CN218218458U - Landscape flowerpot for environmental design - Google Patents

Landscape flowerpot for environmental design Download PDF

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CN218218458U
CN218218458U CN202222211299.8U CN202222211299U CN218218458U CN 218218458 U CN218218458 U CN 218218458U CN 202222211299 U CN202222211299 U CN 202222211299U CN 218218458 U CN218218458 U CN 218218458U
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flowerpot
fixedly connected
landscape
support base
controller
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李昱航
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Shanxi University
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
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Abstract

本实用新型公开了一种环境设计用景观花盆,包括支撑底座和花盆本体,所述支撑底座的顶部固定连接有安装座,所述花盆本体表面的底部固定连接有对接块,所述花盆本体内壁的底部固定连接有网板,所述网板的顶部放置有滤布,所述支撑底座的内壁安装有收集喷洒组件,所述支撑底座的内壁分别固定安装有蓄电池、逆变器和控制器,所述支撑底座的背面通过铰链转动连接有箱门,所述箱门背面的顶部固定安装有无线传输模块。本实用新型解决了现有的景观花盆不能对雨水进行收集利用,导致水资源的流失和浪费,并且需要人为拖到浇水管对花盆内种植的植物进行浇水,不仅增大了工作人员的劳动强度,而且造成水资源浪费的问题。

Figure 202222211299

The utility model discloses a landscape flowerpot for environmental design, which comprises a support base and a flowerpot body, the top of the support base is fixedly connected with a mounting seat, and the bottom of the surface of the flowerpot body is fixedly connected with a docking block. The bottom of the inner wall of the flowerpot body is fixedly connected with a screen, the top of the screen is placed with a filter cloth, the inner wall of the support base is installed with a collection and spraying assembly, and the inner wall of the support base is respectively fixed with a storage battery and an inverter. and a controller, the back of the support base is connected to a box door through hinge rotation, and the top of the back of the box door is fixedly installed with a wireless transmission module. The utility model solves the problem that the existing landscape flowerpots cannot collect and utilize rainwater, resulting in the loss and waste of water resources, and it is necessary to manually drag the watering pipes to water the plants planted in the flowerpots, which not only increases the work The labor intensity of personnel, and cause the problem of waste of water resources.

Figure 202222211299

Description

一种环境设计用景观花盆Landscape flowerpot for environmental design

技术领域technical field

本实用新型涉及景观花盆技术领域,具体为一种环境设计用景观花盆。The utility model relates to the technical field of landscape flower pots, in particular to a landscape flower pot for environmental design.

背景技术Background technique

景观设计,是指风景与园林的规划设计,它的要素包括自然景观要素和人工景观要素与规划,生态,地理等多种学科交叉融合,在不同的学科中具有不同的意义,景观设计主要服务于:城市景观设计、居住区景观设计、城市公园规划与设计、滨水绿地规划设计、旅游度假区与风景区规划设计等,景观设计的应用广泛,在景观设计中需要使用到景观花盆来种植植物,但是现有的景观花盆不能对雨水进行收集利用,导致水资源的流失和浪费,并且需要人为拖到浇水管对花盆内种植的植物进行浇水,不仅增大了工作人员的劳动强度,而且造成水资源的浪费。Landscape design refers to the planning and design of landscapes and gardens. Its elements include natural landscape elements and artificial landscape elements combined with planning, ecology, geography and other disciplines, which have different meanings in different disciplines. Landscape design mainly serves In: urban landscape design, residential area landscape design, urban park planning and design, waterfront green space planning and design, tourist resort and scenic area planning and design, etc. Landscape design is widely used, and landscape flowerpots are needed in landscape design Planting plants, but the existing landscape flowerpots cannot collect and utilize rainwater, resulting in the loss and waste of water resources, and it is necessary to manually drag the watering pipes to water the plants planted in the flowerpots, which not only increases the staff's labor intensity, and cause waste of water resources.

