Hidden shareable combination landscaping system and landscaping method
By utilizing a hidden, shareable, and combinable landscaping system, and combining the information-based design of planting and hardscape modules with a software system, the problems of existing technologies being unable to adjust landscapes over time and share modules have been solved. This enables convenient dynamic landscape combination and sharing, improving landscape quality and user engagement.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- 郭逍与
- Filing Date
- 2021-01-27
- Publication Date
- 2026-04-10
AI Technical Summary
Existing flower boxes and modular landscape designs cannot meet the needs of temporary landscapes for events and landscape changes caused by seasonal variations. They lack concealed designs, making it difficult to quickly adjust or replace plants. Furthermore, the lack of an information management system limits the participation of non-professionals and the sharing of modules.
The system employs a hidden, shareable, and combinable landscaping system, including planting modules and hardscape modules. It is equipped with information components and uses a software system for virtual modeling and module combination, enabling dynamic adjustment of time and spatial coordinates and supporting convenient individual combination and sharing.
It enables low-threshold and convenient landscape combination and sharing, can adjust the landscape effect over time, reduce plant waste, improve the participation of non-professionals and the interchangeability of modules, and achieve high-quality natural landscape effects.
Smart Images

Figure CN112487546B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of landscaping engineering, in particular to a hidden shareable combined landscaping system and a landscaping method. BACKGROUND
[0002] At present, with the improvement of the aesthetic requirements of landscape architecture with the development of society, the fixed landscaping of traditional gardens has good landscape effects, but the unchangeable characteristics are not suitable for the needs of landscape changes in some specific situations, such as temporary landscapes, seasonal changes, or private gardens that lack freshness during long-term use during epidemic isolation.
[0003] Existing flower boxes and modular landscape designs have some response to these needs, but are not perfect. For example, application number CN201920476677.0, a convenient mobile garden planting box, application number CN201620299460.3, a roof assembly type movable planting device, and application number CN201620889372.9, a roof garden module. These existing flower boxes or modular designs only consider the mobile installation and use above the ground, and do not consider the material corrosion, plant root maintenance, water and electricity equipment installation and other needs required for the installation and long-term use of the modules below the ground level. In addition, existing modular designs do not consider the diversification of the moving method and the error correction of the non-professional moving and combining behavior, so it is not conducive for individuals to quickly move and combine modules into new landscapes with small equipment. Existing flower boxes and modular landscaping designs are only used as modern style design elements, and do not consider the low-visibility camouflage structure of the modules, which reconstruct the thinking direction of traditional landscape effects. There is no hidden design for the visual deception of the structure of the flower box and the module, and the exposed structure of the module flower box can be observed by the user. The visible structure of the artificial sense, cheapness and strangeness has a certain influence on the shaping of the traditional natural landscape space atmosphere, and cannot meet the high-quality landscape effect requirements. Therefore, it cannot form a landscape like traditional gardens and natural plant communities, or integrate into existing traditional garden landscapes.
[0004] Most existing flower boxes and module designs only consider single planting, and a few can replace hard landscapes and outdoor furniture, but cannot combine lighting, irrigation and other landscape equipment. Their landscaping use is limited, and in the design field, they belong to partial supplementary landscaping of the overall landscaping area, and mostly exist as independent point and block-shaped design elements. They need users to add surrounding landscaping, water and electricity equipment or outdoor furniture and other landscaping maintenance supplements, and cannot form a self-sufficient overall landscape system that can be maintained and used for a long time.
[0005] Traditional landscaping techniques or modular design only consider the static landscape modeling in three-dimensional space, but less consider the possibility of dynamic new landscape caused by the state change of landscape elements in time dimension. Designers can only trade off between short-term optimal effect and long-term acceptable effect. For example, plants will have time states such as flowering and leaf falling with time and season changes. However, the existing traditional gardens and modular design are difficult to quickly adjust or replace the plants in the best viewing state inside the region to the best viewing position, so they often choose evergreen plants or abandon the original and buy new seasonal flowers to avoid affecting the landscape effect, which causes waste of good landscape state and purchase of plants. At the same time, users can only understand the three-dimensional space effect of a specific scene in the design effect diagram during the garden design process, and cannot directly see the time state change of different seasons of the garden landscape in time coordinates. After the completion of construction combination, it is difficult to conveniently combine and change the overall garden effect with time changes in the actual garden.
