CN112837027A - Engineering management method, system and storage medium - Google Patents

Engineering management method, system and storage medium Download PDF

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CN112837027A
CN112837027A CN202110118422.9A CN202110118422A CN112837027A CN 112837027 A CN112837027 A CN 112837027A CN 202110118422 A CN202110118422 A CN 202110118422A CN 112837027 A CN112837027 A CN 112837027A
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滕云
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Hunan Bohome Construction Management Ltd
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Abstract

A project management method, a system and a storage medium are provided, the project management method comprises the following steps: constructing a visual platform and a model database; setting a building preliminary confirmation label in each building model; responding to the operation of a user on any building preliminary confirmation label, and sending preliminary confirmation information; after the preliminary confirmation information is confirmed, a first payment interface is established on the visual platform to complete first payment; synthesizing a house model to be constructed at a service center end based on the geological information and the building model confirmed by the user, and setting a final confirmation label of the building; completing the second payment in response to the operation of the user on the building final confirmation label; and constructing a plurality of construction detail tables at the service center end according to the construction management rule, wherein the plurality of site management check labels are used for acquiring the plurality of construction detail tables. The method of the embodiment of the invention can complete the signing process without the need of face-to-face contact between the user and the builder, and can check the engineering effect in the visual platform.

Description

Engineering management method, system and storage medium
Technical Field
The invention belongs to the technical field of information, and particularly relates to an engineering management method, an engineering management system and a storage medium.
Background
With the development of social economy, the living standard of rural areas is higher and higher, and residents in the rural areas are more and more abundant, so that part of residents begin to choose to build the rural villa in rural old households. The traditional engineering management mode of the country villa is that a user contacts with a builder by himself, then completes contract signing in a written agreement mode, and then completes house construction by the builder.
However, there are many drawbacks to the conventional engineering management method, which mainly includes two aspects: on one hand, a user cannot see what the finally formed villa looks like, if the user needs to see the villa, a constructor needs to specially find a person for modeling, and most of the constructors are not willing to bear the cost at present; on the other hand, the user can only communicate with the builder face to complete the agreement work, and in the whole engineering cycle, frequent face to face communication with the user is required, which costs a lot of time for both parties.
Disclosure of Invention
The present invention is directed to solving at least one of the problems of the prior art. To this end, the present invention proposes an engineering management method that solves the problems that it is difficult for a user to see a finished villa and that frequent face-to-face communication with a builder is required. The invention also provides an engineering management system and a storage medium for storing the computer executable instructions of the engineering management method.
The engineering management method according to the embodiment of the first aspect of the invention comprises the following steps:
constructing a visual platform and a model database; a plurality of building models of different types are stored in the model database;
building a model data table in the model database, wherein the model data table records a plurality of building information corresponding to a plurality of building models one by one; building preliminary confirmation labels are arranged in each building model, and the building preliminary confirmation labels are in one-to-one correspondence with the building information;
displaying a plurality of the building models through a visualization platform;
responding to the operation of a user on any building preliminary confirmation label, and sending preliminary confirmation information to a service center end; the preliminary confirmation information comprises building information and user information;
after the service center side confirms the preliminary confirmation information, a first payment interface is established on the visual platform, and first successful payment information is generated in response to the operation of a user on the first payment interface;
acquiring geological information of a construction site and storing the geological information to the service center end;
synthesizing a house model to be constructed at the service center end based on the geological information and the building model confirmed by the user, and setting a final building confirmation label in the house model to be constructed;
displaying the house model to be constructed in the visualization platform; responding to the operation of the user on the building final confirmation label, constructing a second payment interface on the visualization platform, and generating second payment success information after the user finishes the operation on the second payment interface;
and constructing a plurality of construction detail tables at the service center end according to construction management rules, setting a plurality of site management check labels in the to-be-constructed house model, wherein the plurality of construction detail tables are linked with the plurality of site management check labels in a one-to-one correspondence manner, and the plurality of site management check labels are used for acquiring the plurality of construction detail tables.
The engineering management method provided by the embodiment of the invention at least has the following technical effects: by storing a plurality of building models of different types in the model database and displaying the building models through the visual platform, a user can select a villa style desired by the user according to the requirement of the user, and the user can visually know the product desired by the user. The building model to be constructed can be constructed by acquiring the address information of the construction site and the building model confirmed by the user, so that the user can conveniently check the overall appearance of the finally-formed house and the corresponding information such as the construction detail table on line, and the user can visually know the engineering state of the villa in advance. The on-line payment is completed step by step to achieve the intention of cooperation with the user, so that the doubts of the user and the builder can be solved to a certain extent, and the intention of cooperation of the user and the builder is deepened. Compared with the traditional mode, the engineering management method of the embodiment of the invention provides a mode for a user to check the finished villa products online, greatly improves the user's understanding of the products, and further can effectively reduce the problems generated in later construction; the engineering management method of the embodiment of the invention can complete the whole villa signing process without the face-to-face contact between the user and the builder, can directly check the subsequent effect in the visual platform after the intention is reached every time, and further improves the trust of the two parties.
