Method, system and device for processing gasoline data and storage medium
By constructing a gasoline molecular database and performing standardized processing, the problem of low gasoline data query efficiency in different fields is solved, unified data storage and efficient query are achieved, and the development of gasoline molecular management technology is promoted.
Patent Information
- Application Number
- CN202311467695.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-06
- Publication Date
- 2025-05-06
AI Technical Summary
In different application fields, the names, values and classifications of gasoline data vary, which leads to staff spending more time distinguishing data usage habits in different fields when querying data in different fields, and the query efficiency is low.
By constructing a gasoline molecular database, using a unified data format and standardized processing method, gasoline data in different fields is standardized to form standardized unified data and store it in the database for easy query.
It realizes standardized processing and unified storage of gasoline data in different fields, improves the efficiency of data query, reduces the cost of adaptation time, and promotes the development of gasoline molecular management technology.
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Figure CN119938746A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the field of gasoline management, and in particular relates to a method, system, device and storage medium for processing gasoline data. Background Art
[0002] Gasoline is one of the most widely used light petroleum products and an important fuel for engines. According to the manufacturing process, gasoline components can be divided into straight-run gasoline, thermal cracking gasoline (coking gasoline), catalytic cracking gasoline, catalytic reforming gasoline, composite gasoline, hydrocracking gasoline, alkylation gasoline and synthetic gasoline. Gasoline products can be divided into three categories according to their uses: aviation gasoline, motor gasoline and solvent gasoline. The first two are mainly used as fuel for gasoline engines and are widely used in cars, motorcycles, speedboats, helicopters, agricultural and forestry aircraft, etc.; solvent gasoline is used in the production of synthetic rubber, paint, grease, fragrances, etc.; gasoline components can also dissolve oil and other substances that cannot be dissolved by water, playing a role in cleaning oil; gasoline components, as organic solvents, can also be used as extractants.
[0003] For different application fields, the names, value ranges and classifications of various data in gasoline are different. For example, the usage of gasoline in the aviation fuel field and the synthetic paint field is completely different. For fields that require large-scale use, gasoline data generally uses larger units of measurement, while for fields that only require small-capacity use, gasoline data generally uses smaller units of measurement. In addition, in different application fields, according to industry practices, the names of various gasoline data are also different. Therefore, when it is necessary to query data in different fields, relevant staff need more time to distinguish the data usage habits in different fields, and the query efficiency is low. Summary of the invention
[0004] In view of the above problems, the technical solution adopted by the present invention is: a method for processing gasoline data, comprising the following steps:
[0005] When the original gasoline data is input into the gasoline molecule database, the data format of the original gasoline data is compared with the data format preset in the gasoline molecule database to determine whether the data formats are consistent;
[0006] If the data format comparison result is inconsistent, the original gasoline data is processed according to the data format preset in the gasoline molecule database;
[0007] The processed raw gasoline data is entered into the gasoline molecule database.
[0008] Furthermore, the original gasoline data includes gasoline macroscopic physical property data and / or gasoline microscopic composition data; wherein,
[0009] The gasoline microscopic composition data includes gasoline molecular composition, which includes real molecules and / or represented molecules, and the molecular content ratios corresponding to the real molecules and / or represented molecules.
[0010] Furthermore, the method further comprises constructing a gasoline molecule database; when constructing the gasoline molecule database, the following steps are included:
[0011] Construct gasoline macroscopic physical property form and gasoline microscopic composition form according to the preset data format;
[0012] The gasoline macroscopic physical property form and gasoline microscopic composition form are linked to each other to form a gasoline molecular database.
[0013] Furthermore, the method further comprises the steps of:
[0014] If the data format comparison result is consistent, the unprocessed original gasoline data will be entered into the gasoline molecule database.
[0015] Furthermore, in the step of comparing the data format of the original gasoline data with the data format preset in the gasoline molecule database, the step includes comparing the name of each data item in the original gasoline data and the numerical unit of each data item;
[0016] The gasoline molecule database is provided with a vocabulary for storing the standard names of various data and a unit conversion model for converting numerical units.