[0006] The existing traditional landscaping techniques, modular or flower box design, all lack close application with landscape scene simulation information system. They lack the reflection of flower box modules and site state to virtual space model and scene data simulation system that can reflect the state change caused by time. Non-professional users are difficult to adjust and try various garden scheme combinations according to their own preferences, different spatial forms and time states, and predict the landscape effect. It is also difficult to find or obtain suitable landscaping modules without spatial orientation data indication, and use single-person machinery such as micro-manual hydraulic forklift to realize the user's personal implementable low-cost fast combination and movement of landscaping attempts. The existing flower box modular design scheme and construction need to use professional software and machinery by designers and constructors. The threshold of landscaping is limited to the professional field, and non-professional users have low participation and can only passively accept the combination scheme and landscaping effect. After the completion of garden construction and installation, the program of scheme adjustment and change is complicated, the cost of module recombination is high, and individuals cannot try multiple times at will.
[0007] The existing flower box modular design lacks combination with information exchange management system and does not have corresponding information components. Users are difficult to query the data image state of the modules of other owners in advance to compare and judge the change of the current state after the module is delivered. Landscape elements, especially plants, are non-artificial standardized products, and non-professionals are difficult to control the change of the quality damage of the modules, resulting in poor control of landscape effect. The replacement of modules or flower boxes is limited to the range of products of professional landscape companies, and the replaceable modules are few and need to be purchased. The landscape elements are not flexible to adjust, and the replaced plants are difficult to reuse, resulting in waste. The existing module design and flower box lack module evaluation data standards, rapid replacement product design and flower box module information display exchange system. Therefore, it is difficult to exchange and share flower box modules with other individual owners. Only a small amount of point landscape elements can be changed, and the whole garden cannot be completely exchanged. The use of the same site is limited to replace and share diversified different landscapes. SUMMARY
[0008] In view of the deficiencies in the above background art, the present application discloses a hidden shareable combined landscaping system and method, which solves the problems of poor individual landscaping effect and inability to predict and adjust the shared combination over time in the prior art
[0009] The technical scheme of the present application is as follows: a hidden shareable combined landscaping system, comprising a hardware system and a software system, the hardware system comprising a plurality of planting modules and hard landscape modules that can be combined in a ground plane and within a fence, the planting modules and hard landscape modules each being provided with an information component; the planting module comprising a first main frame, the first main frame being provided with a hidden bearing frame, and the first main frame being provided with a planting bin container with air vents and a water storage tank; the hard landscape module comprising a second main frame, the second main frame being provided with a garden pavement structure.
[0010] Further, the first main frame and the second main frame are each provided with a lifting mechanism, the first main frame being a polygonal frame composed of vertical columns and connecting columns, the vertical columns being provided at the upper end with a lifting mechanism, and the connecting columns leaving a carrying space between the connecting columns and the ground.
[0011] Further, the hidden bearing frame is a flexible frame matched with the first main frame, the flexible frame extending outward relative to the first main frame to shield the first main frame, and the bottom surface of the flexible frame being provided with mounting holes corresponding to the lifting mechanism; the hidden bearing frame being provided with a camouflage layer matched with the load in the planting bin container, and the thickness of the top of the hidden bearing frame being less than 10 mm. Preferably, the flexible frame is a recycled rubber frame, the recycled rubber frame being a stepped frame with a large upper part and a small lower part, the inner wall of the upper part of the recycled rubber frame being an inclined surface and the thickness gradually decreasing upward, and the thickness of the top of the recycled rubber frame being preferably 2 mm.
[0012] Further, the garden paving structure comprises a load-bearing layer, a fixing layer and a viewing layer arranged on the upper part of the second main frame in sequence from bottom to top, a carrying space is left between the second main frame and the ground, the load-bearing layer is fixedly connected with the second main frame, the viewing layer is connected with the fixing layer through the fixing layer, the load-bearing layer, the fixing layer and the viewing layer all extend outward relative to the second main frame; the load-bearing layer and the fixing layer are provided with hoisting holes matched with the hoisting mechanism. Preferably, the second main frame is provided with an auxiliary support frame, the lower end of the auxiliary support frame is fixed on the second main frame, the upper end of the auxiliary support frame is connected with the load-bearing layer, and the viewing layer is a garden paving, outdoor furniture or a landscape element.
[0013] Further, the hoisting mechanism comprises a positioning box arranged on the first main frame and the second main frame, the opening end of the positioning box corresponds to the hoisting opening arranged on the upper part of the first main frame and the second main frame, a cover plate is hinged on the positioning box, and the cover plate is provided with a camouflage layer matched with the load-bearing object in the viewing layer and the planting bin.
