CN110427647A - Technique synergy emulation method, electronic device and storage medium - Google Patents

Technique synergy emulation method, electronic device and storage medium Download PDF

Info

Publication number
CN110427647A
CN110427647A CN201910570930.3A CN201910570930A CN110427647A CN 110427647 A CN110427647 A CN 110427647A CN 201910570930 A CN201910570930 A CN 201910570930A CN 110427647 A CN110427647 A CN 110427647A
Authority
CN
China
Prior art keywords
body section
design
group
vertical
technique
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN201910570930.3A
Other languages
Chinese (zh)
Other versions
CN110427647B (en
Inventor
朱明华
单小芬
蔡乾亚
贾成军
雷洪涛
孙昌风和
杨骏
王杰
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Jiangnan Shipyard Group Co Ltd
Original Assignee
Jiangnan Shipyard Group Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Jiangnan Shipyard Group Co Ltd filed Critical Jiangnan Shipyard Group Co Ltd
Priority to CN201910570930.3A priority Critical patent/CN110427647B/en
Publication of CN110427647A publication Critical patent/CN110427647A/en
Application granted granted Critical
Publication of CN110427647B publication Critical patent/CN110427647B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P90/00Enabling technologies with a potential contribution to greenhouse gas [GHG] emissions mitigation
    • Y02P90/30Computing systems specially adapted for manufacturing

Landscapes

  • Management, Administration, Business Operations System, And Electronic Commerce (AREA)

Abstract

The application provides a kind of technique synergy emulation method, electronic device and storage medium, is applied to body section technique, comprising: combs to obtain body section classification technique design knowledge to body section technological design knowledge classification;According to body section classification technique design knowledge creation of knowledge library;Reconstructed models are obtained by the recombination of body section and in node addition attribute information;Reconstructed models are associated with the construction process of planning of stages process step is determined, by the recombination collaborative design model information in conjunction with the planning of the body section processing step, design body section group founds assemble sequence;Whether eligible assess the vertical emulation assemble sequence of the body section group;If so, the vertical emulation assemble sequence of body section group carries out the design of practical set process.It solves the problems, such as not to be able to satisfy that interoperability requirement, process efficiency are low, lack the work optimization means of science and can not carry out three-dimensional process, allows to achieve the purpose that collaborative simulation, improve process efficiency.

