Immersion cooling system
An immersion cooling system includes a cooling tank, an immersion unit, a first disturbing element, and a first maintaining element. The cooling tank has a receiving portion. The immersion unit is in the receiving portion, and the immersion unit includes a boiler plate. The first disturbing element has a first convex surface. The first maintaining element maintains the first disturbing element to allow a convex direction of the first convex surface towards the boiler plate, and a first predetermined distance is between the first convex surface and the boiler plate.
1 . An immersion cooling system comprising:
a cooling tank having a receiving portion configured to receive a heat transfer fluid;
an immersion unit in the receiving portion and comprising a boiler plate configured to heat the heat transfer fluid to generate bubbles around the boiler plate;
a first disturbing element having a first convex surface; and
a first maintaining element maintaining the first disturbing element to allow a convex direction of the first convex surface towards the boiler plate so that the bubbles are guided by the first convex surface to locations away from the convex surface, wherein a first predetermined distance is between the first convex surface and the boiler plate.
2 . The immersion cooling system according to claim 1 , wherein the immersion unit comprises a bracket, the boiler plate is in the bracket, the first maintaining element comprises two first maintaining strings, one of two ends of each of the first maintaining strings is maintained at the first disturbing element, and another end of each of the first maintaining strings is maintained at the bracket to allow the convex direction of the first convex surface towards the boiler plate.
3 . The immersion cooling system according to claim 2 , further comprising:
a second disturbing element having a second convex surface;
a second maintaining element maintaining the second disturbing element to allow a convex direction of the second convex surface towards the boiler plate, wherein a second predetermined distance is between the second convex surface and the boiler plate;
a third disturbing element having a third convex surface; and
a third maintaining element maintaining the third disturbing element to allow a convex direction of the third convex surface towards the boiler plate, wherein a third predetermined distance is between the third convex surface and the boiler plate;
wherein a gap is between two adjacent ones of the first, second and third disturbing elements.
4 . The immersion cooling system according to claim 1 , wherein the immersion unit comprises a bracket, the boiler plate is in the bracket, the first maintaining element comprises a first maintaining string, two ends of the first maintaining string are maintained at the bracket, and the first maintaining string passes through the first disturbing element.
5 . The immersion cooling system according to claim 4 , wherein the first maintaining element further comprises a maintaining buckle maintaining the first disturbing element at the first maintaining string.
6 . The immersion cooling system according to claim 4 , wherein the first disturbing element is slidably configured at the first maintaining string.
7 . The immersion cooling system according to claim 6 , further comprising the heat transfer fluid, wherein the heat transfer fluid is received in the receiving portion and at least submerges the boiler plate, and a specific gravity of the first disturbing element is substantially equal to a specific gravity of the heat transfer fluid.
8 . The immersion cooling system according to claim 1 , wherein the immersion unit comprises a bracket, the boiler plate is in the bracket, the first maintaining element comprises a first maintaining string, one of two ends of the first maintaining string is maintained at the bracket, and another end of the first maintaining string is maintained at the first disturbing element.
9 . The immersion cooling system according to claim 8 , further comprising the heat transfer fluid, wherein the heat transfer fluid is received in the receiving portion and at least submerges the boiler plate, a specific gravity of the first disturbing element is substantially equal to a specific gravity of the heat transfer fluid, and the first maintaining string is maintained at an upper side of the bracket.
10 . The immersion cooling system according to claim 8 , further comprising the heat transfer fluid, wherein the heat transfer fluid is received in the receiving portion and at least submerges the boiler plate, a specific gravity of the first disturbing element is substantially equal to a specific gravity of the heat transfer fluid, and the first maintaining string is maintained at a lower side of the bracket.
11 . The immersion cooling system according to claim 1 , wherein the first convex surface has a curvature radius ranging between 5 mm and 10 mm, and the first predetermined distance ranges between 10 mm and 30 mm.
12 . The immersion cooling system according to claim 1 , wherein the immersion unit further comprises:
a main body frame; and
an electronic device in the main body frame and comprising a heating element contacting the boiler plate.