[0017] Furthermore, the step of processing the original gasoline data includes:
[0018] Input the names of the data items in the original gasoline data into the word library to obtain the standard names of the data items in the original gasoline data, and replace and modify the names of the data items in the original gasoline data according to the standard names;
[0019] The numerical values and units of various data in the original gasoline data are input into the unit conversion model, and the various data in the original gasoline data are standardized and converted through the unit conversion model, and the numerical values and units in the original gasoline data are replaced and modified.
[0020] Furthermore, the step of entering the processed raw gasoline data into the gasoline molecule database includes:
[0021] Extract the gasoline type from the raw gasoline data;
[0022] Determine whether the gasoline type in the original gasoline data exists in the gasoline molecule database;
[0023] If it does not exist, a template file with a preset data format is created in the gasoline molecule database, and the processed original gasoline data is entered into the newly created template file;
[0024] If it exists, the template file corresponding to the gasoline type of the original gasoline data is searched in the gasoline molecule database, and the processed original gasoline data is entered into the template file corresponding to the gasoline type.
[0025] Furthermore, each gasoline type in the gasoline molecule database includes multiple names; the step of determining whether there is a gasoline type in the original gasoline data in the gasoline molecule database includes:
[0026] Compare the names of gasoline types in the original gasoline data with the names of gasoline types in the gasoline molecule database;
[0027] If the name of the gasoline type in the gasoline molecule database exists in the name of the gasoline type in the original gasoline data, it is determined that the gasoline type in the original gasoline data exists in the gasoline molecule database;
[0028] If the name of the gasoline type in the gasoline molecule database does not exist in the name of the gasoline type in the original gasoline data, it is determined that the gasoline type in the original gasoline data does not exist in the gasoline molecule database.
[0029] The present invention also provides a system for processing gasoline data, comprising:
[0030] A data comparison unit is used to compare the data format of the original gasoline data with the data format preset in the gasoline molecule database when the original gasoline data is input into the gasoline molecule database, and determine whether the data formats are consistent;
[0031] A data processing unit, used for processing the original gasoline data according to a preset data format when the data format comparison result is inconsistent;
[0032] The data entry unit is used to enter the processed original gasoline data into the gasoline molecule database when the data format comparison result is inconsistent.
[0033] Furthermore, it also includes a gasoline molecule data construction unit for constructing a gasoline molecule database; when constructing the gasoline molecule database, the gasoline molecule database construction unit includes:
[0034] Construct gasoline macroscopic physical property form and gasoline microscopic composition form according to the preset data format;
[0035] The gasoline macroscopic physical property form and gasoline microscopic composition form are linked to each other to form a gasoline molecular database.
[0036] Furthermore, the data entry unit is also used to enter the unprocessed original gasoline data into the gasoline molecule database when the data format comparison result is consistent.
[0037] Furthermore, when comparing the data format of the original gasoline data and the preset data format in the gasoline molecule database, the data comparison unit includes comparing the name of each data item in the original gasoline data and the numerical unit of each data item;
[0038] The gasoline molecule database includes a vocabulary for storing standard names of various data items and a unit conversion model for numerical unit conversion.
[0039] Furthermore, the data processing unit, in the step of processing the raw gasoline data, includes:
[0040] Input the names of the data items in the original gasoline data into the word library to obtain the standard names of the data items in the original gasoline data, and replace and modify the names of the data items in the original gasoline data according to the standard names;
[0041] The numerical values and units of various data in the original gasoline data are input into the unit conversion model, and the various data in the original gasoline data are standardized and converted through the unit conversion model, and the numerical values and units in the original gasoline data are replaced and modified.
[0042] Furthermore, when the data entry unit enters the processed raw gasoline data into the gasoline molecule database, it includes:
[0043] Extract the gasoline type from the raw gasoline data;
[0044] Determine whether the gasoline type in the original gasoline data exists in the gasoline molecule database;
[0045] If it does not exist, a template file with a preset data format is created in the gasoline molecule database, and the processed original gasoline data is entered into the newly created template file;
[0046] If it exists, the template file corresponding to the gasoline type of the original gasoline data is searched in the gasoline molecule database, and the processed original gasoline data is entered into the template file corresponding to the gasoline type.
