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High-temperature gas cooled reactor and low-temperature multiple-effect distillation seawater desalinization coupling device

A high-temperature gas-cooled reactor and multi-effect distillation technology, which is applied in seawater treatment, general water supply conservation, water/sewage treatment, etc., can solve the problems of energy waste and unused heat

Active Publication Date: 2015-03-25
JIANGSU CHINA NUCLEAR IND HUAWEI ENGDESIGN & RES
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

From a safety point of view, usually this part of the heat of nuclear power plants can only be taken away by seawater and not used, resulting in a huge waste of energy

Method used

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  • High-temperature gas cooled reactor and low-temperature multiple-effect distillation seawater desalinization coupling device

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Embodiment 1

[0013] figure 1 It is a schematic diagram of the connection relationship of the device adopted in the present invention, referring to figure 1 As shown, the 750°C helium in the high-temperature gas-cooled reactor 1 with a total thermal power of 500MW exchanges heat with the 205°C main feed water of the steam generator 2, and then cools to 250°C and returns to the high-temperature gas-cooled reactor 1, and the main feed water is heated to form a high temperature The high-pressure main steam (540°C, 18MPa, 716t / h) drives the steam turbine 3 to rotate and generate electricity, with an electric power of 200MW. ) into the condensation bypass from the bypass pipe inlet a, the seawater is heated to 99°C in the condenser 4, and the hot seawater enters the flash tank 6 for decompression and flash evaporation to obtain 119t / h of raw steam at 70°C, which enters the subsequent low-temperature multi-effect distillation seawater The desalination unit 7 produces fresh water. The 64°C seawa...

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Abstract

The invention relates to a high-temperature gas cooled reactor and low-temperature multiple-effect distillation seawater desalinization coupling device. The coupling device is characterized in that a condensation bypass and a flash vaporization device are additionally arranged on a secondary circuit condensation water or steam pipeline after power generation of a high-temperature gas cooled reactor; the condensation bypass is provided with a heat exchange device, a cooling seawater output pipeline of the heat exchange device is connected with the flash vaporization device, a live steam output pipeline at the top of the flash vaporization device is connected with a multi-effect distillation seawater desalinization device, a heat exchange hot seawater output pipeline at the bottom of the flash vaporization device is combined with the cooling seawater output pipeline and then connected to the heat exchange device of the condensation bypass; the heat exchange hot seawater output pipeline at the bottom of the flash vaporization device is combined with a concentrated seawater output pipeline at the bottom of the multiple-effect distillation seawater desalinization device and then led to the sea. According to the invention, the heat energy of condensation water (steam) after power generation can be comprehensively utilized, so that the energy utilization efficiency of the high-temperature gas cooled reactor is greatly improved, and meanwhile, the fresh water yield is improved. The coupling device realizes hydropower generation of the high-temperature gas cooled reactor.

Description

technical field [0001] The invention belongs to the field of comprehensive utilization of energy, and in particular relates to a system for providing heat of condensed water (steam) after a high-temperature gas-cooled reactor generates power to a low-temperature multi-effect distillation seawater desalination device. Background technique [0002] The high-temperature gas-cooled reactor uses helium as the coolant, and graphite as the moderator and structural material. The fuel element is composed of many tiny "coated particles" nuclear fuel dispersed in the graphite. The temperature of helium at the core outlet can reach 700-950°C. Shidaowan High Temperature Gas-cooled Reactor Nuclear Power Plant is the first high-temperature gas-cooled reactor demonstration power plant with independent intellectual property rights in China, and also the world's first commercial-scale demonstration power plant of modular high-temperature gas-cooled reactor with fourth-generation nuclear energ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C02F1/16C02F103/08
CPCY02A20/124
Inventor 徐枫金耀明张岗张立刚朱志超杜向前贺平徐晓明乔凤笙穆立文刘维佳沈建锋袁红兰吴元玲熊自律李明波
Owner JIANGSU CHINA NUCLEAR IND HUAWEI ENGDESIGN & RES
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