18516289. FUEL CELL FLUSHING SYSTEM AND METHOD THEREFOR simplified abstract (HYUNDAI MOBIS CO., LTD.)

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FUEL CELL FLUSHING SYSTEM AND METHOD THEREFOR

Organization Name

HYUNDAI MOBIS CO., LTD.

Inventor(s)

Yong Hee Lee of Yongin-si (KR)

FUEL CELL FLUSHING SYSTEM AND METHOD THEREFOR - A simplified explanation of the abstract

This abstract first appeared for US patent application 18516289 titled 'FUEL CELL FLUSHING SYSTEM AND METHOD THEREFOR

The abstract describes a fuel cell system with a fuel cell stack, a hydrogen supply line, and a controller to control hydrogen flow velocity.

  • Simplified Explanation:

The patent application describes a system that controls the flow velocity of hydrogen in a fuel cell stack.

  • Key Features and Innovation:

- Fuel cell system with a hydrogen supply line - Controller to regulate hydrogen flow velocity

  • Potential Applications:

- Automotive industry for hydrogen fuel cell vehicles - Power generation for stationary applications - Portable power sources for electronic devices

  • Problems Solved:

- Efficient control of hydrogen flow in fuel cell systems - Optimization of fuel cell performance

  • Benefits:

- Improved fuel cell efficiency - Enhanced performance and longevity of fuel cell systems

  • Commercial Applications:

"Hydrogen Fuel Cell System for Automotive Applications: Enhancing Efficiency and Performance"

  • Questions about Fuel Cell Systems:

1. How does controlling hydrogen flow velocity impact fuel cell performance? 2. What are the potential challenges in implementing this technology in different applications?

1. A relevant generic question not answered by the article, with a detailed answer: How does this technology compare to traditional power sources in terms of efficiency and environmental impact? Fuel cell systems offer higher efficiency and lower environmental impact compared to traditional power sources like internal combustion engines, making them a more sustainable option for various applications.

2. Another relevant generic question, with a detailed answer: What are the key components of a fuel cell system and how do they work together? A fuel cell system typically consists of a fuel cell stack, hydrogen supply line, and a controller. The fuel cell stack converts hydrogen into electricity, the supply line delivers hydrogen to the stack, and the controller regulates the flow velocity to optimize performance.


Original Abstract Submitted

A fuel cell system and method are provided. The fuel cell system includes a fuel cell stack, parts including a hydrogen supply line for supplying hydrogen to the fuel cell stack, and a controller to control operations of the parts to change a flow velocity of hydrogen in the hydrogen supply line.