Gas safety assessment method and system based on quantitative index, terminal and medium

Through the gas safety assessment method based on quantitative indicators, the problems of low efficiency and unobjective results in the prior art are solved, and more efficient and accurate safety assessment is achieved, and safety hazards are reduced.

CN119940917APending Publication Date: 2025-05-06SHENZHEN SAIYITE INFORMATION TECH CO LTD +1
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Patent Information

Application Number
CN202411972188.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2025-05-06

AI Technical Summary

Technical Problem

In the prior art, the safety assessment of bottled liquefied petroleum gas mainly relies on manual offline assessment, resulting in low efficiency, irregular factors, inadequate results, low accuracy, and safety hazards.

Method used

The gas safety assessment method based on quantitative indicators is adopted, and by obtaining safety assessment needs, creating evaluation tasks, collecting and scoring indicator data, generating safety assessment reports, and generating hidden danger rectification notices based on the report, reminding the object to make rectifications.

Benefits of technology

It improves the efficiency and accuracy of gas safety assessment, ensures the objectivity and standardization of the assessment results, reduces safety risks, and improves the safety of gas use in bottled liquefied petroleum gas.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a gas safety assessment method and system based on quantitative indexes, a terminal and a medium, and the method comprises the steps: obtaining a gas safety assessment demand for a safety assessment object, and creating a corresponding safety assessment task according to the gas safety assessment demand; according to the safety assessment task, performing safety assessment on the safety assessment object of the gas safety assessment demand to obtain a safety assessment report; and if the safety assessment object has the potential safety hazard, generating a potential safety hazard rectification notification according to the safety assessment report, and reminding the safety assessment object to carry out potential safety hazard rectification according to the potential safety hazard rectification notification. According to the method, the main body of each bottled liquefied petroleum gas is evaluated online through the formulated fuel gas evaluation rule, the safety evaluation efficiency of the bottled liquefied petroleum gas is improved, and different evaluation templates are formulated for different evaluation main bodies, so that the safety evaluation of the bottled liquefied petroleum gas is more accurate.
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Description

Technical Field

[0001] The present invention relates to the technical field of gas use safety assessment, and in particular to a gas safety assessment method, system, terminal and computer-readable storage medium based on quantitative indicators. Background Art

[0002] Gas is a general term for gaseous fuels, which can burn and release heat. It is mainly used for residential and industrial purposes. It usually includes natural gas, liquefied petroleum gas, etc. It is flammable and explosive. With the development of society and the improvement of people's living standards, gas has become an important energy source in daily life. However, the safety of bottled liquefied petroleum gas also needs to be guaranteed, covering users, sites and enterprises.

[0003] At present, most of the existing safety assessments for bottled liquefied petroleum gas are conducted manually offline, resulting in low efficiency of safety assessments. The assessment elements are not standardized, and the corresponding assessment results are not objective enough, resulting in low accuracy of safety assessments, thus posing safety hazards.

[0004] Therefore, the prior art still needs to be improved and developed. Summary of the invention

[0005] The main purpose of the present invention is to provide a gas safety assessment method, system, terminal and medium based on quantitative indicators, aiming to solve the problem that most of the safety assessments of bottled liquefied petroleum gas in the prior art are manual offline assessments, resulting in low efficiency of safety assessments, non-standard assessment elements, and insufficient objectivity of corresponding assessment results, resulting in low accuracy of safety assessments and potential safety hazards.

[0006] To achieve the above object, the present invention provides a gas safety assessment method based on quantitative indicators, and the gas safety assessment method based on quantitative indicators comprises the following steps:

[0007] Obtaining a gas safety assessment requirement for a safety assessment object, and creating a corresponding safety assessment task according to the gas safety assessment requirement;

[0008] Performing a safety assessment on the safety assessment object of the gas safety assessment requirement according to the safety assessment task to obtain a safety assessment report;

[0009] If the safety assessment object has safety hazards, a hazard rectification notice is generated according to the safety assessment report, and the safety assessment object is reminded to rectify the hazard according to the hazard rectification notice.

[0010] Optionally, the gas safety assessment method based on quantitative indicators, wherein the obtaining of gas safety assessment requirements for the safety assessment object and the creation of corresponding safety assessment tasks according to the gas safety assessment requirements, further comprises:

[0011] Obtain an assessment indicator configuration instruction for the safety assessment object, perform configuration indicator query according to the assessment indicator configuration instruction, and obtain indicator query results, wherein the configuration indicators include hidden danger rectification rate, security inspection rate, whitelist conversion rate, order utilization rate, delivery code rate, bottle scanning rate, warehousing scanning rate, enterprise hidden dangers and illegal filling;

[0012] The indicator query result is index-determined according to the safety assessment object to obtain an indicator determination result, and a corresponding assessment template is formulated according to the indicator determination result, wherein the safety assessment object includes gas users, gas supply sites and gas supply enterprises.

