CN110443444B - Wharf facility detection and evaluation system based on digital platform and implementation method thereof - Google Patents
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Abstract
The invention discloses a digital platform-based wharf facility detection and evaluation system and an implementation method thereof, wherein the system comprises: the detection period early warning module reports the detection evaluation requirements of the berth facilities according to the early warning prompt and issues a notice after the examination and approval are passed; the berth maintenance module is used for sending the execution data of the detection task to the berth maintenance module, and the berth maintenance module generates a corresponding detection report according to the execution data; and the detection evaluation module is connected with the berth maintenance module and is used for comparing and analyzing according to the detection report and the detection evaluation standard to generate the task execution qualification rate. The method realizes paperless and standardized detection and evaluation of wharf facilities, electronically stores maintenance and maintenance data, manages various data for a longer time effectively, realizes automatic generation of detection tasks, and evaluates the qualification rate of detection execution after the detection tasks are executed, so that the quality of the detection tasks is controlled.
Description
Technical Field
The invention relates to the technical field of wharf detection and evaluation, in particular to a wharf facility detection and evaluation system based on a digital platform and an implementation method thereof.
Background
At present, most of wharf facility detection, evaluation and management are paper approval processes, detection, maintenance and maintenance files are also paper storage, and wharf facility structure maintenance and repair modification schemes are carried out under the condition that the influence on the structure is not comprehensively considered, so that a lot of disadvantages are caused to company operation and capital.
Therefore, a modern wharf facility detection and evaluation information management system is urgently needed to be established, so that the business processes of all departments and all office institutions in an enterprise are standardized and optimized, the business is standardized again, paperless office work is realized, a digital platform big data system is applied, the health state of the wharf is dynamically monitored in real time, the wharf maintenance scheme is comprehensively optimized, and the enterprise operation cost is comprehensively reduced.
Disclosure of Invention
An object of the present invention is to solve at least the above problems and to provide at least the advantages described later.
Still another object of the present invention is to provide a wharf facility detection and evaluation system based on a digital platform, which realizes the detection and evaluation of wharf facilities paperlessly and normatively, and stores maintenance and maintenance data electronically, so that each data can be managed more effectively for a longer time.
Still another object of the present invention is to provide a digital platform-based wharf facility detection and evaluation system, which realizes automatic generation of detection tasks and evaluates qualification rate of detection execution after the detection tasks are executed, so as to control quality of the detection tasks.
In order to achieve the above objects and other objects, the present invention adopts the following technical solutions:
a digital platform-based wharf facility detection and evaluation system comprises:
the detection period early warning module reports the detection evaluation requirements of the berth facilities of the wharf according to the early warning prompts, and issues a notice of a detection task to corresponding personnel to execute the detection task after the approval is passed;
the berth maintenance module is connected with the detection period early warning module, the detection period early warning module sends the execution data of the detection task to the berth maintenance module, and the berth maintenance module generates a corresponding detection report according to the execution data and stores the detection report;
the detection evaluation module is internally provided with a storage unit; a universal detection and evaluation specification data set is stored in the storage unit; the detection evaluation module is connected with the berth maintenance module, and the detection evaluation module acquires the detection report, compares the detection report with a detection evaluation standard selected by a technician in the storage unit and analyzes the detection report to generate the qualification rate of the execution of the detection task.
Preferably, in the digital platform-based wharf facility detection and evaluation system, the detection tasks include daily inspection, periodic detection and special detection; the notification sheet of the daily inspection is issued to the corresponding executor to execute the detection task after the executor with the high-level authority selects the executor; and when the bidding unit identifies the notice sheets of the periodic detection or the special detection, the bidding unit generates and issues bidding documents after identifying the contents of the notice sheets of the periodic detection or the special detection so as to seek a detection mechanism meeting the requirements of the bidding documents to execute detection tasks.
Preferably, the digital platform-based wharf facility detection and evaluation system further includes:
an expert database in which the detection data of the berthing facilities over the years are stored; the detection evaluation module is connected with the expert database, and the detection evaluation module compares and analyzes the data of the berth facilities corresponding to the abnormal data in the detection report with the data of the corresponding berth facilities in the expert database to generate a maintenance suggestion.
