Gold Member Since 2014
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Shandong Lucy New Energy Technology Co., Ltd.

Solar Collector, Collector manufacturer / supplier in China, offering Solar Collector Lucy-Sc-301, MID-High Temperature Solar Collector, Packaged Small Type Hot Water Absorption Chiller and so on.

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Solar Collector Lucy-Sc-301

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Min. Order: 1 Piece
Payment Terms: L/C, T/T

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Basic Info
  • Model NO.: LUCY-SC-301
  • Application: Water Heater, Solar Thermal, Air Conditioning System
  • Type: Vacuum Solar Collector
  • Pipe Material: Glass
Product Description
 Brief introduction LUCY-SC-301 heat pipe solar through collector 
The advantages of LUCY-SC-301 heat pipe type solar through collector: 
The collector including reflector panel behind the tubes. 
Superconductor transfers heat: smaller thermal resistance, fast response. 
High heatgaining. The heat of the glass heat tube obtained from evaporation section transfer to the condensation section at all. 
The glass heat pipe has high heat collecting efficiency, small heat loss. 
Selective absorption film, high temperature resistant, anti-aging, no stripping. 
Resistance to high temperature of 350ºC, and not to burst tubes. 
Resistance to high pressure: working principle of heat pipe, pressure is not acting on the pipe; condensing section is subjected to high external pressure. 
Resistance to freeze: the inner of the glass heat pipe is no water, working medium phase-change one-way transfer, to solve the problem that ordinary tube freeze damage and large heat loss in the winner. 
The inner of the tube is no knot the principle of heat pipe, the inner of tube has no water, so no knot. 
Light weight: the inner of tube has no water, which can reduce building loading 50% than common solar collector tube. 
Under high temperature condition, there is no danger of bursting tubes. In summer, when solar irradiation is larger and with the less heat, ordinary all-glass vacuum tubes are easier to be overheated, and the pressure rises very rapidly when water is evaporated, which will result in bursting tubes and be harm to the whole system.   
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