[0014] Further, the information assembly comprises a mounting plate and a load object information reading area I arranged on the cover plate, the mounting plate is detachably connected with the first main frame and the second main frame, the mounting plate is provided with a load object information reading area II and a load object information display area, and data codes are arranged on the load object information reading area I and the load object information reading area II. Preferably, the planting module and the hard landscape module are combined and assembled through a bottom fixing piece; the bottom fixing piece comprises a base, at least two fixing cavities matched with the planting module and the hard landscape module are arranged in the base, and the upper part of the fixing cavity is an inclined surface.
[0015] A landscaping method of the hidden shareable combined landscaping system, steps are as follows:
[0016] S1: The actual landscaping site is divided into blocks for placing the planting module and the hard landscape module, then the blocks are arrayed and numbered, then the actual landscaping site, the planting module and the hard landscape module are modeled in the software system, and a virtual model of the landscaping site, a virtual model of the planting module and a virtual model of the hard landscape module with space coordinates and time coordinates are generated;
[0017] S2: The user selects corresponding virtual models of the planting module and the hard landscape module according to needs and seasonal time by using the software system, adjusts the positions of the virtual models of the planting module and the hard landscape module in the virtual model of the landscaping site according to the modeling features and seasonal state features of the virtual models of the planting module and the hard landscape module under different time coordinates, replaces the spatial combination mode and the landscaping space effect of the virtual models of the planting module and the hard landscape module, and completes preliminary simulation landscaping.
[0018] S3: Users select existing, customized or exchanged planting modules and hard landscape modules for actual landscaping according to the preliminary simulation;
[0019] S4: When using customized or exchanged planting modules and hard landscape modules, users obtain the landscaping information and images of the customized or exchanged planting modules and hard landscape modules in the predetermined state through the information components of the customized or exchanged planting modules and hard landscape modules by using the human-computer interaction device of the software system, and compare them with the landscaping information and images of the customized planting modules and hard landscape modules in the current state to confirm the usable state of the planting modules and hard landscape modules;
[0020] S5: According to the spatial coordinates of the preliminary simulation, the planting modules and hard landscape modules placed in the actual landscaping site are guided to form the final actual landscaping;
[0021] S6: The software system generates and saves the state data of the planting modules and hard landscape modules in the final actual landscaping scene, and sets the maintenance time and maintenance management time according to the time coordinates;
[0022] S7: When reaching the set maintenance time and maintenance management time, the software system makes a pre-announcement of the state of the planting modules according to the time coordinates, and users can make new adjustments and replacements; or update and display the data images of the existing planting modules and hard landscape modules in the software system, which is convenient for exchanging with other users.
[0023] The landscaping system is composed of hardware parts such as multifunctional plantable modules, hard landscape modules and information elements and software system parts, and can be combined into a complete and self-sustaining garden system with plants, paving, outdoor furniture, landscape elements and water and electricity equipment. The bottom fixing part corrects the placement and combination errors between modules of various moving modes, and the structure and additional water and electricity equipment are hidden by the load. It can be placed in the underground space or on the ground for long-term use, and the artificial sense of artificiality and cheapness of the exposed structure of the combined module is eliminated by low visibility and hidden camouflage, and the high-quality landscape feeling of traditional gardens and natural landscapes is reconstructed. The informationized module design, data information management, system software and low-threshold landscaping method break the professional monopoly and strengthen the participation of non-professional users, and introduce the time dimension into the traditional three-dimensional static landscaping field. It allows users to adjust the time and space coordinates in the software and intuitively feel the dynamic landscape changes of the spatial form and seasonal state of the module load in the time dimension, and try different combination schemes to simulate and predict the effect, which is beneficial to the diversified mobile combination of the modeling design and the information management of the module data system, and allows users to use small tools to implement low-cost and convenient replacement and sharing. In actual gardens, the dynamic landscape is conveniently managed and changed as a whole with the change of time, reducing the waste of replacing plants and landscape effects. With the help of the information components of the modules, the comparison and judgment of the module state of the human-computer interaction system and the functions such as module display and exchange, the users can sell and exchange the modules, so as to realize the exchange and sharing of individual modules and even the whole garden landscape. This new landscaping system and method of introducing the time dimension dynamic landscape, with the breakthrough underground placement module system, hidden design and informationized module simulation sharing system and other new landscaping methods, can be implemented by individuals with low threshold and low cost to try different combinations, disguised as traditional natural seasonal landscape that can freely change form with the change of time dimension, and can achieve the new garden of different shapes every day. It opens up the possibility of dynamic sharing and digital technology innovation direction for the traditional static three-dimensional above-ground garden landscaping field, and has good prospects and social benefits. BRIEF DESCRIPTION OF DRAWINGS
[0024] In order to more clearly illustrate the embodiments of the present application, the drawings needed in the following embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.
