1. Field of the Invention
The present invention relates to a diagnostic system for a fuel cell. Particularly, it relates to a diagnostic system for monitoring internal conditions inside a fuel cell.
2. Description of the Prior Art
The internal conditions (such as temperature, humidity, etc.) of a fuel cell influence the operational efficiency of this fuel cell directly. If the humidity is too high (or too low) or the temperature is too high, its operational efficiency decreases. Therefore, that how to real-time monitor the internal conditions inside a fuel cell becomes an important issue.
Referring to
Of course, there is another important factor that will impact the operational efficiency of the fuel cell deeply. That factor is the flow rate in the flow channel 91. In the past, only temperature and humidity are possible to be detected. It cannot detect the flow velocity or the flow rate at a specific point inside the fuel cell 90. That is, not only it cannot detect the temperature and humidity conditions inside the conventional fuel cell 90, but also it is impossible to know the flow velocity and flow speed in the flow channel 91 inside the fuel cell 90. When some problems (such as overheated point occurs or excess water blocks the flow channel 91, etc) happen inside the fuel cell 90, the user cannot quickly react to do some proper adjustment for solving the problems, because the user cannot monitor such variation inside the fuel cell 90. Hence, its overall operational efficiency is poor and it reduces the product life of the fuel cell 90.
The objects of the present invention are to provide a diagnostic system for monitoring internal conditions inside a fuel cell. In which, it can detect various physical information inside the fuel cell. It can monitor the internal conditions continuously and directly. Plus, it can prolong the product life of the fuel cell.
In order to achieve the above-mentioned objects, the present invention is provided as a technical solution. This invention is a diagnostic system for monitoring internal conditions inside a fuel cell comprising:
a pair of bipolar plates including a first bipolar plate and a second bipolar plate, a first fuel gas channel being disposed on the first bipolar plate, a second fuel gas channel being disposed on the second bipolar plate;
a gas diffusion layer being disposed between the first fuel gas channel and the second fuel gas channel;
a central controller having a computing unit and a display;
at least three sensors contacting with one of the first fuel gas channel or the second fuel gas channel, each sensor including a resistor portion, a capacitor portion, a common lead, a resistor line, and a capacitor line, so as to detect a voltage value, a resistance value, and a capacity value; the computing unit being able to convert the voltage value into temperature information and to calculate the capacity value into humidity information at a location of the sensor; the computing unit also being able to output flow velocity information based on three adjacent sensors; the common lead, the resistor line, and the capacitor line connecting with the central controller;
the display of the central controller showing out various physical information detected by the sensors so as to diagnose internal conditions inside a fuel cell; the physical information at least including voltage, resistance, capacity, temperature, humidity, flow velocity, and flow rate.
Referring to
About the pair of bipolar plates 10, it includes a first bipolar plate 11 and a second bipolar plate 12. A first fuel gas channel 111 is disposed on the first bipolar plate 11. A second fuel gas channel 121 is disposed on the second bipolar plate 12.
With regard to the gas diffusion layer 20 is disposed between the first fuel gas channel 111 and the second fuel gas channel 121 so as to conduct the electrochemical reaction between two fuel gases (such as hydrogen and oxygen).
Concerning this central controller 30, it has a computing unit 31 and a display 32.
The three or more sensors 40 contacts with one of the first fuel gas channel 111 or the second fuel gas channel 121. Each sensor 40 includes a resistor portion 41, a capacitor portion 42, a common lead 43, a resistor line 44, and a capacitor line 45, so as to detect a voltage value, a resistance value, and a capacity value. The computing unit 41 can convert the voltage value into temperature information and to calculate the capacity value into humidity information at a location of the sensor 40. Also, the computing unit 41 can output flow velocity information based on three adjacent sensors 40. All the common lead 43, the resistor line 44, and the capacitor line 45 of each sensor 40 connect to the central controller 30.
Besides, the display 32 of the central controller 40 shows out various physical information detected by these sensors 40. Based on the physical information, this invention can diagnose internal conditions inside a fuel cell. The physical information at least includes voltage, resistance, capacity, temperature, humidity, flow velocity, and flow rate.
Furthermore, each sensor 40 can detect the voltage, resistance, capacity, temperature, humidity at the location of that sensor 40 (as shown in
As illustrated in
As shown in
Referring to
The advantages and functions of this invention can be summarized as follows.
[1] It can detect much information inside the fuel cell. The conventional detecting method only can detect temperature and humidity. But, this invention can detect various physical information inside the fuel cell such as voltage, resistance, capacity, temperature, humidity, flow velocity, and flow rate.
[2] It can monitor the internal conditions continuously and directly. Conventional detecting method is to detect temperature and humidity at the entrance and at the exit of the fuel cell. It is hard to understand the real conditions inside the fuel cell. However, in this invention, there are many sensors disposed at different locations inside the fuel cell. Not only many points can be detected, but also all the internal conditions can be shown on the display immediately and continuously. So, the real-time monitoring function can be achieved.
[3] It can prolong the product life of the fuel cell. In the past, the convention detecting method cannot precise detect the internal conditions inside the fuel cell, so it is hard to make proper adjustment when the fuel cell is in use. Hence, its product life is relative short. But, this invention can monitor all the internal conditions inside the fuel cell and observe the variations at different locations inside the fuel cell. Therefore, proper adjustment can be made immediately during actual operation. The operational efficiency of this fuel cell can be kept at a stable condition. Consequently, it can prolong the product life of the fuel cell.
While this invention has been particularly shown and described with references to the preferred embodiments thereof, it will be understood by those skilled in the art that various changes or modifications can be made therein without departing from the scope of the invention by the appended claims.
Number | Date | Country | Kind |
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097146878 | Dec 2008 | TW | national |