CN112417660B - Automatic coding method and system for pipeline support and hanger - Google Patents

Automatic coding method and system for pipeline support and hanger Download PDF

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Publication number
CN112417660B
CN112417660B CN202011260828.2A CN202011260828A CN112417660B CN 112417660 B CN112417660 B CN 112417660B CN 202011260828 A CN202011260828 A CN 202011260828A CN 112417660 B CN112417660 B CN 112417660B
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hanger
support
coding
automatic
pipeline
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CN112417660A (en
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朱威力
程中
林木营
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China Nuclear Power Engineering Co Ltd
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China Nuclear Power Engineering Co Ltd
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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F30/00Computer-aided design [CAD]
    • G06F30/20Design optimisation, verification or simulation
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F8/00Arrangements for software engineering
    • G06F8/40Transformation of program code
    • G06F8/41Compilation
    • G06F8/44Encoding
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F2119/00Details relating to the type or aim of the analysis or the optimisation
    • G06F2119/20Design reuse, reusability analysis or reusability optimisation

Abstract

The invention provides a method and a system for automatically coding a pipeline support and hanger, wherein the method comprises the following steps: modeling a support and hanger to obtain a support and hanger model; carrying out initial coding on the support and hanger; analyzing a support and hanger coding rule, and compiling a support and hanger automatic coding program according to the support and hanger coding rule and the support and hanger model; and calling the automatic coding program of the support and hanger to generate the support and hanger code meeting the requirements. According to the method and the system, the hanger codes meeting the rule requirements are generated according to the called hanger automatic coding program, so that complicated manual hanger coding work is not needed; through unified automatic coding, missing, repetition or non-standardization of coding is effectively avoided, the working efficiency of nuclear power design is greatly improved, and the design period and the design quality are ensured.