[0025] Figure 1 It is a schematic view of the partial assembly state of the present application.
[0026] Figure 2It is a front view schematic diagram of the planting module of the present application.
[0027] Figure 3 It is an exploded view of the planting module of the present application.
[0028] Figure 4 It is a partial enlarged view of the hoisting mechanism on the planting module.
[0029] Figure 5 It is a cross-sectional view schematic diagram of the hidden bearing frame.
[0030] Figure 6 It is a front view schematic diagram of the hard landscape module of the present application.
[0031] Figure 7 It is an exploded view of the hard landscape module of the present application. DETAILED DESCRIPTION
[0032] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the present application.
[0033] As Figure 1As shown in Embodiment 1, a hidden, shareable, and combinable landscaping system includes a hardware system and a software system. The software system allows for virtual adjustments and combinations of the hardware system in advance. The software system is applied to human-computer interaction platforms such as mobile phones and tablets via communication networks and network services. This software system manages the acquisition of data images of planting modules, hardscape modules, and real-world scenes used in landscaping, as well as the creation of virtual models and the adjustment and management of spatial and temporal parameters. It also has functions for communication and commercial activities. The hardware system includes several combinable planting modules 1 and hardscape modules 2. The quantity and specifications of the planting modules 1 and hardscape modules 2 are selected based on the data of the actual landscaping site. Both planting modules 1 and hardscape modules 2 are equipped with information components 3. Scanning these components with a mobile phone or other human-computer interaction device provides information about the objects on the planting modules 1 and hardscape modules 2; alternatively, the information can be displayed directly, depending on the landscaping situation. The planting module 1 includes a first main frame 101, which is a corrosion-resistant frame. A concealed support frame 102 is mounted on the first main frame 101. A planting chamber container 103 with ventilation holes and a water storage tank is located inside the first main frame 101 and is used for planting landscape plants. During assembly, space is left between the frames of the planting module 1 and the hardscape module to minimize errors during handling and to allow space for side-mounted pipelines. The ventilation holes also facilitate drainage of water accumulated in long-term planted landscape plants and increase airflow to restrict the growth of plant roots. The hardscape module 2 includes a second main frame 201, on which a garden paving structure is mounted. The second main frame 201 has a similar structure to the first main frame 101, and both are equipped with a lifting mechanism 104 at their upper parts for easy hoisting. The lifting mechanism works in conjunction with hoisting equipment to achieve rapid and safe movement.
[0034] Furthermore, such as Figure 2 , 3 As shown, the first main frame 101 is a polygonal frame composed of vertical columns 101-1 and connecting columns 101-2. The polygonal frame can be triangular, quadrilateral, or hexagonal, preferably quadrilateral. The vertical columns 101-1 and connecting columns 101-2 can be made of corrosion-resistant square steel. The connecting columns 101-2 are used to fix the vertical columns, and a handling space 105 is left between the connecting columns and the ground. Water, electricity, and data pipelines can be installed in the handling space, allowing the planting module to be moved from the bottom using a forklift.
[0035] Furthermore, such as Figure 5The hidden bearing frame 102 is a flexible frame matching the first body frame 101, the cross section of the flexible frame is stepped, and the bottom surface of the flexible frame is provided with a mounting hole 1021 corresponding to the lifting mechanism 104. The hidden bearing frame 102 is provided with a low-visibility color pattern or a camouflage layer of the bearing object matching the bearing object in the planting bin container 103, so as to camouflage into a traditional natural plant community landscape. The thickness of the top of the hidden bearing frame 102 is less than 10 mm. The flexible frame is a reclaimed rubber frame, the reclaimed rubber frame is a stepped frame with large upper part and small lower part, or an L-shaped frame or an arc-shaped frame, the upper part of the reclaimed rubber frame extends outward relative to the first body frame 101. The inner wall of the upper part of the reclaimed rubber frame is an inclined surface, and the thickness gradually decreases upward, and the thickness of the top of the reclaimed rubber frame is preferably 2 mm, so as to reduce the visibility of the module structure and facilitate the bearing object to shield the exposed structure. Preferably, the upper part of the reclaimed rubber frame extends outward relative to the first body frame 101 by 2 cm. The reclaimed rubber frame is an annular frame body with upper and lower openings and attached to the first body frame, and the edge of the upper part of the reclaimed rubber frame extends outward by 2 cm relative to the first body frame. The water pipe of the automatic drip irrigation system extends upward from the reserved space at the bottom of the unit and is installed in the space on the side of the first body frame. The thickness of the reclaimed rubber frame gradually decreases from bottom to top and is 2 mm at the top end, and the reclaimed rubber frame is dark gray of planting soil, the planting soil and plants carried by the reclaimed rubber frame are as close as possible to the upper end of the bearing frame to cover the structure in the bearing frame, and the lower opening is matched with the upper opening of the first body frame.