[0047] Furthermore, each gasoline type in the gasoline molecule database includes multiple names; the data entry unit includes:
[0048] Compare the names of gasoline types in the original gasoline data with the names of gasoline types in the gasoline molecule database;
[0049] If the name of the gasoline type in the gasoline molecule database exists in the name of the gasoline type in the original gasoline data, it is determined that the gasoline type in the original gasoline data exists in the gasoline molecule database;
[0050] If the name of the gasoline type in the gasoline molecule database does not exist in the name of the gasoline type in the original gasoline data, it is determined that the gasoline type in the original gasoline data does not exist in the gasoline molecule database.
[0051] The present invention also provides a device for processing gasoline data, including a storage medium storing a computer program, and a processor for executing the computer program. The processor executes the above-mentioned method for processing gasoline data when running the computer program.
[0052] The present invention also provides a computer-readable storage medium, characterized in that the computer-readable storage medium stores one or more programs, and the one or more programs can be executed by one or more processors to implement the steps of the above-mentioned method for processing gasoline data.
[0053] The present invention has the following beneficial effects due to the adoption of the above technical solution: by adopting the method of centralized and unified data management, gasoline data in different fields can be input into the gasoline molecule database for standardization processing, thereby obtaining standardized and unified data, and the gasoline data after standardization processing is input into the gasoline molecule database for storage, which is convenient for staff to query and has high query efficiency. Moreover, the standard data structure is conducive to the development of various simulation calculation programs, and the rapid realization of mutual call of data between different program models, promoting the development of gasoline molecule management technology.
[0054] Other features and advantages of the present invention will be described in the following description, and partly become apparent from the description, or understood by practicing the present invention. The purpose and other advantages of the present invention can be realized and obtained by the structures pointed out in the description, claims and drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0055] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.
[0056] Figure 1 A flowchart of the method steps for processing gasoline data according to an embodiment of the present invention is shown;
[0057] Figure 2 A structural diagram of a system unit for processing gasoline data according to an embodiment of the present invention is shown.
[0058] In the figure: 1. Data comparison unit; 2. Data processing unit; 3. Data entry unit. DETAILED DESCRIPTION
[0059] In order to make the purpose, technical solution and advantages of the embodiments of the present invention clearer, the technical solution in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0060] The method for processing gasoline data in an embodiment of the present invention, before processing gasoline data, needs to first construct a gasoline molecule database, and includes the following steps:
[0061] S01: Construct a gasoline macroscopic physical property form and a gasoline microscopic composition form according to a preset data format.
[0062] In this step, the constructed form can be one form or multiple forms. When there are multiple forms, they can be divided according to different physical property data to form multiple forms of different data types, which is convenient for subsequent data entry.
[0063] S02: The gasoline macroscopic physical property table and the gasoline microscopic composition table are linked to each other to form a gasoline molecular database.
[0064] In addition, the constructed gasoline macroscopic physical property form and gasoline microscopic composition form may also include modification date (or entry date), code, description information, remarks, etc., to facilitate staff to query relevant information.
[0065] The original gasoline data in this scheme includes gasoline macroscopic physical property data and / or gasoline microscopic composition data; wherein, gasoline macroscopic physical property data includes information such as gasoline fraction properties, gasoline microscopic composition data includes gasoline molecular composition, gasoline molecular composition includes a variety of real molecules and / or characterized molecules, and the molecular content proportion corresponding to the real molecules and / or characterized molecules, and the content proportion is displayed as a percentage. Real molecules refer to molecules that actually exist and have a definite molecular structure, and characterized molecules are SOL molecules (Structure Oriented Lumps) characterized by 24 structural vectors (groups). wherein, based on the corresponding relationship, real molecules can be converted into SOL molecules. and in this embodiment, gasoline macroscopic physical property data and gasoline molecular composition can be obtained by instrumental analysis and detection methods.
[0066] The structure-oriented lumping (SOL) method was first proposed by Quann and Jaffe in 1992, which uses a small number of simple structural units to represent the composition of compounds. They cited the concept of groups, selected a variety of structural groups to describe the molecular structure of compounds, and used the combination vectors of these structural groups to represent petroleum molecules.