According to some embodiments of the invention, the above engineering management method further comprises the steps of:
setting a construction preparation checking label in the house model to be constructed;
generating a construction budget table according to the to-be-constructed house model and a construction material price table, wherein the construction budget table is connected with the construction preparation checking label;
displaying the construction budget table in the visualization platform in response to the operation of the construction preparation view tab.
According to some embodiments of the invention, the construction preparation view tab includes a construction budget view button and a construction preparation item view button; the construction budget view button is linked with the construction budget sheet;
the operation of responding to the construction preparation viewing label comprises the following steps:
in response to operation of the construction budget view button, presenting the construction budget form in the visualization platform;
displaying a construction preparation item table in the visualization platform in response to operation of the construction preparation item view button; and the construction preparation project table is constructed according to the house model to be constructed and is stored at the service center.
According to some embodiments of the invention, the above engineering management method further comprises the steps of:
establishing an acceptance item table at the service center end, and setting an item acceptance label linked with the acceptance item table in the to-be-constructed house model, wherein the item acceptance table comprises a plurality of engineering node confirmation items;
in response to a user operation of the project acceptance label, presenting the project acceptance form in the visualization platform;
acquiring the confirmation states of the user on the plurality of project node confirmation items, and generating main body completion information;
and after the main body completion information is confirmed by the service center, a third payment interface is established on the visual platform, and third payment success information is generated in response to the operation of the user on the third payment interface.
According to some embodiments of the present invention, the building final confirmation tag includes a final confirmation button and a modification opinion button;
the operation of responding to the building final confirmation label by the user comprises the following steps:
building a second payment interface on the visualization platform in response to user operation of the final confirmation button;
constructing a modification opinion panel in the visualization platform in response to user operation of the modification opinion button; and acquiring modification opinion information of the user through the modification opinion panel, and transmitting the modification opinion information to the service center terminal.
An engineering management system according to an embodiment of the second aspect of the present invention includes:
a model database in which a model data table and a plurality of different types of building models are stored; a plurality of building information corresponding to the building models one by one is recorded in the model data table; building preliminary confirmation labels are arranged in each building model, and the building preliminary confirmation labels are in one-to-one correspondence with the building information;
the model combination unit is used for synthesizing a house model to be constructed according to geological information of a construction site and the building model confirmed by a user, and setting a building final confirmation label and a plurality of site management checking labels in the house model to be constructed;
the service center end is internally stored with a plurality of construction detail tables which are constructed at the service center end according to construction management rules, and the construction detail tables are linked with the site management viewing labels in a one-to-one correspondence manner; the house model to be constructed is stored in the service center end;
the visualization platform is used for displaying the house model to be constructed, the plurality of building models and the plurality of construction detail tables;
and the payment system is used for constructing a first payment interface in the visualization platform according to the operation of the user on any building preliminary confirmation label and generating first successful payment information, and constructing a second payment interface in the visualization platform according to the operation of the user on the building final confirmation label and generating second successful payment information.
The engineering management system provided by the embodiment of the invention at least has the following technical effects: the building models of different types are stored in the model database and displayed through the visual platform, so that a user can select a villa style desired by the user according to the requirement of the user, and the user can visually know the product desired by the user. The address information of the construction site and the building model confirmed by the user are acquired, and then the model of the house to be constructed can be constructed through the model combination unit, so that the user can conveniently check the overall appearance of the finally formed house and the corresponding information such as the construction detail table on line, and the user can visually know the engineering state of the villa in advance. The on-line payment is completed step by step through the payment system to achieve the intention of cooperation with the user, so that the doubts of the user and the builder can be solved to a certain extent, and the intention of cooperation of the user and the builder is deepened. Compared with the traditional mode, the engineering management system of the embodiment of the invention provides a mode for a user to check the finished villa products on line, greatly improves the product understanding of the user, and further can effectively reduce the problems generated in later construction; the engineering management system of the embodiment of the invention can complete the whole villa signing process without the face-to-face contact of the user and the builder, can directly check the subsequent effect in the visual platform after the intention is reached every time, and further improves the trust of the two parties.
According to some embodiments of the invention, a construction preparation viewing label is set in the building model to be constructed; the service center end stores a construction budget table generated according to the house model to be constructed and the price table of construction materials; the construction budget table is connected with the construction preparation viewing label.
According to some embodiments of the invention, the construction preparation view tab includes a construction budget view button and a construction preparation item view button; the construction budget view button is linked with the construction budget sheet; the construction preparation item viewing button is linked with a construction preparation item table; and the construction preparation project table is constructed according to the house model to be constructed and is stored at the service center.