Preferably, the digital platform-based wharf facility detection and evaluation system further includes:
the maintenance module is respectively connected with the detection evaluation module and the bidding unit; the maintenance and maintenance module generates a maintenance plan and the maintenance scale of the maintenance plan according to a prestored maintenance and maintenance plan and the maintenance suggestion acquired by the detection and evaluation module, and sends the maintenance scale to the bidding unit, and the bidding unit generates and issues a bidding document according to the maintenance scale so as to seek a construction unit meeting the requirement of the bidding document to implement the maintenance plan.
Preferably, the digital platform-based wharf facility detection and evaluation system further includes:
the progress recording submodule is connected with the maintenance module and is used for periodically recording the progress and the construction quality of the maintenance plan implementation;
the expense counting submodule is connected with the maintenance module and is used for periodically recording the expense of the implementation of the maintenance plan;
and the safety record submodule is connected with the maintenance module, periodically records the information of field operating personnel in the maintenance record implementation process, sends related safety education knowledge and test questions to the field operating personnel before the field operating personnel carry out field operation, and carries out identification management on a field risk source and makes corresponding emergency plan management measures according to the answering conditions of the test questions.
Preferably, the digital platform-based wharf facility detection and evaluation system further includes:
a visualization module for displaying the three-dimensional model of the wharf berth facility obtained by the maintenance module after the maintenance plan is implemented;
the berth monitoring submodule is respectively connected with the sensor arranged on the wharf and the visualization module; the berthing monitoring submodule displays data acquired by the sensor on the visualization module in real time; the berth monitoring submodule is also connected with the detection evaluation module so as to combine and analyze the data acquired by the sensors and the data of the detection report, and then store the analysis result to provide data support for the subsequent maintenance, the maintenance or the reinforcement of the wharf.
Preferably, the digital platform-based wharf facility detection and evaluation system further includes:
the application terminal is arranged on an intelligent terminal of related personnel; and the application terminal is in communication connection with the berth monitoring submodule so as to send the data acquired by the sensor to the application terminal.
Preferably, the digital platform-based wharf facility detection and evaluation system further includes:
the scene construction module is connected with the visualization module; the scene construction module generates a simulation scene of the wharf and displays the simulation scene on the visualization module;
the roaming module is respectively connected with the scene construction module and the visualization module; the virtual character is arranged in the roaming module, the virtual character roams in the simulated scene, when any position of the virtual scene is clicked, the virtual character moves to the corresponding position, and when any facility component in the virtual scene is clicked, the basic information of the corresponding facility component is displayed on the visualization module.
A monitoring method of a wharf facility detection and evaluation system based on a digital platform comprises the following steps:
s1, the detection period early warning module reports the detection evaluation requirements of the berth facilities of the wharf according to the early warning prompts, and issues a notice of the detection task to corresponding personnel to execute the detection task after the approval is passed;
s2, the detection period early warning module sends execution data of a detection task to a berth maintenance module, and the berth maintenance module generates a corresponding detection report according to the execution data and stores the detection report;
and S3, the detection evaluation module acquires the detection report, compares the detection report with the detection evaluation specification data selected by the technical personnel and analyzes the detection report to generate the qualification rate of the execution of the detection task.
The invention at least comprises the following beneficial effects:
in the digital platform-based wharf facility detection and evaluation system, the detection period early warning module, the berth maintenance module and the detection evaluation module are used for paperless and normalized detection and evaluation of wharf facilities, maintenance and maintenance data are stored electronically, and various data are managed more effectively for a long time.
The automatic generation of the detection task is realized, and the qualification rate of the detection execution is evaluated after the detection task is executed, so that the quality of the detection task is controlled conveniently.
Additional advantages, objects, and features of the invention will be set forth in part in the description which follows and in part will become apparent to those having ordinary skill in the art upon examination of the following or may be learned from practice of the invention.
