Toyota jidosha kabushiki kaisha (20240133598). COOLING SYSTEM simplified abstract

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COOLING SYSTEM

Organization Name

toyota jidosha kabushiki kaisha

Inventor(s)

Hideo Nishioka of Toyota-shi Aichi-ken (JP)

Takayuki Hosokawa of Ikeda-shi Osaka (JP)

Tomoyuki Miura of Hamamatsu-shi Shizuoka-ken (JP)

COOLING SYSTEM - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240133598 titled 'COOLING SYSTEM

Simplified Explanation

The cooling system described in this patent application consists of a reserve tank with multiple chambers and flow passages connected to different ports for inflow and outflow.

  • The reserve tank includes a first chamber, a second chamber, a third chamber, a fourth chamber, and an intermediate chamber.
  • The first chamber has a first inflow port, the second chamber has a first outflow port, the third chamber has a second inflow port, and the fourth chamber has a second outflow port.
  • The first system flow passage is connected to the first inflow port and the first outflow port, while the second system flow passage is connected to the second inflow port and the second outflow port.
  • The first chamber communicates with the second chamber, the third chamber communicates with the fourth chamber, and the first chamber communicates with the third chamber through the intermediate chamber.

Potential Applications

This technology could be used in automotive cooling systems, industrial machinery, and electronic devices that require efficient cooling mechanisms.

Problems Solved

This innovation helps in maintaining optimal temperature levels in various systems by efficiently managing the flow of coolant through different chambers and passages.

Benefits

- Improved cooling efficiency - Better temperature control - Enhanced system performance

Potential Commercial Applications

"Efficient Cooling System Technology for Automotive and Industrial Applications"

Possible Prior Art

There may be prior art related to cooling systems with reserve tanks and multiple chambers for coolant flow management.

Unanswered Questions

How does this cooling system compare to traditional cooling systems in terms of efficiency and performance?

The article does not provide a direct comparison between this cooling system and traditional systems.

Are there any specific industries or applications where this cooling system would be most beneficial?

The article does not specify any particular industries or applications where this cooling system would excel.


Original Abstract Submitted

a cooling system disclosed herein includes a first system flow passage, a second system flow passage, and a reserve tank. the reserve tank includes a first chamber, a second chamber, a third chamber and fourth chamber and an intermediate chamber. a first inflow port is opened into the first chamber, a first outflow port is opened into the second chamber, a second inflow port is opened into the third chamber, and a second outflow port is opened into the fourth chamber. the first chamber and the second chamber communicate, the third chamber and the fourth chamber communicate, and the first chamber communicates with the third chamber through the intermediate chamber. the first system flow passage is connected to the first inflow port and the first outflow port, and the second system flow passage is connected to the second inflow port and the second outflow port.