According to some embodiments of the present invention, the service center further stores an acceptance item table, where the item acceptance table includes a plurality of engineering node confirmation items; a project acceptance label linked with the acceptance project table is arranged in the house model to be constructed; the project acceptance sheet is used for generating main body completion information and activating the payment system; the payment system is further used for constructing a third payment interface on the visualization platform and generating third payment success information.
According to some embodiments of the present invention, the building final confirmation tag includes a final confirmation button and a modification opinion button; the final confirmation button is used for activating the payment system and enabling the payment system to construct a second payment interface; the modify opinion button is used for constructing a modify opinion panel in the visualization platform; the modification opinion panel is used for acquiring modification opinion information of a user and transmitting the modification opinion information to the service center terminal.
The computer-readable storage medium of the embodiment of the third aspect of the invention stores computer-executable instructions for causing a computer to execute the above engineering management method.
The computer-readable storage medium according to the embodiment of the invention has at least the following advantages: storage and transfer of computer-executable instructions may be facilitated by a storage medium.
Additional aspects and advantages of the invention will be set forth in part in the description which follows and, in part, will be obvious from the description, or may be learned by practice of the invention.
Drawings
The above and additional aspects and advantages of the present invention will become apparent and readily appreciated from the following description of the embodiments, taken in conjunction with the accompanying drawings of which:
FIG. 1 is a simplified flow diagram of a project management method according to an embodiment of the present invention;
fig. 2 is a block diagram of a construction of an engineering management system according to an embodiment of the present invention.
Detailed Description
Reference will now be made in detail to embodiments of the present invention, examples of which are illustrated in the accompanying drawings, wherein like or similar reference numerals refer to the same or similar elements or elements having the same or similar function throughout. The embodiments described below with reference to the accompanying drawings are illustrative only for the purpose of explaining the present invention, and are not to be construed as limiting the present invention.
In the description of the present invention, it is to be understood that the directional descriptions, such as the directions of upper, lower, front, rear, left, right, etc., are referred to only for convenience of describing the present invention and for simplicity of description, and are not intended to indicate or imply that the device or element so referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus, should not be considered as limiting the present invention.
In the description of the present invention, the meaning of a plurality of means is one or more, the meaning of a plurality of means is two or more, and larger, smaller, larger, etc. are understood as excluding the number, and larger, smaller, inner, etc. are understood as including the number. If the first and second are described for the purpose of distinguishing technical features, they are not to be understood as indicating or implying relative importance or implicitly indicating the number of technical features indicated or implicitly indicating the precedence of the technical features indicated.
In the description of the present invention, unless otherwise explicitly limited, terms such as arrangement, installation, connection and the like should be understood in a broad sense, and those skilled in the art can reasonably determine the specific meanings of the above terms in the present invention in combination with the specific contents of the technical solutions.
An engineering management method according to an embodiment of the first aspect of the present invention is described below with reference to fig. 1 to 2.
The engineering management method provided by the embodiment of the invention comprises the following steps:
constructing a visual platform and a model database; a plurality of building models of different types are stored in the model database;
constructing a model data table in a model database, wherein the model data table records a plurality of building information which are in one-to-one correspondence with a plurality of building models; building preliminary confirmation labels are arranged in each building model, and the building preliminary confirmation labels are in one-to-one correspondence with the building information;
displaying the plurality of building models through a visual platform;
responding to the operation of a user on any building preliminary confirmation label, and sending preliminary confirmation information to a service center end; the preliminary confirmation information comprises building information and user information;
after the service center side confirms the preliminary confirmation information, a first payment interface is established on the visual platform, and first successful payment information is generated in response to the operation of a user on the first payment interface;
acquiring geological information of a construction site and storing the geological information to a service center end;
synthesizing a house model to be constructed at a service center end based on the geological information and the building model confirmed by the user, and setting a building final confirmation label in the house model to be constructed;
displaying the house model to be constructed in a visual platform; responding to the operation of the user on the building final confirmation label, constructing a second payment interface on the visualization platform, and generating second payment success information after the user finishes the operation on the second payment interface;
and constructing a plurality of construction detail tables at a service center end according to the construction management rules, setting a plurality of site management check labels in the building model to be constructed, wherein the plurality of construction detail tables are in one-to-one correspondence with the plurality of site management check labels, and the plurality of site management check labels are used for acquiring the plurality of construction detail tables.
Referring to fig. 1 and 2, after the model database is built, a plurality of building models built in advance are imported. The building models are drawn according to design drawings, and usually a plurality of building models correspond to villas of all types which can be built by builders. And then the user can check the building models in the visualization platform and select the favorite villa.
After the user determines the desired villa, the building preliminary confirmation label of the building model can be operated in the visual platform, and further preliminary confirmation information is sent to the service center. Each building model has corresponding unique building information, each user also has own unique user information, the primary confirmation information at least comprises the two building information, the service center terminal can confirm the intention of the user according to the primary confirmation information, and the first payment interface is activated through the payment system and pushed to the user, so that the user can finish payment of the intention fund. It should be noted that the user information needs to be registered when the user uses the visualization platform for the first time, and at least the specific area information of the user is included in the user information.
