Batch design platform for power transmission line tower foundations

By designing the basic batch design platform of transmission line pole towers, and using modular design and batch computing technology, the problems of low efficiency and insufficient safety of traditional design are solved, and an efficient and safe design process is achieved.

CN120217580APending Publication Date: 2025-06-27STATE NUCLEAR ELECTRIC POWER PLANNING DESIGN & RES INST CO LTD
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Patent Information

Application Number
CN202510267651.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-07
Publication Date
2025-06-27

AI Technical Summary

Technical Problem

The design efficiency and safety of traditional transmission line tower foundations are low, and the design workload is large and the degree of refinement is low in the face of complex geological, terrain and management requirements.

Method used

Design a basic batch design platform for power transmission line pole towers, including parameter input module, data output module, screening module, generation module and data storage module. By batch computing and filtering of optimal design parameters, design results are generated and stored in the basic library.

Benefits of technology

It realizes the completion of a large number of complex design tasks in a short time, improves design efficiency and safety, reduces the probability of errors, and improves the degree of refinement of the design.

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Abstract

The invention provides a power transmission line tower foundation batch design platform, and the platform comprises a parameter input module which is used for receiving variable parameters of a power transmission line foundation inputted by a user; the data output module is used for receiving the variable parameters, sent by the parameter input module, of the power transmission line foundation and determining multiple groups of foundation output parameters corresponding to the power transmission line foundation based on the variable parameters of the power transmission line foundation; the screening module is used for screening out an optimal basic output parameter of the power transmission line foundation from the multiple groups of basic output parameters based on a preset design condition; the generation module is used for generating a design result of the power transmission line foundation according to the optimal foundation output parameters; and the data storage module is used for storing the design result in a basic library. According to the technical scheme provided by the invention, a user can complete a large number of complex design tasks in a short time, and high safety and high efficiency are achieved.
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Description

Technical Field

[0001] This application relates to the technical field of tower foundation design, and particularly to a batch design platform for transmission line tower foundations. Background Art

[0002] Currently, the transmission line is in a period of rapid construction, with large project scale and tight construction period. The foundation project is an important part of the transmission line project, featuring various foundation types and complex geological conditions. Foundation design accounts for a large proportion in the entire engineering design process, with its design workload and investment accounting for about 30% of the total project volume. The traditional design mode requires designers to input design parameters and trial-calculate and adjust foundation dimensions for each foundation one by one, and then draw the foundation construction drawings. A large amount of manpower and time are consumed in mechanical repetitive labor, with large design and verification workloads, low efficiency, high error probability, and low degree of refined design. Facing the complex uncertain factors such as geology, terrain, landform, and meteorology along the transmission line, as well as the refined management requirements of the owner for design in recent years, the design of transmission line tower foundations has gradually developed from a foundation library to a differential design for each tower and each leg. Therefore, in the face of a huge design workload, how to improve the efficiency and quality of foundation design has become an urgent problem to be solved. Summary of the Invention

[0003] This application provides a batch design platform for transmission line tower foundations to solve the technical problems of low design efficiency and safety.

[0004] This application proposes a batch design platform for transmission line tower foundations according to an embodiment. The platform includes: a parameter input module, a data output module, a screening module, a generation module, and a data storage module;

[0005] The parameter input module is used to receive various variable parameters of the transmission line foundation input by the user;

[0006] The data output module is used to receive various variable parameters of the transmission line foundation sent by the parameter input module, and determine multiple groups of foundation output parameters corresponding to the transmission line foundation based on the various variable parameters of the transmission line foundation;

[0007] The screening module is used to screen out the optimal foundation output parameters of the transmission line foundation from the multiple groups of foundation output parameters based on preset design conditions;

[0008] The generation module is used to generate the design result of the transmission line foundation according to the optimal foundation output parameters;

[0009] The data storage module is used to store the design result in the foundation library.