Description

Automatic coding method and system for pipeline support and hanger
Technical Field
The invention belongs to the technical field of nuclear power, and particularly relates to a method for automatically coding a pipeline support and a system for automatically coding the pipeline support and the hanger.
Background
At present, the number of pipeline support hangers in a large-scale equipment factory building is huge and the arrangement is complex, for example, the number of the pipeline support hangers of a single unit in a nuclear island of a nuclear power station of a certain third generation is more than 3 ten thousand, and each support hanger needs to be numbered and named uniquely according to design requirements and drawing requirements. The number value can reflect the information of the position, the function and the like of the pipeline supporting and hanging frame, and a plurality of supporting and hanging frames can be contained in the same position or function, the number value is generally increased according to integers and cannot be repeated or misplaced, so that the programming of the serial number code is the most heavy and complex work in the naming of the pipeline supporting and hanging frame of the nuclear island.
The pipeline support and hanger type and three-dimensional model data structure level are complicated, at present, the manual support and hanger numbering naming work is carried out, a large amount of time and labor are consumed, a plurality of human errors such as number omission, repetition or non-standardization and the like often occur, the design work efficiency and the design quality are seriously influenced, a plurality of common support frames are arranged in a nuclear island, and more difficulties are brought to the support and hanger numbering naming work, so that the naming work of the pipeline support and hanger in the nuclear island factory building is solved by providing effective measures, the nuclear power design work efficiency is improved, the design period and the design quality are guaranteed, and the method is a problem to be solved in the nuclear power pipeline installation construction production urgency.
Disclosure of Invention
The invention is completed for at least partially solving the technical problems of heavy naming, complexity and low efficiency of the pipeline supporting and hanging frame in the nuclear island factory building in the prior art.
The technical scheme adopted for solving the technical problems of the invention is as follows:
the invention provides a method for automatically coding a pipeline support and hanger, which comprises the following steps:
modeling a support and hanger to obtain a support and hanger model;
carrying out initial coding on the support and hanger;
analyzing a support and hanger coding rule, and compiling a support and hanger automatic coding program according to the support and hanger coding rule and the support and hanger model;
and calling the automatic coding program of the support and hanger to generate the support and hanger code meeting the requirements.
Further, the modeling of the support and hanger comprises:
according to the pipeline arrangement requirement, the setting position of the support and hanger on the pipeline and the function to be realized are determined, and a three-dimensional model component is selected for support and hanger modeling according to the function to be realized, related pipeline information parameters and pipeline stress parameters at the determined position.
Further, the support hanger comprises an independent support hanger and a co-support hanger, and the support hanger coding rule comprises:
the code name of the independent support and hanger is: "Room number or partition number, running Water number/support hanger function"; the coding name of the co-frame support and hanger is as follows: "room number or partition number:. Running number + capital english letter/support hanger function", english letters are named sequentially from a.
Further, according to the hanger coding rule, in combination with the hanger model, an automatic hanger coding program is compiled, including:
classifying the support hangers and determining the serial number range of the support hanger number of the corresponding category by analyzing the hierarchy of the support hanger model and the coding rule of the support hanger of the corresponding category, wherein the category comprises a process pipeline, a fire-fighting pipeline and a special pipeline;
based on the initial coding of the support hanger, the partition number or the room number of the position of the support hanger and the corresponding type identification of the support hanger are identified, and according to the coding rule of each type of support hanger, an automatic support hanger coding program for uniformly naming each data structure level of the support hanger of all types in the partition or the room is compiled, wherein the serial numbers of the support hanger numbers of the corresponding types are selected in sequence from the serial number range corresponding to the serial numbers.
Further, the calling the automatic coding program of the support and hanger to generate the support and hanger code meeting the requirements comprises the following steps:
selecting a support and hanger structure level to be named automatically by placing a support and hanger automatic coding program on a designated file directory level;
the automatic coding program of the support and hanger is operated by inputting a calling command in a specified format in a command window;
and automatically constructing an association code after the automatic encoding program of the support and hanger is operated through the associated data logic relationship, and realizing self-defined naming of all support and hanger in the selected support and hanger hierarchy and report generation.
According to another aspect of the present invention, there is also provided a system for automatically coding a pipe hanger, comprising:
the modeling unit is used for modeling the support and hanger to obtain a support and hanger model; and
carrying out initial coding on the support and hanger;
the programming unit is used for analyzing the coding rules of the support and hanger, combining the support and hanger model according to the coding rules of the support and hanger, and programming an automatic coding program of the support and hanger;
and the coding unit is used for calling the automatic coding program of the support and hanger to generate the support and hanger codes meeting the requirements.
Further, the modeling unit is specifically configured to:
according to the pipeline arrangement requirement, the setting position of the support and hanger on the pipeline and the function to be realized are determined, and a three-dimensional model component is selected for support and hanger modeling according to the function to be realized, related pipeline information parameters and pipeline stress parameters at the determined position.
Further, the hanger comprises an independent hanger and a common hanger, and the hanger coding rule analyzed by the programming unit comprises:
the code name of the independent support and hanger is: "Room number or partition number, running Water number/support hanger function"; the coding name of the co-frame support and hanger is as follows: "room number or partition number:. Running number + capital english letter/support hanger function", english letters are named sequentially from a.
Further, the programming unit is specifically configured to:
classifying the support hangers by analyzing the support hanger model layers and coding rules of the support hangers of the corresponding categories, and determining the serial number range of the support hanger of the corresponding categories, wherein the categories comprise process pipelines, fire-fighting pipelines and special pipelines; the method comprises the steps of,
based on the initial coding of the hanger, the partition number or the room number of the hanger and the corresponding type identifier of the hanger are identified, and according to the coding rule of each type of hanger, an automatic hanger coding program for uniformly naming each data structure level of the hanger in the partition or the room is compiled, wherein the serial numbers of the hanger numbers in the corresponding types are sequentially selected from the serial number range corresponding to the serial numbers.
Further, the coding unit is specifically configured to:
selecting a support and hanger structure level to be named automatically by placing a support and hanger automatic coding program on a designated file directory level; and, in addition, the processing unit,
the automatic coding program of the support and hanger is operated by inputting a calling command in a specified format in a command window; the method comprises the steps of,
and automatically constructing an association code after the automatic encoding program of the support and hanger is operated through the associated data logic relationship, so that the self-defined naming of all support and hanger in the selected support and hanger hierarchy and report generation are realized.
