IP Library Patent Application 11628079
Patent Application
App. No. 11/628,079

Fuel Cell Power Generation System

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Patent No.
US None
App. No.
11/628,079
Abstract

A fuel cell power generation system of the present invention comprises a fuel cell ( 11 ), an object subjected to degradation determination ( 14, 15, 16 ) which is at least one of one or more fluid supply devices ( 14, 15, 16 ) that supply fluids associated with power generation in the fuel cell, a flow rate detecting means ( 18, 19, 20 at directly or indirectly detects a flow rate of the fluid supplied from the object subjected to degradation determination, a flow rate control means ( 24 ) that controls the flow rate of the fluid supplied from the object subjected to degradation determination, a degradation determination means ( 25 ) that determines whether or not degradation has occurred in the object subjected to degradation determination ( 14, 15, 16 ) and an operation control means ( 26 ) that controls an operation of the fuel cell power generation system, and the degradation determination means ( 25 ) determines whether or not the degradation has occurred in the object subjected to degradation determination ( 14, 15, 16 ), based on the output command value given by the flow rate control means ( 24 ) to the object subjected to degradation determination ( 14, 15, 16 ) and the detection value of the flow rate that is detected by the flow rate detecting means ( 18, 19, 20 ).

Claims (83)

1 . A fuel cell power generation system comprising:

a fuel cell;

an object subjected to degradation determination which is at least one of one or more fluid supply devices that supply fluids associated with power generation in said fuel cell;

a flow rate detecting means that detects a flow rate of the fluid supplied from said object subjected to degradation determination;

a flow rate control means that controls the flow rate of the fluid supplied from said object subjected to degradation determination; and

an operation control means that controls an operation of said fuel cell power generation system; wherein

said operation control means reduces a power output of said fuel cell when the flow rate of the fluid that is supplied from said object subjected to degradation determination in response to a specified output command value given by said flow rate control means to said object subjected to degradation determination falls within a first degradation range, and stops the operation of said fuel cell power generation system when the flow rate falls within a second degradation range; and wherein

said object subjected to degradation determination is at least one of an oxidizing agent supply device that supplies an oxidizing gas to said fuel cell and a fuel supply device that supplies a fuel to said fuel cell.

2 . The fuel cell power generation system according to claim 1 , wherein

the specified output command value is an output command value actually given by said flow rate control means, and the flow rate of the fluid supplied from said object subjected to degradation determination is a detection value of the fluid that is detected by said flow rate detecting means when the output command value is given to said object subjected to degradation determination.

3 . The fuel cell power generation system according to claim 1 , wherein

the flow rate of the fluid supplied from said object subjected to degradation determination in response to the specified output command value given is a prediction value that is predicted based on the output command value actually given by said flow rate control means and the detection value of the flow rate that is detected by said flow rate detecting means when the output command value is actually given.

4 . The fuel cell power generation system according to claim 3 , wherein

the specified output command value is an output command value corresponding to a maximum power output.

5 . The fuel cell power generation system according to claim 1 , wherein

said flow rate detecting means includes a pressure detecting means that detects a pressure of the fluid supplied from said object subjected to degradation determination, and calculates the flow rate of the fluid based on the detected pressure.

6 . (canceled)

7 . (canceled)

8 . The fuel cell power generation system according to claim 1 , wherein

said operation control means executes a limited operation so that the power output of said fuel cell becomes not more than an upper limit value of the power output of said fuel cell corresponding to the flow rate for determination, when it is determined that the flow rate for determination falls within the first degradation range.

9 . The fuel cell power generation system according to claim 8 , wherein

the first degradation range is a range which causes economic advantage if the limited operation is continued, and the second degradation range is a range which causes economic disadvantage if the limited operation is continued.

10 . The fuel cell power generation system according to claim 9 , wherein

the second degradation range is a range in which the upper limit value of the power output of said fuel cell corresponding to the flow rate for determination is less than a predetermined power output.

11 . The fuel cell power generation system according to claim 9 , wherein

the second degradation range is a range in which efficiency of said fuel cell is less than a predetermined efficiency.

12 . The fuel cell power generation system according to claim 9 , further comprising:

a storage means that stores a rate structure of electric power and/or material; and

a cost calculating means that calculates supply cost of at least one of the electric power and heat supplied from said fuel cell power generation system and supply cost of at least one of electric power and heat supplied from an alternative means based on a predetermined rate structure of the electric power and the material; wherein

said second degradation range is a range in which the supply cost of the alternative means is less than the supply cost of said fuel cell power generation system.

13 . The fuel cell power generation system according to claim 12 , further comprising:

a communication means that obtains a current rate structure of the electric power and/or the material through communication; wherein

the rate structure stored in said storage means is updated to the rate structure obtained by said communication means.

14 . The fuel cell power generation system according to claim 1 , further comprising:

an operation time integrating means that integrates an operation time of said fuel cell power generation system;

a display means that displays information of said fuel cell power generation system; and

a time predicting means that predicts a time period that elapses until a detection value that is detected by said flow rate detecting means reaches the first degradation range and/or the second degradation range, based on the output command value given by said flow rate control means, the detection value detected by said flow rate detecting means, and the operation time integrated by said operation time integrating means; wherein

said display means displays the time period predicted by said time predicting means.

