Eccentric type turbine thermal energy power system using nuclear power plant thermal water discharge

A technology for power systems and nuclear power plants, applied in rotary piston engines, indirect heat exchangers, heat exchanger types, etc., can solve the problems of low external waste heat absorption rate, low mechanical energy efficiency, and unstable working medium gasification temperature, etc. Achieve the effect of improving gasification efficiency and condensation efficiency, stabilizing gasification temperature and working fluid flow rate, and avoiding unstable turbine speed.

Inactive Publication Date: 2016-12-21
郭远军
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0007] However, the common problems of existing thermal power generation equipment are: a. The temperature requirements for high-temperature heat sources are high, generally above 200°C, and the thermal energy conversion efficiency is low. The thermal energy conversion efficiency is generally 15% to 35%. Under the heat source of ℃, the average thermal energy conversion efficiency is 18%; b. The gasification temperature of the working fluid is unstable, the condensation effect of the working fluid is not good, and the working fluid is easy to deteriorate or appear impurities; c. The driving force of the turbine is small, and the gasification medium The efficiency of converting external work into mechanical energy is low; d. Turbine speed is unstable and prone to stuck problems; e. The heat collection effect of the heat collection device is not good, and the absorption rate of external waste heat is small; f. The heat displacement of the condensing device It is large, wastes a lot of heat energy, and the condensation speed through natural condensation is slow, and the active condensation method (fan air cooling or liquid pump water cooling) requires additional power consumption; g. The existing equipment is large in size; f. The turbine is prone to leakage Working fluid problem
[0009] However, the development of nuclear power has also brought great concerns to people, because the construction and use of nuclear power plants will not only cause certain radioactive pollution to the environment, but also cause high-temperature pollution to nearby waters.
Nuclear power plants need a large amount of water to cool the reactor. A nuclear power plant consumes hundreds of tons of water per second. Cold sea water or river water is discharged back into the sea after heat exchange in the plant. The temperature of the water will rise by 20 to 30 degrees. After the drain is discharged, the temperature of the water within a radius of 1 km can rise as high as 5°C to 8°C. When the temperature of cold sea water or river water reaches 30°C in summer, after absorbing the heat exhausted by the nuclear power plant, the temperature can rise by about 40°C. , the general fish and seaweed organisms cannot survive, and it also brings a greater impact of high temperature on nearby residents
[0010] As for the thermal energy in the thermal drainage of the above-mentioned nuclear power plant, since the temperature difference between the thermal drainage and normal temperature water is only about 20°C, this temperature difference is difficult to be utilized by existing thermal power generation equipment

Method used

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  • Eccentric type turbine thermal energy power system using nuclear power plant thermal water discharge
  • Eccentric type turbine thermal energy power system using nuclear power plant thermal water discharge
  • Eccentric type turbine thermal energy power system using nuclear power plant thermal water discharge

Examples

Experimental program
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Effect test

Embodiment 1

[0079] Example one (such as figure 1 Shown): An eccentric turbine thermal power system using nuclear power plant thermal drainage, including heat collection device 1, gasification device 2, eccentric turbine 3, nuclear power plant thermal drainage channel 4, condensing device 5, circulation pipeline 6, circulation plant The mass 7 and the one-way hydraulic pump 9, the heat collector 1, the gasification device 2, the eccentric turbine 3, the condensing device 5 and the one-way hydraulic pump 9 are connected in turn through the circulation pipe 6, which contains the circulating working fluid. 7;

[0080] (Such as figure 2 Shown) The heat collection device 1 and the gasification device 2 are installed in the thermal drain 4 of the nuclear power plant, the condensing device 5 is installed in the deep water low temperature zone, and the heat collection device 1 includes a heat collection tube 11 and a heat collection fin 12, The heat fins 12 are distributed in parallel and spaced apa...

Embodiment 2

[0092] Example two (such as Picture 9 Shown): The difference from the first embodiment is that the heat collecting sheet 12 of the heat collecting device 1 is in the shape of a curved sheet.

[0093] Through the experiment of the eccentric turbine thermal power system using nuclear power plant thermal drainage in the second embodiment above, hot water of different temperatures is discharged into the heat collector 1 and the gasification device 2, the cold source temperature is 10°C, and the drainage rate is 3000L / s, the flow rate of the working fluid in the circulating pipe is adjusted according to the operating stability of the eccentric turbine thermal power system using the thermal drainage of nuclear power plants; the experimental results are: when the hot water temperature is about 40℃, the heat energy conversion efficiency is about 5.5%, and the hot water When the temperature is about 45°C, the heat energy conversion efficiency is about 8.4%, when the hot water temperature...

Embodiment 3

[0094] Example three (such as Picture 10 Shown): The difference from the first embodiment is that the heat collecting fins 12 of the heat collecting device 1 are staggered.

[0095] Through experiments on the eccentric turbine thermal power system using nuclear power plant thermal drainage in the third embodiment above, hot water of different temperatures is discharged into the heat collector 1 and the gasification device 2, the cold source temperature is 10°C, and the drainage rate is 3000L / s, the flow rate of the working fluid in the circulating pipe is adjusted according to the operating stability of the eccentric turbine thermal power system using the thermal drainage of nuclear power plants; the experimental results are: when the hot water temperature is about 40℃, the heat energy conversion efficiency is about 5.5%, and the hot water When the temperature is about 45℃, the thermal energy conversion efficiency is about 8.4%, when the hot water temperature is about 50℃, the t...

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Abstract

The invention discloses an eccentric type turbine thermal energy power system using nuclear power plant thermal water discharge. The eccentric type turbine thermal energy power system comprises a thermal collection device, a gasifying device, a turbine motor, a condensation device and a one-way hydraulic pump which are sequentially and circularly connected through circulating pipelines. A circulating working medium is contained in the circulating pipelines. The thermal collection device and the gasifying device are mounted in a nuclear power plant thermal water discharge channel. The condensation device is mounted in a deepwater low temperature zone. The eccentric type turbine motor comprises a turbine motor shell, a rotary turbine structure, a gas inlet and a gas exhaust port. A rotary shaft of the rotary turbine structure is eccentrically mounted in the turbine motor shell. The gas inlet and the gas exhaust port are distributed in the radial two sides of the turbine motor shell. The eccentric type turbine thermal energy power system using the nuclear power plant thermal water discharge has the advantages that the thermal energy conversion efficiency is high, the turbine moment is large, and the power is adjustable.

Description

Technical field [0001] The invention belongs to the field of energy utilization equipment, in particular to an eccentric turbine thermal energy power system using nuclear power plant thermal drainage. Background technique [0002] Energy is an important material basis for the survival and development of human society. Throughout the history of the development of human society, every major progress of human civilization is accompanied by the improvement and replacement of energy. The development and utilization of energy has greatly promoted the development of the world economy and human society. [0003] However, with the continuous development and consumption of energy, non-renewable energy such as oil, coal, natural gas and other non-renewable energy sources are gradually shrinking, and energy conservation and recycling are gradually being valued. The basic content of my country’s current energy strategy is: persisting in giving priority to conservation, based on domestic, dive...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F01K27/02F01K25/08F01K25/10F01K11/02F01C1/344F28B5/00F28D1/02B01D1/00B01D1/16
CPCF01K27/02B01D1/00B01D1/16F01C1/3446F01K11/02F01K25/08F01K25/10F28B5/00F28D1/0206
Inventor 郭远军
Owner 郭远军
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