[0013] Optionally, in the gas safety assessment method based on quantitative indicators, the indicator determination result includes a first configuration indicator, a second configuration indicator and a third configuration indicator;

[0014] The step of determining an indicator on the indicator query result according to the security assessment object to obtain an indicator determination result, and formulating a corresponding assessment template according to the indicator determination result, specifically includes:

[0015] If the safety assessment object is a gas user, the index query result is determined according to the gas user to obtain a first configuration index, and a score rule is formulated for each configuration index of the first configuration index to obtain a first formulation result, and a first assessment template is generated according to the first formulation result;

[0016] If the safety assessment object is a gas supply site, the indicator query result is determined according to the gas supply site to obtain a second configuration indicator, and a score rule is formulated for each configuration indicator of the second configuration indicator to obtain a second formulation result, and a first assessment template is generated according to the second formulation result;

[0017] If the safety assessment object is a gas supply enterprise, the indicator query result is determined according to the gas user to obtain a third configuration indicator, and a score rule is formulated for each configuration indicator of the third configuration indicator to obtain a third formulation result, and a third assessment template is generated according to the third formulation result.

[0018] Optionally, the gas safety assessment method based on quantitative indicators, wherein the step of obtaining a gas safety assessment requirement for a safety assessment object and creating a corresponding safety assessment task according to the gas safety assessment requirement, specifically includes:

[0019] Obtaining gas safety assessment requirements for a safety assessment object, performing requirements analysis on the gas safety assessment requirements, obtaining requirements analysis results, and obtaining assessment events, assessment time information, and assessment subjects according to the requirements analysis results;

[0020] Generate an assessment task name according to the assessment event, set the task start time and assessment period according to the assessment time information, and perform assessment template matching according to the assessment subject to obtain a target assessment template;

[0021] Create a task according to the assessment task name, the task start time, the assessment period, the assessment subject and the target assessment template to obtain a security assessment task;

[0022] Among them, the target evaluation template is any one of the third evaluation template, the third evaluation template and the third evaluation template.

[0023] Optionally, the gas safety assessment method based on quantitative indicators, wherein the step of performing a safety assessment on the safety assessment object of the gas safety assessment requirement according to the safety assessment task to obtain a safety assessment report, specifically includes:

[0024] Acquire current time information, and if the time information reaches the task start time of the security assessment task, start the security assessment task;

[0025] Collecting various indicator data within a time period corresponding to the security assessment object according to the assessment period of the security assessment task, and scoring all the indicator data according to the target assessment template of the security assessment task to obtain multiple indicator scores;

[0026] All the indicator scores are aggregated to obtain a total safety assessment score, and a safety assessment report is generated based on the safety assessment task and the total safety assessment score.

[0027] Optionally, the gas safety assessment method based on quantitative indicators, wherein all the indicator scores are aggregated to obtain a total safety assessment score, and a safety assessment report is generated according to the safety assessment task and the total safety assessment score, and then further includes:

[0028] Compare the total safety assessment score with the preset total safety score to obtain a comparison result, and determine whether the safety assessment object has safety hazards according to the comparison result;

[0029] If the total safety assessment score is greater than or equal to the preset total safety score, it is determined that there is no safety hazard in the safety assessment object;

[0030] If the total safety assessment score is less than the preset total safety score, it is determined that the safety assessment object has a safety hazard.

[0031] Optionally, the gas safety assessment method based on quantitative indicators, wherein if the safety assessment object has a safety hazard, a hazard rectification notice is generated according to the safety assessment report, and the safety assessment object is reminded to rectify the hazard according to the hazard rectification notice, specifically includes:

[0032] If the safety assessment report indicates that the safety assessment object has safety hazards, each of the indicator scores is compared with the corresponding preset indicator safety score to obtain multiple comparison results;

[0033] Target abnormality indicator data is obtained according to all the comparison results, a hidden danger rectification notice is generated according to the target abnormality indicator data, and the safety assessment object is reminded to rectify the hidden danger according to the hidden danger rectification notice.

[0034] Optionally, in the gas safety assessment method based on quantitative indicators, the gas safety assessment system based on quantitative indicators includes:

[0035] A task creation module, used to obtain gas safety assessment requirements for a safety assessment object, and create a corresponding safety assessment task according to the gas safety assessment requirements;

[0036] A safety assessment module, used to perform a safety assessment on the safety assessment object of the gas safety assessment requirement according to the safety assessment task, and obtain a safety assessment report;

[0037] The hidden danger reminder module is used to generate a hidden danger rectification notice according to the safety assessment report if there are hidden dangers in the safety assessment object, and remind the safety assessment object to rectify the hidden danger according to the hidden danger rectification notice.