Description

Technique synergy emulation method, electronic device and storage medium
Technical field
This application involves a kind of Ship Design field, more particularly to a kind of technique synergy emulation method, electronic device and Storage medium.
Background technique
Ship development process is that the division of labor for a long time is closed between an overall institute, general assembly factory and each system and equipment development unit The synchronous process of work, information interchange communication, work coordination.Since ship has, building technology is complicated, quality requirement is stringent, builds The features such as delivery cycle is short, procedure links are more is made, which dictates that leading reality that also will be American-European to mark in China's ship development mode It tramples, using advanced digitlization building technology, adapts to new requirement, to ensure smoothly completing for new model product task, support Naval strategy Transformation Development.
Shipbuilding portion link in its development process in China's has realized digitlization, but not yet get through Design of digital with The integrated process of construction.It is in particular in:
(1) it is not able to satisfy Cooperative process design requirement
Overall at present the design data with general assembly factory two units directly can not be transmitted and be inherited, and cannot be made full use of Three-dimensional CAD data is swum, technological design cannot be completely eliminated and convert the inconsistency caused with product design data, it is difficult to be realized Inheritance, normalization, standardization and the optimization of technological design.
(2) technological design low efficiency
Conventional two-dimensional technological design is abstracted three-dimensional space, design welding equipment sequence by technological design personnel in brains, finally Stated with plane (two dimension) mode, design, build between three-dimensional time-consuming and laborious with two-dimensional transformations, inefficiency.
(3) lack the process design optimization means of science
Due to prior art design by two dimension statement based on want in a manner of, technological design change, optimizing cycle are long, are unfavorable for mould The quick processing of change and the design alteration of type, scheme superiority and inferiority rely on personal experience, lack qualitative and quantitative analysis means, cause Technological design level varies with each individual, and increases construction period and construction cost.
(4) three-dimensional process design verification can not be carried out
Two-dimensional process design environment do not have three-dimensional process verifying ability, cause assembly in whether interfere, assemble sequence A series of problems, such as rationally whether, whether tooling device meets needs, whether operating space is open could expose in the construction phase Out.Any one link goes wrong, and can all influence the progress and quality developed.
Apply for content
In view of the foregoing deficiencies of prior art, the application be designed to provide a kind of technique synergy emulation method, Electronic device and storage medium are not able to satisfy Cooperative process design requirement, technological design efficiency for solving in the prior art Process design optimization means that are low, lacking science and the problem of three-dimensional process design verification can not be carried out.
In order to achieve the above objects and other related objects, the application provides a kind of technique synergy emulation method, is applied to ship Body stages process, comprising: combed according to body section technological design knowledge classification, obtain body section classification technological design Knowledge;Body section technological design knowledge base is created according to body section classification technique design knowledge;By collaborative design mould Type carries out the recombination of corresponding body section, and obtains recombination collaborative design model in segmented node addition attribute information wherein; It is the recombination collaborative design model is associated with the construction process of the body section, wherein the construction process determines ship The planning of body stages process step;By the recombination collaborative design model information in conjunction with the rule of the body section processing step It draws, and assemble sequence is stood based on body section Process knowledge database design body section group;According to the designed hull Segmentation group founds assemble sequence and forms the vertical emulation assemble sequence of body section group;If so, according to qualified body section group Vertical emulation assemble sequence, and the vertical practical set process of body section group is carried out based on the body section Process knowledge database Design.
In the embodiment of the application, is combed according to body section technological design knowledge classification, obtain body section Classification technique design knowledge, comprising: divide the body section technological design knowledge according to the vertical type of flow type and group is built Class combs to obtain the body section classification technique design knowledge.
In the embodiment of the application, body section technique is created according to body section classification technique design knowledge Design knowledge base, comprising: by body section technological design knowledge described in body section classification technique design knowledge typing Library;The body section classification technique design knowledge of typing is carried out in body section classification technique design knowledge base Multilayer structured storage.
In the embodiment of the application, the construction flow type includes: that group is vertical, middle group vertical, big group is vertical.
In the embodiment of the application, the recombination collaborative design model information is walked in conjunction with the body section technique Rapid planning, and assemble sequence is stood based on body section Process knowledge database design body section group, comprising: it will be described heavy The information of group collaborative design model combines planned body section processing step;The retrieval body section classification technique Design knowledge base simultaneously matches the body section classification technique design knowledge, carries out the mathematics that the vertical assemble sequence of group automatically generates Modeling and calculating, and it is associated with the corresponding recombination collaborative design model.
In the embodiment of the application, assemble sequence is stood according to the designed body section group and forms body section The vertical emulation assemble sequence of group, comprising: it is automatic to the progress of hull assembly path to found assemble sequence according to the body section group Change design, and forms Three-Dimensional Dynamic assembling process.
In the embodiment of the application, whether eligible, packet if assessing the vertical emulation assemble sequence of the body section group It includes: judging the body section group stands the whether feasible of the assemble sequence and assembly path for emulating assemble sequence.
In the embodiment of the application, whether eligible the vertical emulation assemble sequence of the body section group is assessed;If It is no, according to the planning of the body section processing step in conjunction with the recombination collaborative design model information, and it is based on the hull Stages process knowledge-base design body section group founds assemble sequence;Assemble sequence is found according to the designed body section group Form the vertical emulation assemble sequence of body section group;Whether eligible assess the vertical emulation assemble sequence of the body section group;If It is then according to the vertical emulation assemble sequence of qualified body section group, and to be carried out based on the body section Process knowledge database The design of the vertical practical set process of body section group.
In order to achieve the above objects and other related objects, the application provides a kind of electronic device, comprising: memory is used for Store computer program;Processor runs the computer program, to execute the technique synergy emulation method.
In order to achieve the above objects and other related objects, the application provides a kind of computer readable storage medium, is stored with Computer program, the computer program realize the technique synergy emulation method when being run.
As described above, technique synergy emulation method, electronic device and the storage medium of the application, have below beneficial to effect Fruit: the process design optimization means for solving and not being able to satisfy Cooperative process design requirement, technological design low efficiency, lack science And the problem of three-dimensional process design verification can not be carried out, allow to achieve the purpose that collaborative simulation, improves technique effect Rate.
Detailed description of the invention
Fig. 1 is shown as the flow diagram of the technique collaborative simulation side in one embodiment of the application.
Fig. 2 is shown as the body section technological design knowledge base interfacial structure schematic diagram in one embodiment of the application.
Fig. 3 is shown as the structural schematic diagram of the electronic device in one embodiment of the application.
Component label instructions
30 electronic devices
31 memories
32 processors
S11~S18 step
Specific embodiment
Illustrate presently filed embodiment below by way of specific specific example, those skilled in the art can be by this specification Disclosed content understands other advantages and effect of the application easily.The application can also be by addition different specific Embodiment is embodied or practiced, and the various details in this specification can also not carried on the back based on different viewpoints and application From carrying out various modifications or alterations under spirit herein.It should be noted that in the absence of conflict, following embodiment and Feature in embodiment can be combined with each other.