The beneficial effects are that:
according to the method and the system for automatically coding the pipeline support and hanger, the support and hanger is modeled, initial coding is carried out on the support and hanger, the support and hanger coding rules are analyzed, and an automatic support and hanger coding program is compiled according to the support and hanger coding rules and the support and hanger model; and generating the hanger code meeting the rule requirement according to the called hanger automatic coding program. According to the technical scheme, complicated manual support and hanger coding work can be omitted when a process, fire protection and special system are used for supporting and hanging the nuclear power three-dimensional pipeline; the support and hanger automatic coding program of the pipeline in the nuclear island factory building is written to carry out unified and automatic coding on all data structure layers of the support and hanger of the pipeline in the design area, so that missing, repetition or non-standardization of coding is effectively avoided, the nuclear power design working efficiency is greatly improved, and the design period and the design quality are ensured; the technical scheme and the implementation mode of the invention can be expanded and applied to the automatic coding work of other related similar industrial pipeline supporting and hanging frames.
Drawings
FIG. 1 is a flow chart of a method for automatically coding a pipeline support and hanger, which is provided by the embodiment of the invention;
FIG. 2 is a schematic layer diagram of a PDMS three-dimensional support and hanger model used in the method for automatically coding a pipeline support and hanger according to the embodiment of the present invention;
FIG. 3 is a flow chart of another method for automatically encoding a pipe hanger according to an embodiment of the present invention;
fig. 4 is a schematic diagram of a system for automatically coding a pipe hanger according to another embodiment of the present invention.
Detailed Description
The present invention will be described in further detail below with reference to the drawings and examples for better understanding of the technical scheme of the present invention to those skilled in the art.
As shown in fig. 1, an embodiment of the present invention provides a method for automatically coding a pipe support and hanger, which includes steps S101 to S104.
Step S101: modeling a support and hanger to obtain a support and hanger model;
step S102: carrying out initial coding on the support and hanger;
step S103: analyzing a support and hanger coding rule, and compiling a support and hanger automatic coding program according to the support and hanger coding rule and the support and hanger model;
step S104: and calling the automatic coding program of the support and hanger to generate the support and hanger code meeting the requirements.
In the nuclear power pipeline installation construction process, the first pile design of the pile type nuclear power is generally carried out by adopting PDMS (Plant Design Management System, factory design management system) software, the PDMS is widely applied to industries such as petrifaction, smelting, pharmacy, electric power and the like, the PDMS is supported by a database, the PML (ProgrammableMacro Language) operates in the background, the mutual position relation of equipment, pipelines, structures and the like in space is directly and accurately reflected by means of the appearance of a three-dimensional entity model, and the construction file of a project can be generated by supporting and extracting a horizontal plane drawing and a table through simple arrangement, so that the fault-free and optimal design is achieved.
The PDMS software can allow multiple persons to operate online at the same time, in the process of building a model, the support and hanger can be encoded, the type of the pipeline support and hanger designed for nuclear power first-time pile design and the three-dimensional model data structure are complex in level, if the support and hanger numbering and naming work is carried out manually, time and labor are consumed, and various human errors such as missing numbers, repetition or non-standardization often occur, the design work efficiency and the design quality are seriously affected, so that effective measures are needed to be taken to solve the naming work of the pipeline support and hanger in a nuclear island factory building, the nuclear power design work efficiency is improved, and the design period and the design quality are guaranteed.
In this embodiment, after the process of creating the hanger model, an initial code of the hanger is first created, and in general, the initial code includes the location and the function identifier of the hanger, the hanger model may be created by using existing PDMS software, which is naturally applicable to other suitable design software, and since the number of hangers in the model is large and may be programmed by multiple people, the serial number of the initial code may be repeated or missed, so in this embodiment, the serial number of the initial code may be set at will, and after the initial code is created, the hanger encoding rule is resolved, and the hanger automatic encoding program is created by using PML language, and the hanger automatic encoding program is directly called, so as to generate the hanger code meeting the rule requirement. The embodiment utilizes and establishes a data logic relationship to construct a form of association codes, realizes automatic numbering and naming of the pipeline support and hanger of the nuclear power station, can well solve the problems of heavy and complex naming, easy error and low efficiency of the pipeline support and hanger in the nuclear island factory building, and remarkably improves the working efficiency and the design quality of nuclear power design.
Further, the modeling of the support and hanger comprises:
according to the pipeline arrangement requirement, the setting position of the support and hanger on the pipeline and the function to be realized are determined, and a three-dimensional model component is selected for support and hanger modeling according to the function to be realized, related pipeline information parameters and pipeline stress parameters at the determined position.
And determining the position and the function of the support and hanger according to the pipeline arrangement requirement, selecting relevant parts (section steel, pipe clamps, bottom plates and the like) meeting pipeline parameters and stress parameters (if any) at the designated position according to the function of the support and hanger, carrying out support and hanger modeling operation, and carrying out initial coding of the support and hanger, wherein the initial coding is random in serial number.
Further, the support hanger comprises an independent support hanger and a co-support hanger, and the support hanger coding rule comprises:
the code name of the independent support and hanger is: "Room number or partition number, running Water number/support hanger function"; the coding name of the co-frame support and hanger is as follows: "room number or partition number:. Running number + capital english letter/support hanger function", english letters are named sequentially from a.
The naming rules of the nuclear island pipeline support and hanger comprise an independent support and hanger naming principle and a common support and hanger naming rule, wherein the independent support and hanger naming rule is 'room number, serial number/support and hanger function', such as K402.010/GL, wherein K402 is a K402 room of a nuclear fuel plant, 010 is a serial number, GL represents that the function executed by the support and hanger is a guiding sliding function; the common support hanger naming rule is room number, running water number and capital English letter/hanger function; for example, the co-frame cradles K402.602A/GL and K402.602B/GL are named characterized by the same room number as the serial number, with different capital english letters added sequentially after the serial number to illustrate the distinction, the english letters being named sequentially from a.
Further, according to the hanger coding rule, in combination with the hanger model, an automatic hanger coding program is compiled, including:
classifying the support hangers and determining the serial number range of the support hanger number of the corresponding category by analyzing the hierarchy of the support hanger model and the coding rule of the support hanger of the corresponding category, wherein the category comprises a process pipeline, a fire-fighting pipeline and a special pipeline;
based on the initial coding of the support hanger, the partition number or the room number of the position of the support hanger and the corresponding type identification of the support hanger are identified, and according to the coding rule of each type of support hanger, an automatic support hanger coding program for uniformly naming each data structure level of the support hanger of all types in the partition or the room is compiled, wherein the serial numbers of the support hanger numbers of the corresponding types are selected in sequence from the serial number range corresponding to the serial numbers.