实用新型内容Utility model content

本实用新型的目的在于提供一种环境设计用景观花盆,具备雨水收集利用和自动浇水的优点,解决了现有的景观花盆不能对雨水进行收集利用,导致水资源的流失和浪费,并且需要人为拖到浇水管对花盆内种植的植物进行浇水,不仅增大了工作人员的劳动强度,而且造成水资源浪费的问题。The purpose of the utility model is to provide a landscape flowerpot for environmental design, which has the advantages of rainwater collection and utilization and automatic watering, and solves the problem that the existing landscape flowerpots cannot collect and utilize rainwater, resulting in the loss and waste of water resources. And it needs to be manually dragged to the watering pipe to water the plants planted in the flowerpot, which not only increases the labor intensity of the staff, but also causes the problem of waste of water resources.

为实现上述目的,本实用新型提供如下技术方案:一种环境设计用景观花盆,包括支撑底座和花盆本体,所述支撑底座的顶部固定连接有安装座,所述花盆本体表面的底部固定连接有对接块,所述花盆本体内壁的底部固定连接有网板,所述网板的顶部放置有滤布,所述支撑底座的内壁安装有收集喷洒组件,所述支撑底座的内壁分别固定安装有蓄电池、逆变器和控制器,所述支撑底座的背面通过铰链转动连接有箱门,所述箱门背面的顶部固定安装有无线传输模块,所述无线传输模块双向电信号连接有远程终端,所述收集喷洒组件的表面安装有液位传感器。In order to achieve the above purpose, the utility model provides the following technical solutions: a landscape flowerpot for environmental design, including a support base and a flowerpot body, the top of the support base is fixedly connected with a mounting seat, and the bottom of the surface of the flowerpot body A docking block is fixedly connected, the bottom of the inner wall of the flowerpot body is fixedly connected with a mesh plate, a filter cloth is placed on the top of the mesh plate, a collecting and spraying assembly is installed on the inner wall of the supporting base, and the inner walls of the supporting base are respectively A storage battery, an inverter and a controller are fixedly installed, and the back of the support base is connected to a box door through hinge rotation, and a wireless transmission module is fixedly installed on the top of the back of the box door, and the wireless transmission module is connected with a bidirectional electric signal In the remote terminal, a liquid level sensor is installed on the surface of the collecting and spraying assembly.

优选的,所述收集喷洒组件包括水箱,所述水箱放置在支撑底座内腔的底部,所述水箱的右侧通过螺栓固定连接有输送泵,所述输送泵的进水端与水箱右侧的底部连通,所述输送泵的出水端连通有软管,所述软管的一端连通有连接管,所述连接管的一端贯穿网板和滤布延伸至花盆本体的内腔并连通有环形管,所述环形管的表面开设有喷孔,所述液位传感器固定安装在水箱内腔左侧的底部,所述液位传感器的输出端与控制器的输入端电性连接,所述逆变器的输出端与输送泵的输入端电性连接,所述连接管一端的表面安装有单向阀。Preferably, the collection and spraying assembly includes a water tank, the water tank is placed at the bottom of the inner cavity of the support base, the right side of the water tank is fixedly connected with a delivery pump by bolts, and the water inlet end of the delivery pump is connected to the right side of the water tank. The bottom is connected, the water outlet end of the delivery pump is connected with a hose, one end of the hose is connected with a connecting pipe, and one end of the connecting pipe extends through the mesh plate and filter cloth to the inner cavity of the flowerpot body and communicates with a ring The surface of the annular pipe is provided with a spray hole, the liquid level sensor is fixedly installed at the bottom of the left side of the inner cavity of the water tank, the output end of the liquid level sensor is electrically connected with the input end of the controller, and the reverse The output end of the transformer is electrically connected with the input end of the delivery pump, and a one-way valve is installed on the surface of one end of the connecting pipe.

优选的,所述支撑底座两侧的底部均开设有排水孔,所述花盆本体的内壁固定连接有弯管,所述弯管的一端连接有滤网。Preferably, drainage holes are provided on the bottoms of both sides of the support base, an elbow is fixedly connected to the inner wall of the flowerpot body, and a filter screen is connected to one end of the elbow.

优选的,所述支撑底座和箱门的表面均固定连接有装饰件,所述支撑底座顶部的两侧均固定连接有太阳能电池板,所述太阳能电池板的输出端与蓄电池的输入端电性连接。Preferably, the support base and the surface of the box door are fixedly connected with decorative parts, both sides of the top of the support base are fixedly connected with solar panels, and the output end of the solar panel is electrically connected to the input end of the storage battery. connect.