Drawings
Fig. 1 is a frame structure diagram of a digital platform-based wharf facility detection and evaluation system provided by the invention;
fig. 2 is a flow chart of the digital platform-based wharf facility detection and evaluation system provided by the invention.
Detailed Description
The present invention is described in detail below with reference to the attached drawings so that those skilled in the art can implement the invention by referring to the description.
As shown in fig. 1 and 2, a digital platform-based wharf facility detection and evaluation system includes: and the detection period early warning module reports the detection evaluation requirements of the berth facilities of the wharf according to the early warning prompts, and issues a notice of the detection task to corresponding personnel to execute the detection task after the approval is passed.
And the berth maintenance module is connected with the detection period early warning module, the detection period early warning module sends the execution data of the detection task to the berth maintenance module, and the berth maintenance module generates a corresponding detection report according to the execution data and stores the detection report.
The detection evaluation module is internally provided with a storage unit; a universal detection and evaluation specification data set is stored in the storage unit; the detection evaluation module is connected with the berth maintenance module, and the detection evaluation module acquires the detection report, compares the detection report with a detection evaluation standard selected by a technician in the storage unit and analyzes the detection report to generate the qualification rate of the execution of the detection task.
In the scheme, the detection period early warning module, the berth maintenance module and the detection evaluation module are used for paperless and standardized detection and evaluation of wharf facilities, and maintenance data are electronically stored, so that various data are managed more effectively for a long time.
The automatic generation of the detection task is realized, and the qualification rate of the detection execution is evaluated after the detection task is executed, so that the quality of the detection task is controlled conveniently.
In a preferred scheme, the detection tasks comprise daily inspection, periodic detection and special detection; the notification sheet of the daily inspection is issued to the corresponding executor to execute the detection task after the executor with the high-level authority selects the executor; and when the bidding unit identifies the notice sheets of the periodic detection or the special detection, the bidding unit generates and issues bidding documents after identifying the contents of the notice sheets of the periodic detection or the special detection so as to seek a detection mechanism meeting the requirements of the bidding documents to execute detection tasks.
In the scheme, if the approval task is the daily inspection content, the work department supervisor can directly dispatch the task list to the selected engineering department technician to execute the corresponding detection task. If the approval task is regular detection or special detection, the director of the working part can start a bidding program through the bidding unit and seek a qualified third-party detection mechanism to execute a corresponding detection task.
In a preferred embodiment, the method further comprises: an expert database in which the detection data of the berthing facilities over the years are stored; the detection evaluation module is connected with the expert database, and the detection evaluation module compares and analyzes the data of the berth facilities corresponding to the abnormal data in the detection report with the data of the corresponding berth facilities in the expert database to generate a maintenance suggestion.
In the scheme, through the arrangement of the expert database, the detection data of the position where the wharf facility has the defect can be contrasted and analyzed with the detection data similar to the detection data in the expert database data system in the past year, and a maintenance rationalization suggestion is given. For example, a concrete crack appears on a dock surface, and according to the information such as the position, the length, the width, the depth and the trend of the structural detection crack, the detection and evaluation module gives out a reasonable crack repair scheme, such as: the method comprises the following steps of using any material, using any construction process, taking care of construction, optimizing construction units, analyzing economic benefits of schemes and the like.
In a preferred embodiment, the method further comprises: the maintenance module is respectively connected with the detection evaluation module and the bidding unit; the maintenance and maintenance module generates a maintenance plan and the maintenance scale of the maintenance plan according to a prestored maintenance and maintenance plan and the maintenance suggestion acquired by the detection and evaluation module, and sends the maintenance scale to the bidding unit, and the bidding unit generates and issues a bidding document according to the maintenance scale so as to seek a construction unit meeting the requirement of the bidding document to implement the maintenance plan.
In the above scheme, the maintenance module is according to rationalization maintenance suggestion and the maintenance plan of prestoring, if: and (4) starting a construction unit for tendering, maintaining and transforming according to the maintenance scale after the annual maintenance and maintenance plan and the monthly maintenance and maintenance plan are examined and approved.
