Hydrogen Fuel Cell Training Platform

Order Code: NEE66

Category: New Energy Equipments

Product Introduction It is made-of hydrogen fuel reactor system components. It is required to demon- Strate the structure and working principle of the automobile fuel cell (hydrogen) system, and to dynamically simulate the working process of the f...



SPECIFICATION

Product Introduction

It is made-of hydrogen fuel reactor system components. It is required to demon- Strate the structure and working principle of the automobile fuel cell (hydrogen) system, and to dynamically simulate the working process of the fuel cell (hydrogen) system to deepen students’ understanding of the structure and working principle of the hydrgen fuel system. Understanding of working principles. It is suitable for the teaching needs of various types of colleges and training institutions for theoretical learning and maintenance training of automobile fuel cell (hydrogen) systems.

 

Technical Specifications

Product size : 1230*600*1780 mm (L x W x H)
Input power : AC 220V 50Hz
Working temperature : -35°C ~ 40°C
Overall machine weight : 70 kg

Functional Characteristics

1. This equipment fully demonstrates the working principle of the fuel cell vehicle energy system and can dynamically simulate the operating status of the fuel cell vehicle energy system under resistive, inductive and other load conditions
2. By using 4 intelligent monitoring terminals and a 4.3-inch display screen, the principle animation of the interactive operating status of core components related ta the fuel cell is collected in real time
3. The intelligent monitoring terminal collects real-time information on the fuel cell's conversion process from hydrogen into the stack through the diffusion layer, catalyst, proton exchange membrane, oxygen inthe air, and catalyst conversion to form the electrical energy output conversion process.
4. The panel-mounted analog drive motor is used to represent the output of hydrogen from the hydrogen storage tank to the fuel cell stack
5. it can dynamically simulate five working conditions such as fuel cell stack gas supply, stack power generation, power supply boost, capacitor charging and normal driving. There are LED running lights to reflect the energy flow state

 

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