As shown in fig. 2, fig. 2 is a schematic diagram of a PDMS three-dimensional support and hanger model hierarchy applied in this embodiment, including item 1, design system 2, equipment ZONE3, support ZONE4, pipe ZONE5, support and hanger initial coding 6, support and hanger unified automatic coding 7, and a support and hanger automatic coding program for unified naming is compiled at each data structure hierarchy of support and hanger of all processes, fire-fighting pipes and special pipes in a partition or room, so that support and hanger naming can be unified at one time, and the method is convenient and quick, and no error occurs.
Further, the process pipeline support hanger coding serial number range is 001-799, and the fire-fighting pipeline support hanger coding serial number range is 800-899; the special pipeline support and hanger frame has a coding serial number range of 900-999.
Further, the calling the automatic coding program of the support and hanger to generate the support and hanger code meeting the requirements comprises the following steps:
selecting a support and hanger structure level to be named automatically by placing a support and hanger automatic coding program on a designated file directory level;
the automatic coding program of the support and hanger is operated by inputting a calling command in a specified format in a command window;
and automatically constructing an association code after the automatic encoding program of the support and hanger is operated through the associated data logic relationship, and realizing self-defined naming of all support and hanger in the selected support and hanger hierarchy and report generation.
As shown in fig. 3, fig. 3 is a flowchart of a method for automatically coding a hanger according to another embodiment of the present invention, including:
step S1: determining the setting position and the function of the support and hanger;
step S2: modeling and initial coding of the support and hanger;
step S3: analyzing the data structure hierarchy and coding rules of the model;
step S4: programming an automatic coding program by using a PML language;
step S5: calling an automatic coding program;
step S6: and generating a final coding of the support and the hanger.
After the setting position and function of the support and hanger are determined, a support and hanger model is built and initial coding is carried out, the structural characteristics of the support and hanger model data structure hierarchy are specifically analyzed, coding rules of the support and hanger of specific categories are combined, on the basis of analysis and summarization, a support and hanger automatic coding program is compiled by applying a PML language, and the support and hanger automatic coding program is called in the PML language to generate a support and hanger final code meeting the rule requirements.
Realizing automatic coding according to naming rules by a support and hanger automatic coding program, realizing unified recoding of each data structure level of support and hanger of a nuclear island process, fire protection and special system and generating a coding report, wherein the unified modified support and hanger coding meets the nuclear power design drawing requirement; and can guarantee that the gallows naming is accurate standard, can effectively acquire gallows room position, gallows function information through discernment gallows name, the automatic coding of gallows that obtains through this embodiment can realize three-dimensional gallows model automatic check, use the purpose that retrieves conveniently.
As shown in fig. 4, another embodiment of the present invention provides a system for automatically coding a pipe hanger, comprising:
the modeling unit 10 is used for carrying out support and hanger modeling to obtain a support and hanger model; and
carrying out initial coding on the support and hanger;
the programming unit 20 is used for analyzing the coding rules of the support and hanger, and combining the support and hanger model according to the coding rules of the support and hanger to compile an automatic coding program of the support and hanger;
and the coding unit 30 is used for calling the automatic coding program of the support and hanger to generate the support and hanger code meeting the requirements.
Further, the modeling unit 10 is specifically configured to:
according to the pipeline arrangement requirement, the setting position of the support and hanger on the pipeline and the function to be realized are determined, and a three-dimensional model component is selected for support and hanger modeling according to the function to be realized, related pipeline information parameters and pipeline stress parameters at the determined position.
Further, the hanger includes an independent hanger and a co-hanger, and the hanger coding rule parsed by the programming unit 20 includes:
the code name of the independent support and hanger is: "Room number or partition number, running Water number/support hanger function"; the coding name of the co-frame support and hanger is as follows: "room number or partition number:. Running number + capital english letter/support hanger function", english letters are named sequentially from a.
Further, the programming unit 20 is specifically configured to:
classifying the support hangers by analyzing the support hanger model layers and coding rules of the support hangers of the corresponding categories, and determining the serial number range of the support hanger of the corresponding categories, wherein the categories comprise process pipelines, fire-fighting pipelines and special pipelines; the method comprises the steps of,
based on the initial coding of the hanger, the partition number or the room number of the hanger and the corresponding type identifier of the hanger are identified, and according to the coding rule of each type of hanger, an automatic hanger coding program for uniformly naming each data structure level of the hanger in the partition or the room is compiled, wherein the serial numbers of the hanger numbers in the corresponding types are sequentially selected from the serial number range corresponding to the serial numbers.
Further, the coding unit is specifically configured to:
selecting a support and hanger structure level to be named automatically by placing a support and hanger automatic coding program on a designated file directory level; and, in addition, the processing unit,
the automatic coding program of the support and hanger is operated by inputting a calling command in a specified format in a command window; the method comprises the steps of,
and automatically constructing an association code after the automatic encoding program of the support and hanger is operated through the associated data logic relationship, so that the self-defined naming of all support and hanger in the selected support and hanger hierarchy and report generation are realized.
For the embodiment of the present system, since it basically corresponds to the embodiment of the method, the description is relatively simple, and the relevant points refer to the corresponding process in the foregoing embodiment of the method, which is not repeated herein.
In addition, the embodiment of the invention also provides a computer device, which comprises a memory and a processor, wherein the memory stores a computer program, and the processor executes the various possible methods when the processor runs the computer program stored in the memory.
In addition, the embodiment of the invention further provides a computer-readable storage medium, wherein computer-executable instructions are stored in the computer-readable storage medium, and when at least one processor of the user equipment executes the computer-executable instructions, the user equipment executes the various possible methods.
Among them, computer-readable media include computer storage media and communication media including any medium that facilitates transfer of a computer program from one place to another. A storage media may be any available media that can be accessed by a general purpose or special purpose computer. An exemplary storage medium is coupled to the processor such the processor can read information from, and write information to, the storage medium. In the alternative, the storage medium may be integral to the processor. The processor and the storage medium may reside in an ASIC (Application Specific Integrated Circuit ). In addition, the ASIC may reside in a user device. The processor and the storage medium may reside as discrete components in a communication device.
It is to be understood that the above embodiments are merely illustrative of the application of the principles of the present invention, but not in limitation thereof. Various modifications and improvements may be made by those skilled in the art without departing from the spirit and substance of the invention, and are also considered to be within the scope of the invention.