[0038] In addition, to achieve the above-mentioned purpose, the present invention also provides a terminal, wherein the terminal includes: a memory, a processor, and a gas safety assessment program based on quantitative indicators stored in the memory and executable on the processor, wherein the gas safety assessment program based on quantitative indicators, when executed by the processor, implements the steps of the gas safety assessment method based on quantitative indicators as described above.

[0039] In addition, to achieve the above-mentioned purpose, the present invention also provides a computer-readable storage medium, wherein the computer-readable storage medium stores a gas safety assessment program based on quantitative indicators, and when the gas safety assessment program based on quantitative indicators is executed by a processor, the steps of the gas safety assessment method based on quantitative indicators as described above are implemented.

[0040] In the present invention, a gas safety assessment requirement for a safety assessment object is obtained, and a corresponding safety assessment task is created according to the gas safety assessment requirement; a safety assessment is performed on the safety assessment object of the gas safety assessment requirement according to the safety assessment task to obtain a safety assessment report; if the safety assessment object has a safety hazard, a hazard rectification notice is generated according to the safety assessment report, and the safety assessment object is reminded to rectify the hazard according to the hazard rectification notice. The present invention performs online assessments on the main bodies of each bottled liquefied petroleum gas through the formulated gas assessment rules, thereby improving the safety assessment efficiency of bottled liquefied petroleum gas, and formulates different assessment templates for different assessment subjects, making the safety assessment of bottled liquefied petroleum gas more accurate. BRIEF DESCRIPTION OF THE DRAWINGS

[0041] Figure 1 It is a flow chart of a preferred embodiment of the gas safety assessment method based on quantitative indicators of the present invention;

[0042] Figure 2 It is a structural diagram of a preferred embodiment of a gas safety assessment system based on quantitative indicators of the present invention;

[0043] Figure 3 It is a schematic diagram of the operating environment of a preferred embodiment of the terminal of the present invention. DETAILED DESCRIPTION

[0044] In order to make the purpose, technical solution and advantages of the present invention clearer and more specific, the present invention is further described in detail below with reference to the accompanying drawings and examples. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention.

[0045] It should be noted that if the embodiments of the present invention involve directional indications (such as up, down, left, right, front, back, etc.), the directional indications are only used to explain the relative position relationship, movement status, etc. between the components under a certain specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indication will also change accordingly.

[0046] In addition, if there are descriptions involving "first", "second", etc. in the embodiments of the present invention, the descriptions of "first", "second", etc. are only used for descriptive purposes and cannot be understood as indicating or suggesting their relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" may explicitly or implicitly include at least one of the features. In addition, the technical solutions between the various embodiments can be combined with each other, but they must be based on the ability of ordinary technicians in the field to implement them. When the combination of technical solutions is contradictory or cannot be implemented, it should be deemed that such a combination of technical solutions does not exist and is not within the scope of protection required by the present invention.

[0047] The gas safety assessment method based on quantitative indicators described in the preferred embodiment of the present invention is as follows: Figure 1 As shown, the gas safety assessment method based on quantitative indicators includes the following steps:

[0048] Step S10: Obtain gas safety assessment requirements for the safety assessment object, and create a corresponding safety assessment task according to the gas safety assessment requirements.

[0049] The step S10 comprises:

[0050] Step S11, obtaining gas safety assessment requirements for the safety assessment object, performing demand analysis on the gas safety assessment requirements to obtain demand analysis results, and obtaining assessment events, assessment time information and assessment subjects according to the demand analysis results;

[0051] Step S12: Generate an assessment task name according to the assessment event, set the task start time and assessment period according to the assessment time information, and perform assessment template matching according to the assessment subject to obtain a target assessment template;

[0052] Step S13: Create a task according to the assessment task name, the task start time, the assessment period, the assessment subject and the target assessment template to obtain a security assessment task.

[0053] Specifically, when it is detected that the person in charge of the gas business needs to conduct a safety assessment on the subject corresponding to the bottled liquefied petroleum gas, in order to complete the safety assessment more efficiently and accurately, in an embodiment of the present invention, the corresponding safety assessment is completed online, specifically, obtaining an assessment indicator configuration instruction for the safety assessment object, performing a configuration indicator query according to the assessment indicator configuration instruction, and obtaining an indicator query result, wherein the configuration indicators include hidden danger rectification rate, security inspection rate, whitelist conversion rate, order utilization rate, delivery code classification rate, bottle scanning rate, warehousing scanning rate, enterprise hidden dangers and illegal filling; according to the safety assessment object, the configuration indicators are queried. The index is determined based on the query result to obtain the index determination result, wherein the safety assessment object includes gas users, gas supply sites and gas supply enterprises. For example, if the safety assessment object is a gas supply enterprise, the corresponding configuration indicators in the index determination result are security inspection rate, whitelist conversion rate, order utilization rate, enterprise hidden dangers and illegal filling, wherein the illegal filling includes abnormal filling, filling with scrapped bottles, filling with expired bottles, filling with no-file bottles, filling with non-owned bottles and repeated filling (repeated filling means that multiple filling records appear on the registration code of a single gas cylinder); thereafter, a corresponding evaluation template is formulated according to the index determination result.