It should be noted that with reference to attached drawing, attached drawing describes several embodiments of the application in described below.It should Understand, other embodiments also can be used, and mechanical group can be carried out without departing substantially from spirit and scope At, structure, electrical and operational change.Following detailed description should not be considered limiting, and the application The range of embodiment only limited by the claims for the patent announced.Term used herein is merely to description is special Determine embodiment, and is not intended to limit the application.The term of space correlation, for example, "upper", "lower", "left", "right", " following ", " lower section ", " " lower part ", " top ", " top " etc. can be used in the text in order to an element or spy shown in explanatory diagram The relationship of sign and another elements or features.
Furthermore as used in herein, singular " one ", "one" and "the" are intended to also include plural number shape Formula, unless there is opposite instruction in context.It will be further understood that term "comprising", " comprising " show that there are the spies Sign, operation, element, component, project, type, and/or group, but it is not excluded for one or more other features, operation, element, group Presence, appearance or the addition of part, project, type, and/or group.Term "or" and "and/or" used herein are interpreted to wrap Including property, or mean any one or any combination.Therefore, " A, B or C " or " A, B and/or C " means " following any It is a: A;B;C;A and B;A and C;B and C;A, B and C ".Only when element, functions or operations combination under certain modes inherently When mutually exclusive, it just will appear the exception of this definition.
Shipbuilding portion link in its development process in China's has realized digitlization, but not yet get through Design of digital with The integrated process of construction.Overall at present the design data with general assembly factory two units directly can not be transmitted and be inherited, cannot Make full use of upstream three-dimensional CAD data, cannot completely eliminate technological design conversion cause it is inconsistent with product design data Property, it is difficult to realize inheritance, normalization, standardization and the optimization of technological design.Conventional two-dimensional technological design is by technological design Personnel in brains be abstracted three-dimensional space, design welding equipment sequence, finally stated with plane (two dimension) mode, design, build between Three-dimensional time-consuming and laborious with two-dimensional transformations, inefficiency.Due to prior art design by two dimension statement based on want in a manner of, technique is set Meter change, optimizing cycle are long, are unfavorable for the quick processing of change and the design alteration of model, and scheme superiority and inferiority relies on personal experience, Lack qualitative and quantitative analysis means, causes technological design level to vary with each individual, increase construction period and construction cost.Two dimension Process design environment do not have three-dimensional process verifying ability, cause assembly in whether interfere, assemble sequence whether rationally, work A series of problems, such as whether installing is standby meets needs, whether operating space is open can just be exposed in the construction phase.Any one A link goes wrong, and can all influence the progress and quality developed.
With regard to an urgent demand, we are bold in innovation on development mode for this, improve designing quality, Curve guide impeller mode, realize skill Art progress.Essential part of the hull as ship, segmentation be form hull intermediate products, be according to Ship Structure feature, Hull classifying rationally is that several form the structure of independent assembly unit by shipbuilding condition and construction construction process requirement Section, is made of a series of plate and skeleton, compared with other welding structures, has amount of parts more, complicated Feature.
Therefore, the application provides a kind of technique synergy emulation method, is applied to body section technique, solves and be not able to satisfy Cooperative process design requirement, technological design low efficiency lack scientific process design optimization means and can not carry out three-dimensional work The problem of skill design verification, allows to achieve the purpose that collaborative simulation, improves process efficiency.
The hull is the essential part of ship, can be divided into main part and superstructure part.Main part refers generally to Upper deck part below, it is the hollow body with specific shape surrounded by shell (hull bottom and shipboard) and upper deck, is Guarantee that ship has the key component of required buoyancy, seagoing capacity and Hull Strength.The hull is generally used for arrangement power dress It sets, load cargo, storage fuel oil and fresh water, and arrange other various cabins.
The body section technique is that shipyard builds hull according to Ship Structure feature and shipbuilding condition, shipbuilding Hull is divided into several segmentations, is first manufactured respectively by technique etc., and small fragments are assembled into large-scale segmentation or block, Finally successively close up into complete hull.According to Ship Structure feature, shipbuilding condition and construction process requirement is built, it will Hull classifying rationally is that several form the Ship Structure section of independent assembly unit.Flat section, curved surface point can be divided by shape Section and three dimensional unit etc.;Deck panel, topside segmentation, bulkhead segmentation, bottom section and head and the tail segmentation etc. can be divided by position. Flat section is due to relatively simple, and some factories have been completed flat section assembly line, to improve production efficiency.Curved section compared with Complexity is usually built on moulding bed, but most of be welded can be made all to carry out under downhand welding state, improved by sectional turn-over The quality and efficiency of assembly, welding.It can be installed in advance after being segmented completion structure itself to adapt to the requirement of advance fitting-out technique Various equipment, pipeline, cable, outfititem in segmentation etc. to form a more complete assembly unit, then send to carry out ship Platform assembly, to shorten shipbuilding period.In general, the division of body section and the production specifications in shipyard and technique are selected Select very big relationship
The described method includes:
It is combed according to body section technological design knowledge classification, obtains body section classification technique design knowledge;
Body section technological design knowledge base is created according to body section classification technique design knowledge;
Collaborative design model is carried out to the recombination of corresponding body section, and is obtained in segmented node addition attribute information wherein To recombination collaborative design model;
The construction process of the body section is associated with the recombination collaborative design model, wherein the construction process Determine the planning of body section processing step;
According to the planning of the body section processing step in conjunction with the recombination collaborative design model information, and based on described Body section Process knowledge database designs body section group and founds assemble sequence;
Assemble sequence, which is found, according to the designed body section group forms the vertical emulation assemble sequence of body section group;
Whether eligible assess the vertical emulation assemble sequence of the body section group;
If so, according to the vertical emulation assemble sequence of qualified body section group, and it is based on the body section technique Knowledge base carries out the design of the vertical practical set process of body section group.
It is below reference with attached drawing 1, obtains embodiment for the application and be described in detail, so as to herein described technology neck The technical staff in domain can easily implement.The application can be embodied with a variety of different shapes, however it is not limited to reality described herein as Apply example.
As shown in Figure 1, showing technique synergy emulation method flow diagram in an embodiment, that is, pass through following steps;
Step S11: combing according to body section technological design knowledge classification, obtains body section classification technological design and knows Know.
Optionally, the body section technological design knowledge includes the case where the zero of each position of segmentation and the hull Component information and body section are for information about;To the body section technological design knowledge according to different classification situations into Row combing classification obtains body section classification technique design knowledge;For example, by the body section process knowledge by construction Process is divided into that group is vertical, middle group vertical, big organizes vertical assembly technology;It is vertical vertical by group can to continue group is vertical, middle group vertical, big group Type is finely divided to obtain the body section classification technique design knowledge again.
Step S12: body section technological design knowledge base is created according to body section classification technique design knowledge.
Optionally, it is set according to the body section classification technique that body section technological design knowledge classification combs Knowledge is counted to create body section technological design knowledge base.