[0010] Preferably, the variable parameters include: specification parameters, engineering parameters, and basic design parameters;

[0011] Among them, the specification parameters include: concrete strength grade and strength, concrete deformation calculation parameters, steel bar strength grade and its strength, steel bar deformation calculation parameters, steel bar diameter specification library, material specific weight;

[0012] The engineering parameters include: stirrup cross-sectional type;

[0013] The basic design parameters include: tower information, geological parameters, material parameters, geometric parameters;

[0014] The tower information includes: foundation acting force, foundation root opening, main column slope;

[0015] The geological parameters include: foundation bearing capacity, internal friction angle, cohesion, uplift angle, soil specific weight, groundwater level;

[0016] The material parameters include: concrete strength grade, steel bar strength grade and steel bar diameter;

[0017] The geometric parameters include: foundation exposure, foundation size;

[0018] The foundation output parameters include: stability calculation result, strength calculation result, reinforcement calculation result, and material quantity calculation result;

[0019] The design results include: calculation book, foundation construction drawing, foundation usage conditions, and external professional information submission form;

[0020] Furthermore, the calculation book is a text-format calculation book;

[0021] The construction drawing is a CAD-format construction drawing;

[0022] The foundation usage conditions are an EXCEL-format foundation usage conditions table;

[0023] The external professional information submission form is an EXCEL-format information submission form.

[0024] Furthermore, the data output module is also used to cross-combine the variable parameters of the transmission line foundation, and perform batch calculations on the transmission line foundation with a large amount of data within a preset foundation size range to obtain each combination result that meets the preset foundation size range;

[0025] Among them, each combination result includes: tower information, geological parameters, material parameters, geometric parameters, and foundation output parameters;

[0026] The data storage module is also used to store each combination result in the foundation library.

[0027] Furthermore, the platform further includes: a selection module;

[0028] The selection module is used to select the specification parameters and foundation types corresponding to the engineering requirements based on the engineering requirements input by the user;

[0029] The data output module is further used to determine multiple groups of foundation output parameters corresponding to the engineering requirements according to the specification parameters and foundation types corresponding to the engineering requirements;

[0030] The screening module is further used to screen out the optimal foundation output parameters of the engineering requirements based on the multiple groups of foundation output parameters corresponding to the engineering requirements;

[0031] The generation module is further used to generate the design result corresponding to the engineering requirements according to the optimal foundation output parameters of the engineering requirements.

[0032] Furthermore, the platform further includes: an input and output table module;

[0033] The input and output table module is used to receive the basic design parameters entered by the user;

[0034] The input and output table module is further used to batch export the basic design parameters.

[0035] Furthermore, the data output module includes: a checking unit;

[0036] The checking unit is used to sequentially perform foundation adaptability judgment, foundation stability checking, concrete strength checking, and foundation reinforcement checking on the foundation output parameters.

[0037] Furthermore, the platform further includes: an interface module;

[0038] The interface module: is used to receive various variable parameters and engineering requirements input by the user, and export the basic design parameters and design results.

[0039] Furthermore, the platform further includes: an inspection module;

[0040] The inspection module is used to perform data format checking on the data input by the user within a preset range, and when the data exceeds its corresponding preset range or does not meet the data format requirements, an error message is prompted;

[0041] The inspection module is further used to perform integrity checking on the data input by the user, and when the data is incomplete, it jumps to the corresponding data missing position and prompts the user to supplement the data.

[0042] Furthermore, the platform further includes: a display module;

[0043] The display module is used to display various variable parameters, combination results, and design results of the foundation.

[0044] Further, the platform further includes: an identification module;

[0045] The identification module is used to identify the construction drawings that have been drawn in the project and capture the basic output parameters of the construction drawings.