优选的,所述蓄电池的输出端与控制器的输入端电性连接,所述控制器与无线传输模块双向电性连接,所述控制器的输出端与逆变器的输入端电性连接。Preferably, the output end of the storage battery is electrically connected to the input end of the controller, the controller is electrically connected to the wireless transmission module bidirectionally, and the output end of the controller is electrically connected to the input end of the inverter.

优选的,所述安装座的表面开设有对接槽,所述对接块的一侧延伸至对接槽的内腔。Preferably, a docking groove is provided on the surface of the mounting seat, and one side of the docking block extends to the inner cavity of the docking groove.

与现有技术相比,本实用新型的有益效果如下:Compared with the prior art, the beneficial effects of the utility model are as follows:

本实用新型通过支撑底座、花盆本体、安装座、对接块、网板、滤布、收集喷洒组件、蓄电池、逆变器、控制器、箱门、无线传输模块、远程终端和液位传感器进行配合,具备雨水收集利用和自动浇水的优点,解决了现有的景观花盆不能对雨水进行收集利用,导致水资源的流失和浪费,并且需要人为拖到浇水管对花盆内种植的植物进行浇水,不仅增大了工作人员的劳动强度,而且造成水资源浪费的问题。The utility model is realized through the support base, the flowerpot body, the mounting seat, the docking block, the net plate, the filter cloth, the collecting and spraying assembly, the storage battery, the inverter, the controller, the box door, the wireless transmission module, the remote terminal and the liquid level sensor. With the advantages of rainwater collection and utilization and automatic watering, it solves the problem that the existing landscape flowerpots cannot collect and utilize rainwater, resulting in the loss and waste of water resources, and it needs to be manually dragged to the watering pipe to plant in the flowerpot. Watering the plants not only increases the labor intensity of the staff, but also causes a waste of water resources.

附图说明Description of drawings

图1为本实用新型立体结构示意图;Fig. 1 is a schematic diagram of the three-dimensional structure of the utility model;

图2为本实用新型后视立体示意图;Fig. 2 is the three-dimensional schematic diagram of rear view of the utility model;

图3为本实用新型局部剖视立体示意图;Fig. 3 is the three-dimensional schematic diagram of partial cutaway of the utility model;

图4为本实用新型安装座立体示意图;Figure 4 is a three-dimensional schematic diagram of the mounting seat of the present invention;

图5为本实用新型环形管立体示意图;Fig. 5 is a three-dimensional schematic diagram of the utility model annular tube;

图6为本实用新型系统原理图。Fig. 6 is a schematic diagram of the utility model system.

图中:1支撑底座、2花盆本体、3安装座、4对接块、5网板、6滤布、7收集喷洒组件、701水箱、702输送泵、703软管、704连接管、705环形管、706喷孔、8蓄电池、9逆变器、10控制器、11箱门、12无线传输模块、13远程终端、14排水孔、15弯管、16滤网、17装饰件、18太阳能电池板、19对接槽、20液位传感器。In the figure: 1 support base, 2 flower pot body, 3 mounting base, 4 docking block, 5 screen plate, 6 filter cloth, 7 collecting and spraying assembly, 701 water tank, 702 delivery pump, 703 hose, 704 connecting pipe, 705 ring Tube, 706 spray hole, 8 storage battery, 9 inverter, 10 controller, 11 box door, 12 wireless transmission module, 13 remote terminal, 14 drainage hole, 15 bent pipe, 16 filter screen, 17 decoration, 18 solar cell plate, 19 docking slots, and 20 liquid level sensors.

