Tracing collection thermoelectric comprehensive utilization system
A thermoelectric and concentrator technology, applied in the field of solar energy utilization, can solve the problems of reducing solar energy utilization rate, limiting the application and promotion of solar energy, and degrading the performance of concentrating solar cells, so as to solve the problems of high heat dissipation cost, simple and reasonable structural design, and improve performance price ratio effect
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Embodiment 1
[0021] The tracking and concentrating thermoelectric comprehensive utilization system of this embodiment, as shown in Figure 1, includes a photoelectric conversion part, a photothermal conversion part, a connecting pipe 8 and an automatic sun tracking mechanism installed on the automatic sun tracking mechanism. The photoelectric conversion part is composed of a solar cell module 1 , a cooling component 2 , a photoelectric fixing bracket 3 , and a flat mirror combination concentrator 4 . The light-to-heat conversion part (see Figure 4) is composed of a heat collecting device 5, a light-to-heat fixed bracket 6, and a parabolic concentrator 7; the automatic tracking sun mechanism is composed of an azimuth angle tracking mechanism 9, an azimuth angle support frame 10, and an elevation angle tracking mechanism 11. The height angle support frame 12 is composed of the flat mirror combination concentrator 4 with the reflective surface facing upwards and fixedly installed on the photoel...
Embodiment 2
[0027] The basic structure of this embodiment is basically the same as that of Embodiment 1, the main difference is that the photoelectric conversion part and the photothermal conversion part of the tracking concentrating thermoelectric comprehensive utilization system have basically synchronous automatic tracking sun mechanisms respectively. The specific structure is shown in Figure 5. The photoelectric conversion part composed of solar cell module 1, cooling component 2, photoelectric fixed bracket 3, and plane mirror combined concentrator 4 realizes the function of automatically tracking the sun through the automatic tracking sun mechanism; The light-to-heat conversion part composed of the heat pipe 5, the light-to-heat fixed bracket 6 and the parabolic concentrator 7 realizes the function of automatically tracking the sun through another set of automatic sun-tracking mechanism. The photoelectric conversion part is connected with the photothermal conversion part through a th...
Embodiment 3
[0030] The basic structure of this embodiment is also substantially the same as that of Embodiment 1. The main difference is that a first-level heating process is added, so that the working medium 13 is heated by a third-level heating system during the process of tracking the concentrating thermoelectric comprehensive utilization system of the present invention.
[0031]The tracking and concentrating thermoelectric comprehensive utilization system of this embodiment is shown in Figures 6 and 7. The photothermal conversion part is composed of a primary photothermal conversion part 21 and a secondary photothermal conversion part 25. The secondary photothermal conversion part is still composed of a vacuum collector. The heat pipe 5, the photothermal fixed bracket 6, and the parabolic concentrator 7 are composed. The primary photothermal conversion part is composed of a vacuum heat collection tube 22, a photothermal fixed bracket 23, and a parabolic concentrator 24. The working medi...
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