditioning system of claim 1 , wherein said phase change material has phase change temperature below 15 degree Celsius.

7. The secondary loop air conditioning system of claim 1 , wherein said phase change material is selected from a first group of materials consisting of paraffins or salt hydrates.

8. The secondary loop air conditioning system of claim 1 , wherein each of the one or more capsules includes an outer wall made from a material selected from a second group of metallic materials consisting of aluminum, copper, stainless steel, and carbon steel.

9. A secondary loop air conditioning system, comprising:

a refrigerant loop adapted to circulate a refrigerant between a compressor, a condenser, an expansion device and a chiller;

a coolant loop adapted to circulate a coolant between said chiller, a pump, a first cooler and a reservoir having an integrated phase change material feature; and

an inlet port and an outlet port in said coolant vessel and a modulating functionality feature at one of said inlet port and said outlet port to adjust coolant flow rate, wherein said modulating functionality feature is a solenoid valve configured to adjust the coolant flow rate through pulse width modulation of a control signal, and wherein a frequency of the pulse width modulation is determined by at least a heat exchanger capacity, a heat exchanger geometric profile, said inlet port, and an air inlet.

10. The secondary loop air conditioning system of claim 9 , wherein said reservoir comprises a coolant vessel and said integrated phase change material feature comprises a plurality of capsules coupled to a base of the coolant vessel and held in said coolant vessel, and wherein a plurality of phase change materials are in said plurality of capsules, and wherein the plurality of capsules are spaced apart so as to allow for a flow of the coolant.

11. The secondary loop air conditioning system of claim 10 , wherein said plurality of phase change materials further comprise a first phase change material that is selected from a first group of materials consisting of paraffins or salt hydrates, a second phase change material that is either selected from a first group of materials consisting of paraffins or salt hydrates or a second group of materials consisting of aluminum chloride or sodium nitrate, and a third phase change material that is either selected from a first group of materials consisting of paraffins or salt hydrates or a second group of materials consisting of aluminum chloride or sodium nitrate, and wherein said plurality of capsules further comprise a first capsule configured to house said first phase change material, a second capsule configured to house said second phase change material, and a third capsule configured to house said third phase change material.

12. The secondary loop air conditioning system of claim 9 , further comprising an inlet port and an outlet port in said coolant vessel, and wherein said inlet port is disposed near a midline of the coolant vessel and said outlet port is disposed closer to a bottom of the coolant vessel.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 22, 2021
From: HE, JING; LOHMEYER, LOREN JOHN, III; PATTI, ANGELO; KOBERSTEIN, MANFRED
To: FORD GLOBAL TECHNOLOGIES, LLC
Reel/Frame 056944/0124 →
Continuity (2)
Division 15815112 · Nov 16, 2017
Related Publication 20200101811A1 · Apr 2, 2020
Cited By (1)
US 12,214,644