Claims (6)

1. A method for automatically coding a pipe support and hanger, comprising:
modeling a support and hanger to obtain a support and hanger model;
the method comprises the steps of carrying out initial coding on the support hangers, wherein the initial coding is obtained by respectively coding each support hanger in the process of establishing a support hanger model, and comprises the positions of the support hangers and functional identifiers;
analyzing the initial code to analyze a support and hanger coding rule, and combining the support and hanger model according to the support and hanger coding rule to compile a support and hanger automatic coding program;
calling the automatic coding program of the support and hanger to generate a support and hanger code meeting the requirements;
the modeling of the support and the hanger comprises the following steps:
according to the pipeline arrangement requirement, determining the setting position of a support and a hanger on a pipeline and the function to be realized, and selecting a three-dimensional model component to carry out support and hanger modeling at the determined position according to the function to be realized, related pipeline information parameters and pipeline stress parameters;
according to the support and hanger coding rules, combining the support and hanger model, programming an automatic support and hanger coding program, comprising the following steps:
classifying the support hangers and determining the serial number range of the support hanger number of the corresponding category by analyzing the hierarchy of the support hanger model and the coding rule of the support hanger of the corresponding category, wherein the category comprises a process pipeline, a fire-fighting pipeline and a special pipeline;
based on the initial coding of the support hanger, the partition number or the room number of the position of the support hanger and the corresponding type identification of the support hanger are identified, and according to the coding rule of each type of support hanger, an automatic support hanger coding program for uniformly naming each data structure level of the support hanger of all types in the partition or the room is compiled, wherein the serial numbers of the support hanger numbers of the corresponding types are selected in sequence from the serial number range corresponding to the serial numbers.
2. The method of claim 1, wherein the hangers comprise independent hangers and co-hangers, the hanger coding rules comprising:
the code name of the independent support and hanger is: "Room number or partition number, running Water number/support hanger function"; the coding name of the co-frame support and hanger is as follows: "room number or partition number:. Running number + capital english letter/support hanger function", english letters are named sequentially from a.
3. The method of claim 1 or 2, wherein said invoking the hanger auto-code program generates a satisfactory hanger code, comprising:
selecting a support and hanger structure level to be named automatically by placing a support and hanger automatic coding program on a designated file directory level;
the automatic coding program of the support and hanger is operated by inputting a calling command in a specified format in a command window;
and automatically constructing an association code after the automatic encoding program of the support and hanger is operated through the associated data logic relationship, and realizing self-defined naming of all support and hanger in the selected support and hanger hierarchy and report generation.
4. A system for automatically encoding a conduit hanger, comprising:
the modeling unit is used for modeling the support and hanger to obtain a support and hanger model; and
the method comprises the steps of carrying out initial coding on the support hangers, wherein the initial coding is obtained by respectively coding each support hanger in the process of establishing a support hanger model, and comprises the positions of the support hangers and functional identifiers;
the programming unit is used for analyzing the initial code to analyze a hanger coding rule, and combining the hanger model according to the hanger coding rule to compile an automatic hanger coding program;
the coding unit is used for calling the automatic coding program of the support and hanger and generating a support and hanger code meeting the requirements;
the modeling unit is specifically configured to: according to the pipeline arrangement requirement, determining the setting position of a support and a hanger on a pipeline and the function to be realized, and selecting a three-dimensional model component to carry out support and hanger modeling at the determined position according to the function to be realized, related pipeline information parameters and pipeline stress parameters;
the programming unit is specifically configured to: classifying the support hangers by analyzing the support hanger model layers and coding rules of the support hangers of the corresponding categories, and determining the serial number range of the support hanger of the corresponding categories, wherein the categories comprise process pipelines, fire-fighting pipelines and special pipelines; the method comprises the steps of,
based on the initial coding of the hanger, the partition number or the room number of the hanger and the corresponding type identifier of the hanger are identified, and according to the coding rule of each type of hanger, an automatic hanger coding program for uniformly naming each data structure level of the hanger in the partition or the room is compiled, wherein the serial numbers of the hanger numbers in the corresponding types are sequentially selected from the serial number range corresponding to the serial numbers.
5. The system of claim 4, wherein the hangers comprise independent hangers and co-hangers, the hanger coding rules parsed by the programming unit comprising:
the code name of the independent support and hanger is: "Room number or partition number, running Water number/support hanger function"; the coding name of the co-frame support and hanger is as follows: "room number or partition number:. Running number + capital english letter/support hanger function", english letters are named sequentially from a.
6. The system according to claim 4 or 5, characterized in that the coding unit is specifically configured to:
selecting a support and hanger structure level to be named automatically by placing a support and hanger automatic coding program on a designated file directory level; and, in addition, the processing unit,
the automatic coding program of the support and hanger is operated by inputting a calling command in a specified format in a command window; the method comprises the steps of,
and automatically constructing an association code after the automatic encoding program of the support and hanger is operated through the associated data logic relationship, so that the self-defined naming of all support and hanger in the selected support and hanger hierarchy and report generation are realized.
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CN113505413B (en) * 2021-06-04 2024-02-09 中国交通信息科技集团有限公司 BIM model multi-scene automatic coding method
CN117473974B (en) * 2023-12-26 2024-04-16 中冶南方工程技术有限公司 Multi-type intelligent report generation method based on nonstandard special-shaped pipeline model

