Heat pipe receiver in intermediate temperature in use for generating electricity from solar heat
A solar thermal power generation and receiver technology, which is applied to solar thermal power generation, solar thermal collectors, solar thermal collectors using working fluid, etc. Solar radiation absorption and other problems, to achieve the effect of increasing service life, saving manufacturing costs, and improving heat transfer effect
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Embodiment 1
[0023] The specific structure of the medium temperature heat pipe receiver for solar thermal power generation in this embodiment is as follows figure 2 As shown, it includes a glass sleeve 1 and a cooling fluid channel 3. The glass sleeve 1 is closed at one end and open at the other end, and also includes a medium-temperature heat-absorbing heat pipe 2. The medium-temperature heat-absorbing heat pipe 2 is inserted into the glass sleeve 1. The medium-temperature heat-absorbing heat pipe 2 Made of metal (carbon steel below 450°C, heat-resistant steel or low-alloy steel above 450°C). The part of the medium-temperature heat-absorbing heat pipe 2 exposed to the glass casing 1 gradually shrinks into a condensation section 8 with a smaller diameter, and the condensation Section 8 is located in the cooling fluid channel 3 and is sealed and connected with the cooling fluid channel 3. The medium-temperature heat-absorbing heat pipe 2 and the opening end of the glass sleeve 1 are sealed ...
Embodiment 2
[0027] The specific structure of the medium temperature heat pipe receiver for solar thermal power generation in this embodiment is as follows image 3as shown, Figure 4 for image 3 The A-A sectional view of the present embodiment. The glass casing 1 of the present embodiment is a double-layer glass casing with a vacuum layer between the two layers of glass. Absorptive coating 6. The closed end of the glass casing 1 is provided with a vacuum sealing tube 7 on the outer glass, which is used to evacuate the middle of the two layers of glass into a vacuum layer. The heat-absorbing heat pipe 2 of the medium temperature is also welded with heat conduction fins 21 , the medium-temperature heat-absorbing heat pipe 2 and the open end of the glass casing 1 are sealed and connected with a thermal cap 13 and a filler 14. The other structures of this embodiment are the same as those of the first embodiment.
[0028] Working process of the present invention is the same as embodiment on...
Embodiment 3
[0030] The specific structure of the medium temperature heat pipe receiver for solar thermal power generation in this embodiment is as follows Figure 5 As shown, the glass sleeve 1 of this embodiment is a double-layer glass sleeve, with a vacuum layer between the two layers of glass, and the surface of the inner tube of the double-layer glass sleeve is covered with a high-temperature-resistant selective absorption coating 6 . The closed end of the glass sleeve 1 is provided with a vacuum sealing tube 7 on the outer glass, which is used to evacuate the middle of the two layers of glass into a vacuum layer. Heat conduction fins 21 are also welded on the medium-temperature heat-absorbing heat pipe 2 , and a thermal insulation cap 13 and a filler 14 are provided at the sealing connection between the medium-temperature heat-absorbing heat pipe 2 and the open end of the glass sleeve 1 . Other structures of this embodiment are the same as those of Embodiment 1.
[0031] Working pro...
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