In a preferred embodiment, the method further comprises: and the progress recording submodule is connected with the maintenance module and is used for periodically recording the progress and the construction quality of the maintenance plan implementation.
And the expense counting submodule is connected with the maintenance module and is used for periodically recording the expense of the maintenance plan implementation.
And the safety record submodule is connected with the maintenance module, periodically records the information of field operating personnel in the maintenance record implementation process, sends related safety education knowledge and test questions to the field operating personnel before the field operating personnel carry out field operation, and carries out identification management on a field risk source and makes corresponding emergency plan management measures according to the answering conditions of the test questions.
In the above scheme, the period can be set to be daily, hourly or weekly, etc., which is beneficial to the flexible use of the system.
In a preferred embodiment, the method further comprises: and the visualization module displays the three-dimensional model of the wharf berth facility obtained by the maintenance and maintenance module after maintenance planning is carried out on the wharf berth facility.
The berth monitoring submodule is respectively connected with the sensor arranged on the wharf and the visualization module; the berthing monitoring submodule displays data acquired by the sensor on the visualization module in real time; the berth monitoring submodule is also connected with the detection evaluation module so as to combine and analyze the data acquired by the sensors and the data of the detection report, and then store the analysis result to provide data support for the subsequent maintenance, the maintenance or the reinforcement of the wharf.
In the above solution, the berth monitoring sub-module receives data collected by sensors from the wharf, such as: the stress strain of the berth, the settlement displacement observation of the berth of the wharf, the hydrological meteorology of the wharf and the like are dynamically displayed on the visual module in real time, meanwhile, the plate is associated with the detection evaluation module, and the dynamically acquired data and the detection evaluation data are combined for analysis, so that data support is provided for maintenance, reinforcement and reconstruction of the wharf.
In a preferred embodiment, the method further comprises: the application terminal is arranged on an intelligent terminal of related personnel; and the application terminal is in communication connection with the berth monitoring submodule so as to send the data acquired by the sensor to the application terminal.
In the scheme, the setting real-time related personnel of the application terminal can know the conditions of all facilities of the wharf in real time.
In a preferred embodiment, the method further comprises: the scene construction module is connected with the visualization module; the scene building module generates a simulated scene of the dock and displays the simulated scene on the visualization module.
The roaming module is respectively connected with the scene construction module and the visualization module; the virtual character is arranged in the roaming module, the virtual character roams in the simulated scene, when any position of the virtual scene is clicked, the virtual character moves to the corresponding position, and when any facility component in the virtual scene is clicked, the basic information of the corresponding facility component is displayed on the visualization module.
In the scheme, the arrangement of the scene construction module and the roaming module realizes that the virtual character is operated to roam in the three-dimensional scene, and when the character moves to a certain position, the character clicks the nearby facility member, so that the basic information of the facility member can be inquired, and the operator can be visualized and visualized.
A monitoring method of a wharf facility detection and evaluation system based on a digital platform comprises the following steps:
and S1, the detection period early warning module reports the detection evaluation requirements of the berth facilities of the wharf according to the early warning prompts, and issues a notice of the detection task to corresponding personnel to execute the detection task after the approval is passed.
And S2, the detection period early warning module sends the execution data of the detection task to the berth maintenance module, and the berth maintenance module generates a corresponding detection report according to the execution data and stores the detection report.
And S3, the detection evaluation module acquires the detection report, compares the detection report with the detection evaluation specification data selected by the technical personnel and analyzes the detection report to generate the qualification rate of the execution of the detection task.
Example 1
The detection period early warning module gives an early warning about the need of detecting and evaluating the berth, and sends a detection task notice after approval, wherein the notice can be used for detecting whether engineering technicians are competent or not, namely whether the engineering technicians are capable of directly executing the detection task or not, and if the engineering technicians are not competent, a qualified third-party detection mechanism is entrusted to execute the detection task in a bidding mode. And after the detection task is finished, inputting detection data to carry out a system, and generating a detection evaluation report. When the dock berth facility has defects, a rationalization suggestion is provided for maintenance, reinforcement and reconstruction through the big data analysis of the expert database. And reporting a maintenance plan, carrying out maintenance, reinforcement and reconstruction on the defective berth, recording related information data, and reporting the position of the defect of repair and reconstruction for rechecking after the construction is finished. If the wharf berthing facility has no defects, the detection evaluation information is directly displayed on the three-dimensional visual model.