After the user finishes payment on the first payment interface, first payment success information is generated. In the actual engineering management, after receiving the first successful payment information, the service center side acquires geological information of a construction site where a user needs to construct a house, and further generates a final house model to be constructed by combining the building model selected by the user. It should be noted here that the building model generally includes only the above-ground part, and the geological information mainly assists in completing the model construction of the underground part, so that the two can be combined into the final house model to be constructed. The acquisition of geological information can be carried out by manually exploring on a construction site, and can also acquire public geological information from a network, and at present, the manual exploration is mainly used. In actual engineering, geological information of different regions is different but basically consistent in the same region, so that after a user determines a building model, the user can know the region where the user is located according to the user information, and further know the geological information of the region; the building model is further combined on the basis of geological information, so that the villa corresponding to the whole building model can be supported by knowing how large the foundation is needed, and further a model of the foundation part can be constructed; therefore, a plurality of foundation part models can be constructed aiming at different areas and different building models in advance, after a user selects a building model, the corresponding foundation part model can be obtained at the first time by combining with user information, and then the building model to be constructed is synthesized with the building model.
And setting a building final confirmation label in the building model to be constructed, if the user is satisfied with the building model to be constructed, activating a payment system by operating the building final confirmation label, constructing a second payment interface in the visualization platform by the payment system, finishing final confirmation by the user through the second payment interface, and building the building according to the building model to be constructed by a subsequent builder.
After the user completes the second payment, before formal construction is started, a plurality of construction detail tables are constructed according to construction management rules and specific construction conditions of the house model to be constructed, and the plurality of construction detail tables are mainly constructed aiming at the aspects of enclosure, materials, field management and the like. One construction detail table for the enclosure is usually set, and the construction detail table mainly records the information of the enclosure such as material, price and installation mode; the corresponding field management checking label of the construction detail table of the enclosure can be arranged at the position of the enclosure in the house model to be constructed. The construction detail table to the material then need set up a plurality ofly, need set up different construction detail tables to different materials usually to the place position of placing the material according to every sets up field management and looks over the label in waiting to be under construction the house model. A plurality of construction detail tables for field management also need to be set, the construction detail tables need to be set according to different waste stacking conditions, region division conditions and the like, and a plurality of finally set field management check labels also correspond to the divided regions.
According to the engineering management method provided by the embodiment of the invention, the plurality of building models of different types are stored in the model database and displayed through the visual platform, so that a user can select a villa style desired by the user according to the requirement of the user, and the user can visually know the product desired by the user. The building model to be constructed can be constructed by acquiring the address information of the construction site and the building model confirmed by the user, so that the user can conveniently check the overall appearance of the finally-formed house and the corresponding information such as the construction detail table on line, and the user can visually know the engineering state of the villa in advance. The on-line payment is completed step by step to achieve the intention of cooperation with the user, so that the doubts of the user and the builder can be solved to a certain extent, and the intention of cooperation of the user and the builder is deepened. Compared with the traditional mode, the engineering management method of the embodiment of the invention provides a mode for a user to check the finished villa products online, greatly improves the user's understanding of the products, and further can effectively reduce the problems generated in later construction; the engineering management method of the embodiment of the invention can complete the whole villa signing process without the face-to-face contact between the user and the builder, can directly check the subsequent effect in the visual platform after the intention is reached every time, and further improves the trust of the two parties.
In some embodiments of the present invention, the above engineering management method further includes the following steps:
setting a construction preparation checking label in a house model to be constructed;
generating a construction budget table according to the house model to be constructed and the price list of construction materials, wherein the construction budget table is connected with a construction preparation checking label;
and displaying the construction budget table in the visualization platform in response to the operation of the construction preparation view tag.
After the construction preparation viewing label is set, the construction budget table can be viewed in the visual space through operating the construction preparation viewing label. The construction budget table comprises various price details in the whole construction process, and the price details can be obtained through preliminary calculation according to the house model to be constructed and the construction material price table, for example: for concrete calculation in foundation construction, after knowing a house model to be constructed, the concrete foundation size can be known, and then the concrete of the required number can be known, the price of the concrete can be recorded in a construction material price table, and then the amount of money spent on pouring the foundation can be automatically calculated, other amounts of money can be calculated in the mode, and then the project name and the budget amount of each item are recorded in a construction budget table. And a construction budget table is provided, and building managers and users have a consensus on the flow direction of capital, so that contradictions in subsequent engineering construction are reduced.
In some embodiments of the invention, the construction preparation view tab includes a construction budget view button and a construction preparation project view button; the construction budget viewing button is linked with the construction budget table;
responding to the operation of checking the construction preparation label comprises the following steps:
displaying a construction budget table in the visualization platform in response to the operation of the construction budget view button;
displaying a construction preparation project table in the visualization platform in response to an operation of a construction preparation project view button; and the construction preparation project table is constructed according to the house model to be constructed and is stored at the service center.