[0046] The technical solution provided by the embodiment of the present application at least brings the following beneficial effects:

[0047] The present application proposes a batch design platform for transmission line tower foundations. The platform includes: a parameter input module, a data output module, a screening module, a generation module, and a data storage module; the parameter input module is used to receive various variable parameters of the transmission line foundation input by the user; the data output module is used to receive the various variable parameters of the transmission line foundation sent by the parameter input module and determine multiple groups of basic output parameters corresponding to the transmission line foundation based on the various variable parameters of the transmission line foundation; the screening module is used to screen out the optimal basic output parameters of the transmission line foundation from the multiple groups of basic output parameters based on preset design conditions; the generation module is used to generate the design result of the transmission line foundation according to the optimal basic output parameters; the data storage module is used to store the design result in the basic library. The technical solution proposed by the present application enables users to complete a large number of complex design tasks in a short time, with high safety and efficiency.

[0048] The additional aspects and advantages of the present application will be partially given in the following description, partially become obvious from the following description, or be understood through the practice of the present application. Description of the Drawings

[0049] The above and / or additional aspects and advantages of the present application will become obvious and easy to understand from the following description of the embodiments in conjunction with the drawings, where:

[0050] Figure 1 It is the first structural diagram of a batch design platform for transmission line tower foundations provided according to an embodiment of the present application;

[0051] Figure 2 It is the second structural diagram of a batch design platform for transmission line tower foundations provided according to an embodiment of the present application;

[0052] Figure 3 It is a schematic flow diagram of determining the design result based on the specification parameters and foundation types corresponding to the project requirements according to an embodiment of the present application;

[0053] Figure 4Schematic diagram of the execution process of the verification unit provided according to an embodiment of the present application;

[0054] Reference numerals

[0055] Parameter input module 1, data output module 2, screening module 3, generation module 4, data storage module 5, selection module 6, input and output table module 7, verification unit 2-1, interface module 8, inspection module 9, display module 10, recognition module 11. Detailed implementation manners

[0056] Embodiments of the present application will be described in detail below. Examples of the embodiments are shown in the accompanying drawings, where the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described by referring to the accompanying drawings are exemplary and are intended to explain the present application, and should not be construed as a limitation to the present application.

[0057] A batch design platform for transmission line tower foundations proposed by the present application, the platform includes: a parameter input module, a data output module, a screening module, a generation module, and a data storage module; the parameter input module is used to receive various variable parameters of the transmission line foundation input by the user; the data output module is used to receive the various variable parameters of the transmission line foundation sent by the parameter input module, and determine multiple groups of basic output parameters corresponding to the transmission line foundation based on the various variable parameters of the transmission line foundation; the screening module is used to screen out the optimal basic output parameters of the transmission line foundation from the multiple groups of basic output parameters based on preset design conditions; the generation module is used to generate a design result of the transmission line foundation according to the optimal basic output parameters; the data storage module is used to store the design result in a basic library. With the technical solution proposed by the present application, users can complete a large number of complex design tasks in a short time, with high safety and efficiency.

[0058] A batch design platform for transmission line tower foundations according to an embodiment of the present application will be described below with reference to the accompanying drawings.

[0059] Embodiment 1

[0060] Figure 1 A structural diagram of a batch design platform for transmission line tower foundations provided according to an embodiment of the present application is shown in Figure 1 As shown, the platform includes: a parameter input module 1, a data output module 2, a screening module 3, a generation module 4, and a data storage module 5;

[0061] The parameter input module 1 is used to receive various variable parameters of the transmission line foundation input by the user;

[0062] The data output module 2 is configured to receive the various variable parameters of the transmission line foundation sent by the parameter input module, and determine multiple groups of basic output parameters corresponding to the transmission line foundation based on the various variable parameters of the transmission line foundation;

[0063] The screening module 3 is configured to screen out the optimal basic output parameters of the transmission line foundation from the multiple groups of basic output parameters based on preset design conditions;

[0064] The generation module 4 is configured to generate a design result of the transmission line foundation according to the optimal basic output parameters;

[0065] The data storage module 5 is configured to store the design result in the basic library.