13 . The immersion cooling system according to claim 1 , wherein the first maintaining element comprises;
a resilient element with elasticity, and
the resilient element is between the first disturbing element and a supporting seat of the first maintaining element.
14 . The immersion cooling system according to claim 1 , wherein the first maintaining element comprises:
a resilient element, both the first disturbing element and the resilient element are magnetic, and
the resilient element is between the first disturbing element and a supporting seat of the first maintaining element.
15 . The immersion cooling system according to claim 1 , further comprising a rotation-disturbing element, a rotation-disturbing driver, a jetting element, and a jetting driver, wherein each of the rotation-disturbing element and the jetting element is adjacent to the first disturbing element, the rotation-disturbing element is driven by the rotation-disturbing driver to generate a disturbance to a direction toward the first disturbing element, and the jetting element is driven by the jetting driver to generate another disturbance to a direction toward the first disturbing element.
16 . The immersion cooling system according to claim 15 , wherein the rotation-disturbing element and the jetting element are respectively at two opposite sides of the first disturbing element.
17 . The immersion cooling system according to claim 1 , further comprising the heat transfer fluid received in the receiving portion, wherein the heat transfer fluid at least submerges the boiler plate, and the boiler plate faces a surface of the heat transfer fluid.
18 . The immersion cooling system according to claim 1 , further comprising the heat transfer fluid received in the receiving portion, wherein the heat transfer fluid at least submerges the boiler plate, and a main surface of the boiler plate is substantially parallel to a vertical line.
19 . The immersion cooling system according to claim 1 , further comprising a plurality of the cooling tanks including the cooling tank, a plurality of the first disturbing elements including the first disturbing element, and a plurality of the first maintaining elements including the first maintaining element, wherein each of the cooling tanks corresponds to a corresponding one of the first disturbing elements and a corresponding one of the first maintaining elements.
20 . An immersion cooling system comprising:
a cooling tank having a receiving portion configured to receive a heat transfer fluid;
an immersion unit in the receiving portion and comprising a boiler plate configured to heat the heat transfer fluid to generate bubbles around the boiler plate;
a first disturbing element having a first convex surface;
a first maintaining element maintaining the first disturbing element to allow a convex direction of the first convex surface towards the boiler plate so that the bubbles are guided by the first convex surface to locations away from the convex surface, wherein a first predetermined distance is between the first convex surface and the boiler plate;
a rotation-disturbing element adjacent to the first disturbing element; and
a rotation-disturbing driver, wherein the rotation-disturbing element is driven by the rotation-disturbing driver to generate a disturbance to a direction toward the first disturbing element.
21 . An immersion cooling system comprising:
a cooling tank having a receiving portion configured to receive a heat transfer fluid;
an immersion unit in the receiving portion and comprising a boiler plate configured to heat the heat transfer fluid to generate bubbles around the boiler plate;
a first disturbing element having a first convex surface;
a first maintaining element maintaining the first disturbing element to allow a convex direction of the first convex surface towards the boiler plate so that the bubbles are guided by the first convex surface to locations away from the convex surface, wherein a first predetermined distance is between the first convex surface and the boiler plate;
a jetting element adjacent to the first disturbing element; and
a jetting driver, wherein the jetting element is driven by the jetting driver to generate a disturbance to a direction toward the first disturbing element.
22 . An immersion cooling system comprising:
a cooling tank having a receiving portion configured to receive a heat transfer fluid;
an immersion unit in the receiving portion and comprising a boiler plate configured to heat the heat transfer fluid to generate bubbles around the boiler plate;
a first disturbing element having a first convex surface;
a first maintaining element maintaining the first disturbing element in a position such that the first convex surface faces the boiler plate and the bubbles are guided by the first convex surface to locations away from the convex surface, wherein a first predetermined distance is between the first convex surface and the boiler plate; and
a condenser arranged above the first disturbing element and configured to absorb heat of a gas-phase of the heat transfer fluid vaporized from a liquid-phase of the heat transfer fluid.