具体实施方式detailed description

请参阅图1-图6,一种环境设计用景观花盆,包括支撑底座1和花盆本体2,支撑底座1的顶部固定连接有安装座3,花盆本体2表面的底部固定连接有对接块4,花盆本体2内壁的底部固定连接有网板5,网板5的顶部放置有滤布6,支撑底座1的内壁安装有收集喷洒组件7,支撑底座1的内壁分别固定安装有蓄电池8、逆变器9和控制器10,支撑底座1的背面通过铰链转动连接有箱门11,箱门11背面的顶部固定安装有无线传输模块12,无线传输模块12双向电信号连接有远程终端13,收集喷洒组件7的表面安装有液位传感器20;Please refer to Figures 1-6, a landscape flower pot for environmental design, including a support base 1 and a flower pot body 2, the top of the support base 1 is fixedly connected with a mounting seat 3, and the bottom of the surface of the flower pot body 2 is fixedly connected with a butt joint Block 4, the bottom of the inner wall of the flower pot body 2 is fixedly connected with a mesh plate 5, the top of the mesh plate 5 is placed with a filter cloth 6, the inner wall of the supporting base 1 is installed with a collection and spraying assembly 7, and the inner wall of the supporting base 1 is fixedly installed with a storage battery. 8. The inverter 9 and the controller 10, the back of the support base 1 is hinged and connected to the box door 11, the top of the back of the box door 11 is fixedly installed with a wireless transmission module 12, and the wireless transmission module 12 is connected with a remote terminal for two-way electrical signals 13. A liquid level sensor 20 is installed on the surface of the collecting and spraying assembly 7;

收集喷洒组件7包括水箱701,水箱701放置在支撑底座1内腔的底部,水箱701的右侧通过螺栓固定连接有输送泵702,输送泵702的进水端与水箱701右侧的底部连通,输送泵702的出水端连通有软管703,软管703的一端连通有连接管704,连接管704的一端贯穿网板5和滤布6延伸至花盆本体2的内腔并连通有环形管705,环形管705的表面开设有喷孔706,液位传感器20固定安装在水箱701内腔左侧的底部,液位传感器20的输出端与控制器10的输入端电性连接,逆变器9的输出端与输送泵702的输入端电性连接,连接管704一端的表面安装有单向阀,通过设置水箱701、输送泵702、软管703、连接管704、环形管705和喷孔706,实现对花盆内植物的喷洒浇灌,并在滤网16和网板5的作用下,对渗透到花盆土壤中的雨水过滤后收集利用,节约资源;The collecting and spraying assembly 7 includes a water tank 701. The water tank 701 is placed at the bottom of the inner cavity of the support base 1. The right side of the water tank 701 is fixedly connected with a delivery pump 702 by bolts. The water inlet end of the delivery pump 702 communicates with the bottom of the right side of the water tank 701. The outlet end of the delivery pump 702 is connected with a hose 703, and one end of the hose 703 is connected with a connecting pipe 704, and one end of the connecting pipe 704 extends through the mesh plate 5 and filter cloth 6 to the inner cavity of the flowerpot body 2 and is connected with a ring pipe 705, the surface of the annular pipe 705 is provided with a spray hole 706, the liquid level sensor 20 is fixedly installed at the bottom of the left side of the inner cavity of the water tank 701, the output end of the liquid level sensor 20 is electrically connected with the input end of the controller 10, and the inverter The output end of 9 is electrically connected with the input end of delivery pump 702, and a one-way valve is installed on the surface of one end of connecting pipe 704. 706. Realize the spraying and watering of the plants in the flower pot, and under the action of the filter screen 16 and the mesh plate 5, collect and utilize the rainwater infiltrated into the flower pot soil after filtering, so as to save resources;

支撑底座1两侧的底部均开设有排水孔14,花盆本体2的内壁固定连接有弯管15,弯管15的一端连接有滤网16,通过设置排水孔14,当水箱701内的水满溢出时从支撑底座1内排出,通过设置弯管15和滤网16,当花盆内土壤顶部聚集大量积水时进行过滤导流,再通过滤网16和网板5过滤落入到水箱701内收集;The bottom of both sides of the support base 1 is provided with drainage holes 14, the inner wall of the flower pot body 2 is fixedly connected with an elbow 15, and one end of the elbow 15 is connected with a filter screen 16, by setting the drainage holes 14, when the water in the water tank 701 When it overflows, it will be discharged from the support base 1. By setting the elbow 15 and the filter screen 16, when a large amount of water accumulates on the top of the soil in the flower pot, it will be filtered and diverted, and then filtered through the filter screen 16 and the net plate 5 and dropped into the water tank. Collect within 701;