The body section technological design knowledge base is knowledge base related with the body section technological design knowledge, institute Stating knowledge base is that KBS Knowledge Based System has intelligence.Not all program with intelligence is owned by knowledge base, only KBS Knowledge Based System just possesses knowledge base.Many application programs all utilize knowledge, wherein some has also achieved very high water Flat, still, the system that these application programs may be not based on knowledge, they also do not possess knowledge base.It is general to apply journey Difference between sequence and KBS Knowledge Based System is: general application program is that the knowledge of problem solving is impliedly encoded In a program, and KBS Knowledge Based System then will solve knowledge and explicitly express the problem of application field, and individually form one A relatively independent program entity.Establish knowledge base, original information and knowledge must be done it is primary large-scale collect and It arranges, carries out classification preservation according to certain method, and provide corresponding retrieval method.By handling in this way, great Liang Yin Encodedization containing knowledge and digitlization, information and knowledge just become ordering from original mix.Thus facilitate letter The retrieval of breath and knowledge, and lay the foundation for effective use.
Step S13: collaborative design model is carried out to the recombination of corresponding body section, and adds and belongs in segmented node wherein Property information obtain recombination collaborative design model.
Optionally, the recombination that collaborative design model is carried out to corresponding body section, specifically, being exactly by the collaborative design Model is split or is combined according to different units;For example, as unit of the collaborative design model being segmented by shipyard It is combined or splits.And recombination collaborative design model is obtained in segmented node addition attribute information wherein, specifically, just It is to add the information of different segmented nodes in the collaborative design model and carry out assignment to obtain recombination collaborative design mould Type;For example, in the segmented node addition number-of-fragments of the collaborative design model, ship type, big organize vertical type, whether wrap The attribute informations such as grillage containing curved surface, mode of construction and assignment;Wherein mode of construction include just make method, it is counter make method, side (sleeping) is made Method.
Step S14: the recombination collaborative design model is associated with the construction process of the body section, wherein institute It states and builds the planning that process determines body section processing step.
Optionally, the recombination collaborative design model is associated with the construction process of the body section, wherein described Build the planning that process determines body section processing step.Specifically, the construction process is that shipyard is made according to actual needs Fixed construction policy determines the planning of body section processing step, and the association is will to recombinate collaborative design model interaction not With step manufacturing process.For example, body section is vertical by group, the vertical 3 construction processes of middle group vertical, big group carry out technique Decompose, body section may include the group of multiple several amount and type it is vertical, middle group it is vertical, can also be zero, by body section collaborative design Model is split, association to group is stood, middle group vertical, big organize founds technique, and press body section components Naming conventions to body section Components are named.
Step S15: the planning by the recombination collaborative design model information in conjunction with the body section processing step, and base Assemble sequence is found in body section Process knowledge database design body section group.
It optionally, is that shipyard comes according to actual needs in conjunction with the construction process by the recombination collaborative design model information The construction policy of formulation determines the planning of body section processing step, specifically, the set of segmentation collaborative design model information Including organizing the information such as the vertical coding of vertical type, group, assembly posture, component weight center of gravity, outer dimension.And it is based on the hull Content in stages process knowledge base founds assemble sequence to design body section group.
Step S16: assemble sequence is stood according to the designed body section group and forms the vertical emulation assembly of body section group Sequentially.
Optionally, according to the planning of the body section processing step in conjunction with the recombination collaborative design model information, and Assemble sequence is found based on body section Process knowledge database design body section group, according to the designed body section The vertical assemble sequence of group is designed hull assembly, obtains the vertical emulation assemble sequence of body section group.
Step S17: whether eligible the vertical emulation assemble sequence of the body section group is assessed.
Optionally, the emulation dynamic process that the step of emulation assemble sequence vertical to the body section group generates fills The conditions such as sequence ligand, the feasibility of assembly path and reasonability are assessed, and judge whether to meet.
Step S18: if so, according to the vertical emulation assemble sequence of qualified body section group, and it is based on the hull Stages process knowledge base carries out the design of the vertical practical set process of body section group.
Optionally, the emulation dynamic process that the step of emulation assemble sequence vertical to the body section group generates fills The conditions such as sequence ligand, the feasibility of assembly path and reasonability are assessed, and judgement is in the case where meeting, then basis meets The vertical emulation assemble sequence of the body section group of condition, and body section group is carried out based on the body section Process knowledge database and is stood Practical set process design, specifically, from the body section Process knowledge database retrieval, matching body section group Vertical emulation assemble sequence, automatic progress process step design vertical to the group of body section, and the collaborative design model of vertical components will be organized Association to group founds process;Manual creation, adjustment group is supported to found process simultaneously, it should be noted that it includes: big group that described group vertical It is vertical, middle group it is vertical and group is vertical.
Optionally, it is combed according to body section technological design knowledge classification, obtains body section classification technological design and know Know, comprising: by the body section technological design knowledge according to build flow type and organize vertical classification of type comb to obtain it is described Body section classification technique design knowledge.Specifically, the step of combing body section technological design knowledge, enable the hull point Section by build process be divided into group it is vertical, it is middle group vertical, big organize vertical assembly technology, and group is vertical, middle group vertical, big group is vertical presses group Vertical type is finely divided again, and the group for combing each subdivision type founds process step design knowledge.
The vertical subdivision type combing of the group, i.e., by the group it is vertical be subdivided into floor, crossbeam, side stringer, horizontal girder, Stringers, vertical web member combine the vertical type of the vertical subdivision such as bone and profile, bracket, tripping bracket group;
Described middle group vertical subdivision type combing, i.e., stand described middle group and be subdivided into deck, Outer Bottom Plating, side plate, watertight Vertical type is organized in the subdivision such as bulkhead, topside tank inclined bottom plate, bottom edge water tank oblique top plate, inner hull, inner bottom plating, platform;
Described big group vertical subdivision type combing, i.e., by described big group it is vertical be subdivided into deck, topside, the turn of the bilge, bottom, bulkhead, Fore body, big group of stern equal segments vertical subdivision type;
Group vertical process step design knowledge combing, that is, ship belonging to the group for combing each subdivision type is vertical, middle group vertical, big group is vertical Whether type, coding have curved surface grillage, the assembly attribute informations such as posture, and the group of each subdivision type is vertical, middle group it is vertical, The attribute informations such as the vertical process title of big group, coding of parts and components, procedure calls and process in parallel
Optionally, body section technological design knowledge base, packet are created according to body section classification technique design knowledge It includes: by body section technological design knowledge base described in body section classification technique design knowledge typing;It will be described in typing Body section classifies technique design knowledge in the multilayer structured storage of body section technological design knowledge base progress.
By body section technological design knowledge base described in body section classification technique design knowledge typing, specifically, The body section technological design knowledge base is entered into for input with the body section classification technique design knowledge of combing, and Each hierarchical structure and attribute information are inside created, body section technological design knowledge base in one embodiment is illustrated in figure 2 Interfacial structure figure, interface left group found technique, middle group of vertical technique and the big structure branch for organizing vertical technique and open respective page It can show its attribute information;Wherein in the interface display of right side group it is vertical in the process title of side plate, coding of parts and components and The information such as procedure calls.
