Experiment device for verifying activation source item of primary loop coolant of reactor

An experimental device and coolant technology, applied in the field of nuclear reactors, can solve problems such as uneven coolant flow and uncontrollable intensity of radioactive neutron sources, and achieve the effects of evaluating and correcting theoretical calculation models that are reasonable, reduce impact, and facilitate detection.

Active Publication Date: 2017-03-15
NUCLEAR POWER INSTITUTE OF CHINA
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] The technical problem to be solved by the present invention is that in the design of the source term and the shielding, if the actual reactor and the primary circuit coolant activation source term are used for experimental measurement, the intensity of the radioactive neutron source is uncontrollable and the flow of the coolant is not uniform. The purpose of the problem is to provide an experimental device for the verification of the reactor primary circuit coolant activation source item, which simulates the reactor coolant being activated by neutrons in the laboratory environment, and can control the area where the coolant is irradiated, and make the The flow of the coolant is more uniform than that of the bucket design, and then the types and contents of each radionuclide in the coolant in the primary circuit are measured to make the source term estimation more reasonable and accurate

Method used

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  • Experiment device for verifying activation source item of primary loop coolant of reactor

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Embodiment 1

[0039] Such as figure 1 As shown, the present invention is an experimental device for verifying the activation source item of the reactor primary circuit coolant, including an irradiation area and a detection area, and the irradiation area and the detection area are connected by coolant pipes. The irradiation area includes a radiation source and a mechanism surrounding the radiation source formed by pipes helically wound around the radiation source. The radiation source includes a movable isotope neutron source, an Am-Be neutron source, and a place for placing The neutron source is a device with a hole structure, the inner diameter of the hole is 2cm, and the mechanism surrounding the radiation source is formed by spirally winding pipes around the radiation source. And the spherical layer coolant spiral tube 2 surrounding the gamma spectrometer probe 3 is formed by helically winding the gamma spectrometer probe 3 with a pipe. The spiral tube of the spherical layer coolant spi...

Embodiment 2

[0042] On the basis of Embodiment 1, wherein the column ring coolant coil tube 1 is made of a bendable thin-walled copper tube, by changing the winding shape of the coolant coil tube outside the neutron source for the use of various neutron sources The interface is reserved so that the same experimental device can use different types of neutron sources to irradiate the coolant.

Embodiment 3

[0044] On the basis of Embodiment 2, an experimental device for verifying the activation source item of the reactor primary circuit coolant also includes a purification device 9, the lower drain port 7 communicates with the input end of the purification device 9, and the output end of the purification device 9 passes through the purification circuit 10 It communicates with the injection port 6.

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PUM

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Abstract

The invention discloses an experiment device for verifying an activation source item of a primary loop coolant of a reactor. The experiment device comprises an irradiation zone and a detection zone, wherein the irradiation zone and the detection zone are connected through a coolant pipe. The experiment device is characterized in that the irradiation zone comprises a radiation source and a mechanism which is formed by spirally winding a pipeline around a radiation source to surround the radiation source; the detection zone comprises a gamma energy spectrometer and a mechanism which is formed by spirally winding a pipeline around a probe of the gamma energy spectrometer to surround the probe of the gamma energy spectrometer. Leading-out after activating of a reactor coolant is simulated in a lab environment, controllability of neutron source strength, coolant variety and ingredients and coolant flow is realized, the contents of radionuclides in the primary loop coolant can be measured, a theoretical calculation result is evaluated, and experimental data are provided for correcting a theoretical calculation model, so that source item estimation is more reasonable and more accurate.

Description

technical field [0001] The invention relates to the field of nuclear reactors, in particular to an experimental device used for verifying the activation source item of a reactor primary circuit coolant. Background technique [0002] In an actual reactor, the nuclear fuel of the reactor itself is the most radioactive, followed by the coolant in the primary circuit. The theoretical calculation of the radioactive source term of the reactor nuclear fuel itself has achieved good calculation accuracy, and the shielding of the reactor itself has generally reached a good state; while the theoretical calculation of the primary circuit coolant radioactive source term has a large uncertainty , and the primary circuit coolant has a wide distribution range, which is an important content in the reactor source term and an important basis for shielding design. [0003] At present, most domestic reactor primary circuit coolants are light water reactors, especially domestic nuclear power pla...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G21C17/00
CPCG21C17/001Y02E30/30
Inventor 魏述平吕焕文李兰谭怡程诗思高希龙刘嘉嘉王军龙杨舒琦于红朱建平
Owner NUCLEAR POWER INSTITUTE OF CHINA
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