支撑底座1和箱门11的表面均固定连接有装饰件17,支撑底座1顶部的两侧均固定连接有太阳能电池板18,太阳能电池板18的输出端与蓄电池8的输入端电性连接;The surfaces of the support base 1 and the box door 11 are fixedly connected with decorative parts 17, both sides of the top of the support base 1 are fixedly connected with solar panels 18, and the output end of the solar panel 18 is electrically connected with the input end of the storage battery 8;

蓄电池8的输出端与控制器10的输入端电性连接,控制器10与无线传输模块12双向电性连接,控制器10的输出端与逆变器9的输入端电性连接,通过设置装饰件17,提高花盆的美观性,通过设置太阳能电池板18,将太阳能转化为电能储存到蓄电池8内,为用电构件提供电力,节约资源;The output end of the storage battery 8 is electrically connected to the input end of the controller 10, the controller 10 is electrically connected to the wireless transmission module 12 bidirectionally, the output end of the controller 10 is electrically connected to the input end of the inverter 9, and the decorative Component 17 improves the aesthetics of the flower pot. By setting the solar panel 18, the solar energy is converted into electrical energy and stored in the storage battery 8, so as to provide power for the electrical components and save resources;

安装座3的表面开设有对接槽19,对接块4的一侧延伸至对接槽19的内腔,通过设置对接槽19和对接块4,将花盆本体2快速稳定对接安装在安装座3上。The surface of the mounting base 3 is provided with a docking groove 19, and one side of the docking block 4 extends to the inner cavity of the docking groove 19. By setting the docking groove 19 and the docking block 4, the flowerpot body 2 is quickly and stably docked and installed on the mounting base 3 .

使用时,当在雨水天气时,雨水浸湿花盆中的土壤,渗透到花盆土壤中的雨水通过滤布6和网板5的过滤后落入到水箱701内收集,当花盆内土壤顶部聚集大量积水时进行过滤导流,再通过滤网16和网板5过滤落入到水箱701内收集,当水箱701内的水满溢出时从支撑底座1上的排水孔14排出,当需要对花盆内的植物定时进行浇水时,控制器10定时控制输送泵702的运行,将水箱701内的水通过软管703、连接管704和环形管705从喷孔706排出,对花盆内的植物进行灌溉,避免工作人员拖动浇水管进行灌溉,当液位传感器20检测到水箱701内水的液位低于设置的液位时,通过无线传输模块12传输到远程终端13,提醒工作人员从水箱701内进行注水,降低工作人员的劳动强度和降低水资源的浪费。During use, when in rainy weather, the rainwater soaks the soil in the flowerpot, and the rainwater infiltrated into the flowerpot soil falls into the water tank 701 after being filtered by the filter cloth 6 and the net plate 5 to collect, when the soil in the flowerpot When a large amount of accumulated water is accumulated on the top, filter and guide the flow, and then filter through the filter screen 16 and the net plate 5 and fall into the water tank 701 for collection. When the plants in the flower pot need to be watered regularly, the controller 10 regularly controls the operation of the delivery pump 702, and the water in the water tank 701 is discharged from the spray hole 706 through the hose 703, the connecting pipe 704 and the annular pipe 705, and the flower The plants in the pots are irrigated to prevent the staff from dragging the watering pipe for irrigation. When the liquid level sensor 20 detects that the liquid level of the water in the water tank 701 is lower than the set liquid level, it will be transmitted to the remote terminal 13 through the wireless transmission module 12 , to remind the staff to inject water from the water tank 701, reducing the labor intensity of the staff and reducing the waste of water resources.

综上所述:该环境设计用景观花盆,通过支撑底座1、花盆本体2、安装座3、对接块4、网板5、滤布6、收集喷洒组件7、蓄电池8、逆变器9、控制器10、箱门11、无线传输模块12、远程终端13和液位传感器20进行配合,解决了现有的景观花盆不能对雨水进行收集利用,导致水资源的流失和浪费,并且需要人为拖到浇水管对花盆内种植的植物进行浇水,不仅增大了工作人员的劳动强度,而且造成水资源浪费的问题。To sum up: the landscape flowerpot for environmental design, through support base 1, flowerpot body 2, mounting base 3, docking block 4, screen plate 5, filter cloth 6, collection and spraying assembly 7, battery 8, inverter 9. The controller 10, the box door 11, the wireless transmission module 12, the remote terminal 13 and the liquid level sensor 20 cooperate to solve the problem that the existing landscape flowerpots cannot collect and utilize rainwater, resulting in the loss and waste of water resources, and It is necessary to manually drag to the watering pipe to water the plants planted in the flower pot, which not only increases the labor intensity of the staff, but also causes the problem of waste of water resources.