The body section classification technique design knowledge of typing is carried out in the body section technological design knowledge base Multilayer structured storage, the structuring storage are really applied to the principle of tree file system in single file, make Obtaining single file also can include " subdirectory " as file system, and " subdirectory " can also include deeper " specific item Record ", each " catalogue " can contain multiple files, and the content for needing multiple files to store originally is protected by tree and level It is stored in a file.For example, enable the group it is vertical, middle group it is vertical, big group to stand be the of body section Process knowledge database One layer of structure, enabling the subdivision type that the group is vertical, middle group vertical, big group is vertical is the second layer knot of body section Process knowledge database Structure enables the group of each subdivision type found the third layer structure that process is body section Process knowledge database.
Optionally, the construction flow type includes: that group is vertical, middle group vertical, big group is vertical, wherein the vertical subdivision of the group For floor, crossbeam, side stringer, horizontal girder, stringers, vertical web member, combine vertical bone and profile, bracket, tripping bracket etc.;Institute State the middle group of vertical deck, Outer Bottom Plating, side plate, watertight bulkhead, topside tank inclined bottom plate, bottom edge water tank oblique top plate, interior of being subdivided into Coverboard, inner bottom plating, platform etc.;Described big group vertical to be subdivided into deck, topside, the turn of the bilge, bottom, bulkhead, fore body, stern etc..
Optionally, the planning by the recombination collaborative design model information in conjunction with the body section processing step, and base Assemble sequence is found in body section Process knowledge database design body section group, comprising: by the recombination collaborative design model Information combine planned body section processing step;The retrieval body section classification technique design knowledge base and With body section classification technique design knowledge, the mathematical modeling and calculating that the vertical assemble sequence of group automatically generates are carried out, and close Join the corresponding recombination collaborative design model.
By the recombination collaborative design model information in conjunction with the planning of the body section processing step, specifically, in conjunction with The group of body section collaborative design model founds the letters such as the vertical coding of type, group, assembly posture, component weight center of gravity, outer dimension Breath.
Optionally, suitable according to the vertical emulation assembly of the vertical assemble sequence formation body section group of the designed body section group Sequence, comprising: found assemble sequence according to the body section group and the Automation Design is carried out to hull assembly path, and formed Three-Dimensional Dynamic assembling process.
Optionally, whether eligible the vertical emulation assemble sequence of the body section group is assessed, comprising: judge the hull Segmentation group stands the whether feasible of the assemble sequence and assembly path for emulating assemble sequence.
Optionally, further includes: whether eligible assess the vertical emulation assemble sequence of the body section group;If it is not, according to The planning of the body section processing step is based on the body section work in conjunction with the recombination collaborative design model information Skill knowledge-base design body section group founds assemble sequence;Assemble sequence, which is found, according to designed body section group forms hull point Duan Zuli emulates assemble sequence;Whether eligible assess the vertical emulation assemble sequence of the body section group;If so, according to The vertical emulation assemble sequence of qualified body section group, and body section group is carried out based on body section Process knowledge database and is stood Practical set process design.
As shown in figure 3, showing the structural schematic diagram of the electronic device 30 in the embodiment of the present application.
The electronic device 30 includes: memory 31 and processor 32, and the memory 31 is for storing computer program; The processor 32 runs computer program and realizes technique synergy emulation method as described in Figure 1.
Optionally, the quantity of the memory 31 may each be one or more, and the quantity of the processor 32 may each be One or more, in described Fig. 3 for one.
Optionally, the processor 32 in the electronic device 30 can be according to the step of such as Fig. 1 is stated, by one or more to answer It is loaded into memory 31 with the corresponding instruction of the process of program, and is run and be stored in memory 31 by processor 32 Application program, to realize the various functions in technique synergy emulation method as described in Figure 1.
Optionally, the memory 31, is possibly including, but not limited to high-speed random access memory, non-volatile memories Device.Such as one or more disk storage equipments, flash memory device or other non-volatile solid-state memory devices;The processor 31, it is possibly including, but not limited to central processing unit (Central Processing Unit, abbreviation CPU), network processing unit (Network Processor, abbreviation NP) etc.;It can also be digital signal processor (Digital Signal Processing, abbreviation DSP), specific integrated circuit (Application Specific Integrated Circuit, letter Claim ASIC), field programmable gate array (Field-Programmable Gate Array, abbreviation FPGA) or other can compile Journey logical device, discrete gate or transistor logic, discrete hardware components.
Optionally, the processor 32 can be general processor, including central processing unit (Central Processing Unit, abbreviation CPU), network processing unit (Network Processor, abbreviation NP) etc.;It can also be digital signal processor (Digital Signal Processing, abbreviation DSP), specific integrated circuit (Application Specific Integrated Circuit, abbreviation ASIC), field programmable gate array (Field-Programmable Gate Array, abbreviation FPGA) either other programmable logic device, discrete gate or transistor logic, discrete hardware components.
The application also provides computer readable storage medium, computer program is stored with, when the computer program is run Realize technique synergy emulation method as shown in Figure 1.The computer readable storage medium may include, but be not limited to, floppy disk, CD, CD-ROM (compact disc-ROM), magneto-optic disk, ROM (read-only memory), RAM (random access memory), EPROM (Erasable Programmable Read Only Memory EPROM), EEPROM (electrically erasable programmable read-only memory), magnetic or optical card, flash memory or Suitable for storing other kinds of medium/machine readable media of machine-executable instruction.The computer readable storage medium can To be the product for not accessing computer equipment, it is also possible to access the component that computer equipment uses.
In conclusion the application technique synergy emulation method, electronic device and storage medium, comprising: according to hull point The classification combing of segment process design knowledge obtains body section classification technique design knowledge;According to the body section classification technique Design knowledge creates body section technological design knowledge base;Collaborative design model carries out to the recombination of corresponding body section, and Segmented node addition attribute information therein obtains recombination collaborative design model;By the recombination collaborative design model with it is described The construction process of body section is associated, wherein the planning built process and determine body section processing step;It will be described Collaborative design model information is recombinated in conjunction with the planning of the body section processing step, and know based on the body section technique Know library design body section group and founds assemble sequence;Assemble sequence, which is found, according to designed body section group forms body section group Vertical emulation assemble sequence;Whether eligible assess the vertical emulation assemble sequence of the body section group;If so, according to meeting The vertical emulation assemble sequence of the body section group of condition, and the vertical reality of body section group is carried out based on body section Process knowledge database The design of border assembly process, the work for solving and not being able to satisfy Cooperative process design requirement, technological design low efficiency, lack science Skill design optimization means and the problem of can not carry out three-dimensional process design verification, allow to achieve the purpose that collaborative simulation, Improve process efficiency.So the application effectively overcomes various shortcoming in the prior art and has high industrial exploitation value Value.
The principles and effects of the application are only illustrated in above-described embodiment, not for limitation the application.It is any ripe Know the personage of this technology all can without prejudice to spirit herein and under the scope of, carry out modifications and changes to above-described embodiment.Cause This, those of ordinary skill in the art is without departing from spirit disclosed herein and institute under technical idea such as All equivalent modifications or change completed, should be covered by claims hereof.