[0066] It should be noted that the various variable parameters include: specification parameters, engineering parameters, and basic design parameters;

[0067] Among them, the specification parameters include: concrete strength grade and strength, concrete deformation calculation parameters, steel bar strength grade and its strength, steel bar deformation calculation parameters, steel bar diameter specification library, material specific weight, and other specification parameters required in the basic design process;

[0068] The engineering parameters include: stirrup cross-section type, etc.;

[0069] It should be noted that the engineering parameters mainly refer to some established design parameters in engineering practice, including stirrup cross-section type, etc.

[0070] The basic design parameters mainly include: tower information, geological parameters, material parameters, and geometric parameters;

[0071] The tower information includes: foundation acting force, foundation root opening, main column slope, etc.;

[0072] The geological parameters include: foundation bearing capacity, internal friction angle, cohesion, uplift angle, soil specific weight, groundwater level, etc.;

[0073] The material parameters include: concrete strength grade, steel bar strength grade, and steel bar diameter, etc.;

[0074] The geometric parameters include: foundation exposure, foundation size, etc., where the foundation size is the main size of the foundation;

[0075] The basic output parameters include: stability calculation result, strength calculation result, reinforcement calculation result, and material quantity calculation result;

[0076] The design result includes: calculation book, basic construction drawing, basic usage conditions, and external professional information submission form.

[0077] Among them, the calculation book is a text-format calculation book;

[0078] The construction drawing is a CAD-format construction drawing;

[0079] The basic usage conditions are in the form of an EXCEL-format usage condition table;

[0080] The external professional information submission form is an EXCEL-format information submission form.

[0081] It should be noted that the output design results can be directly opened and edited using a text editor, an OFFICE editor, and a CAD platform.

[0082] It should be noted that for parameters such as specification parameters and engineering parameters that are generally not modified, they are placed in the parameter library location of the platform;

[0083] For tower information and geological information, different models are created according to the selected foundation type. The input of the table can be manually entered, an excel file can be imported, or existing records can be modified to create new records.

[0084] For material parameters and geometric parameters, different platform interfaces and parameter input boxes are created according to the selected foundation type, and designers can manually input or automatically import default data.

[0085] All parameters in the platform can be assigned all calculation parameters by means of interface input and file import.

[0086] It should be noted that Figure 1 This is only a structural schematic of the batch design platform for transmission line tower foundations proposed in this embodiment, and does not limit the structure of the batch design platform for transmission line tower foundations of the present invention.

[0087] In the embodiment of the present disclosure, the data output module 2 is further configured to cross-combine the variable parameters of the transmission line foundation, and perform batch calculations on the transmission line foundation with a large amount of data within a preset foundation size range to obtain each combination result that meets the preset foundation size range;

[0088] Among them, each combination result includes: tower information, geological parameters, foundation material parameters, foundation geometric parameters, and foundation output parameters;

[0089] The data storage module 5 is further configured to store the respective combination results in the foundation library.

[0090] It should be noted that after the design data is input, it can automatically cross - combine the design data such as tower information and geological information to meet the engineering requirements; perform batch calculations on a large amount of data for the foundation within the given range of foundation sizes; and output each combination of tower pole information, geological information, foundation materials, geometric dimensions, and settlement results that meet the design requirements as a complete record to the foundation database.

[0091] In the embodiment of the present disclosure, as Figure 2 shown, the platform further includes: a selection module 6;

[0092] The selection module 6 is used to select the specification parameters and foundation types corresponding to the engineering requirements based on the engineering requirements input by the user, where the specification parameters corresponding to the engineering requirements are specific specification parameters corresponding to the engineering requirements;

[0093] It should be noted that the platform allows designers to select different design specifications and foundation types according to engineering needs.