[0067] When inputting the original gasoline data into the gasoline molecule database, the original gasoline data is input through the gasoline macroscopic physical property form and the gasoline microscopic composition form. When inputting the gasoline macroscopic physical property data corresponding to the gasoline macroscopic physical property form, if a physical property is missing, the corresponding item can be left blank.
[0068] The standard names and standard units of the values of various gasoline data in the gasoline molecule database of this embodiment are as follows:
[0069] The macroscopic properties of gasoline include: TBP initial distillation point (℃), TBP final distillation point (℃), fraction volume yield (%), fraction weight yield (%), 20℃ density (g / cm3), acid value (mgKOH / g), acidity (mgKOH / 100mL), sulfur content (wt%), oxygen content (wt%), total nitrogen content (ppm), aniline point (℃), K value, related index, Reye's vapor pressure (kpa), mercaptan sulfur content (ppm), copper rot, modified olefin content (wt%), aromatic mass content (wt%), cycloalkane content (wt%), normal alkane (wt%), isoalkane (wt%), arsenic (ppb), lead (ppb), copper (ppm), moisture (wt%), benzene content (wt%), research octane number, Englert distillation initial distillation point (℃), 10% distillation temperature (℃) (recorded as distillation range: 10 %, ℃(℃)), 30% distillation temperature (℃) (recorded as distillation range: 30%, ℃(℃)), 40% distillation temperature (℃) (recorded as distillation range: 40%, ℃(℃)), 50% distillation temperature (℃) (recorded as distillation range: 50%, ℃(℃)), 70% distillation temperature (℃) (recorded as distillation range: 70%, ℃(℃)), 90% distillation temperature (℃) (recorded as distillation range: 90%, ℃(℃)), Englert distillation end point (℃), basic nitrogen content (ppm), average molecular weight (g / mol), paraffin mass content (wt%), alkane content (wt%), actual colloid (mg / 100mL), H content (wt%), C content (wt%), carbon-hydrogen ratio, chlorine (ppm), alkane volume content (v%), paraffin volume content (v%), cycloalkane volume content (v%), olefin volume content (v%), aromatic potential (%).
[0070] like Figure 1 As shown, the method for processing gasoline data in an embodiment of the present invention is implemented based on the gasoline molecule database, and specifically includes the following steps:
[0071] S1: When the original gasoline data is input into the gasoline molecule database, the data format of the original gasoline data is compared with the data format preset in the gasoline molecule database to determine whether the data formats are consistent.
[0072] The step of comparing the data format of the original gasoline data with the preset data format in the gasoline molecule database includes comparing the names of the data items in the original gasoline data and the numerical units of the data items. The gasoline molecule database is provided with a vocabulary for storing the standard names of the data items and a unit conversion model for numerical unit conversion.
[0073] If the data format comparison result is inconsistent, execute S2;
[0074] If the data format comparison result is consistent, execute step S4;
[0075] S2: Processing the original gasoline data according to the preset data format in the gasoline molecule database.
[0076] The specific steps are as follows:
[0077] S21: inputting the names of the data items in the original gasoline data into the word library to obtain the standard names of the data items in the original gasoline data, and replacing and modifying the names of the data items in the original gasoline data according to the standard names;
[0078] S22: Inputting the values and units of various data in the original gasoline data into the unit conversion model, performing standardization conversion on various data in the original gasoline data through the unit conversion model, and replacing and modifying the values and units in the original gasoline data.
[0079] S3: Enter the processed raw gasoline data into the gasoline molecule database.
[0080] S4: Enter the unprocessed raw gasoline data into the gasoline molecule database.
[0081] In step S3 and step S4, the processed / unprocessed raw gasoline data is entered into the gasoline molecule database as follows:
[0082] S31: extracting gasoline type from raw gasoline data;
[0083] S32: Determine whether the gasoline type of the original gasoline data exists in the gasoline molecule database;
[0084] Specifically, the name of the gasoline type in the original gasoline data is compared with the name of the gasoline type in the gasoline molecule database to determine whether the gasoline type in the original gasoline data exists in the gasoline molecule database. Each gasoline type in the gasoline molecule database includes multiple names to avoid differences in the names of gasoline types for different application fields, which may affect the comparison effect and ensure the accuracy of the comparison result.