Claims (10)

1. a kind of technique synergy emulation method, which is characterized in that be applied to body section technique, comprising:
It is combed according to body section technological design knowledge classification, obtains body section classification technique design knowledge;
Body section technological design knowledge base is created according to body section classification technique design knowledge;
Collaborative design model is carried out to the recombination of corresponding body section, and obtains weight in segmented node addition attribute information wherein Group collaborative design model;
It is the recombination collaborative design model is associated with the construction process of the body section, wherein the construction process is true Determine the planning of body section processing step;
By the recombination collaborative design model information in conjunction with the planning of the body section processing step, and based on the hull point Segment process knowledge-base design body section group founds assemble sequence;
Assemble sequence, which is found, according to the designed body section group forms the vertical emulation assemble sequence of body section group;
Whether eligible assess the vertical emulation assemble sequence of the body section group;
If so, according to the vertical emulation assemble sequence of qualified body section group, and it is based on the body section process knowledge Library carries out the design of the vertical practical set process of body section group.
2. technique synergy emulation method according to claim 1, which is characterized in that know according to body section technological design Know classification combing, obtain body section classification technique design knowledge, comprising:
The body section technological design knowledge is combed to obtain the hull according to the vertical classification of type of flow type and group is built Segmentation classification technique design knowledge.
3. technique synergy emulation method according to claim 1, which is characterized in that according to the body section classification technique Design knowledge creates body section technological design knowledge base, comprising:
By body section technological design knowledge base described in body section classification technique design knowledge typing;
The body section classification technique design knowledge of typing is carried out in body section classification technique design knowledge base Multilayer structured storage.
4. technique synergy emulation method according to claim 2, which is characterized in that the construction flow type includes: small Group is vertical, middle group vertical, big group is vertical.
5. technique synergy emulation method according to claim 1, which is characterized in that believe the recombination collaborative design model The planning in conjunction with the body section processing step is ceased, and vertical based on body section Process knowledge database design body section group Assemble sequence, comprising:
The information of the recombination collaborative design model is combined into planned body section processing step;
The retrieval body section classification technique design knowledge base simultaneously matches the body section classification technique design knowledge, into The mathematical modeling and calculating that the vertical assemble sequence of row group automatically generates, and it is associated with the corresponding recombination collaborative design model.
6. technique synergy emulation method according to claim 1, which is characterized in that according to the designed body section The vertical assemble sequence of group forms the vertical emulation assemble sequence of body section group, comprising:
Assemble sequence is found according to the body section group, the Automation Design is carried out to hull assembly path, and formed three-dimensional dynamic State assembling process.
7. technique synergy emulation method according to claim 1, which is characterized in that assess the vertical emulation of the body section group Whether assemble sequence is eligible, comprising:
Judge the body section group stands the whether feasible of the assemble sequence and assembly path for emulating assemble sequence.
8. technique synergy emulation method according to claim 1, which is characterized in that further include:
Whether eligible assess the vertical emulation assemble sequence of the body section group;
If it is not, according to the planning of the body section processing step in conjunction with the recombination collaborative design model information, and it is based on institute It states body section Process knowledge database design body section group and founds assemble sequence;
Assemble sequence, which is found, according to the designed body section group forms the vertical emulation assemble sequence of body section group;
Whether eligible assess the vertical emulation assemble sequence of the body section group;
If so, according to the vertical emulation assemble sequence of qualified body section group, and it is based on the body section process knowledge Library carries out the design of the vertical practical set process of body section group.
9. a kind of electronic device characterized by comprising
Memory, for storing computer program;
Processor is cooperateed with for running the computer program with executing technique described in any item of the claim 1 to 8 such as Emulation mode.
10. a kind of computer storage medium, which is characterized in that it is stored with computer program, it is real when the computer program is run Now such as technique synergy emulation method described in any item of the claim 1 to 8.
CN201910570930.3A 2019-06-28 2019-06-28 Process collaborative simulation method, electronic device and storage medium Active CN110427647B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201910570930.3A CN110427647B (en) 2019-06-28 2019-06-28 Process collaborative simulation method, electronic device and storage medium