[0094] The data output module 2 is further used to determine multiple groups of foundation output parameters corresponding to the engineering requirements according to the specification parameters and foundation types corresponding to the engineering requirements;

[0095] The screening module 3 is further used to screen out the optimal foundation output parameters of the engineering requirements based on the multiple groups of foundation output parameters corresponding to the engineering requirements;

[0096] The generation module 4 is further used to generate the design results corresponding to the engineering requirements according to the optimal foundation output parameters of the engineering requirements.

[0097] For example, as Figure 3 shown is a schematic flow chart of determining the design results according to the specification parameters and foundation types corresponding to the engineering requirements.

[0098] In the embodiment of the present disclosure, as Figure 2 shown, the platform further includes: an input and output table module 7;

[0099] The input and output table module 7 is used to receive the basic design parameters entered by the user;

[0100] The input and output table module 7 is further used to batch - export the basic design parameters.

[0101] It should be noted that after selecting the design specifications and foundation types, the platform creates a corresponding input table structure on the interface, and designers can enter design data individually or batch - import design data. The design data mainly includes tower information, geological information, foundation materials, and geometric dimension information.

[0102] Furthermore, as Figure 2As shown, the data output module 2 includes: a verification unit 2-1;

[0103] The verification unit 2-1 is used to perform basic adaptability judgment, basic stability verification, concrete strength verification, and basic reinforcement calculation on the basic output parameters in sequence.

[0104] As Figure 4 shown is a schematic execution flow diagram of the verification unit 2-1.

[0105] Furthermore, as Figure 2 shown, the platform further includes: an interface module 8;

[0106] The interface module 8 is used to receive various variable parameters and engineering requirements input by the user, and export the basic design parameters and design results.

[0107] Furthermore, as Figure 2 shown, the platform further includes: an inspection module 9;

[0108] The inspection module 9 is used to perform data format inspection on the data input by the user within a preset range. When the data exceeds its corresponding preset range or does not meet the data format requirements, an error message is prompted;

[0109] The inspection module 9 is further used to perform integrity inspection on the data input by the user. When the data is incomplete, it jumps to the corresponding data missing position and prompts the user to supplement the data.

[0110] Furthermore, as Figure 2 shown, the platform further includes: a display module 10;

[0111] The display module 10 is used to display various variable parameters, combined results, and design results of the foundation.

[0112] In the embodiments of the present disclosure, as Figure 2 shown, the platform further includes: an identification module 11;

[0113] The identification module 11 is used to identify the basic construction drawings that have been drawn in the project, and capture the basic output parameters in the basic construction drawings to form a basic library.

[0114] Specifically, the identification module 11 is used to identify the construction drawings that have been drawn in the project and capture the basic output parameters;

[0115] Furthermore, a basic library can be formed, and then the basic usage conditions of each project are defined, and batch calculation and drawing can be completed.

[0116] It should be noted that the platform provided in this embodiment is developed based on the MVC (Model-View-Controller) structure, which improves the stability of the platform and the simplicity of maintenance; it is programmed facing interfaces, and corresponding functions can be quickly plugged in and unplugged; based on the configuration of the template engine, when the core calculation remains unchanged and only the output format is changed, the corresponding function can be completed without modifying the program, but only by modifying the configuration file.

[0117] It should be noted that the batch design platform for transmission line tower foundations proposed in this embodiment includes the following when running the design:

[0118] 1. Platform operating environment

[0119] (1) Hardware configuration requirements:

[0120] CPU: PIII (P4 recommended)

[0121] Memory: 2GB

[0122] Hard disk: Above 150M

[0123] Monitor: Resolution above 800×600, recommended resolution: 1024×768

[0124] (2) Platform configuration requirements

[0125] Operating system: WINDOWS 7 / 2000 / XP

[0126] Installed platform: Microsoft Office (Excel) 2007, JAVA runtime environment, MySQL database, CAD

[0127] (3) Main programming languages

[0128] JAVA, JavaFX

[0129] 2. Platform interface design

[0130] Whether the platform is designed reasonably is related to the convenience of using the platform and the usage effect of the platform. Therefore, the user interface of the platform should be intuitive, easy to learn and use.

