Local flower planting pot with temperature control function

By combining temperature and humidity sensors and electric heaters with a photovoltaic power supply system, the problem of lack of temperature control in traditional flower pots has been solved, achieving stable temperature regulation and energy-saving and environmentally friendly temperature control for flower pots.

CN223714672UActive Publication Date: 2025-12-26CHENGDE ACAD OF AGRI & FORESTRY
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Patent Information

Application Number
CN202520233132.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-14
Publication Date
2025-12-26
Estimated Expiration
2035-02-14

AI Technical Summary

Technical Problem

Traditional flower pots lack temperature control functions, which leads to lower soil temperatures during cold seasons, causing root damage to flowers and failing to meet the diverse temperature requirements of different types of flowers.

Method used

The soil temperature is monitored in real time using temperature and humidity sensors, and heating is controlled by electric heaters and heating wires. Combined with photovoltaic panels and batteries to provide power, the temperature can be stably regulated.

Benefits of technology

It provides stable temperature conditions throughout the year, prevents root damage to flowers from freezing, reduces reliance on external power sources, and achieves energy-saving and environmentally friendly temperature control.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an indigenous flower planting pot with temperature control, which relates to the technical field of flower planting and comprises an indigenous flower planting mechanism, a temperature control mechanism is arranged in the indigenous flower planting mechanism, and a solar mechanism is arranged on the surface of the indigenous flower planting mechanism. The temperature control mechanism comprises a soil containing groove, an electric heater is fixedly connected to the surface of the soil containing groove, and a heating wire is arranged on the surface of the electric heater. The temperature and humidity sensor is used for monitoring the temperature in the pot in real time, when the temperature is too low, the heater is started, and soil in the soil containing groove is indirectly heated through heating of the heating wire, so that the temperature can be stabilized within a proper range according to the growth requirements of different local flowers; meanwhile, different seasons and environment temperature changes can be dealt with, and annual stable temperature conditions are provided for flower growth.
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Description

TECHNICAL FIELD

[0001] The utility model relates to flower planting technology field, concretely relates to a native flower planting pot with temperature control. BACKGROUND

[0002] Native flowers are an important part of local natural ecosystems and have a wide range of applications in landscape architecture, ecological restoration and other fields. However, when planting native flowers, temperature is one of the key factors affecting their growth and development.

[0003] Traditional flower planting pots mostly lack effective temperature control function. In cold seasons or when the temperature drops suddenly, the soil temperature in the planting pot will quickly decrease, causing the flower roots to be damaged by frost, affecting the normal growth of the flowers, and in severe cases, even causing the flowers to die. In addition, different types of native flowers have different temperature requirements, and a single natural temperature environment cannot meet the diverse planting needs. Therefore, a native flower planting pot with temperature control is proposed. SUMMARY

[0004] The utility model provides a native flower planting pot with temperature control to solve the problems raised in the background.

[0005] To solve the above technical problems, the utility model adopts the following technical scheme:

[0006] A native flower planting pot with temperature control, comprising a native flower planting mechanism, a temperature control mechanism inside the native flower planting mechanism, a solar mechanism on the surface of the native flower planting mechanism, the temperature control mechanism comprising a soil holding groove, an electric heater fixedly connected to the surface of the soil holding groove, a heating wire on the surface of the electric heater, a water permeation pipe at the bottom of the soil holding groove inner cavity, and a temperature and humidity sensor at the bottom of the soil holding groove inner cavity.

[0007] The further improvement of the utility model technical scheme is that the native flower planting mechanism comprises a water receiving tray, a support frame above the water receiving tray, and a control panel on the surface of the support frame.

[0008] The further improvement of the utility model technical scheme is that the bottom of the support frame is fixedly connected to a support leg, and the bottom of the support leg is lapped with the bottom of the water receiving tray inner cavity.

[0009] The further improvement of the utility model technical scheme is that the upper end of the support frame inner cavity is provided with a containing groove, and the lower end of the support frame inner cavity is provided with a mounting groove.

[0010] The further improvement of the utility model technical scheme lies in that the inner wall of the accommodating groove is overlapped with the surface of the soil holding groove, and the top of the inner cavity of the mounting groove is fixedly connected with the surface of the temperature and humidity sensor.

[0011] The further improvement of the utility model technical scheme lies in that the solar energy mechanism comprises a photovoltaic panel, and one side of the photovoltaic panel is fixedly connected with the surface of the support frame.

[0012] The further improvement of the utility model technical scheme lies in that the bottom of the inner cavity of the mounting groove is fixedly connected with a storage battery for storing the electric energy generated by the photovoltaic panel.

[0013] The further improvement of the utility model technical scheme lies in that the storage battery is electrically connected with the electric heater, and the storage battery is electrically connected with the temperature and humidity sensor.