The construction preparation view tab includes a construction budget view button and a construction preparation item view button. The construction budget check button mainly realizes the acquisition of a construction budget table, and the construction preparation item check button mainly realizes the acquisition of a construction preparation item table. The construction preparation project table is an important work before construction, personnel and materials required to be configured during construction are recorded in the construction preparation project table, and the personnel and the materials can be determined after the house model to be constructed is confirmed; in actual engineering, a fixed numerical value is pre-calculated by matched equipment, personnel, materials and the like of each building model, and after a building model to be constructed is constructed according to the building model, the final personnel and materials can be rapidly calculated by only confirming the manpower and materials consumed by the foundation part. The construction budget table is provided, on one hand, building managers can know the on-site manpower and material resources conveniently, subsequent scheduling is facilitated, on the other hand, users can know the flow direction of funds, the confidence level of the construction businessmen can be increased, and contradictions in subsequent engineering construction are reduced.
In some embodiments of the present invention, the above engineering management method further includes the following steps:
establishing an acceptance item table at a service center end, and setting an item acceptance label linked with the acceptance item table in the to-be-constructed house model, wherein the item acceptance table comprises a plurality of engineering node confirmation items;
displaying an item acceptance table in the visualization platform in response to the operation of the user on the item acceptance tag;
acquiring the confirmation states of the user on the plurality of engineering node confirmation items, and generating main body completion information;
and after the completion information of the main body is confirmed through the service center, a third payment interface is established on the visual platform, and third payment success information is generated in response to the operation of the user on the third payment interface.
Project acceptance is also an important link in engineering. Through setting up the project and checking the label and can be convenient for the user to look through visual platform and check the project table of accepting, and then know the project that needs to accept. And a plurality of project node confirmation items in the project acceptance table are set in advance according to actual acceptance requirements. When a user views a plurality of project node confirmation items through the visualization platform, the user needs to confirm the project node confirmation items which have been accepted. Usually, after the confirmation items of the engineering nodes related to the main body structure are all confirmed, main body completion information is generated in real time, and after the completion information of the main body is confirmed, the service center side activates the payment system, opens a third payment interface on the visual platform, and allows the user to complete the third payment. It is supplementary to note that in some embodiments of the present invention, a first payment interface is used to pay a subscription fee, a second payment interface is used to pay a prepaid fee, and a third payment interface is used to pay a payment due.
In some embodiments of the present invention, the building final confirmation label includes a final confirmation button and a modification opinion button;
the operation of responding to the building final confirmation label by the user comprises the following steps:
responding to the operation of the user on the final confirmation button, and constructing a second payment interface on the visualization platform;
constructing a modification opinion panel in the visualization platform in response to a user operation of a modification opinion button; and acquiring the modification opinion information of the user through the modification opinion panel, and transmitting the modification opinion information to the service center terminal.
The construction final confirmation tag includes a final confirmation button and a modification opinion button. Operation of the final confirmation button may activate the payment system to enter a second payment. The modification opinion button is operated to open the modification opinion panel and submit modification opinions to the service center. In actual engineering, after the building model of the house to be constructed is constructed, the building model is not directly used, because the problem that a user needs to modify the building model exists, and the modification suggestion panel provides a similar window. After the modification opinion information is submitted, the service center end can manually check and modify, and pushes the modified house model to be constructed to the user to confirm the house model again; this step may be repeated, and only after the user operates the final confirmation button to confirm that the final use is achieved, the subsequent steps are performed.
The engineering management system comprises a model database, a model combination unit, a service center end, a visualization platform and a payment system.
A model database in which a model data table and a plurality of different types of building models are stored; a plurality of building information which corresponds to a plurality of building models one by one is recorded in the model data table; building preliminary confirmation labels are arranged in each building model, and the building preliminary confirmation labels are in one-to-one correspondence with the building information;
the model combination unit is used for synthesizing a house model to be constructed according to geological information of a construction site and a building model confirmed by a user, and setting a building final confirmation label and a plurality of site management check labels in the house model to be constructed;
the service center end is internally stored with a plurality of construction detail tables which are constructed at the service center end according to the construction management rules, and the construction detail tables are linked with the field management check labels in a one-to-one correspondence manner; storing the house model to be constructed in a service center end;
the visual platform is used for displaying a house model to be constructed, a plurality of building models and a plurality of construction detail tables;
and the payment system is used for constructing a first payment interface in the visualization platform according to the operation of the user on any building preliminary confirmation label and generating first successful payment information, and constructing a second payment interface in the visualization platform according to the operation of the user on the building final confirmation label and generating second successful payment information.
Referring to fig. 1 and 2, a plurality of building models constructed in advance are imported into a model database. The building models are drawn according to design drawings, and usually a plurality of building models correspond to villas of all types which can be built by builders. And then the user can check the building models in the visualization platform and select the favorite villa.