[0131] This platform includes data input, data output, input parameter saving and import functions. The main features are as follows:

[0132] The platform designs different interfaces according to different functions, and users can directly select the corresponding functions to enter and use;

[0133] The platform has an input parameter checking function. When the input parameters exceed the range or do not meet the data format requirements, the platform will automatically prompt an error;

[0134] The platform has an input parameter integrity check function. Before the program runs, it will automatically check the integrity of the input parameters. When a parameter is not input, the program will automatically jump to the corresponding position and prompt the user to input the parameter.

[0135] The platform has an input parameter import and save function, which is convenient for users to use and reduces the workload of users.

[0136] Since the interface design is simple and clear, users can learn and apply through the interactive interface. Therefore, it will not be elaborated here.

[0137] In the embodiments of the present disclosure, the batch design platform for transmission line tower foundations has the following advantages:

[0138] (1) The platform is applicable to the foundation design of straight column slab foundations, inclined column slab foundations and straight column dug foundations for transmission lines of various voltage levels;

[0139] (2) Through this platform, the most economical and reasonable foundation dimensions and reinforcement can be quickly calculated for actual projects, and complete design outputs can be exported, which is convenient for project review and archiving;

[0140] (3) The platform adopts a visual interface design, the interface is intuitive, and users can use the platform without any training;

[0141] (4) The platform has a strong error correction function and an input parameter integrity check function to prevent users from making mistakes during use;

[0142] (5) The platform also has an input data saving and importing function, which provides convenience for users to use;

[0143] (6) Functions such as foundation library screening and information submission form output set in this platform can be appropriately adjusted according to the actual project requirements to meet the needs of batch foundation design under different usage conditions;

[0144] (7) It can realize the direct association between foundation calculation and bill of quantities (technical and economic information submission);

[0145] (8) The operation is simple. All input information can be batch input according to the template, and the output results can display the conclusions of all necessary calculation links;

[0146] (9) The calculation book process is detailed. The generated foundation calculation book can show the relatively detailed calculation principle and calculation content, and the design review personnel can clearly understand the calculation principle;

[0147] (10) The Excel editing function is open for each link, and cumbersome data can be easily processed during the pre- and post-processing of data;

[0148] (11) The foundation can be optimized according to the preset bearing capacity percentage, and the foundation model with the optimal material quantity can be selected according to the optimization result.

[0149] In summary, a batch design platform for transmission line tower foundations proposed in this embodiment has a series of advantages over the existing design operation methods, such as simple operation, high automation performance, higher reliability, wide adaptability, greatly improving the work efficiency of designers, and high safety, etc., and can provide better guarantee for power system design.

[0150] In the description of this specification, the description with reference to terms such as "one embodiment", "some embodiments", "example", "specific example", or "some examples" means that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in any one or more embodiments or examples in a suitable manner. In addition, without contradiction, those skilled in the art can combine and combine the different embodiments or examples described in this specification and the features of different embodiments or examples.

[0151] Any process or method description shown in the flowchart or described in other ways herein can be understood as representing a module, segment, or part of code including one or more executable instructions for implementing a customized logic function or process, and the scope of the preferred embodiments of the present application includes additional implementations, where the functions can be executed in a substantially simultaneous manner or in a reverse order according to the functions involved, rather than in the order shown or discussed, which should be understood by those skilled in the art of the embodiments of the present application.

[0152] Although the embodiments of the present application have been shown and described above, it can be understood that the above embodiments are exemplary and should not be construed as limiting the present application. Those of ordinary skill in the art can make changes, modifications, substitutions, and variations to the above embodiments within the scope of the present application.