[0014] Due to the adoption of the above technical scheme, the utility model has the following technical progress compared with the prior art:

[0015] The utility model provides a kind of native flower planting pot with temperature control, and the temperature in pot is monitored in real time by temperature and humidity sensor, when temperature is too low, start heater, utilize the heating of heating wire, indirectly heat the soil in soil holding groove, so it can be according to the growth demand of different native flower, temperature is stabilized in suitable range, it can also be adapted to different seasons and environmental temperature change, provide stable temperature condition for flower growth all year round, and the setting of photovoltaic panel and storage battery, temperature and humidity sensor and electric heater can also be provided with electric energy, realize the purpose of energy saving and environmental protection, reduce the dependence of external power supply, make it more convenient to use. DRAWINGS

[0016] Figure 1 It is the front view structural schematic drawing of the utility model;

[0017] Figure 2 It is the bottom view structural schematic drawing of the utility model;

[0018] Figure 3 It is the exploded view structural schematic drawing of the utility model;

[0019] Figure 4 It is the cross-sectional view structural schematic drawing of the utility model.

[0020] In the drawing: 11, water receiving base; 12, support frame; 13, support leg; 14, accommodating groove; 15, mounting groove; 16, control panel; 21, soil holding groove; 22, electric heater; 23, heating wire; 24, water permeation pipe; 25, temperature and humidity sensor; 31, photovoltaic panel; 32, storage battery. DETAILED DESCRIPTION

[0021] The utility model discloses make further detailed explanation to the utility model below combining embodiment:

[0022] Embodiment 1

[0023] As Figures 1-4 The utility model provides a native flower planting pot with temperature control, including native flower planting mechanism, the inside of native flower planting mechanism is provided with temperature control mechanism, the surface of native flower planting mechanism is provided with solar energy mechanism, and temperature control mechanism includes soil groove 21, the surface fixedly connected with electric heater 22 of soil groove 21 is provided with the heating wire 23 of electric heater 22, the bottom of soil groove 21 inner chamber is provided with water seepage pipe 24, and the bottom of soil groove 21 inner chamber is provided with temperature and humidity sensor 25.

[0024] In this embodiment, by placing the planting soil into the soil groove 21 when using, then planting the native flowers in the soil, during the process of planting, the sunlight irradiates to the surface of the photovoltaic panel 31, the light energy is converted into electric energy through the photovoltaic panel 31, and is stored through the storage battery 32, the temperature and humidity sensor 25 is powered through the storage battery 32, so that the temperature and humidity of the soil are detected, and are displayed through the control panel 16, when the humidity is low, watering is prompted, and the excessive water is guided into the water receiving base plate 11 under the water seepage pipe 24, so that the soil humidity is prevented from being too high, when the temperature is too low, the electric heater 22 is started, so that the heating wire 23 is heated, and the soil in the soil groove 21 is indirectly heated, so that the effect of controlling the soil temperature is realized, the native flower rhizome is prevented from being frozen due to the low temperature, and the utility model is more convenient to use.

[0025] Embodiment 2

[0026] As Figures 1-4 On the basis of embodiment 1, the utility model provides a technical scheme: preferably, the inside of native flower planting mechanism is provided with temperature control mechanism, the surface of native flower planting mechanism is provided with solar energy mechanism, temperature control mechanism includes soil groove 21, the surface fixedly connected with electric heater 22 of soil groove 21 is provided with the heating wire 23 of electric heater 22, the bottom of soil groove 21 inner chamber is provided with water seepage pipe 24, and the bottom of soil groove 21 inner chamber is provided with temperature and humidity sensor 25, and native flower planting mechanism includes water receiving base plate 11, the top of water receiving base plate 11 is provided with support frame 12, the surface of support frame 12 is provided with control panel 16, the bottom of support frame 12 is fixedly connected with support leg 13, the bottom of support leg 13 is overlapped with the bottom of water receiving base plate 11 inner chamber, the upper end of support frame 12 inner chamber is provided with containing groove 14, the lower end of support frame 12 inner chamber is provided with mounting groove 15, the inner wall of containing groove 14 is overlapped with the surface of soil groove 21, and the top of mounting groove 15 inner chamber is fixedly connected with the surface of temperature and humidity sensor 25.

[0027] In the embodiment, the temperature and humidity sensor 25 is powered by the battery 32 to detect the temperature and humidity of the soil and display through the control panel 16, when the humidity is low, the watering is prompted, and the excessive water is guided into the water receiving base 11 under the water seepage pipe 24 to avoid the high humidity of the soil, when the temperature is too low, the electric heater 22 is started to heat the heating wire 23 to indirectly heat the soil in the soil holding groove 21, so that the soil temperature control effect is realized, the root stem of the native flowers is prevented from being frozen due to the low temperature, and the native flowers are more convenient to use.