[0085] If the name of the gasoline type in the gasoline molecule database does not exist in the name of the gasoline type in the original gasoline data, it is determined that the gasoline type in the original gasoline data does not exist, and the following steps are performed:
[0086] S33: A template file with a preset data format is newly created in the gasoline molecule database, and the processed / unprocessed raw gasoline data is entered into the newly created template file, so that different types of gasoline can be stored separately.
[0087] If the name of the gasoline type in the gasoline molecule database exists in the name of the gasoline type in the original gasoline data, it is determined that the gasoline type in the original gasoline data exists, and the following steps are performed:
[0088] S34: Searching for a template file corresponding to the gasoline type of the original gasoline data in the gasoline molecule database, and entering the processed / unprocessed original gasoline data into the template file corresponding to the gasoline type, and updating the file content.
[0089] Based on the above method, the present invention can automatically convert non-standard gasoline data into standard data to store in the gasoline molecule database, thereby improving the data query efficiency of gasoline molecule database query personnel and reducing the adaptation time cost of query personnel. In addition, the standard data structure is conducive to the development of various simulation calculation programs, and the rapid realization of data mutual call between different program models, promoting the development of gasoline molecule management technology.
[0090] Combined with the above method of processing gasoline data, such as Figure 2 As shown, the embodiment of the present invention further provides a system for processing gasoline data, including a data comparison unit 1, a data processing unit 2 and a data entry unit 3. Specifically:
[0091] The data comparison unit 1 is used to compare the data format of the original gasoline data with the preset data format in the gasoline molecule database. When performing format comparison, the data comparison unit 1 includes comparing the name of each data item in the original gasoline data and the numerical unit of each data item.
[0092] The data processing unit 2 is used to process the original gasoline data according to the preset data format when the data format comparison result is inconsistent. The data processing unit 2 specifically includes: inputting the name of each data in the original gasoline data into the vocabulary to obtain the standard name of each data in the original gasoline data, and replacing and modifying the name of each data in the original gasoline data according to the standard name; inputting the value and unit of each data in the original gasoline data into the unit conversion model, standardizing and converting each data in the original gasoline data through the unit conversion model, and replacing and modifying the value and unit in the original gasoline data.
[0093] When the data format comparison result is inconsistent, the data entry unit 3 is used to enter the processed original gasoline data into the gasoline molecule database. When the comparison result of the data comparison unit 1 is consistent, the data entry unit 3 is also used to enter the unprocessed original gasoline data into the gasoline molecule database.
[0094] The implementation process of the functions and effects of each unit in this system is the same as the implementation process of the corresponding steps in the above method.
[0095] In some embodiments, the system further includes a gasoline molecule database construction module, and the gasoline molecule database construction unit is used to construct a gasoline molecule database. When constructing the gasoline molecule database, the gasoline molecule database construction unit includes: constructing a gasoline macroscopic property form and a gasoline microscopic composition form according to a preset data format; and correlating the gasoline macroscopic property form and the gasoline microscopic composition form to form a gasoline molecule database.
[0096] The implementation process of the functions and effects of each module unit in this system is specifically described in the implementation process of the corresponding steps in the above method, which will not be repeated here.
[0097] Furthermore, an embodiment of the present invention also provides a device for processing gasoline data, including a storage medium storing a computer program, and a processor for executing the computer program, and the processor implements the above-mentioned method for processing gasoline data when running the computer program.
[0098] For example, the computer-readable storage medium may be a non-volatile computer-readable storage medium, such as but not limited to: a portable computer disk, a hard disk, a random access memory (RAM), a read-only memory (ROM), an erasable programmable read-only memory (EPROM or flash memory), a portable compact disk read-only memory (CD-ROM), an optical storage device, a magnetic storage device, or any suitable combination of the above. In an embodiment of the present invention, a computer-readable storage medium may be any tangible medium containing or storing a program, which may be used by or in combination with an instruction execution system, an apparatus or a device. Based on the same inventive concept, an embodiment of the present invention also provides a computer-readable storage medium, wherein the computer-readable storage medium stores one or more programs, and the one or more programs may be executed by one or more processors to implement the steps of the method for processing gasoline data in any possible implementation described above.