Claims

1. A transmission line tower foundation batch design platform, characterized in that: The platform includes: a parameter input module, a data output module, a screening module, a generation module, and a data storage module; The parameter input module is used to receive various variable parameters of the power transmission line foundation input by the user; The data output module is used to receive the variable parameters of the transmission line foundation sent by the parameter input module, and determine multiple groups of basic output parameters corresponding to the transmission line foundation based on the variable parameters of the transmission line foundation; The screening module is used to screen out the optimal basic output parameters of the transmission line foundation from the multiple groups of basic output parameters based on preset design conditions; The generating module is used to generate the design result of the power transmission line foundation according to the optimal basic output parameters; The data saving module is used to store the design results in a basic library.

2. The platform according to claim 1, characterized in that The variable parameters include: specification parameters, engineering parameters, and basic design parameters; The specification parameters include: concrete strength grade and strength, concrete deformation calculation parameters, steel bar strength grade and strength, steel bar deformation calculation parameters, steel bar diameter specification library, material weight; The engineering parameters include: stirrup cross-section type; The basic design parameters include: tower information, geological parameters, material parameters, and geometric parameters; The tower information includes: foundation force, foundation root opening, and main column slope; The geological parameters include: foundation bearing capacity, internal friction angle, cohesion, uplift angle, soil weight, and groundwater level; The material parameters include: concrete strength grade, steel bar strength grade and steel bar diameter; The geometric parameters include: foundation outcrop, foundation size; The basic output parameters include: stability calculation results, strength calculation results, reinforcement calculation results and material quantity calculation results; The design results include: calculation book, foundation construction drawings, foundation use conditions, and external professional funding table; The calculation sheet is in text format; The construction drawing is a construction drawing in CAD format; The basic usage conditions are a basic usage conditions table in EXCEL format; The external professional funding table is in EXCEL format.

3. The platform according to claim 2, characterized in that The data output module is further used to cross-combine the variable parameters of the transmission line foundation, and perform batch calculation of a large amount of data on the transmission line foundation within a preset basic size range to obtain various combination results that meet the preset basic size range; Among them, each combination result includes: tower information, geological parameters, basic material parameters, basic geometric parameters, basic output parameters; The data storage module is also used to store the combination results in the basic library.

4. The platform according to claim 3, characterized in that The platform also includes: a selection module; The selection module is used to select specification parameters and basic types corresponding to the engineering requirements based on the engineering requirements input by the user; The data output module is further used to determine multiple groups of basic output parameters corresponding to the engineering requirements according to the specification parameters and basic types corresponding to the engineering requirements; The screening module is further used to screen out the optimal basic output parameters of the engineering requirements based on the multiple groups of basic output parameters corresponding to the engineering requirements; The generation module is also used to generate a design result corresponding to the engineering requirement according to the optimal basic output parameters of the engineering requirement.

5. The platform according to claim 4, characterized in that The platform also includes: input and output table modules; The input and output table module is used to receive basic design parameters entered by the user; The input and output table modules are also used to export basic design parameters in batches.

6. The platform according to claim 5, characterized in that The data output module includes: a verification unit; The verification unit is used to perform foundation adaptability judgment, foundation stability verification, concrete strength verification, and foundation reinforcement verification on the foundation output parameters in sequence.

7. The platform according to claim 6, characterized in that The platform also includes: an interface module; The interface module is used to receive the variable parameters and engineering requirements input by the user, and to export the basic design parameters and design results.

8. The platform according to claim 7, characterized in that The platform also includes: an inspection module; The checking module is used to check the data format of the data input by the user within a preset range, and prompt an error message when the data exceeds the corresponding preset range or does not meet the data format requirements; The checking module is also used to perform integrity check on the data input by the user. When the data is incomplete, it jumps to the corresponding data missing position and prompts the user to supplement the data.

9. The platform according to claim 8, characterized in that The platform also includes: a display module; The display module is used to display the variable parameters, combination results, design results, etc. of the foundation.

10. The platform according to claim 9, characterized in that The platform also includes: an identification module; The identification module is used to identify the basic construction drawings that have been produced in the project, and to capture the basic output parameters in the basic construction drawings and form a basic library.

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