Cooling system with negative potential

TWM687160UActive Publication Date: 2026-09-01TAIWAN OASIS TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
TW115205239
Authority / Receiving Office
TW · TW
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2026-06-08
Publication Date
2026-09-01
Estimated Expiration
2036-06-07

Smart Images

  • Figure TWG2TB001909539_001
    Figure TWG2TB001909539_001
  • Figure TWG2TB001909539_002
    Figure TWG2TB001909539_002
  • Figure TWG2TB001909539_003
    Figure TWG2TB001909539_003
Patent Text Reader

Abstract

A negative potential cooling system is disclosed for dissipating heat from a machine placed on the ground and generating a positive potential. The system includes a metal enclosure and a negative potential generator. The machine is placed inside and in contact with the metal enclosure, and the heat generated by the machine is conducted to the metal enclosure for dissipation. The negative potential generator is also placed inside and in contact with the metal enclosure, neutralizing the positive potential generated by the machine and thus de-energizing the metal enclosure. By neutralizing the positive potential generated by the machine with the negative potential generated by the generator, the metal enclosure becomes de-energized. This prevents dust or particles from accumulating on the surface of the metal enclosure, allowing external airflow to directly contact the metal enclosure, increasing heat dissipation efficiency.
Need to check novelty before this filing date? Find Prior Art

Claims

1. A negative potential cooling system for dissipating heat from a machine (M), the machine (M) being disposed on a ground (G) and generating a positive potential, the negative potential cooling system (1) comprising: A metal enclosure (10) is disposed on the ground (G), and the machine (M) is disposed inside the metal enclosure (10) and in contact with the metal enclosure (10). The heat generated by the machine (M) is conducted to the metal enclosure (10) for heat dissipation. A negative potential generator (20) is disposed inside the metal enclosure (10) and in contact with the metal enclosure (10). The negative potential generator (20) neutralizes the positive potential generated by the machine (M) so that the metal enclosure (10) is not charged, so as to avoid dust accumulation in the metal enclosure (10) and affecting the heat dissipation of the machine (M) by the metal enclosure (10).

2. The negative potential cooling system as claimed in claim 1, wherein the machine (M) and the negative potential generator (20) are located on opposite sides of the metal housing (10).

3. The negative potential cooling system as claimed in claim 1 further includes a convection heat dissipation module (30) disposed below the ground (G) and extending into the interior of the metal enclosure (10), the convection heat dissipation module (30) dissipating heat into the interior of the metal enclosure (10) by means of thermal convection.

4. The negative potential cooling system as claimed in claim 3, wherein the convection heat dissipation module (30) includes a first pipe (31), a second pipe (32) and a plurality of spiral pipes (33), the spiral pipes (33) being disposed between the first pipe (31) and the second pipe (32) and connecting the first pipe (31) and the second pipe (32), the spiral pipes (33) being in contact with the geological structure under the ground (G), the first pipe (31) and the second pipe (32) respectively extending into the interior of the metal box (10), the air inside the metal box (10) entering the first pipe (31), then flowing through the spiral pipes (33) into the second pipe (32), and returning from the second pipe (32) to the interior of the metal box (10).

5. The negative potential cooling system as claimed in claim 4, wherein the length of the first conduit (31) is equal to the length of the second conduit (32).

6. The negative potential cooling system as claimed in claim 4, wherein the length of the first conduit (31) is less than the length of the second conduit (32).

7. The negative potential cooling system as claimed in claim 4, wherein the convection heat dissipation module (30) further includes an airflow drive (34) disposed in the first pipe (31) or the second pipe (32), the airflow drive (34) driving the air inside the metal housing (10) into the first pipe (31).

8. The negative potential cooling system as claimed in claim 1 or 3 further includes a plurality of support components (40), wherein the support components (40) are disposed below the ground (G) and the support components (40) support the metal enclosure (10).

9. The negative potential cooling system as claimed in claim 8, wherein each of the support components (40) includes a support column (41) and a base (42) connected to the support column (41), the end of the support column (41) away from the base (42) abutting against the metal housing (10).

10. The negative potential cooling system as claimed in claim 9, wherein the metal housing (10) is separated from the support components (40) by a trolley (S) and moved to another location.