[0054] Different indicator determination results lead to different formulated evaluation templates. The specific evaluation template formulation process is as follows: if the safety assessment object is a gas user, the indicator query result is determined based on the gas user to obtain a first configuration indicator. For example, the configuration indicators in the first configuration indicator are hidden danger rectification rate and safety inspection rate, and a score rule is formulated for each configuration indicator of the first configuration indicator to obtain a first formulation result, and a first evaluation template is generated based on the first formulation result; if the safety assessment object is a gas supply site, the indicator query result is determined based on the gas supply site to obtain a second configuration indicator, and a score rule is formulated for each configuration indicator of the second configuration indicator to obtain a second formulation result, and a first evaluation template is generated based on the second formulation result; if the safety assessment object is a gas supply enterprise, the indicator query result is determined based on the gas user to obtain a second configuration indicator, and a score rule is formulated for each configuration indicator of the second configuration indicator to obtain a second formulation result, and a first evaluation template is generated based on the second formulation result. The indicator query result is used to determine the indicator to obtain the third configuration indicator. For example, the configuration indicators in the third configuration indicator are security inspection rate, whitelist conversion rate, order utilization rate, enterprise hidden dangers and illegal filling; score rules are formulated for each configuration indicator of the third configuration indicator to obtain a third formulation result, and a third evaluation template is generated according to the third formulation result, wherein the score rule includes a single indicator score setting and an indicator deduction ladder setting. For example, if the total score is 100 points, the indicator score of the security inspection rate is set to 30 points, and the indicator deduction ladder is none; the indicator score of the whitelist conversion rate is set to 30 points, and the indicator deduction ladder is none; the indicator score of the order utilization rate is set to 20 points, and the indicator deduction ladder is none; the indicator score of the enterprise hidden danger is set to 10 points, and the indicator deduction ladder is 5-stage deduction ladder; the indicator score of the illegal filling is set to 10 points, and the indicator deduction ladder is 5-stage deduction ladder.

[0055] After obtaining the assessment template corresponding to each safety assessment object, it is possible to select a suitable assessment template according to the corresponding gas safety assessment requirement to create a corresponding safety assessment task, specifically, obtaining the gas safety assessment requirement for the safety assessment object (for example, a gas safety assessment of bottled liquefied petroleum gas from September to December of a gas supply company on December 6, 2024), performing a demand analysis on the gas safety assessment requirement to obtain the demand analysis result, and obtaining the assessment event (for example, a gas safety assessment of bottled liquefied petroleum gas of a gas supply company) and the assessment time information (the assessment start time is December 6, 2024, and the assessment period is 2024). From September to December 2010) and an assessment subject (for example, a gas supply company); thereafter, an assessment task name is generated according to the assessment event, the task start time and the assessment period are set according to the assessment time information, and the assessment template is matched according to the assessment subject to obtain a target assessment template, wherein the target assessment template is any one of the third assessment template, the third assessment template and the third assessment template; for example, if the assessment subject is a gas supply company, the corresponding target assessment template is the third assessment template; finally, a task is created according to the assessment task name, the task start time, the assessment period, the assessment subject and the target assessment template to obtain a safety assessment task.

[0056] Step S20: Perform a safety assessment on the safety assessment object of the gas safety assessment requirement according to the safety assessment task to obtain a safety assessment report.

[0057] The step S20 comprises:

[0058] Step S21, obtaining current time information, and if the time information reaches the task start time of the security assessment task, starting the security assessment task;

[0059] Step S22: collecting various indicator data of the security assessment object in a corresponding time period according to the assessment period of the security assessment task, and scoring all the indicator data according to the target assessment template of the security assessment task to obtain multiple indicator scores;

[0060] Step S23: Summarize all the indicator scores to obtain a total safety assessment score, and generate a safety assessment report based on the safety assessment task and the total safety assessment score.

[0061] Specifically, after obtaining the corresponding safety assessment task, it is necessary to execute the corresponding safety assessment task, specifically, obtain the current time information in real time. If the time information reaches the task start time of the safety assessment task, start the safety assessment task; collect various indicator data within the corresponding time period of the safety assessment object according to the evaluation cycle of the safety assessment task, for example, collect the security inspection rate, whitelist conversion rate, order utilization rate, enterprise hidden dangers and illegal filling related data of a gas supply company from September to December 2024; then, perform indicator evaluation on all the indicator data according to the target evaluation template of the safety assessment task. points to obtain multiple indicator scores; for example, the security inspection rate score is 25 points, the whitelist conversion rate score is 23 points, the order utilization rate score is 18 points, the enterprise hidden danger score is 9.7 points and the illegal filling score is 9.5 points; finally, all the indicator scores are summarized to obtain the total safety assessment score, for example, 85.2 points, and a safety assessment report is generated according to the safety assessment task and the total safety assessment score, wherein the safety assessment includes the enterprise name, assessment period, total assessment score (that is, the set total score, for example, 100 points), assessment score (that is, the total safety assessment score), assessment task name, assessment template and corresponding assessment time.