Example 2
The intelligent berth monitoring data is used for receiving data acquired by sensors such as wharf berth stress strain, wharf berth settlement displacement observation, wharf hydrological weather and the like, and the dynamically acquired data is combined with the detection and evaluation data for analysis, so that data support is provided for maintenance, reinforcement and reconstruction of the wharf.
While embodiments of the invention have been described above, it is not limited to the applications set forth in the description and the embodiments, which are fully applicable in various fields of endeavor to which the invention pertains, and further modifications may readily be made by those skilled in the art, it being understood that the invention is not limited to the details shown and described herein without departing from the general concept defined by the appended claims and their equivalents.
Claims (5)
1. A digital platform-based wharf facility detection and evaluation system comprises:
the detection period early warning module reports the detection evaluation requirements of the berth facilities of the wharf according to the early warning prompts, and issues a notice of a detection task to corresponding personnel to execute the detection task after the approval is passed;
the berth maintenance module is connected with the detection period early warning module, the detection period early warning module sends the execution data of the detection task to the berth maintenance module, and the berth maintenance module generates a corresponding detection report according to the execution data and stores the detection report;
the detection evaluation module is internally provided with a storage unit; a universal detection and evaluation specification data set is stored in the storage unit; the detection evaluation module is connected with the berth maintenance module, acquires the detection report, and compares and analyzes the detection report with a detection evaluation standard selected by a technician from the storage unit to generate the qualification rate of the execution of the detection task;
the detection tasks comprise daily inspection, regular detection and special detection; the notification sheet of the daily inspection is issued to the corresponding executor to execute the detection task after the executor with the high-level authority selects the executor; the system comprises a detection period early warning module, a detection mechanism and a bidding unit, wherein the detection period early warning module is internally provided with the bidding unit, and the bidding unit is used for identifying the content of the notice of the periodic detection or the special detection and then generating a bidding document and issuing the bidding document so as to seek the detection mechanism meeting the requirement of the bidding document to execute a detection task;
an expert database in which the detection data of the berthing facilities over the years are stored; the detection evaluation module is connected with the expert database and compares and analyzes the berth facilities corresponding to the abnormal data in the detection report with the corresponding berth facilities in the expert database to generate a maintenance suggestion;
the maintenance module is respectively connected with the detection evaluation module and the bidding unit; the maintenance module generates a maintenance plan and the maintenance scale of the maintenance plan according to a prestored maintenance plan and the maintenance suggestion acquired by the detection evaluation module, and sends the maintenance scale to the bidding unit, and the bidding unit generates and issues a bidding document according to the maintenance scale so as to seek a construction unit meeting the requirement of the bidding document to implement the maintenance plan;
a visualization module for displaying the three-dimensional model of the berth facility obtained by the maintenance and maintenance module after the maintenance plan is implemented;
the berth monitoring submodule is respectively connected with the sensor arranged on the wharf and the visualization module; the berthing monitoring submodule displays data acquired by the sensor on the visualization module in real time; the berth monitoring submodule is also connected with the detection evaluation module so as to combine and analyze the data acquired by the sensors and the data of the detection report, and then store the analysis result to provide data support for the subsequent maintenance, the maintenance or the reinforcement of the wharf.
2. The digital platform based dock facility detection and evaluation system of claim 1, further comprising:
the progress recording submodule is connected with the maintenance module and is used for periodically recording the progress and the construction quality of the maintenance plan implementation;
the expense counting submodule is connected with the maintenance module and is used for periodically recording the expense of the implementation of the maintenance plan;
and the safety recording sub-module is connected with the maintenance module, periodically records the information of the field operating personnel in the maintenance plan implementation process, sends related safety education knowledge and test questions to the field operating personnel before the field operating personnel performs field operation, and performs identification management on a field risk source and corresponding emergency plan management measures according to the answering conditions of the test questions.
