System to achieve solar energy condensation photo-thermal cycle power generation
A technology for concentrating solar energy and photothermal power generation, applied in solar thermal power generation, using solar energy to generate mechanical power, machines/engines, etc., can solve the problem that power quality is affected by intermittent and unstable solar energy and restricts solar thermal power generation Development and application, high ratio of power generation cost to income, etc., to achieve the effect of eliminating intermittent and unstable effects, good sealing, and long power generation time
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Embodiment 1
[0024] Embodiment 1: As shown in Figure 1, the solar concentrating photothermal power generation system first uses the heating panel of the molten salt heat storage chamber to absorb and store the heat energy converted from the focused solar radiation energy of the concentrating device in the molten salt heat storage chamber. Through the heat transfer ribs extending into the molten salt heat storage chamber and the bottom of the heating panel, the stored heat energy is continuously transferred to the heating panel, directly heating the water in the steam generation chamber to high-temperature and high-pressure saturated steam, and the high-temperature and high-pressure saturated steam generated in the steam generation chamber The steam guide shaft is introduced into the steam guide shaft through the steam guide shaft, and is sprayed out through one or several steam injection runners connected with the steam guide shaft to generate torque, and the steam guide shaft is driven to r...
Embodiment 2
[0025] Embodiment 2: In embodiment 1, the condensation pipe as shown in Figure 5 is installed in the condensation chamber, which can realize the combined supply of heat and electricity while increasing the condensation speed of the condensation chamber, which is more conducive to commercialization and large-scale operation, and reduces The ratio of the cost to benefit ratio of electricity generation.
Embodiment 3
[0026] Embodiment 3: as Figure 6 As shown, when two or more concentrating solar thermal power generation systems are operated together, during the peak power consumption period during the day, all systems can generate electricity to maximize the use of solar energy. During the low power consumption period at night, one of the systems can generate electricity. If system 1 generates electricity, when the thermal energy of its molten salt heat storage chamber is insufficient, solenoid valves 3, 4, and 10 can be closed by opening solenoid valves 5, 6, 7, 8, and 9 to keep system 1 from continuing to generate electricity, avoiding switching of the power generation system, and realizing When multiple systems generate power, flexible scheduling, thermal energy storage sharing and efficient utilization, the power generation time is longer.
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