[0036] Further, as Figure 7As shown, the second main frame is similar in structure to the first main frame and can be combined in any way. The garden paving structure includes, from bottom to top, a load-bearing layer 202, a fixed layer 203, and a viewing layer 204 arranged on the upper part of the second main frame 201. The load-bearing layer 202 and the fixed layer 203 are provided with lifting holes 205 that cooperate with the lifting mechanism 104. The viewing layer (the uppermost layer) is a plastic wood outdoor floor or tile (garden paving) that cooperates with the planting module to form a flat landscape. Or according to the needs of the garden lawn lamp or outdoor furniture or sculpture and other landscape elements. The second main frame 201 leaves a carrying space 105 between the ground, which facilitates the smooth insertion of the forklift into the carrying space for safe carrying. The load-bearing layer 202 is fixedly connected to the second main frame 201, and the viewing layer 204 is connected to the fixed layer 203. The load-bearing layer 202, the fixed layer 203, and the viewing layer 204 all extend outward relative to the second main frame 201; that is, preferably, the outer contour of the garden paving structure extends outward by 2 cm relative to the second main frame. The load-bearing layer 202 and the fixed layer 203 are provided with lifting holes that cooperate with the lifting mechanism 104, facilitating the quick lifting of the lifting equipment. When the hard landscape module is moved, it can also be quickly carried by inserting the forklift into the carrying space. Preferably, the second main frame 201 is provided with an auxiliary support frame 206, the lower end of which is fixed to the second main frame 201, and the upper end of which is connected to the load-bearing layer 202. When the viewing layer is provided with outdoor furniture or sculpture and other landscape elements, it provides stable support.
[0037] Preferably, as Figure 4 As shown, the lifting mechanism 104 includes a positioning box body 104-1 fixedly arranged on the first main frame 101 and the second main frame 201. The positioning box body is fixed on the corresponding vertical column and connecting column by inlaying bolts or welding, and the open end of the positioning box body 104-1 corresponds to the lifting opening 104-2 arranged on the first main frame 101 and the second main frame 201, facilitating the smooth insertion of the lifting hook. And the positioning box body 104-1 is hinged with a cover plate 104-4 to prevent the load from falling into the lifting hole and to avoid being detected by the user when not in use.
[0038] As Figure 6As shown in Embodiment 2, a hidden shareable combined landscaping system, the planting module 1 and the hard landscape module 2 are combined and assembled by the bottom fixing part 4; the bottom fixing part 4 includes a base 401, and at least two fixing cavities 402 matched with the planting module 1 and the hard landscape module 2 are arranged in the base 401, and the inner wall of the upper part of the fixing cavity 402 is a conical surface, which facilitates the quick insertion of the vertical column of the second main frame and the first main frame for fixed connection. Two or three or four cavities can be arranged in the base, and when the planting module and the hard landscape module are moved, the column foot slides into the middle fixing cavity on the inclined surface of the fixing assembly due to the weight, and is fixed in position by the assembly conforming to the size of the column foot.
[0039] Preferably, the information assembly 3 includes the mounting plate 301 and the information reading area 104-3 arranged on the cover plate 104-4, the mounting plate 301 is detachably connected with the first main frame 101 and the second main frame 201, and the mounting plate 301 is provided with the information reading area II and the information display area, and the information reading area I and the information reading area II are both provided with data codes. The data code is a two-dimensional code or a bar code, and the user or the viewer can quickly obtain the information of the carried object (the basic information of the landscape plants planted in the planting container, the planting time, the original coordinate data, etc. or the material of the hard landscape module, the matters needing attention, etc.) by scanning the two-dimensional code through the mobile phone or other human-computer interaction devices. The user scans the two-dimensional code of the information display assembly of the information assembly on the mobile phone, checks the information of the carried object of this unit, compares whether the image is changed or damaged, and adjusts the position of the unit in the model according to the space size effect and the time change effect (for example, the flowering time of the plants) of the two unit models in the system. Then, according to the position relationship of the model generated by the system, the position of the module unit is exchanged by carrying or hoisting, and a new landscape is created. The other structures are the same as those in Embodiment 1.