[0062] Furthermore, in an embodiment of the present invention, after obtaining the total safety assessment score, it is necessary to determine whether the safety assessment object has any safety hazards. Specifically, the total safety assessment score is compared with a preset safety total score (for example, 70 points) to obtain a comparison result, and based on the comparison result, it is determined whether the safety assessment object has any safety hazards; if the total safety assessment score is greater than or equal to the preset safety total score, it is determined that the safety assessment object has no safety hazards; if the total safety assessment score is less than the preset safety total score, it is determined that the safety assessment object has safety hazards, and a prompt is given to highlight the indicator data with the lowest score to guide the corresponding responsible persons to rectify and deal with the safety hazards. The purpose is to promptly remind the safety assessment objects with safety hazards to carry out corresponding rectification and treatment, thereby reducing safety hazards.

[0063] Step S30: If the safety assessment object has safety hazards, a hazard rectification notice is generated according to the safety assessment report, and the safety assessment object is reminded to rectify the hazard according to the hazard rectification notice.

[0064] The step S30 comprises:

[0065] Step S31: if the safety assessment report indicates that the safety assessment object has safety hazards, then each of the indicator scores is compared with a corresponding preset indicator safety score to obtain a plurality of comparison results;

[0066] Step S32: obtaining target abnormality indicator data according to all the comparison results, generating a hidden danger rectification notice according to the target abnormality indicator data, and reminding the safety assessment object to rectify the hidden danger according to the hidden danger rectification notice.

[0067] Specifically, in an embodiment of the present invention, if the safety assessment report shows that the safety assessment object has safety hazards, a corresponding hazard rectification notice needs to be issued to the corresponding safety assessment object, and the hazard rectification notice includes abnormal indicators and corresponding rectification deadlines, and the abnormal indicator determination process is to compare each of the indicator scores with the corresponding preset indicator safety scores to obtain multiple comparison results; then, target abnormal indicator data is obtained based on all the comparison results, for example, if the score of illegal filling is lower than the preset indicator safety score, then illegal filling is determined as the target abnormal indicator data, and a hazard list is generated based on the target abnormal indicator data, and corresponding rectification suggestions are made for the hazard list; subsequently, a hazard rectification notice is generated based on the hazard list and the corresponding rectification suggestions, and based on the hazard rectification notice, the safety assessment object is reminded to perform hazard rectification according to the hazard list and the corresponding rectification suggestions, thereby improving the safety of bottled liquefied petroleum gas use.

[0068] Furthermore, if the rectification period of a safety assessment object with safety hazards ends, it is necessary to re-conduct a gas safety assessment on this safety assessment object. If the corresponding assessment result is that the hazard has been eliminated, the assessment status of this safety assessment object will be changed; if the corresponding assessment result is that the hazard has not been eliminated, the safety assessment object will be subject to corresponding penalties, for example, suspending the corresponding gas business.

[0069] Furthermore, if Figure 2 As shown, based on the above-mentioned gas safety assessment method based on quantitative indicators, the present invention also provides a gas safety assessment system based on quantitative indicators, wherein the gas safety assessment system based on quantitative indicators includes:

[0070] A task creation module 51 is used to obtain a gas safety assessment requirement for a safety assessment object and create a corresponding safety assessment task according to the gas safety assessment requirement;

[0071] A safety assessment module 52, configured to perform a safety assessment on the safety assessment object of the gas safety assessment requirement according to the safety assessment task, and obtain a safety assessment report;

[0072] The hidden danger reminder module 53 is used to generate a hidden danger rectification notice according to the safety assessment report if there is a hidden danger in the safety assessment object, and remind the safety assessment object to rectify the hidden danger according to the hidden danger rectification notice.

[0073] Furthermore, if Figure 3 As shown, based on the above-mentioned gas safety assessment method based on quantitative indicators, the present invention also provides a terminal accordingly, and the terminal includes a processor 10, a memory 20 and a display 30. Figure 3 Only some components of the terminal are shown, but it should be understood that it is not required to implement all of the components shown, and more or fewer components may be implemented instead.

[0074] In some embodiments, the memory 20 may be an internal storage unit of the terminal, such as a hard disk or memory of the terminal. In other embodiments, the memory 20 may also be an external storage device of the terminal, such as a plug-in hard disk, a smart memory card (Smart Media Card, SMC), a secure digital (SecureDigital, SD) card, a flash card (Flash Card), etc. equipped on the terminal. Further, the memory 20 may also include both an internal storage unit of the terminal and an external storage device. The memory 20 is used to store application software and various types of data installed in the terminal, such as the program code of the installation terminal. The memory 20 may also be used to temporarily store data that has been output or is to be output. In one embodiment, a gas safety assessment program 40 based on quantitative indicators is stored on the memory 20, and the gas safety assessment program 40 based on quantitative indicators can be executed by the processor 10, thereby realizing the gas safety assessment method based on quantitative indicators in the present application.