[0099] Based on the same inventive concept, an embodiment of the present invention further provides a computer program product, including a computer program, which, when executed by a processor, implements the steps of the method for processing gasoline data in any possible implementation manner described above.
[0100] In the above embodiments, all or part of the embodiments may be implemented by software, hardware, firmware or any combination thereof. When implemented by software, all or part of the embodiments may be implemented in the form of a computer program product. The computer program product includes one or more computer instructions. When the computer program instructions are loaded and executed on a computer, all or part of the processes or functions according to the embodiments of the present invention are generated. The computer may be a general-purpose computer, a special-purpose computer, a computer network, or other programmable devices.
[0101] The above is only a preferred embodiment of the present invention, and does not limit the present invention in any form. Although the present invention has been disclosed as a preferred embodiment as above, it is not used to limit the present invention. Any technician familiar with this profession can make some changes or modifications to equivalent embodiments of equivalent changes using the technical contents disclosed above without departing from the scope of the technical solution of the present invention. However, any simple modification, equivalent change and modification made to the above embodiments based on the technical essence of the present invention without departing from the content of the technical solution of the present invention still fall within the scope of the technical solution of the present invention.
Claims
1. A method for processing gasoline data, characterized in that: The following steps are involved: When the original gasoline data is input into the gasoline molecule database, the data format of the original gasoline data is compared with the data format preset in the gasoline molecule database to determine whether the data formats are consistent; the original gasoline data includes gasoline macroscopic physical property data and / or gasoline microscopic composition data; The step of comparing the data format of the original gasoline data with the data format preset in the gasoline molecule database includes comparing the names of the data items in the original gasoline data and the numerical units of the data items; the gasoline molecule database is provided with a vocabulary for storing the standard names of the data items and a unit conversion model for converting the numerical units; If the data format comparison result is inconsistent, the original gasoline data is processed according to the data format preset in the gasoline molecule database; The processed raw gasoline data is entered into the gasoline molecule database.
2. The method for processing gasoline data according to claim 1, characterized in that: The gasoline microscopic composition data includes gasoline molecular composition, which includes real molecules and / or represented molecules, and the molecular content ratios corresponding to the real molecules and / or represented molecules.
3. The method for processing gasoline data according to claim 1, characterized in that: The method also includes constructing a gasoline molecule database; When building a gasoline molecule database, the following steps are included: Construct gasoline macroscopic physical property form and gasoline microscopic composition form according to the preset data format; The gasoline macroscopic physical property form and gasoline microscopic composition form are linked to each other to form a gasoline molecular database.
4. The method for processing gasoline data according to claim 1, characterized in that: The method further comprises the steps of: If the data format comparison result is consistent, the unprocessed original gasoline data will be entered into the gasoline molecule database.
5. The method for processing gasoline data according to claim 1, characterized in that: The steps for processing the raw gasoline data include: Input the names of the data items in the original gasoline data into the word library to obtain the standard names of the data items in the original gasoline data, and replace and modify the names of the data items in the original gasoline data according to the standard names; The numerical values and units of various data in the original gasoline data are input into the unit conversion model, and the various data in the original gasoline data are standardized and converted through the unit conversion model, and the numerical values and units in the original gasoline data are replaced and modified.
6. The method for processing gasoline data according to any one of claims 1 to 5, characterized in that: The step of entering the processed raw gasoline data into the gasoline molecule database includes: Extract the gasoline type from the raw gasoline data; Determine whether the gasoline type in the original gasoline data exists in the gasoline molecule database; If it does not exist, a template file with a preset data format is created in the gasoline molecule database, and the processed original gasoline data is entered into the newly created template file; If it exists, the template file corresponding to the gasoline type of the original gasoline data is searched in the gasoline molecule database, and the processed original gasoline data is entered into the template file corresponding to the gasoline type.