Citations (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102346797A (en) * 2011-09-20 2012-02-08 北京伟熙华高新科技有限公司 Three-dimensional design method and system for nuclear powder support hanger
CN103020285A (en) * 2012-12-27 2013-04-03 北京仿真中心 Cross-database automatic coding method supporting multifield combination and system
CN103729191A (en) * 2014-01-06 2014-04-16 中国南方电网有限责任公司 Code generating method and system capable of being flexibly adjusted
KR20140127495A (en) * 2013-04-25 2014-11-04 현대중공업 주식회사 Automation design method for supporter numbering
CN106404069A (en) * 2016-10-25 2017-02-15 李化 Pipeline support part intelligence online measurement system
CN106446409A (en) * 2016-09-23 2017-02-22 四川电力设计咨询有限责任公司 System and method for design of pipe support hanger
CN106933560A (en) * 2015-12-30 2017-07-07 远光软件股份有限公司 A kind of automatic coding and device
CN107679157A (en) * 2017-09-27 2018-02-09 杨建民 Automatic coding and system
CN110083963A (en) * 2019-05-07 2019-08-02 中建安装集团有限公司 A kind of Hanger Design method based on BIM electromechanical model
CN110222050A (en) * 2019-05-15 2019-09-10 中广核工程有限公司 Method and system is transferred for nuclear power plant's three-dimensional database instrument association items
CN110543530A (en) * 2019-09-06 2019-12-06 中国电建集团昆明勘测设计研究院有限公司 Method for realizing rapid coding of pumped storage power station model component by utilizing Dynamo
CN111475887A (en) * 2019-09-27 2020-07-31 中国舰船研究设计中心 Three-dimensional model-based ship pipeline support and hanger rapid statistics and plotting method