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201910570930.3A CN110427647B (en) 2019-06-28 2019-06-28 Process collaborative simulation method, electronic device and storage medium

Publications (2)

Publication Number Publication Date
CN110427647A true CN110427647A (en) 2019-11-08
CN110427647B CN110427647B (en) 2022-11-29

Family

ID=68409855

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201910570930.3A Active CN110427647B (en) 2019-06-28 2019-06-28 Process collaborative simulation method, electronic device and storage medium

Country Status (1)

Country Link
CN (1) CN110427647B (en)

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111400287A (en) * 2020-03-27 2020-07-10 江南造船(集团)有限责任公司 Ship building process knowledge base building method and device, storage medium and terminal
CN112100742A (en) * 2020-08-28 2020-12-18 上海交通大学 Map processing method and device based on three-dimensional model of ship structure and storage medium
CN113177261A (en) * 2021-04-25 2021-07-27 江南造船(集团)有限责任公司 Factory collaborative design oriented model transfer management method and system
CN113255063A (en) * 2021-06-17 2021-08-13 江南造船(集团)有限责任公司 Ship building planning method, device and system
CN113697059A (en) * 2021-08-11 2021-11-26 中国舰船研究设计中心 Flexible design method for section connection of surface ship

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102890749A (en) * 2012-08-20 2013-01-23 江南造船(集团)有限责任公司 Method and system for generating three-dimensional operation instruction for ship section manufacture
CN106294965A (en) * 2016-08-04 2017-01-04 江苏科技大学 A kind of hull assembly Sequence Planning system and planing method thereof
CN106446319A (en) * 2016-06-29 2017-02-22 内蒙古第机械集团有限公司 Assembly visualization process design method
CN106802990A (en) * 2017-01-06 2017-06-06 江南造船(集团)有限责任公司 A kind of shipbuilding human engineering method of tire and system
CN107330585A (en) * 2017-06-15 2017-11-07 江苏科技大学 A kind of method that shipbuilding data integrated system and auxiliary build ship

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102890749A (en) * 2012-08-20 2013-01-23 江南造船(集团)有限责任公司 Method and system for generating three-dimensional operation instruction for ship section manufacture
CN106446319A (en) * 2016-06-29 2017-02-22 内蒙古第机械集团有限公司 Assembly visualization process design method
CN106294965A (en) * 2016-08-04 2017-01-04 江苏科技大学 A kind of hull assembly Sequence Planning system and planing method thereof
CN106802990A (en) * 2017-01-06 2017-06-06 江南造船(集团)有限责任公司 A kind of shipbuilding human engineering method of tire and system
CN107330585A (en) * 2017-06-15 2017-11-07 江苏科技大学 A kind of method that shipbuilding data integrated system and auxiliary build ship

