Mobile lattice array solar energy focusing photovoltaic power generation system
A power generation system and solar energy technology, applied in the field of solar energy utilization, can solve problems such as being unsuitable for small or household systems, low solar energy collection efficiency, unusable solar mirrors, etc., so as to improve utilization time and efficiency, overcome low solar energy collection time, reduce cost effect
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Embodiment 1
[0070] Embodiment 1: A mobile point array solar energy collection and utilization system composed of 4 solar mirrors and 2 solar energy utilization devices
[0071] as attached figure 1 , 2 , 3 shows the moving point array solar collection and utilization system composed of 4 solar mirrors and 2 solar photovoltaic panels, figure 1 , 2 , 3 are the collection and utilization of solar energy in the morning, noon and afternoon respectively, figure 1 In the morning, the sun rises from the east, solar mirrors 1, 2, and 3 focus the solar energy on solar photovoltaic panels 1 and 2 respectively, realizing the tracking and focusing of solar energy; figure 2 At noon, the sun is located in the central area of the sky. No. 1 and No. 2 solar mirrors focus the solar energy on the No. 1 solar photovoltaic panel respectively, and No. 3 and No. 4 solar mirrors focus on the No. 2 solar storage device to realize the tracking and focusing of solar energy; image 3 For the afternoon, the su...
Embodiment 2
[0072] Embodiment 2: A moving point array solar energy collection and utilization system composed of 12 solar mirrors and 6 solar energy utilization devices
[0073] This example Figure 4 The mobile point array solar collection and utilization system composed of 12 solar mirrors and 6 solar photovoltaic panels is shown. The 12 solar mirrors are arranged in an array of three rows and four columns, and the 6 solar photovoltaic panels are arranged in an array of three rows and two columns. The array is arranged, and the solar photovoltaic panels are respectively arranged in the middle area of the three rows of solar mirrors.
[0074]In the different time periods of morning, noon, and afternoon, solar mirrors 1-12 can choose different solar photovoltaic panels from 1-6 to focus, and select different focus points to focus according to the actual solar collection efficiency obtained. Solar mirrors 1-12 in different positions have different choices of solar photovoltaic panels th...
Embodiment 3
[0077] Embodiment 3: 1*3 moving point solar energy tracking utilization system
[0078] as attached Figure 5 As shown, this embodiment adopts three parabolic dish solar mirrors (2), which are arranged on a parabolic connecting part, and each solar mirror is connected to the parabolic connecting part through a system axis, and the horizontal axis of the system axis The axis and the longitudinal axis are perpendicular to each other. This embodiment is a solar mirror bracket composed of three system axes arranged on the connecting parts. The connecting parts do not move, but the three system axes move. connection, set physical and optical sensors on each solar mirror (2), the solar tracking control device is an integrated electronic control device composed of motor, transmission gear and electronic control part, and adopts a tracking system that complements physical and optical tracking to realize tracking Tracking of solar energy, at the same time, on the solar photovoltaic pa...
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