Patent Citations (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102346797A (en) * 2011-09-20 2012-02-08 北京伟熙华高新科技有限公司 Three-dimensional design method and system for nuclear powder support hanger
CN103020285A (en) * 2012-12-27 2013-04-03 北京仿真中心 Cross-database automatic coding method supporting multifield combination and system
KR20140127495A (en) * 2013-04-25 2014-11-04 현대중공업 주식회사 Automation design method for supporter numbering
CN103729191A (en) * 2014-01-06 2014-04-16 中国南方电网有限责任公司 Code generating method and system capable of being flexibly adjusted
CN106933560A (en) * 2015-12-30 2017-07-07 远光软件股份有限公司 A kind of automatic coding and device
CN106446409A (en) * 2016-09-23 2017-02-22 四川电力设计咨询有限责任公司 System and method for design of pipe support hanger
CN106404069A (en) * 2016-10-25 2017-02-15 李化 Pipeline support part intelligence online measurement system
CN107679157A (en) * 2017-09-27 2018-02-09 杨建民 Automatic coding and system
CN110083963A (en) * 2019-05-07 2019-08-02 中建安装集团有限公司 A kind of Hanger Design method based on BIM electromechanical model
CN110222050A (en) * 2019-05-15 2019-09-10 中广核工程有限公司 Method and system is transferred for nuclear power plant's three-dimensional database instrument association items
CN110543530A (en) * 2019-09-06 2019-12-06 中国电建集团昆明勘测设计研究院有限公司 Method for realizing rapid coding of pumped storage power station model component by utilizing Dynamo
CN111475887A (en) * 2019-09-27 2020-07-31 中国舰船研究设计中心 Three-dimensional model-based ship pipeline support and hanger rapid statistics and plotting method

Non-Patent Citations (2)

* Cited by examiner, † Cited by third party
Title
基于Creo的支吊架模型数据库设计;武相 等;科技视界;第43-45页 *
管道支吊架及埋件智能化设计方法分析;蒋贵丰 等;内蒙古电力技术(第5期);第91-95页 *

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