[0075] In some embodiments, the processor 10 may be a central processing unit (CPU), a microprocessor or other data processing chip, used to run the program code or process data stored in the memory 20, such as executing the gas safety assessment method based on quantitative indicators.

[0076] In some embodiments, the display 30 may be an LED display, a liquid crystal display, a touch-sensitive liquid crystal display, an OLED (Organic Light-Emitting Diode) touch device, etc. The display 30 is used to display information on the terminal and to display a visual user interface. The components of the terminal communicate with each other via a system bus.

[0077] In one embodiment, when the processor 10 executes the gas safety assessment program 40 based on quantitative indicators in the memory 20, the following steps are implemented:

[0078] Obtaining a gas safety assessment requirement for a safety assessment object, and creating a corresponding safety assessment task according to the gas safety assessment requirement;

[0079] Performing a safety assessment on the safety assessment object of the gas safety assessment requirement according to the safety assessment task to obtain a safety assessment report;

[0080] If the safety assessment object has safety hazards, a hazard rectification notice is generated according to the safety assessment report, and the safety assessment object is reminded to rectify the hazard according to the hazard rectification notice.

[0081] The step of obtaining a gas safety assessment requirement for a safety assessment object and creating a corresponding safety assessment task according to the gas safety assessment requirement may also include:

[0082] Obtain an assessment indicator configuration instruction for the safety assessment object, perform configuration indicator query according to the assessment indicator configuration instruction, and obtain indicator query results, wherein the configuration indicators include hidden danger rectification rate, security inspection rate, whitelist conversion rate, order utilization rate, delivery code rate, bottle scanning rate, warehousing scanning rate, enterprise hidden dangers and illegal filling;

[0083] The indicator query result is index-determined according to the safety assessment object to obtain an indicator determination result, and a corresponding assessment template is formulated according to the indicator determination result, wherein the safety assessment object includes gas users, gas supply sites and gas supply enterprises.

[0084] Wherein, the indicator determination result includes a first configuration indicator, a second configuration indicator and a third configuration indicator;

[0085] The step of determining an indicator on the indicator query result according to the security assessment object to obtain an indicator determination result, and formulating a corresponding assessment template according to the indicator determination result, specifically includes:

[0086] If the safety assessment object is a gas user, the index query result is determined according to the gas user to obtain a first configuration index, and a score rule is formulated for each configuration index of the first configuration index to obtain a first formulation result, and a first assessment template is generated according to the first formulation result;

[0087] If the safety assessment object is a gas supply site, the indicator query result is determined according to the gas supply site to obtain a second configuration indicator, and a score rule is formulated for each configuration indicator of the second configuration indicator to obtain a second formulation result, and a first assessment template is generated according to the second formulation result;

[0088] If the safety assessment object is a gas supply enterprise, the indicator query result is determined according to the gas user to obtain a third configuration indicator, and a score rule is formulated for each configuration indicator of the third configuration indicator to obtain a third formulation result, and a third assessment template is generated according to the third formulation result.

[0089] The obtaining of the gas safety assessment requirements for the safety assessment object and the creation of the corresponding safety assessment task according to the gas safety assessment requirements specifically include:

[0090] Obtaining gas safety assessment requirements for a safety assessment object, performing requirements analysis on the gas safety assessment requirements, obtaining requirements analysis results, and obtaining assessment events, assessment time information, and assessment subjects according to the requirements analysis results;

[0091] Generate an assessment task name according to the assessment event, set the task start time and assessment period according to the assessment time information, and perform assessment template matching according to the assessment subject to obtain a target assessment template;

[0092] Create a task according to the assessment task name, the task start time, the assessment period, the assessment subject and the target assessment template to obtain a security assessment task;

[0093] Among them, the target evaluation template is any one of the third evaluation template, the third evaluation template and the third evaluation template.

[0094] Wherein, performing a safety assessment on the safety assessment object of the gas safety assessment requirement according to the safety assessment task to obtain a safety assessment report specifically includes:

[0095] Acquire current time information, and if the time information reaches the task start time of the security assessment task, start the security assessment task;

[0096] Collecting various indicator data within a time period corresponding to the security assessment object according to the assessment period of the security assessment task, and scoring all the indicator data according to the target assessment template of the security assessment task to obtain multiple indicator scores;

[0097] All the indicator scores are aggregated to obtain a total safety assessment score, and a safety assessment report is generated based on the safety assessment task and the total safety assessment score.