15 . The fuel cell power generation system according to claim 1 , further comprising:

a maintenance notification means which notifies that maintenance of said object subjected to degradation determination is needed when a detection value detected by said flow rate detecting means falls within the first degradation range.

16 . The fuel cell power generation system according to claim 4 , wherein

said operation control means executes a limited operation so that the power output of said fuel cell becomes not more than an upper limit value of the power output of said fuel cell corresponding to the flow rate for determination, when it is determined that the flow rate for determination falls within the first degradation range.

17 . A fuel cell power generation system comprising:

a fuel processor that generates a fuel from water and a material;

a fuel cell;

an object subjected to degradation determination which is at least one of one or more fluid supply devices that supply fluids associated with power generation in said fuel cell;

a flow rate detecting means that detects a flow rate of the fluid supplied from said object subjected to degradation determination;

a flow rate control means that controls the flow rate of the fluid supplied from said object subjected to degradation determination; and

an operation control means that controls an operation of said fuel cell power generation system; wherein

said operation control means reduces a power output of said fuel cell when the flow rate of the fluid that is supplied from said object subjected to degradation determination in response to a specified output command value given by said flow rate control means to said object subjected to degradation determination falls within a first degradation range, and stops the operation of said fuel cell power generation system when the flow rate falls within a second degradation range; and wherein

said object subjected to degradation determination is at least one of a water supply device that supplies water to said fuel processor and a material supply device that supplies a material to said fuel processor.

18 . The fuel cell power generation system according to claim 17 , wherein

the specified output command value is an output command value actually given by said flow rate control means, and the flow rate of the fluid supplied from said object subjected to degradation determination is a detection value of the fluid that is detected by said flow rate detecting means when the output command value is given to said object subjected to degradation determination.

19 . The fuel cell power generation system according to claim 17 , wherein

the flow rate of the fluid supplied from said object subjected to degradation determination in response to the specified output command value given is a prediction value that is predicted based on the output command value actually given by said flow rate control means and the detection value of the flow rate that is detected by said flow rate detecting means when the output command value is actually given.

20 . The fuel cell power generation system according to claim 19 , wherein

the specified output command value is an output command value corresponding to a maximum power output.

21 . The fuel cell power generation system according to claim 17 , wherein

said flow rate detecting means includes a pressure detecting means that detects a pressure of the fluid supplied from said object subjected to degradation determination, and calculates the flow rate of the fluid based on the detected pressure.

22 . The fuel cell power generation system according to claim 17 , wherein

said operation control means executes a limited operation so that the power output of said fuel cell becomes not more than an upper limit value of the power output of said fuel cell corresponding to the flow rate for determination, when it is determined that the flow rate for determination falls within the first degradation range.

23 . The fuel cell power generation system according to claim 22 wherein

the first degradation range is a range which causes economic advantage if the limited operation is continued, and the second degradation range is a range which causes economic disadvantage if the limited operation is continued.

24 . The fuel cell power generation system according to claim 23 , wherein

the second degradation range is a range in which the upper limit value of the power output of said fuel cell corresponding to the flow rate for determination is less than a predetermined power output.

25 . The fuel cell power generation system according to claim 23 , wherein

the second degradation range is a range in which efficiency of said fuel cell is less than a predetermined efficiency.

26 . The fuel cell power generation system according to claim 23 , further comprising:

a storage means that stores a rate structure of electric power and/or material; and

a cost calculating means that calculates supply cost of at least one of the electric power and heat supplied from said fuel cell power generation system and supply cost of at least one of electric power and heat supplied from an alternative means based on a predetermined rate structure of the electric power and the material; wherein

said second degradation range is a range in which the supply cost of the alternative means is less than the supply cost of said fuel cell power generation system.

27 . The fuel cell power generation system according to claim 26 , further comprising:

a communication means that obtains a current rate structure of the electric power and/or the material through communication; wherein

the rate structure stored in said storage means is updated to the rate structure obtained by said communication means.

28 . The fuel cell power generation system according to claim 17 , further comprising:

an operation time integrating means that integrates an operation time of said fuel cell power generation system;

a display means that displays information of said fuel cell power generation system; and

a time predicting means that predicts a time period that elapses until a detection value that is detected by said flow rate detecting means reaches the first degradation range and/or the second degradation range, based on the output command value given by said flow rate control means, the detection value detected by said flow rate detecting means, and the operation time integrated by said operation time integrating means; wherein

said display means displays the time period predicted by said time predicting means.

29 . The fuel cell power generation system according to claim 17 , further comprising:

a maintenance notification means which notifies that maintenance of said object subjected to degradation determination is needed when a detection value detected by said flow rate detecting means falls within the first degradation range.

30 . The fuel cell power generation system according to claim 20 , wherein

said operation control means executes a limited operation so that the power output of said fuel cell becomes not more than an upper limit value of the power output of said fuel cell corresponding to the flow rate for determination, when it is determined that the flow rate for determination falls within the first degradation range.

Assignments (2)
CHANGE OF NAME Recorded Nov 24, 2008
From: MATSUSHITA ELECTRIC INDUSTRIAL CO., LTD.
To: PANASONIC CORPORATION
Reel/Frame 021897/0671 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 8, 2007
From: TANAKA, YOSHIKAZU; NAKAMURA, AKINARI; OZEKI, MASATAKA; OHARA, HIDEO
To: MATSUSHITA ELECTRIC INDUSTRIAL CO., LTD.
Reel/Frame 020087/0251 →