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Nuclear power station radiation shielding collaborative design platform and construction method thereof

A collaborative design and radiation shielding technology, applied in computing, data processing applications, instruments, etc., can solve the problems of secondary development difficulty, incomplete fit of production mode, failure to display, etc., to improve design efficiency and quality, design data The effect of smooth collaboration and convenient follow-up application

Active Publication Date: 2019-09-06
中广核工程有限公司 +3
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

However, this scheme has the following defects: (1) The data that can be presented are mainly macroscopic data, and mainly focus on layout data and other data that can be directly displayed through three-dimensional data; Directly observed data, such as source item data, dose rate data, etc., can basically not be displayed; (2) It is difficult to trace design data, and the 3D model can only present the current state of design data, but cannot present the historical version information of design data , the version management ability is limited, and the input data, reference files, calculation process and other information referred to in the design data generation process cannot be traced; (3) The design data is not fully integrated with the design task. In the nuclear power plant design process, whether it is radiation The shielding design work itself, or the collaboration between radiation shielding design and other disciplines, has complex upstream and downstream relationships. The 3D model cannot reflect this design process, resulting in the separation of design data from the design process and engineering progress. Designers have to focus on the design Maintaining two sets of data and design progress at the same time greatly increases the workload of designers, and causes the progress control personnel to only monitor whether a certain design data is generated, and has no way to monitor the process before the data is generated.
However, this solution has the following defects: (1) In order to ensure universality, the design mode of its task management and upstream and downstream connection is relatively fixed, and it does not fully match the actual production mode when it comes to the needs of the radiation shielding profession , and the secondary development is difficult, and the cost of perfect fit is high; (2) Because of the focus on task management, the functions in design data display are relatively limited, and it is impossible to display design data more vividly

Method used

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  • Nuclear power station radiation shielding collaborative design platform and construction method thereof
  • Nuclear power station radiation shielding collaborative design platform and construction method thereof
  • Nuclear power station radiation shielding collaborative design platform and construction method thereof

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Embodiment Construction

[0049] In order to enable those skilled in the art to understand the present invention more clearly, the present invention will be further described in detail below in conjunction with the accompanying drawings and specific embodiments.

[0050] figure 1 It is a schematic structural diagram of a collaborative design platform according to an exemplary embodiment of the present invention, as shown in figure 1 As shown, the collaborative design platform includes a design task module 10, an association module 20, a design data module 30, a basic configuration module 40, a design data model 50 and a design tool 60;

[0051] Among them, the design task module 10 is used to read the design task information, and create a design task with reference to the pre-configured task category; the association module 20 connects the design task module 10 and the design data module 30, and is used to send the design task to the design data Module 30; the design data module 30 is used to obtain i...

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Abstract

The invention provides a nuclear power station radiation shielding collaborative design platform and a construction method thereof. The nuclear power station radiation shielding collaborative design platform comprises a design task module, an association module, a design data module and a design data model, wherein the design task module is used for creating a design task, and the association module is connected with the design task module and the design data module; the design data module is used for acquiring input data from upstream design work and calling a design tool to calculate and acquire output data in combination with the input data; the design data model is used for storing output data; and the design task module is also used for monitoring the design progress according to theoutput data, starting a design quality control flow and creating design knowledge for pushing. According to the nuclear power station radiation shielding collaborative design platform and the construction method thereof, the whole design process of radiation shielding design is covered, and effective collaborative design with related majors is achieved, and the good technical effect is achieved.

Description

technical field [0001] The invention relates to the field of nuclear power plant radiation shielding design, in particular to a nuclear power plant radiation shielding collaborative design platform and a construction method thereof. Background technique [0002] The radiation shielding design of nuclear power plants is mainly responsible for the full-cycle radiation protection design and technical services of nuclear power plants and related nuclear facilities, disposal sites, and nuclear technology utilization projects. Promote the process of design tasks and data under the framework of the entire design progress, rather than separating the two; (2) have a collaborative relationship with many design disciplines, and need to achieve collaborative design; (3) Design data includes macro data, Such as equipment, compartment size and layout information, etc., also includes data that cannot be directly observed by the naked eye, such as source terms at specific locations, dose ra...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G06Q10/10G06Q50/06
CPCG06Q10/103G06Q50/06
Inventor 罗亚林魏欣南李云飞吕炜枫王云福涂红兵
Owner 中广核工程有限公司
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