[0098] The method further comprises: aggregating all the indicator scores to obtain a total safety assessment score, and generating a safety assessment report according to the safety assessment task and the total safety assessment score, and then:

[0099] Compare the total safety assessment score with the preset total safety score to obtain a comparison result, and determine whether the safety assessment object has safety hazards according to the comparison result;

[0100] If the total safety assessment score is greater than or equal to the preset total safety score, it is determined that there is no safety hazard in the safety assessment object;

[0101] If the total safety assessment score is less than the preset total safety score, it is determined that the safety assessment object has a safety hazard.

[0102] If the safety assessment object has safety hazards, a hazard rectification notice is generated according to the safety assessment report, and the safety assessment object is reminded to rectify the hazard according to the hazard rectification notice, which specifically includes:

[0103] If the safety assessment report indicates that the safety assessment object has safety hazards, each of the indicator scores is compared with the corresponding preset indicator safety score to obtain multiple comparison results;

[0104] Target abnormality indicator data is obtained according to all the comparison results, a hidden danger rectification notice is generated according to the target abnormality indicator data, and the safety assessment object is reminded to rectify the hidden danger according to the hidden danger rectification notice.

[0105] The present invention also provides a computer-readable storage medium, wherein the computer-readable storage medium stores a gas safety assessment program based on quantitative indicators, and when the gas safety assessment program based on quantitative indicators is executed by a processor, the steps of the gas safety assessment method based on quantitative indicators as described above are implemented.

[0106] In summary, the present invention provides a gas safety assessment method, system, terminal and medium based on quantitative indicators, the method comprising: obtaining a gas safety assessment requirement for a safety assessment object, creating a corresponding safety assessment task according to the gas safety assessment requirement; performing a safety assessment on the safety assessment object of the gas safety assessment requirement according to the safety assessment task, and obtaining a safety assessment report; if the safety assessment object has a safety hazard, generating a hazard rectification notice according to the safety assessment report, and reminding the safety assessment object to rectify the hazard according to the hazard rectification notice. The present invention conducts an online assessment of each bottled liquefied petroleum gas subject through the formulated gas assessment rules, thereby improving the safety assessment efficiency of bottled liquefied petroleum gas, and formulating different assessment templates for different assessment subjects, so that the safety assessment of bottled liquefied petroleum gas is more accurate.

[0107] It should be noted that, in this article, the terms "include", "comprises" or any other variations thereof are intended to cover non-exclusive inclusion, so that a process, method, article or terminal including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or terminal. In the absence of further restrictions, an element defined by the sentence "comprises a ..." does not exclude the presence of other identical elements in the process, method, article or terminal including the element.

[0108] Of course, those skilled in the art can understand that all or part of the processes in the above-mentioned embodiments can be implemented by instructing related hardware (such as a processor, a controller, etc.) through a computer program, and the program can be stored in a computer-readable storage medium that can be read by a computer, and the program can include the processes of the above-mentioned method embodiments when executed. The computer-readable storage medium can be a memory, a disk, an optical disk, etc.

[0109] It should be understood that the application of the present invention is not limited to the above examples. For ordinary technicians in this field, improvements or changes can be made based on the above description. All these improvements and changes should fall within the scope of protection of the claims attached to the present invention.

Claims

1. A gas safety assessment method based on quantitative indicators, characterized in that: The gas safety assessment method based on quantitative indicators includes: Obtaining gas safety assessment requirements for the safety assessment object, and creating corresponding safety assessment tasks according to the gas safety assessment requirements; Performing a safety assessment on the safety assessment object of the gas safety assessment requirement according to the safety assessment task to obtain a safety assessment report; If the safety assessment object has safety hazards, a hazard rectification notice is generated according to the safety assessment report, and the safety assessment object is reminded to rectify the hazard according to the hazard rectification notice.

2. The gas safety assessment method based on quantitative indicators according to claim 1 is characterized in that: The obtaining of gas safety assessment requirements for the safety assessment object and the creation of corresponding safety assessment tasks according to the gas safety assessment requirements may also include: Obtain an assessment indicator configuration instruction for the safety assessment object, perform configuration indicator query according to the assessment indicator configuration instruction, and obtain indicator query results, wherein the configuration indicators include hidden danger rectification rate, security inspection rate, whitelist conversion rate, order utilization rate, delivery code rate, bottle scanning rate, warehousing scanning rate, enterprise hidden dangers and illegal filling; The indicator query result is index-determined according to the safety assessment object to obtain an indicator determination result, and a corresponding assessment template is formulated according to the indicator determination result, wherein the safety assessment object includes gas users, gas supply sites and gas supply enterprises.

