A heat pipe is a simple device which can be used to transfer heat over

In summary, the heat pipe transfers heat from the bottom to the top of the tube using boiling ammonia.
  • #1
db725
35
0

Homework Statement



A heat pipe is a simple device which can be used to transfer heat over considerable distances using only small temperature differences. It consists of a sealed tube filled with an appropriate fluid. The dryness fraction of the fluid is usually about 0.1. If the tube is then supported with one end above the other, and the lower end heated, then that part of working substance which is liquid collects there and boils. If the upper end of the tube is cooled, then the vapour condenses there, and the condensate is returned by gravity to the lower end. The result is a heat transfer from the bottom to the top of the tube, with no temperature differences.

a. If a heat pipe filled with ammonia were to be used to transfer heat from tightly grouped electronic components to remote heat sinks, what would be their internal pressure?

i) at -10°C (equipment turned off in a cold climate)
ii) at 20°C
iii) at 50°C (maximum operating temperature)

b. Would it be possible to replace the ammonia with:

i) Water?
ii) Carbon Dioxide?

c. What would happen if an inadequate quantity of the working substances was put into the heat pipe?




Homework Equations



Data available from steam tables?

The Attempt at a Solution



Tried to sketch the heating process on a p-v diagram. I am not sure where to start with this question. Can't really visualize the process. Any help would be greatly appreciated :)
 
Physics news on Phys.org
  • #2


Think of a sealed tube of some sort in a vertical position. The bottom of it has liquid ammonia or some other suitable fluid. The top part of the tube is embedded in a heat sink, probably something with fins. The initial pressure in the sealed tube is such that the ammonia will boil at needed temperature. The boiling ammonia rises in the tube. But the top end of the tube is at the heat sink so the vapor condenses there. When it condenses it gives up its heat of vaporization and rolls down the sides of the tube back to the rest of the liquid that is boiling. The constant boiling and releasing of the heat of vaporization creates the heat transfer that is done at constant temperature.

Hopes this helps.
 

1. What is a heat pipe?

A heat pipe is a cylindrical device that is used to transfer heat from one location to another. It is typically made of a sealed metal tube filled with a working fluid, such as water or a refrigerant.

2. How does a heat pipe work?

A heat pipe works on the principle of phase change and capillary action. The working fluid inside the heat pipe absorbs heat from the hot end, vaporizes, and then travels to the cold end where it condenses and releases the heat. The condensed fluid then returns to the hot end through capillary action, completing the cycle.

3. What are the benefits of using a heat pipe?

Heat pipes are efficient, reliable, and have no moving parts, making them ideal for transferring heat in various applications. They can also transfer heat over long distances and can operate in any orientation.

4. What are the common uses of heat pipes?

Heat pipes are commonly used in electronic devices, such as laptops and smartphones, to dissipate heat generated by the components. They are also used in HVAC systems, solar panels, and spacecraft thermal control systems.

5. Are heat pipes environmentally friendly?

Yes, heat pipes are considered environmentally friendly as they use natural processes, such as phase change and capillary action, to transfer heat without the use of harmful chemicals. They also help reduce energy consumption and emissions by improving the efficiency of cooling systems.

Similar threads

  • Engineering and Comp Sci Homework Help
Replies
22
Views
1K
  • Engineering and Comp Sci Homework Help
Replies
15
Views
2K
  • Engineering and Comp Sci Homework Help
Replies
1
Views
2K
  • Engineering and Comp Sci Homework Help
Replies
13
Views
2K
  • Engineering and Comp Sci Homework Help
Replies
9
Views
2K
  • Engineering and Comp Sci Homework Help
Replies
2
Views
2K
Replies
8
Views
1K
  • Engineering and Comp Sci Homework Help
Replies
16
Views
3K
  • Engineering and Comp Sci Homework Help
Replies
1
Views
3K
  • General Engineering
Replies
21
Views
2K
Back
Top