An Automatic Condenser and Scatterer
A scatterometer, automatic technology, applied in the direction of using sunlight, light source fixing, lighting and heating equipment, etc., to achieve the effect of energy saving, brightness enhancement, and large benefits
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Embodiment 1
[0039] In this embodiment, a concave reflector is used to reflect light, which is defined as an arc shape.
[0040] Since the light in the semi-underground garage / semi-basement is dark, more sunlight is irradiated into the semi-underground garage / semi-basement during the day, and it is especially necessary to collect more light.
[0041] figure 1 The overall schematic diagram of the automatic concentrating and scattering instrument provided for this embodiment, the automatic concentrating and scattering instrument includes a concentrating area, a transmissive area and a divergent area, the concentrating area is provided with a first concave reflector 1, and the transmissive area is provided with The convex transmissive mirror 2 is provided with a second concave reflector 3 and a convex reflector 4 in the diverging area.
[0042] The first concave reflector 1 and the second concave reflector 3 are block concave reflectors, such as figure 2 shown. Convex mirror 2 is a semi-c...
Embodiment 2
[0048] The principle of this embodiment is the same as that of Embodiment 1, but the internal mirror reflection of the spherical surface is used to concentrate light, and the convergence of the light paths is different. Defined as spherical.
[0049] Image 6The overall principle diagram of the automatic concentrating and scattering instrument provided for this embodiment, the automatic concentrating and scattering instrument includes a concentrating area, a transmission area and a diverging area, the concentrating area is provided with a concave reflector 1, and the transmission area is provided with a convex transmission area. The mirror 2 is provided with a flat mirror 5 and a convex reflector 4 in the diverging area.
[0050] The concave reflector 1 is a spherical concave reflector, such as Figure 7 shown. Convex mirror 2 is a spherical convex mirror, such as Figure 8 shown. The convex reflector 4 is a spherical convex reflector, and the structure of the diverging r...
Embodiment 3
[0054] In Embodiment 1 and Embodiment 2, in the light-gathering area, the concave reflector 1 needs to reflect the light irradiated from the sky to the ground so that it becomes a non-parallel light. Since the sun keeps moving with time during the day, the light is generally irradiated perpendicular to the ground. In the morning and evening, the light is slightly weaker, and our country is north of the equator, so in the east-west direction and the north-south direction The direction in which the sunlight is irradiated in one day is not the same, so this embodiment adjusts the angle of the concave reflector through the sunlight automatic regulator. Here, two schemes are divided to illustrate how to adjust the angle of the concave reflector 1 .
[0055] Option 1: East-West Sunlight
[0056] During a day, only half a day (11-14 hours) of sunlight can be irradiated on the automatic concentrator and scatterer, and the direction of sunlight is irradiated from east to west. Figur...
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