After the user determines the desired villa, the building preliminary confirmation label of the building model can be operated in the visual platform, and further preliminary confirmation information is sent to the service center. Each building model has corresponding unique building information, each user also has own unique user information, the primary confirmation information at least comprises the two building information, the service center terminal can confirm the intention of the user according to the primary confirmation information, and the first payment interface is activated through the payment system and pushed to the user, so that the user can finish payment of the intention fund. It should be noted that the user information needs to be registered when the user uses the visualization platform for the first time, and at least the specific area information of the user is included in the user information.
After the user finishes payment on the first payment interface, first payment success information is generated. In the actual engineering management, after receiving the first successful payment information, the service center side acquires geological information of a construction site where a user needs to construct a house, and further generates a final house model to be constructed by combining the building model selected by the user. It should be noted here that the building model generally includes only the above-ground part, and the geological information mainly assists in completing the model construction of the underground part, so that the two can be combined into the final house model to be constructed. The acquisition of geological information can be carried out by manually exploring on a construction site, and can also acquire public geological information from a network, and at present, the manual exploration is mainly used. In actual engineering, geological information of different regions is different but basically consistent in the same region, so that after a user determines a building model, the user can know the region where the user is located according to the user information, and further know the geological information of the region; the building model is further combined on the basis of geological information, so that the villa corresponding to the whole building model can be supported by knowing how large the foundation is needed, and further a model of the foundation part can be constructed; therefore, a plurality of foundation part models can be constructed aiming at different areas and different building models in advance, after a user selects a building model, the corresponding foundation part model can be obtained at the first time by combining with user information, and then the building model to be constructed is synthesized with the building model.
And setting a building final confirmation label in the building model to be constructed, if the user is satisfied with the building model to be constructed, activating a payment system by operating the building final confirmation label, constructing a second payment interface in the visualization platform by the payment system, finishing final confirmation by the user through the second payment interface, and building the building according to the building model to be constructed by a subsequent builder.
After the user completes the second payment, before formal construction is started, a plurality of construction detail tables are constructed according to construction management rules and specific construction conditions of the house model to be constructed, and the plurality of construction detail tables are mainly constructed aiming at the aspects of enclosure, materials, field management and the like. One construction detail table for the enclosure is usually set, and the construction detail table mainly records the information of the enclosure such as material, price and installation mode; the corresponding field management checking label of the construction detail table of the enclosure can be arranged at the position of the enclosure in the house model to be constructed. The construction detail table to the material then need set up a plurality ofly, need set up different construction detail tables to different materials usually to the place position of placing the material according to every sets up field management and looks over the label in waiting to be under construction the house model. A plurality of construction detail tables for field management also need to be set, the construction detail tables need to be set according to different waste stacking conditions, region division conditions and the like, and a plurality of finally set field management check labels also correspond to the divided regions.
According to the engineering management system provided by the embodiment of the invention, a plurality of building models of different types are stored in the model database and displayed through the visual platform, so that a user can select a villa style desired by the user according to the requirement of the user, and the user can visually know the product desired by the user. The address information of the construction site and the building model confirmed by the user are acquired, and then the model of the house to be constructed can be constructed through the model combination unit, so that the user can conveniently check the overall appearance of the finally formed house and the corresponding information such as the construction detail table on line, and the user can visually know the engineering state of the villa in advance. The on-line payment is completed step by step through the payment system to achieve the intention of cooperation with the user, so that the doubts of the user and the builder can be solved to a certain extent, and the intention of cooperation of the user and the builder is deepened. Compared with the traditional mode, the engineering management system of the embodiment of the invention provides a mode for a user to check the finished villa products on line, greatly improves the product understanding of the user, and further can effectively reduce the problems generated in later construction; the engineering management system of the embodiment of the invention can complete the whole villa signing process without the face-to-face contact of the user and the builder, can directly check the subsequent effect in the visual platform after the intention is reached every time, and further improves the trust of the two parties.
In some embodiments of the invention, a construction preparation check label is set in the house model to be constructed; the service center end stores a construction budget table generated according to the house model to be constructed and the price table of construction materials; the construction budget table is connected with the construction preparation check label.
After the construction preparation viewing label is set, the construction budget table can be viewed in the visual space through operating the construction preparation viewing label. The construction budget table comprises various price details in the whole construction process, and the price details can be obtained through preliminary calculation according to the house model to be constructed and the construction material price table, for example: for concrete calculation in foundation construction, after knowing a house model to be constructed, the concrete foundation size can be known, and then the concrete of the required number can be known, the price of the concrete can be recorded in a construction material price table, and then the amount of money spent on pouring the foundation can be automatically calculated, other amounts of money can be calculated in the mode, and then the project name and the budget amount of each item are recorded in a construction budget table. And a construction budget table is provided, and building managers and users have a consensus on the flow direction of capital, so that contradictions in subsequent engineering construction are reduced.
