Solar collector Yasolar
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- In detail
- Country of manufactureRussia
- Wattage1500 W
- Покрытиеселективное TiNOX
- АбсорберМедь
The solar collector Yasolar, "the NEW POLE developed and released by the company of Ltd company ʺ, represents the special heat exchanger transforming energy of sunlight to thermal energy and transferring to its heat carrier - the liquid moving in channels of the absorbing panel of solar collector Yasolar.
Solar collector Yasolar are a basic element of systems of solar heat supply or household solar water heaters and their structure is used for providing with hot water residential buildings, industrial, agricultural and household facilities.
The solar collector Yasolar can be used for heating not only water, but also other heat carriers used in systems of heating, conditioning, cold supply and industrial technological processes.
Engineers of firm of Ltd company NOVY Polyusrazrabotali is solar collector Yasolars use of modern materials and technologies. According to the characteristics it corresponds to the level of the best foreign analogs.
The main feature of solar collector Yasolar is the multilayered selective covering, is carried out by method of a magnetron dusting in a vacuum chamber on a copper tape and consists of several layers 500 nanometers thick.
The absorbing layer of solar collector Yasolar
, unlike "pseudo selective" coverings of other producers, possesses high extent of catching both visible sunshine, and scattered solar radiation in cloudy weather. Because of low coefficient of blackness the return radiation of heat in an infrared range is minimum (3 - 5% ).
Also important difference of solar collector Yasolar
consists in solder connection of the absorbing layer and collector tubes on a half of a surface of tubes. At the expense of it the heat transfer improves and heat removal of energy from an absorber surface increases.
Design of absorber Yasolar
allows to use effectively solar energy in systems of heating of water and heating. Power of solar collector Yasolarsostavlyaet 1,3kvt at a temperature of 20 °C and intensity of the radiation of 900 W/m ².