3. The digital platform based dock facility detection and evaluation system of claim 1, further comprising:
the application terminal is arranged on an intelligent terminal of related personnel; and the application terminal is in communication connection with the berth monitoring submodule so as to send the data acquired by the sensor to the application terminal.
4. The digital platform based dock facility detection and evaluation system of claim 1, further comprising:
the scene construction module is connected with the visualization module; the scene construction module generates a simulation scene of the wharf and displays the simulation scene on the visualization module;
the roaming module is respectively connected with the scene construction module and the visualization module; the virtual character is arranged in the roaming module, the virtual character roams in the simulated scene, when any position of the simulated scene is clicked, the virtual character moves to the corresponding position, and when any facility component in the virtual scene is clicked, the basic information of the corresponding facility component is displayed on the visualization module.
5. A method for monitoring the digital platform based dock facility detection and assessment system of claim 1, comprising the steps of:
s1, the detection period early warning module reports the detection evaluation requirements of the berth facilities of the wharf according to the early warning prompts, and issues a notice of the detection task to corresponding personnel to execute the detection task after the approval is passed;
s2, the detection period early warning module sends execution data of a detection task to a berth maintenance module, and the berth maintenance module generates a corresponding detection report according to the execution data and stores the detection report;
and S3, the detection evaluation module acquires the detection report, compares the detection report with the detection evaluation specification data selected by the technical personnel and analyzes the detection report to generate the qualification rate of the execution of the detection task.
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Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2013038198A2 (en) * | 2011-09-14 | 2013-03-21 | Smart Ship Holdings Limited | Allocating an area to a vehicle |
CN104463425A (en) * | 2014-11-14 | 2015-03-25 | 交通运输部天津水运工程科学研究所 | Petrochemical engineering wharf handling process safety early-warning system based on LabVIEW |
CN106149769A (en) * | 2016-06-27 | 2016-11-23 | 苏交科集团股份有限公司 | Gravity type quay pile foundation construction is remotely monitored and analytical equipment |
CN108227617A (en) * | 2018-02-13 | 2018-06-29 | 上海振华重工(集团)股份有限公司 | A kind of tyre crane remote detection and assessment system |
CN110337680A (en) * | 2016-12-30 | 2019-10-15 | 同济大学 | A kind of preferential short reservation of high-quality berth and Dynamic Pricing method stopped |
Family Cites Families (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104655439B (en) * | 2015-01-28 | 2015-11-18 | 东南大学 | The in-situ detection method of gravity type wharf security |
CN104614020B (en) * | 2015-01-30 | 2015-12-02 | 东南大学 | The original position whole detection method of long piled wharf horizontal bearing capacity and force model proterties |
CN205879247U (en) * | 2016-07-27 | 2017-01-11 | 交通运输部天津水运工程科学研究所 | Long piled wharf health monitoring system based on optical fiber sensing technique and BIM technique |
CN108879960A (en) * | 2018-07-25 | 2018-11-23 | 胡长军 | A kind of harbour bank electricity monitoring system |
-
2019
- 2019-06-24 CN CN201910549863.7A patent/CN110443444B/en active Active
Patent Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2013038198A2 (en) * | 2011-09-14 | 2013-03-21 | Smart Ship Holdings Limited | Allocating an area to a vehicle |
CN104463425A (en) * | 2014-11-14 | 2015-03-25 | 交通运输部天津水运工程科学研究所 | Petrochemical engineering wharf handling process safety early-warning system based on LabVIEW |
CN106149769A (en) * | 2016-06-27 | 2016-11-23 | 苏交科集团股份有限公司 | Gravity type quay pile foundation construction is remotely monitored and analytical equipment |
CN110337680A (en) * | 2016-12-30 | 2019-10-15 | 同济大学 | A kind of preferential short reservation of high-quality berth and Dynamic Pricing method stopped |
CN108227617A (en) * | 2018-02-13 | 2018-06-29 | 上海振华重工(集团)股份有限公司 | A kind of tyre crane remote detection and assessment system |
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