In some embodiments of the invention, the construction preparation view tab includes a construction budget view button and a construction preparation project view button; the construction budget viewing button is linked with the construction budget table; the construction preparation item viewing button is linked with the construction preparation item table; and the construction preparation project table is constructed according to the house model to be constructed and is stored at the service center.
The construction preparation view tab includes a construction budget view button and a construction preparation item view button. The construction budget check button mainly realizes the acquisition of a construction budget table, and the construction preparation item check button mainly realizes the acquisition of a construction preparation item table. The construction preparation project table is an important work before construction, personnel and materials required to be configured during construction are recorded in the construction preparation project table, and the personnel and the materials can be determined after the house model to be constructed is confirmed; in actual engineering, a fixed numerical value is pre-calculated by matched equipment, personnel, materials and the like of each building model, and after a building model to be constructed is constructed according to the building model, the final personnel and materials can be rapidly calculated by only confirming the manpower and materials consumed by the foundation part. The construction budget table is provided, on one hand, building managers can know the on-site manpower and material resources conveniently, subsequent scheduling is facilitated, on the other hand, users can know the flow direction of funds, the confidence level of the construction businessmen can be increased, and contradictions in subsequent engineering construction are reduced.
In some embodiments of the present invention, the service center further stores an acceptance item table, where the item acceptance table includes a plurality of engineering node confirmation items; a project acceptance label linked with an acceptance project table is arranged in the house model to be constructed; the project acceptance sheet is used for generating main body completion information and activating the payment system; the payment system is further used for constructing a third payment interface on the visualization platform and generating third payment success information.
Project acceptance is also an important link in engineering. Through setting up the project and checking the label and can be convenient for the user to look through visual platform and check the project table of accepting, and then know the project that needs to accept. And a plurality of project node confirmation items in the project acceptance table are set in advance according to actual acceptance requirements. When a user views a plurality of project node confirmation items through the visualization platform, the user needs to confirm the project node confirmation items which have been accepted. Usually, after the confirmation items of the engineering nodes related to the main body structure are all confirmed, main body completion information is generated in real time, and after the completion information of the main body is confirmed, the service center side activates the payment system, opens a third payment interface on the visual platform, and allows the user to complete the third payment.
In some embodiments of the present invention, the building final confirmation label includes a final confirmation button and a modification opinion button; the final confirmation button is used for activating the payment system and enabling the payment system to construct a second payment interface; the comment modifying button is used for constructing a comment modifying panel in the visualization platform; the modification opinion panel is used for acquiring modification opinion information of the user and transmitting the modification opinion information to the service center terminal.
The construction final confirmation tag includes a final confirmation button and a modification opinion button. Operation of the final confirmation button may activate the payment system to enter a second payment. The modification opinion button is operated to open the modification opinion panel and submit modification opinions to the service center. In actual engineering, after the building model of the house to be constructed is constructed, the building model is not directly used, because the problem that a user needs to modify the building model exists, and the modification suggestion panel provides a similar window. After the modification opinion information is submitted, the service center end can manually check and modify, and pushes the modified house model to be constructed to the user to confirm the house model again; this step may be repeated, and only after the user operates the final confirmation button to confirm that the final use is achieved, the subsequent steps are performed.
According to the third aspect of the invention, the computer-readable storage medium stores computer-executable instructions for causing a computer to execute the above engineering management method.
Computer-readable storage media according to embodiments of the present invention may facilitate storage and transfer of computer-executable instructions by the storage media.
In the description herein, references to the description of the term "one embodiment," "some embodiments," "an illustrative embodiment," "an example," "a specific example," or "some examples" or the like mean that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the invention. In this specification, the schematic representations of the terms used above do not necessarily refer to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
Although the embodiments of the present invention have been described in detail with reference to the accompanying drawings, the present invention is not limited to the embodiments, and those skilled in the art will understand that: various changes, modifications, substitutions and alterations can be made to the embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the claims and their equivalents.

Claims (10)

1. An engineering management method is characterized by comprising the following steps:
constructing a visual platform and a model database; a plurality of building models of different types are stored in the model database;
building a model data table in the model database, wherein the model data table records a plurality of building information corresponding to a plurality of building models one by one; building preliminary confirmation labels are arranged in each building model, and the building preliminary confirmation labels are in one-to-one correspondence with the building information;
displaying a plurality of the building models through a visualization platform;
responding to the operation of a user on any building preliminary confirmation label, and sending preliminary confirmation information to a service center end; the preliminary confirmation information comprises building information and user information;
after the service center side confirms the preliminary confirmation information, a first payment interface is established on the visual platform, and first successful payment information is generated in response to the operation of a user on the first payment interface;
acquiring geological information of a construction site and storing the geological information to the service center end;
synthesizing a house model to be constructed at the service center end based on the geological information and the building model confirmed by the user, and setting a final building confirmation label in the house model to be constructed;
displaying the house model to be constructed in the visualization platform; responding to the operation of the user on the building final confirmation label, constructing a second payment interface on the visualization platform, and generating second payment success information after the user finishes the operation on the second payment interface;
and constructing a plurality of construction detail tables at the service center end according to construction management rules, setting a plurality of site management check labels in the to-be-constructed house model, wherein the plurality of construction detail tables are linked with the plurality of site management check labels in a one-to-one correspondence manner, and the plurality of site management check labels are used for acquiring the plurality of construction detail tables.