Claims (6)

1. The utility model provides a view flowerpot for environmental design, includes support base (1) and flowerpot body (2), its characterized in that: support top fixedly connected with mount pad (3) of base (1), bottom fixedly connected with butt joint piece (4) on flowerpot body (2) surface, bottom fixedly connected with otter board (5) of flowerpot body (2) inner wall, filter cloth (6) have been placed at the top of otter board (5), the inner wall of supporting base (1) is installed and is collected spray assembly (7), the inner wall of supporting base (1) is fixed mounting respectively has battery (8), dc-to-ac converter (9) and controller (10), the back of supporting base (1) is rotated through the hinge and is connected with chamber door (11), the top fixed mounting at the chamber door (11) back has wireless transmission module (12), wireless transmission module (12) two-way signal of telecommunication is connected with remote terminal (13), the surface mounting who collects spray assembly (7) has level sensor (20).
2. The landscape flowerpot for environmental design according to claim 1, wherein: collect spray assembly (7) and include water tank (701), water tank (701) are placed in the bottom that supports base (1) inner chamber, bolt fixedly connected with delivery pump (702) is passed through on the right side of water tank (701), the bottom intercommunication on delivery pump (702) intake end and water tank (701) right side, the play water end intercommunication of delivery pump (702) has hose (703), the one end intercommunication of hose (703) has connecting pipe (704), the one end of connecting pipe (704) is run through the inner chamber and the intercommunication that otter board (5) and filter cloth (6) extend to flowerpot body (2) has annular tube (705), orifice (706) have been seted up on the surface of annular tube (705), level sensor (20) fixed mounting is in the left bottom of water tank (701) inner chamber, the output of level sensor (20) and the input electric connection of controller (10), the output of inverter (9) and the input electric connection of delivery pump (702), the surface mounting of connecting pipe (704) one end has the check valve.
3. The landscape flowerpot for environmental design according to claim 1, wherein: the flowerpot is characterized in that drain holes (14) are formed in the bottoms of two sides of the supporting base (1), an elbow (15) is fixedly connected to the inner wall of the flowerpot body (2), and a filter screen (16) is connected to one end of the elbow (15).
4. The landscape flowerpot for environmental design according to claim 1, which is characterized in that: the solar refrigerator door is characterized in that the decorating parts (17) are fixedly connected to the surfaces of the supporting base (1) and the refrigerator door (11), the solar cell panels (18) are fixedly connected to the two sides of the top of the supporting base (1), and the output ends of the solar cell panels (18) are electrically connected with the input ends of the storage batteries (8).
5. The landscape flowerpot for environmental design according to claim 1, wherein: the output end of the storage battery (8) is electrically connected with the input end of the controller (10), the controller (10) is electrically connected with the wireless transmission module (12) in a bidirectional mode, and the output end of the controller (10) is electrically connected with the input end of the inverter (9).
6. The landscape flowerpot for environmental design according to claim 1, wherein: the surface of the mounting seat (3) is provided with a butt joint groove (19), and one side of the butt joint block (4) extends to the inner cavity of the butt joint groove (19).
CN202222211299.8U 2022-08-23 2022-08-23 Landscape flowerpot for environmental design Active CN218218458U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
RU228432U1 (en) * 2024-07-07 2024-08-28 Максим Сергеевич Рябоконь Flower vase with water filtration system

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
RU228432U1 (en) * 2024-07-07 2024-08-28 Максим Сергеевич Рябоконь Flower vase with water filtration system
RU241160U1 (en) * 2025-06-06 2026-02-09 Соколов Евгений Владимирович Vase for storing cut flowers with an aerator, pH module, and filter
RU241161U1 (en) * 2025-06-06 2026-02-09 Соколов Евгений Владимирович Cut flower storage vase with cooler, pH module, filter

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