A kind of polymerized solar heating device
A heating device and sunlight technology, applied in solar heating systems, solar thermal energy, solar thermal power generation, etc., can solve the problems of fast heat dissipation, small-scale concentrating heating devices, etc., to achieve enhanced heat preservation, enhanced solar conversion rate, and heat generation strong effect
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specific Embodiment example 1
[0040] Specific implementation example 1: According to the model gas heater 1 designed by the present invention, the air thickness in the cover is 20cm, the side wall thickness of the storage tank is 0.3cm, the heating pipe wall thickness is 0.03cm, and the cermet composite film thickness is 0.01cm. The test results are as follows:
[0041]
[0042] Such as image 3 As shown, the water heater assembled using the polymerized sunlight heating device of the present invention: includes a storage tank 4 and a concentrating glass cover 1 around it, and the outer wall of the storage tank 4 is tightly wound with a heating pipe that can combine with a pressure water source to guide cold water to move 2. The surface of the heating pipe and the storage tank is covered with a heat-absorbing coating; the heating pipe extends upwards beyond the glass cover, and the exposed part of the glass cover is used as the upper connecting pipe 8 of the device, and the bottom of the storage tank 4 a...
specific Embodiment example 2
[0044] Specific implementation example 2: the gas heater assembled by the polymerized solar heating device of the present invention is applied to the biogas anaerobic pond to raise the temperature: the thickness of the air in the cover is 20cm, the thickness of the side wall of the gas collection tank is 0.3cm, and the pipe wall of the heating pipe The thickness is 0.03cm, the thickness of the cermet composite film is 0.01cm, the rated power of the air compressor is 5W, and the temperature of the thermostat is set at 60°C; the test conditions are: the installation location is 23° north latitude, the outdoor temperature is 15°C, and the test time is 0:00 on the day By 23 o'clock, the direct sunlight time was 3 hours that day, and the test results: the temperature of the fermentation liquid in the anaerobic tank was 30°C-35°C, and the temperature change was medium temperature-high temperature-low temperature.
[0045] object
specific Embodiment example 3
[0046] Specific implementation example 3: According to the model 1 solar hot water pool designed by the present invention, the air thickness in the cover is 20cm, the side wall thickness of the storage tank is 0.3cm, the heating pipe wall thickness is 0.03cm, and the cermet composite film thickness is 0.01cm. The location is 23° north latitude, 3m higher than the water equipment. The hot pool boils an average of 0.42m of water per day in summer and autumn 3 , the water temperature reaches 55°C (the temperature difference between the inside and outside of the pool reaches 20°C); the average daily water temperature in spring and winter is 0.35m 3 , the water temperature reaches 45°C (the temperature difference between the inside and outside of the pool reaches 30°C).
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