[0040] Embodiment 3: A landscaping method of the hidden shareable combined landscaping system as described in Embodiment 2, the steps are as follows:
[0041] S1: Infrastructure construction is carried out on the actual landscaping site, such as the installation of bottom water permeable pipe level, the setting of peripheral retaining wall and fence structure, and then the actual landscaping site is divided into blocks for placing planting modules 1 and hard landscape modules 2, and then the blocks are arrayed and numbered, and then a three-dimensional model similar to 3Dmax or sketchup is generated according to the actual landscaping site, planting modules 1 and hard landscape modules 2, generating a virtual site model of the landscaping site block with spatial coordinates and time coordinates, a virtual model of the planting module and a virtual model of the hard landscape module. For example, select a new garden site in Beijing, input the relevant length, width and other data, and the software system generates a three-dimensional model of the block landscaping site with the corresponding data, or select an existing garden landscaping site model with a related module data model library.
[0042] S2: The user uses the software system to select the corresponding planting module virtual model and hard landscape module virtual model according to the demand and seasonal time, and adjusts the position in the landscaping site virtual model according to the modeling characteristics and seasonal state characteristics of the planting module virtual model and the hard landscape module virtual model at different time coordinates, changes the spatial combination mode and landscaping space effect of the planting module virtual model and the hard landscape module virtual model, and completes the preliminary simulation landscaping. For example, the user determines the need for a garden landscape in Beijing in spring, and can adjust to the time coordinate of spring. The user places the data model of the required module into the landscaping site model, and the software database feedbacks and presents in the model. The corresponding planting module plants bloom and change in color and other seasonal states. The user can refer to the size, height and other spatial modeling of the module and the blooming and leaf falling of the module to make multiple combination attempts to achieve the desired landscape scheme. For example, the module of the low plant that blooms in spring is placed near the roadside, and the module of the plant that does not bloom or is tall is placed far away, and the position can be adjusted again after the plant state changes in summer, so as to combine and create different seasonal landscapes in the time dimension. And the original record image of the module in the relevant data can be consulted to control and predict the landscape effect of the actually placed plants. Finally, save the scene scheme model and use it for other steps.
[0043] S3: The user selects the existing or customized or exchanged planting module 1 and hard landscape module 2 to prepare for actual landscaping according to the preliminary simulation landscaping. For example, the user wants to have a rose planting module in the garden, and can select the corresponding rose model in the plant list in the software system to form a new data model of the planting module, and save it to the software system in the unused state, and can call and try to combine in the site model of the software system to confirm the spatial and time phase landscape effect. When it is confirmed to be needed, it can be bought or exchanged in the system software. If the user already has a rose module, it can be found and used at the spatial position recorded in the software system.
[0044] S4: When the customized or exchanged planting module 1 and hard landscape module 2 are adopted, the user uses the information components of the customized or exchanged planting module 1 and hard landscape module 2 through the man-machine interaction device of the software system to obtain the landscaping information and images of the customized or exchanged planting module 1 and hard landscape module 2 in the predetermined state, and compares them with the landscaping information and images of the customized planting module 1 and hard landscape module 2 in the current state, and confirms the usable state of the planting module 1 and hard landscape module 2. For example, after the rose unit is found or delivered, the user scans the two-dimensional code, the system retrieves the data photos recorded by the nursery or the previous owner, compares and judges the variety and the photo, and confirms that it is usable without damage.
[0045] S5: According to the space coordinates of the preliminary simulation landscaping, the user places the planting module 1 and hard landscape module 2 in the actual landscaping site to form the final actual landscaping. For example, according to the block label space data of the site plan model, the user uses a miniature hydraulic power forklift, a small crane or other mobile tools to place the rose module in the corresponding position. The irrigation water pipe or lamp equipment is installed in the space reserved on the side of the module, and the module structure without artificial sense of abruptness affects the complete garden system of natural landscape effect.