[0028] Embodiment 3

[0029] As Figures 1-4 shown, based on the embodiment 1, the utility model provides a technical scheme: preferably, the inside of the native flower planting mechanism is provided with a temperature control mechanism, the surface of the native flower planting mechanism is provided with a solar mechanism, the temperature control mechanism includes the soil holding groove 21, the surface of the soil holding groove 21 is fixedly connected with the electric heater 22, the surface of the electric heater 22 is provided with the heating wire 23, the bottom of the soil holding groove 21 inner chamber is provided with the water seepage pipe 24, the bottom of the soil holding groove 21 inner chamber is provided with the temperature and humidity sensor 25, the solar mechanism includes the photovoltaic board 31, one side of the photovoltaic board 31 is fixedly connected with the surface of the support frame 12, the bottom of the installation groove 15 inner chamber is fixedly connected with the battery 32 that stores the electric energy that the photovoltaic board 31 sends, the battery 32 is electrically connected with the electric heater 22, and the battery 32 is electrically connected with the temperature and humidity sensor 25.

[0030] In the embodiment, the planting soil is placed into the soil holding groove 21 when in use, then the native flowers are planted in the soil, in the process of planting, the sunlight is irradiated to the surface of the photovoltaic board 31, the light energy is converted into electric energy by the photovoltaic board 31, and is stored by the battery 32.

[0031] The working principle of the native flower planting pot with temperature control will be described below.

[0032] As Figures 1-4 shown, the planting soil is placed into the soil holding groove 21 when in use, then the native flowers are planted in the soil, in the process of planting, the sunlight is irradiated to the surface of the photovoltaic board 31, the light energy is converted into electric energy by the photovoltaic board 31, and is stored by the battery 32, the temperature and humidity sensor 25 is powered by the battery 32 to detect the temperature and humidity of the soil and display through the control panel 16, when the humidity is low, the watering is prompted, and the excessive water is guided into the water receiving base 11 under the water seepage pipe 24 to avoid the high humidity of the soil, when the temperature is too low, the electric heater 22 is started to heat the heating wire 23 to indirectly heat the soil in the soil holding groove 21, so that the soil temperature control effect is realized, the root stem of the native flowers is prevented from being frozen due to the low temperature, and the native flowers are more convenient to use.

[0033] The utility model has made the detailed description above generally, but can make some modification or improvement to it on the basis of the utility model, and this is obvious to the general skilled person in the technical field. Therefore, the modification or improvement without departing from the utility model thought spirit, all are within the protection scope of the utility model.

Claims

1. A native floral planting pot with temperature control, comprising a native floral planting mechanism, characterized in that: The inside of the native flower planting mechanism is provided with a temperature control mechanism, the surface of the native flower planting mechanism is provided with a solar mechanism, the temperature control mechanism comprises a soil containing groove (21), the surface of the soil containing groove (21) is fixedly connected with an electric heater (22), the surface of the electric heater (22) is provided with a heating wire (23), the bottom of the inner cavity of the soil containing groove (21) is provided with a water permeation pipe (24), and the bottom of the inner cavity of the soil containing groove (21) is provided with a temperature and humidity sensor (25).

2. The country flower planting pot with temperature control according to claim 1, wherein: The native flower planting mechanism comprises a water receiving base (11), the upper side of the water receiving base (11) is provided with a support frame (12), and the surface of the support frame (12) is provided with a control panel (16).

3. A native floral planting pot with temperature control according to claim 2, characterized in that: The bottom of the support frame (12) is fixedly connected with a supporting leg (13), and the bottom of the supporting leg (13) is overlapped with the bottom of the inner cavity of the water receiving base (11).

4. The country flower planting pot with temperature control according to claim 3, wherein: The upper end of the inner cavity of the support frame (12) is provided with a containing groove (14), and the lower end of the inner cavity of the support frame (12) is provided with a mounting groove (15).

5. A native floral planting pot with temperature control according to claim 4, characterized in that: The inner wall of the containing groove (14) is overlapped with the surface of the soil containing groove (21), and the top of the inner cavity of the mounting groove (15) is fixedly connected with the surface of the temperature and humidity sensor (25).

6. The country flower planting pot with temperature control according to claim 1, wherein: The solar mechanism comprises a photovoltaic panel (31), and one side of the photovoltaic panel (31) is fixedly connected with the surface of the support frame (12).

7. The country flower planting pot with temperature control according to claim 4, wherein: The bottom of the inner cavity of the mounting groove (15) is fixedly connected with a storage battery (32) for storing the electric energy generated by the photovoltaic panel (31).

8. A native floral planting pot with temperature control according to claim 7, characterized in that: The storage battery (32) is electrically connected with the electric heater (22), and the storage battery (32) is electrically connected with the temperature and humidity sensor (25).