3. The gas safety assessment method based on quantitative indicators according to claim 2 is characterized in that: The indicator determination result includes a first configuration indicator, a second configuration indicator and a third configuration indicator; The step of determining an indicator on the indicator query result according to the security assessment object to obtain an indicator determination result, and formulating a corresponding assessment template according to the indicator determination result, specifically includes: If the safety assessment object is a gas user, the index query result is determined according to the gas user to obtain a first configuration index, and a score rule is formulated for each configuration index of the first configuration index to obtain a first formulation result, and a first assessment template is generated according to the first formulation result; If the safety assessment object is a gas supply site, the indicator query result is determined according to the gas supply site to obtain a second configuration indicator, and a score rule is formulated for each configuration indicator of the second configuration indicator to obtain a second formulation result, and a first assessment template is generated according to the second formulation result; If the safety assessment object is a gas supply enterprise, the indicator query result is determined according to the gas user to obtain a third configuration indicator, and a score rule is formulated for each configuration indicator of the third configuration indicator to obtain a third formulation result, and a third assessment template is generated according to the third formulation result.

4. The gas safety assessment method based on quantitative indicators according to claim 3 is characterized in that: The obtaining of the gas safety assessment requirement for the safety assessment object and creating a corresponding safety assessment task according to the gas safety assessment requirement specifically includes: Obtaining gas safety assessment requirements for a safety assessment object, performing requirements analysis on the gas safety assessment requirements, obtaining requirements analysis results, and obtaining assessment events, assessment time information, and assessment subjects according to the requirements analysis results; Generate an assessment task name according to the assessment event, set the task start time and assessment period according to the assessment time information, and perform assessment template matching according to the assessment subject to obtain a target assessment template; Create a task according to the assessment task name, the task start time, the assessment period, the assessment subject and the target assessment template to obtain a security assessment task; Among them, the target evaluation template is any one of the third evaluation template, the third evaluation template and the third evaluation template.

5. The gas safety assessment method based on quantitative indicators according to claim 1 is characterized in that: The performing of a safety assessment on the safety assessment object of the gas safety assessment requirement according to the safety assessment task to obtain a safety assessment report specifically includes: Acquire current time information, and if the time information reaches the task start time of the security assessment task, start the security assessment task; Collecting various indicator data within a time period corresponding to the security assessment object according to the assessment period of the security assessment task, and scoring all the indicator data according to the target assessment template of the security assessment task to obtain multiple indicator scores; All the indicator scores are aggregated to obtain a total safety assessment score, and a safety assessment report is generated based on the safety assessment task and the total safety assessment score.

6. The gas safety assessment method based on quantitative indicators according to claim 5 is characterized in that: The method further comprises: aggregating all the indicator scores to obtain a total safety assessment score, and generating a safety assessment report according to the safety assessment task and the total safety assessment score, and then: Compare the total safety assessment score with the preset total safety score to obtain a comparison result, and determine whether the safety assessment object has safety hazards according to the comparison result; If the total safety assessment score is greater than or equal to the preset total safety score, it is determined that there is no safety hazard in the safety assessment object; If the total safety assessment score is less than the preset total safety score, it is determined that the safety assessment object has a safety hazard.

7. The gas safety assessment method based on quantitative indicators according to claim 5 is characterized in that: If the safety assessment object has safety hazards, a hazard rectification notice is generated according to the safety assessment report, and the safety assessment object is reminded to rectify the hazard according to the hazard rectification notice, specifically including: If the safety assessment report indicates that the safety assessment object has safety hazards, each of the indicator scores is compared with the corresponding preset indicator safety score to obtain multiple comparison results; Target abnormality indicator data is obtained according to all the comparison results, a hidden danger rectification notice is generated according to the target abnormality indicator data, and the safety assessment object is reminded to rectify the hidden danger according to the hidden danger rectification notice.

8. A gas safety assessment system based on quantitative indicators, characterized in that: The gas safety assessment system based on quantitative indicators includes: A task creation module, used to obtain gas safety assessment requirements for a safety assessment object, and create a corresponding safety assessment task according to the gas safety assessment requirements; A safety assessment module, used to perform a safety assessment on the safety assessment object of the gas safety assessment requirement according to the safety assessment task, and obtain a safety assessment report; The hidden danger reminder module is used to generate a hidden danger rectification notice according to the safety assessment report if there are hidden dangers in the safety assessment object, and remind the safety assessment object to rectify the hidden danger according to the hidden danger rectification notice.

9. A terminal, characterized in that: The terminal includes: a memory, a processor, and a gas safety assessment program based on quantitative indicators stored in the memory and executable on the processor. When the gas safety assessment program based on quantitative indicators is executed by the processor, the steps of the gas safety assessment method based on quantitative indicators as described in any one of claims 1 to 7 are implemented.

10. A computer-readable storage medium, characterized in that: The computer-readable storage medium stores a gas safety assessment program based on quantitative indicators, and when the gas safety assessment program based on quantitative indicators is executed by a processor, the steps of the gas safety assessment method based on quantitative indicators as described in any one of claims 1-7 are implemented.