[0046] S6: The software system generates and saves the state data of the planting module 1 and hard landscape module 2 in the final actual landscaping scene, and the software system sets the maintenance time and maintenance management time according to the time coordinates. The actual use process can also be adjusted and managed at any time. For example, after the installation and combination are completed, the scene model is saved. The software system can query and manage the estimated state and data of the corresponding rose module in the scene, and the software can set the maintenance time according to the estimated state change of the rose flowering period and the like in the time scale, and remind and manage the rose flowers in irrigation, lighting and pruning.
[0047] S7: reaching the set maintenance time and maintenance management time, the software system makes a pre-announcement suggestion of the state of the planting module 1 according to the time coordinate, and the user can make new landscape adjustment and replacement; or update and display the existing planting module 1 and hard landscape module 2 data image in the software system, which is convenient for exchange with other users. For example, after the garden enters autumn, the software system reminds that the rose period has passed, and the user can shoot the updated image of the current state of the rose and import it into the module data display area of the software system for subsequent use or for other users who want to plant roses to query and exchange. After the user recombines and tries in the scene model, confirms the need and searches for a new chrysanthemum planting module. Purchases or finds a chrysanthemum module owned by other users in the module data display area of the software system, and the user can communicate and apply for purchase and exchange. Then start to compare and judge the state after receiving the module and install and use. In this way, different plant forms of garden landscapes at different times are obtained through sharing and exchange means.
[0048] The above only describes the preferred embodiments of the present application and is not intended to limit the present application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A concealed shareable combination landscaping system, characterized by: The application relates to a landscape construction system comprising a hardware system and a software system, wherein the hardware system comprises a plurality of planting modules (1) and hard landscape modules (2) which can be combined in a horizontal plane and within an enclosure, and information components (3) are arranged on the planting modules (1) and the hard landscape modules (2); the planting module (1) comprises a first main frame (101), a hidden bearing frame (102) is arranged on the first main frame (101), and a planting bin container (103) with air holes and a water storage tank is arranged in the first main frame (101); the hard landscape module (2) comprises a second main frame (201), and a garden paving structure is arranged on the second main frame (201). During landscape construction, the actual landscape construction site is divided into blocks, the blocks are used for placing the planting modules (1) and the hard landscape modules (2), the blocks are then arrayed and numbered, and then the actual landscape construction site, the planting modules (1) and the hard landscape modules (2) are modeled in the software system to generate a virtual model of the landscape construction site, a virtual model of the planting modules and a virtual model of the hard landscape modules with space coordinates and time coordinates; when the set maintenance time and maintenance management time are reached, the software system makes a pre-warning suggestion on the state of the planting modules (1) according to the time coordinates, and the user can adjust and replace the new landscape; or the data images of the existing planting modules (1) and hard landscape modules (2) are updated and displayed in the software system, so that the data images are conveniently exchanged with other users; and thus, the garden landscape with different plant morphologies at different times is obtained through the sharing and exchanging means.
2. The hidden shareable combination landscaping system of claim 1, wherein: The first main frame (101) and the second main frame (201) are each provided with a hoisting mechanism (104), the first main frame (101) is a polygonal frame composed of vertical columns (101-1) and connecting columns (101-2), the upper end of the vertical column (101-1) is provided with the hoisting mechanism (104), and a carrying space (105) is left between the connecting column and the ground.
3. The hidden shareable combination landscaping system of claim 2, wherein: The hidden bearing frame (102) is a flexible frame matched with the first main frame (101), the flexible frame is outwardly extended relative to the first main frame (101) to shield the first main frame (101), and the bottom surface of the flexible frame is provided with mounting holes (1021) corresponding to the hoisting mechanism (104); the hidden bearing frame (102) is provided with a camouflage layer matched with the bearing object in the planting bin container (103); and the thickness of the top of the hidden bearing frame (102) is less than 10 mm.
4. The hidden shareable combination landscaping system of claim 3, wherein: The flexible frame is a regenerated rubber frame, the regenerated rubber frame is a stepped frame with a large upper part and a small lower part, the inner wall of the upper part of the regenerated rubber frame is an inclined surface and gradually decreases in thickness upwards, and the thickness of the top of the regenerated rubber frame is 2 mm.