Non-Patent Citations (15)

* Cited by examiner, † Cited by third party
Title
万隆君等: "基于VR技术的船舶管路装配虚拟仿真系统设计", 《中国造船》 *
伍朝晖等: "船舶分段装焊工艺建模及狭小操作区域搜索方法", 《系统仿真学报》 *
刘祥博等: "面向船舶建造的三维作业指示设计技术研究", 《船舶与海洋工程》 *
刘阳等: "基于DELMIA的分段装配仿真研究", 《船舶工程》 *
张光发等: "船舶分段建造计划仿真", 《中国造船》 *
张光发等: "船舶分段建造计划仿真与优化", 《计算机集成制造系统》 *
李涛: "船体装配关键技术研究", 《中国新技术新产品》 *
杨虎等: "北海钻井平台结构施工设计经验总结", 《船舶工程》 *
梁润标: "基于AM系统的生产设计出图模式的优化", 《广船科技》 *
洪伟宏等: "船舶产品三维设计仿真验证技术研究与应用", 《造船技术》 *
程庆和等: "基于全三维数字样船的船舶产品信息集成应用研究", 《船舶与海洋工程》 *
薛伟等: "21000 TEU超大型集装箱船舱口围与抗扭箱一体化建造技术的改进", 《中外船舶科技》 *
薛智伟等: "船体分段装配序列规划技术研究", 《科技风》 *
谢彬等: "3000m水深半潜式钻井平台三维虚拟仿真设计", 《中国海上油气》 *
马誉贤: "新一代信息技术在船舶制造中的应用", 《中外船舶科技》 *

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111400287A (en) * 2020-03-27 2020-07-10 江南造船(集团)有限责任公司 Ship building process knowledge base building method and device, storage medium and terminal
CN111400287B (en) * 2020-03-27 2023-06-16 江南造船(集团)有限责任公司 Ship construction process knowledge base construction method and device, storage medium and terminal
CN112100742A (en) * 2020-08-28 2020-12-18 上海交通大学 Map processing method and device based on three-dimensional model of ship structure and storage medium
CN112100742B (en) * 2020-08-28 2022-05-31 上海交通大学 Method and device for processing map based on three-dimensional model of hull structure and storage medium
CN113177261A (en) * 2021-04-25 2021-07-27 江南造船(集团)有限责任公司 Factory collaborative design oriented model transfer management method and system
CN113255063A (en) * 2021-06-17 2021-08-13 江南造船(集团)有限责任公司 Ship building planning method, device and system
CN113255063B (en) * 2021-06-17 2023-06-16 江南造船(集团)有限责任公司 Ship building planning method, device and system
CN113697059A (en) * 2021-08-11 2021-11-26 中国舰船研究设计中心 Flexible design method for section connection of surface ship
CN113697059B (en) * 2021-08-11 2024-05-28 中国舰船研究设计中心 Flexible design method for sectional connection of water surface ship

Also Published As

Publication number Publication date
CN110427647B (en) 2022-11-29

Similar Documents

Publication Publication Date Title
CN110427647A (en) Technique synergy emulation method, electronic device and storage medium
Stanić et al. Toward shipbuilding 4.0-an industry 4.0 changing the face of the shipbuilding industry
Kim et al. A model for a simulation-based shipbuilding system in a shipyard manufacturing process
Nowacki Five decades of computer-aided ship design
Andrews et al. State of the art report on design methodology
Gaspar et al. Handling complexity aspects in conceptual ship design
Semini et al. Offshoring strategies in Norwegian ship production
Roucoules et al. Coevolution of digitalisation, organisations and Product Development Cycle
Larsen et al. A heuristic and a benchmark for the stowage planning problem
Li et al. Multi-objective optimisation of a container ship lashing bridge using knowledge-based engineering
Bucci et al. Evolution in design methodology for complex electric ships
Karakas et al. Development of a multidimensional performance evaluation model for container terminals at Marmara Sea
Brett et al. Disruptive market conditions require new direction for vessel design practices and tools application
Papanikolaou et al. Tools and applications for the holistic ship design
Bellgran et al. Handling disturbances in small volume production
Liang et al. Collaborative multidisciplinary decision making based on game theory in ship preliminary design
Vasilakos et al. Decision Support Systems based on a UML description approach
Zhao et al. Bi-objective optimisation model and its exact solution method of profit and market share of novel repair-and-support ships based on game theory
Wang et al. Diagnosis of port supply chain based on supply chain operations reference model
Guan et al. A new method of the top-down parametric design for quick subdivision based on constraints
Rubio et al. A Process-Oriented Approach for Shipbuilding Industrial Design Using Advanced PLM Tools
Hock et al. Hybrid evolutionary shape manipulation for efficient hull form design optimisation
CN111680918A (en) Intelligent manufacturing service flow determining method and system
Lemerande et al. A system of systems approach to developing a digital asset management environment for the naval enterprise
Antonopoulos et al. Shipping Digital Twin Data Management With the Use of Knowledge Graphs

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
GR01 Patent grant
GR01 Patent grant