7. The method for processing gasoline data according to claim 6, characterized in that: Each gasoline type in the gasoline molecule database includes multiple names; the step of determining whether there is a gasoline type in the original gasoline data in the gasoline molecule database includes: Compare the names of gasoline types in the original gasoline data with the names of gasoline types in the gasoline molecule database; If the name of the gasoline type in the gasoline molecule database exists in the name of the gasoline type in the original gasoline data, it is determined that the gasoline type in the original gasoline data exists in the gasoline molecule database; If the name of the gasoline type in the gasoline molecule database does not exist in the name of the gasoline type in the original gasoline data, it is determined that the gasoline type in the original gasoline data does not exist in the gasoline molecule database.
8. A system for processing gasoline data, characterized in that: include: A data comparison unit is used to compare the data format of the original gasoline data with the data format preset in the gasoline molecule database when the original gasoline data is input into the gasoline molecule database, and determine whether the data formats are consistent; the original gasoline data includes gasoline macroscopic physical property data and / or gasoline microscopic composition data; The data comparison unit, when comparing the data format of the original gasoline data with the preset data format in the gasoline molecule database, includes comparing the names of the data items in the original gasoline data and the numerical units of the data items; the gasoline molecule database includes a vocabulary for storing the standard names of the data items and a unit conversion model for converting numerical units; A data processing unit, used for processing the original gasoline data according to a preset data format when the data format comparison result is inconsistent; The data entry unit is used to enter the processed original gasoline data into the gasoline molecule database when the data format comparison result is inconsistent.
9. The system for processing gasoline data according to claim 8, characterized in that: It also includes a gasoline molecule data construction unit for constructing a gasoline molecule database; The gasoline molecule database construction unit includes: Construct gasoline macroscopic physical property form and gasoline microscopic composition form according to the preset data format; The gasoline macroscopic physical property form and gasoline microscopic composition form are linked to each other to form a gasoline molecular database.
10. The system for processing gasoline data according to claim 8, characterized in that: The data entry unit is also used to enter the unprocessed original gasoline data into the gasoline molecule database when the data format comparison result is consistent.
11. The system for processing gasoline data according to claim 8, characterized in that: The data processing unit processes the raw gasoline data by: Input the names of the data items in the original gasoline data into the word library to obtain the standard names of the data items in the original gasoline data, and replace and modify the names of the data items in the original gasoline data according to the standard names; The numerical values and units of various data in the original gasoline data are input into the unit conversion model, and the various data in the original gasoline data are standardized and converted through the unit conversion model, and the numerical values and units in the original gasoline data are replaced and modified.
12. The system for processing gasoline data according to any one of claims 8 to 11, characterized in that: When the data entry unit enters the processed raw gasoline data into the gasoline molecule database, it includes: Extract the gasoline type from the raw gasoline data; Determine whether the gasoline type in the original gasoline data exists in the gasoline molecule database; If it does not exist, a template file with a preset data format is created in the gasoline molecule database, and the processed original gasoline data is entered into the newly created template file; If it exists, the template file corresponding to the gasoline type of the original gasoline data is searched in the gasoline molecule database, and the processed original gasoline data is entered into the template file corresponding to the gasoline type.
13. The system for processing gasoline data according to claim 12, characterized in that: Each gasoline type in the gasoline molecule database includes multiple names; the data entry unit includes: Compare the names of gasoline types in the original gasoline data with the names of gasoline types in the gasoline molecule database; If the name of the gasoline type in the gasoline molecule database exists in the name of the gasoline type in the original gasoline data, it is determined that the gasoline type in the original gasoline data exists in the gasoline molecule database; If the name of the gasoline type in the gasoline molecule database does not exist in the name of the gasoline type in the original gasoline data, it is determined that the gasoline type in the original gasoline data does not exist in the gasoline molecule database.
14. A device for processing gasoline data, characterized in that: The method comprises a storage medium storing a computer program and a processor for executing the computer program, wherein the processor executes the method for processing gasoline data according to any one of claims 1 to 7 when running the computer program.
15. A computer-readable storage medium, characterized in that: The computer-readable storage medium stores one or more programs, and the one or more programs can be executed by one or more processors to implement the steps of the method for processing gasoline data as described in any one of claims 1 to 7.