5. The hidden shareable combination landscaping system according to any one of claims 2-4, wherein: The garden paving structure comprises a load-bearing layer (202), a fixing layer (203) and a viewing layer (204) arranged in sequence from bottom to top on the upper portion of a second main frame (201), a carrying space (105) is left between the second main frame (201) and the ground, the load-bearing layer (202) is fixedly connected with the second main frame (201), the viewing layer (204) is connected with the viewing layer (204) through the fixing layer (203), and the load-bearing layer (202), the fixing layer (203) and the viewing layer (204) all extend outward relative to the second main frame (201); the load-bearing layer (202) and the fixing layer (203) are provided with hoisting holes matched with a hoisting mechanism (104).
6. The hidden shareable combination landscaping system of claim 5, wherein: The second main frame (201) is provided with an auxiliary support frame (206), the lower end of the auxiliary support frame (206) is fixed on the second main frame (201), and the upper end of the auxiliary support frame (206) is connected with the load-bearing layer (202); the viewing layer (204) is a garden paving, outdoor furniture or a landscape element.
7. The hidden shareable combination landscaping system according to any one of claims 2-4, 6, wherein: The hoisting mechanism (104) comprises a positioning box body (104-1) arranged on the first main frame (101) and the second main frame (201), the opening end of the positioning box body (104-1) corresponds to a hoisting opening (104-2) arranged on the upper portion of the first main frame (101) and the second main frame (201), a cover plate (104-4) is hinged to the positioning box body (104-1), and the cover plate (104-4) is provided with a camouflage layer matched with the viewing layer (204) and the load-bearing objects in the planting bin container (103).
8. The hidden shareable combination landscaping system of claim 7, wherein: The information assembly (3) comprises a mounting plate (301) and a load-bearing object information reading area I (104-3) arranged on the cover plate (104-4), the mounting plate (301) is detachably connected with the first main frame (101) and the second main frame (201), the mounting plate (301) is provided with a load-bearing object information reading area II and a load-bearing object information display area, and data codes are arranged on the load-bearing object information reading area I and the load-bearing object information reading area II.
9. The hidden shareable combination landscaping system according to any one of claims 1-4, 6, 8, wherein: The planting module (1) and the hard landscape module (2) are combined and assembled through a bottom fixing member (4); the bottom fixing member (4) comprises a base (401), and at least two fixing cavities (402) matched with the planting module (1) and the hard landscape module (2) are arranged in the base (401), and the upper portion of the fixing cavity (402) is an inclined surface.
10. A landscaping method of the hidden shareable combination landscaping system according to any one of claims 1 to 9, characterized in that; The steps are as follows: S1: the actual landscaping site is divided into blocks, the blocks are used for placing the planting module (1) and the hard landscape module (2), then the blocks are arrayed and numbered, then the actual landscaping site, the planting module (1) and the hard landscape module (2) are modeled in a software system, and a virtual model of the landscaping site, a virtual model of the planting module and a virtual model of the hard landscape module with space coordinates and time coordinates are generated; S2: Users use the software system to select corresponding planting module virtual models and hard landscape module virtual models according to needs and seasonal time, and adjust the positions of the planting module virtual models and hard landscape module virtual models in the virtual model of the landscaping site according to the modeling features and seasonal state features of the planting module virtual models and hard landscape module virtual models at different time coordinates, replace the spatial combination modes and landscaping space effects of the planting module virtual models and hard landscape module virtual models, and complete preliminary simulation landscaping; S3: Users select existing, customized, or exchanged planting modules (1) and hard landscape modules (2) for actual landscaping according to the preliminary simulation landscaping; S4: When using customized or exchanged planting modules (1) and hard landscape modules (2), users use the information components of the customized or exchanged planting modules (1) and hard landscape modules (2) through the man-machine interaction devices of the software system, obtain the landscaping information and images of the customized or exchanged planting modules (1) and hard landscape modules (2) in the predetermined state, and compare them with the landscaping information and images of the customized planting modules (1) and hard landscape modules (2) in the current state, to confirm the usable state of the planting modules (1) and hard landscape modules (2); S5: The planting modules (1) and hard landscape modules (2) placed on the actual landscaping site are guided to move according to the spatial coordinates of the preliminary simulation landscaping, to form the final actual landscaping; S6: The software system generates and saves the state data of the planting modules (1) and hard landscape modules (2) in the final actual landscaping scene, and sets the maintenance time and maintenance management time according to the time coordinates; S7: When reaching the set maintenance time and maintenance management time, the software system makes a pre-advice on the state of the planting modules (1) according to the time coordinates, and users can make new landscape adjustments or update and display the data images of the existing planting modules (1) and hard landscape modules (2) in the software system, for exchange with other users.
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