IP Library Granted Patent US 11,552,310
Granted Patent B2
US 11,552,310 · App. 17/472,067 · Granted Jan 10, 2023

Cooling system for fuel cell stacks

Inventors: Kevin Lynk (Phoenix, AZ); Jesse Schneider (Chandler, AZ); Werner Belschner (Michelbach an der Bilz, DE); Jorg Heyse (Besigheim, DE); Markus Remlinger (Miesbach, DE)
Assignees: Nikola Corporation; Robert Bosch GmbH
H01M8/04029H01M8/04037H01M8/04225H01M8/04268H01M8/249H01M2250/20
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Quick Facts
Patent No.
US 11,552,310
App. No.
17/472,067
Granted
Jan 10, 2023
Kind
B2
Abstract

The invention relates to a cooling system ( 10 ) for fuel cell stacks ( 22, 26 ), comprising a first cooling module ( 14 ) and a second cooling module ( 18 ). The first cooling module ( 14 ) comprises a fuel cell stack ( 22, 26 ), a supply line connection ( 30, 34 ) for connecting a supply line ( 38, 42 ) for supplying coolant to the fuel cell stack ( 22, 26 ), a discharge line connection ( 46, 50 ) for connecting a discharge line ( 54, 58 ) for discharging coolant from the fuel cell stack ( 22, 26 ), and a venting line connection ( 94, 98 ) for connecting a venting line ( 102, 106 ).

Claims (78)

1. A cooling system for fuel cell stacks, comprising:

a first cooling module, comprising:

a first fuel cell stack;

a first supply line connected to the first fuel cell stack;

a first drain line connected to the first fuel cell stack;

a first venting line connected to the first fuel cell stack and an expansion tank;

a second fuel cell stack;

a second supply line connected to the second fuel cell stack;

a second drain line connected to the second fuel cell stack; and

a second venting line connected to the second fuel cell stack and the expansion tank,

wherein the first fuel cell stack and the second fuel cell stack can be vented via the expansion tank;

a second cooling module, comprising:

a collection line connected to the first supply line and the first drain line of the first cooling module, and connected to the second supply line and the second drain line of the first cooling module; and

a startup heater connected to the collection line via a startup heater infeed line and a startup heater discharge line;

a first cooler positioned between the first drain line and the collection line;

a second cooler positioned between the second drain line and the collection line;

a first bypass connected to the collection line via a first bypass line connection; and

a second bypass connected to the collection line via a second bypass line connection.

2. The cooling system of claim 1 , wherein the first bypass line connection is positioned upstream of the first cooler in the direction of flow of the collection line.

3. The cooling system of claim 1 , wherein the second bypass line connection is positioned downstream of the second cooler in the direction of flow of the collection line.

4. The cooling system of claim 1 , wherein the startup heater discharge line comprises an ion exchanger connection for connecting an ion exchanger.

5. The cooling system of claim 1 , wherein the first cooling module comprises a first intercooler positioned between the first supply line and the first drain line.

6. The cooling system of claim 1 , wherein the startup heater infeed line is arranged upstream, in the direction of flow of the collection line, of coolant fed to the collection line via a first cooler line.

7. The cooling system of claim 1 , wherein the first cooling module comprises a coolant pump.

8. The cooling system of claim 7 , wherein the coolant pump is connected to one of the first supply line and the second supply line.

9. The cooling system of claim 1 , further comprising a heat exchanger connected in parallel to the startup heater.

10. The cooling system of claim 1 , further comprising a startup heater pump connected to the startup heater infeed line.

11. The cooling system of claim 10 , further comprising a startup heater throttle positioned inline with and upstream of the startup heater in the direction of flow of coolant fed to the startup heater infeed line.

12. The cooling system of claim 10 , further comprising a startup heater throttle positioned inline with and upstream of the heat exchanger in the direction of flow of coolant fed to the startup heater infeed line.

13. The cooling system of claim 1 further comprising a throttle positioned inline with the collection line.

14. The cooling system of claim 13 , wherein the throttle is positioned upstream of a first cooler line connection, in the direction of flow of coolant fed to the collection line.

15. A cooling system for fuel cell stacks, comprising:

a first cooling module, comprising:

a first fuel cell stack connected to a first supply line, a first drain line, and a first venting line;

a first coolant pump connected to the first supply line;

a first intercooler connected to the first supply line and the first drain line;

a second fuel cell stack connected to a second supply line, a second drain line, and

a second venting line;

a second coolant pump connected to the second supply line; and

a second intercooler connected to the second supply line and the second drain line;

a second cooling module, comprising:

a collection line connected to the first supply line and the first drain line of the first cooling module and connected to the second supply line and the second drain line of the first cooling module;

a startup heater connected to the collection line via a startup heater infeed line and a startup heater discharge line;

a startup heater pump; and

a startup heater throttle;

a first cooler positioned between the first drain line and the collection line;

a second cooler positioned between the second drain line and the collection line;

a first bypass connected to the collection line via a first bypass line connection;

a second bypass connected to the collection line via a second bypass line connection;

an expansion tank connected to the first venting line and the second venting line; and

a heat exchanger connected to the collection line and positioned in parallel to the startup heater of the second cooling module,

wherein the first fuel cell stack and the second fuel cell stack can be vented via the expansion tank,

wherein the startup heater pump is positioned upstream of the heat exchanger and the startup heater, and

wherein the startup heater throttle is positioned between the startup heater and the startup heater pump.

16. A cooling system for fuel cell stacks, comprising:

a first cooling module, comprising:

a first fuel cell stack;

a first supply line connected to the first fuel cell stack;

a first drain line connected to the first fuel cell stack; and

a first venting line connected to the first fuel cell stack and an expansion tank;

a second fuel cell stack;

a second supply line connected to the second fuel cell stack;

a second drain line connected to the second fuel cell stack; and

a second venting line connected to the second fuel cell stack and the expansion tank;

a second cooling module, comprising:

a collection line connected to the first supply line and the first drain line of the first cooling module, and connected to the second supply line and the second drain line of the first cooling module;

a startup heater connected to the collection line via a startup heater infeed line and a startup heater discharge line;

a startup heater pump; and

a startup heater throttle;

a first cooler positioned between the first drain line and the collection line;

a second cooler positioned between the second drain line and the collection line;

a first bypass connected to the collection line via a first bypass line connection;

a second bypass connected to the collection line via a second bypass line connection; and

a heat exchanger connected to the collection line and positioned in series with the startup heater of the second cooling module,

wherein the expansion tank is connected to the first venting line and the second venting line,

wherein the first fuel cell stack and the second fuel cell stack can be vented via the expansion tank,

wherein the startup heater pump is positioned upstream of the heat exchanger and the startup heater, and

wherein the startup heater throttle is positioned between the startup heater and the startup heater pump.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 25, 2025
From: NIKOLA CORPORATION
To: HYROAD NETWORKS LLC
Reel/Frame 073706/0118 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 5, 2022
From: BELSCHNER, WERNER; HEYSE, JORG; REMLINGER, MARKUS
To: ROBERT BOSCH GMBH
Reel/Frame 060987/0707 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 27, 2021
From: LYNK, KEVIN; SCHNEIDER, JESSE
To: NIKOLA CORPORATION
Reel/Frame 057938/0075 →
Priority Claims (1)
DE 10 2018214640.3 · Aug 29, 2018 · national
Continuity (3)
Continuation 16917404 · Jun 30, 2020
Continuation PCTIB2019057252 · Aug 28, 2019
Related Publication 20210408562A1 · Dec 30, 2021