18282579. Cooling Device for an Electrical Energy Store Having Gravity-Assisted Heat Pipes, Electrical Energy Store, and Motor Vehicle simplified abstract (Bayerische Motoren Werke Aktiengesellschaft)

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Cooling Device for an Electrical Energy Store Having Gravity-Assisted Heat Pipes, Electrical Energy Store, and Motor Vehicle

Organization Name

Bayerische Motoren Werke Aktiengesellschaft

Inventor(s)

Torsten Franke of Muenchen (DE)

Cooling Device for an Electrical Energy Store Having Gravity-Assisted Heat Pipes, Electrical Energy Store, and Motor Vehicle - A simplified explanation of the abstract

This abstract first appeared for US patent application 18282579 titled 'Cooling Device for an Electrical Energy Store Having Gravity-Assisted Heat Pipes, Electrical Energy Store, and Motor Vehicle

Simplified Explanation

The cooling device described in the patent application is designed for an electrical energy store to cool energy storage cells using gravity-assisted heat pipes and a frame with walls that form receptacles for the cells. The heat pipes have a working medium that absorbs waste heat from the energy storage cells and are integrated into the walls of the frame.

  • Gravity-assisted heat pipes are used to cool energy storage cells in an electrical energy store.
  • The frame of the cooling device has walls that form receptacles for the energy storage cells.
  • The heat pipes have a working medium that absorbs waste heat from the energy storage cells.
  • The heat pipes are integrated into the walls of the frame for efficient cooling.

Potential Applications

The technology described in this patent application could be applied in various industries where electrical energy storage is used, such as renewable energy systems, electric vehicles, and grid storage systems.

Problems Solved

This cooling device addresses the issue of overheating in energy storage cells, which can reduce their efficiency and lifespan. By effectively cooling the cells using gravity-assisted heat pipes, the device helps maintain optimal operating conditions for the energy storage system.

Benefits

- Improved efficiency and performance of energy storage cells - Extended lifespan of energy storage system - Enhanced safety by preventing overheating of cells

Potential Commercial Applications

- Renewable energy systems - Electric vehicles - Grid storage systems

Possible Prior Art

One possible prior art for this technology could be traditional cooling systems used in energy storage applications, such as fans or liquid cooling systems. However, the use of gravity-assisted heat pipes integrated into the walls of the frame appears to be a novel and innovative approach to cooling energy storage cells.

Unanswered Questions

How does the integration of gravity-assisted heat pipes into the walls of the frame improve the cooling efficiency compared to traditional cooling systems?

The patent application mentions that the heat pipes are integrated into the walls of the frame, but it does not provide specific details on how this integration enhances the cooling process. Further information on the design and functionality of this integration would be helpful.

Are there any limitations or challenges associated with the use of gravity-assisted heat pipes for cooling energy storage cells?

While the patent application highlights the benefits of using gravity-assisted heat pipes for cooling, it does not address any potential limitations or challenges that may arise from this technology. Understanding any drawbacks or constraints of this cooling method would be important for evaluating its practicality and effectiveness in real-world applications.


Original Abstract Submitted

A cooling device for an electrical energy store for cooling energy storage cells of the electrical energy store, the cooling device comprising gravity-assisted heat pipes having a working medium for absorbing waste heat of the energy storage cells, and a frame having walls for forming receptacles for the energy storage cells, wherein the gravity-assisted heat pipes are integrated into the walls.