Semiconductor condensation heat energy power system utilizing thermal discharge water of nuclear power station
A technology for power systems and nuclear power plants, applied in the direction of generators/motors, steam/steam condensers, electrical components, etc., can solve the problems of small external waste heat absorption rate, temperature rise, and unstable turbine speed, etc., to achieve improved gasification Effectiveness and condensation efficiency, stable gasification temperature and working medium flow rate, and the effect of improving thermal energy conversion efficiency
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Embodiment 1
[0082] Embodiment one (such as figure 1 Shown): a semiconductor condensing thermal energy power system utilizing thermal drainage from a nuclear power plant, including a heat collector 1, a gasification device 2, a turbine 3, a nuclear power plant thermal drain 4, a condensing device 5, a circulating pipeline 6, a circulating working fluid 7 and The one-way hydraulic pump 9, the heat collecting device 1, the gasification device 2, the turbine 3, the condensing device 5 and the one-way hydraulic pump 9 realize circulation communication through the circulation pipeline 6 in sequence, and the circulation pipeline 6 contains a circulating working medium 7;
[0083] (Such as figure 2 As shown), the heat collection device 1 and the gasification device 2 are installed in the thermal drain 4 of the nuclear power plant, and the condensation device 5 is installed in the deep water low temperature area. The heat sinks 12 are distributed in parallel and at intervals, and the heat collec...
Embodiment 2
[0097] Embodiment two (such as Figure 6 shown): The difference from Embodiment 1 is that the heat collecting sheet 12 of the heat collecting device 1 is in the shape of a curved sheet.
[0098] By conducting experiments on the semiconductor condensing thermal energy power system using the thermal drainage of nuclear power plants in the above-mentioned embodiment 2, hot water of different temperatures is discharged into the heat collection device 1 and the gasification device 2, the temperature of the cold source is 10 °C, and the drainage rate is 3000L / s, the flow rate of the working medium in the circulation pipe is adjusted according to the operation stability of the semiconductor condensation heat power system using the thermal drainage of the nuclear power plant; the experimental results are: when the temperature of the hot water is about 40 °C, the heat conversion efficiency is about 6.5%, and the temperature of the hot water is At about 45°C, the thermal energy conver...
Embodiment 3
[0099] Embodiment three (such as Figure 7 shown): The difference from Embodiment 1 is that the heat collecting fins 12 of the heat collecting device 1 are distributed in a staggered manner.
[0100] By conducting experiments on the semiconductor condensing thermal energy power system using the thermal drainage of nuclear power plants in the third embodiment above, hot water of different temperatures is discharged into the heat collector 1 and the gasification device 2, the temperature of the cold source is 10 ° C, and the drainage rate is 3000 L / s, the flow rate of the working medium in the circulation pipe is adjusted according to the operation stability of the semiconductor condensation heat power system using the thermal drainage of the nuclear power plant; the experimental results are: when the temperature of the hot water is about 40 °C, the heat conversion efficiency is about 6.5%, and the temperature of the hot water is At about 45°C, the thermal energy conversion ef...
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Abstract
Description
Claims
Application Information
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