2. The project management method according to claim 1, characterized by further comprising the steps of:
setting a construction preparation checking label in the house model to be constructed;
generating a construction budget table according to the to-be-constructed house model and a construction material price table, wherein the construction budget table is connected with the construction preparation checking label;
displaying the construction budget table in the visualization platform in response to the operation of the construction preparation view tab.
3. The project management method according to claim 2, wherein the construction preparation view tab includes a construction budget view button and a construction preparation item view button; the construction budget view button is linked with the construction budget sheet;
the operation of responding to the construction preparation viewing label comprises the following steps:
in response to operation of the construction budget view button, presenting the construction budget form in the visualization platform;
displaying a construction preparation item table in the visualization platform in response to operation of the construction preparation item view button; and the construction preparation project table is constructed according to the house model to be constructed and is stored at the service center.
4. The project management method of claim 1, wherein the construction final confirmation label includes a final confirmation button and a modification opinion button;
the operation of responding to the building final confirmation label by the user comprises the following steps:
building a second payment interface on the visualization platform in response to user operation of the final confirmation button;
constructing a modification opinion panel in the visualization platform in response to user operation of the modification opinion button; and acquiring modification opinion information of the user through the modification opinion panel, and transmitting the modification opinion information to the service center terminal.
5. The project management method according to any one of claims 1 to 4, characterized by further comprising the steps of:
establishing an acceptance item table at the service center end, and setting an item acceptance label linked with the acceptance item table in the to-be-constructed house model, wherein the item acceptance table comprises a plurality of engineering node confirmation items;
in response to a user operation of the project acceptance label, presenting the project acceptance form in the visualization platform;
acquiring the confirmation states of the user on the plurality of project node confirmation items, and generating main body completion information;
and after the main body completion information is confirmed by the service center, a third payment interface is established on the visual platform, and third payment success information is generated in response to the operation of the user on the third payment interface.
6. An engineering management system, comprising:
a model database in which a model data table and a plurality of different types of building models are stored; a plurality of building information corresponding to the building models one by one is recorded in the model data table; building preliminary confirmation labels are arranged in each building model, and the building preliminary confirmation labels are in one-to-one correspondence with the building information;
the model combination unit is used for synthesizing a house model to be constructed according to geological information of a construction site and the building model confirmed by a user, and setting a building final confirmation label and a plurality of site management checking labels in the house model to be constructed;
the service center end is internally stored with a plurality of construction detail tables which are constructed at the service center end according to construction management rules, and the construction detail tables are linked with the site management viewing labels in a one-to-one correspondence manner; the house model to be constructed is stored in the service center end;
the visualization platform is used for displaying the house model to be constructed, the plurality of building models and the plurality of construction detail tables;
and the payment system is used for constructing a first payment interface in the visualization platform according to the operation of the user on any building preliminary confirmation label and generating first successful payment information, and constructing a second payment interface in the visualization platform according to the operation of the user on the building final confirmation label and generating second successful payment information.
7. The project management system of claim 6, wherein a construction preparation viewing tag is provided in the building model to be constructed; the service center end stores a construction budget table generated according to the house model to be constructed and the price table of construction materials; the construction budget table is connected with the construction preparation viewing label.
8. The project management system of claim 7, wherein the construction preparation view tab includes a construction budget view button and a construction preparation item view button; the construction budget view button is linked with the construction budget sheet; the construction preparation item viewing button is linked with a construction preparation item table; and the construction preparation project table is constructed according to the house model to be constructed and is stored at the service center.
9. The project management system of claim 6, wherein the building final confirmation label includes a final confirmation button and a modification opinion button; the final confirmation button is used for activating the payment system and enabling the payment system to construct a second payment interface; the modify opinion button is used for constructing a modify opinion panel in the visualization platform; the modification opinion panel is used for acquiring modification opinion information of a user and transmitting the modification opinion information to the service center terminal.
10. A computer-readable storage medium characterized by: the computer-readable storage medium stores computer-executable instructions for causing a computer to perform a method of project management according to any of claims 1 to 5.
CN202110118422.9A 2021-01-28 2021-01-28 Engineering management method, system and storage medium Pending CN112837027A (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113190721A (en) * 2021-05-26 2021-07-30 长沙迈迪克智能科技有限公司 Disease control information visual display method, system and storage medium

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113190721A (en) * 2021-05-26 2021-07-30 长沙迈迪克智能科技有限公司 Disease control information visual display method, system and storage medium
CN113190721B (en) * 2021-05-26 2022-07-15 长沙迈迪克智能科技有限公司 Disease control information visual display method, system and storage medium

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