An ecological interaction type park landscape system based on chlorella micro-aquatic ecosystem
By combining the micro-aquatic ecosystem of Algae with the Internet of Things and artificial intelligence, the design solves the problem of insufficient interactivity in smart parks, improves the ecological environment and enhances public participation, and forms a unique interactive park landscape.
Patent Information
- Application Number
- CN202423019781.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-09
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-12-09
AI Technical Summary
Existing smart parks lack interactive features, pocket parks have insufficient green space and uneven space utilization, leading to problems such as water pollution. They also lack interactive designs to improve park service quality and meet the diverse needs of citizens.
The system employs a micro-aquatic ecosystem based on Chlorella vulgaris, utilizing Chlorella proteoglycans to construct a micro-dynamic ecosystem. By combining Internet of Things (IoT) and artificial intelligence (AI) technologies, and through point array light sources, motion power generation facilities, and interactive mini-programs, it achieves directional control of Chlorella vulgaris growth and enhances the interactivity of the ecological environment.
It has significantly enhanced the ecological value and public participation of urban parks, promoted the improvement of the ecological environment and healthy lifestyles, and strengthened citizens' awareness of ecological protection and interactive experiences.
Smart Images

Figure CN223607108U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to park landscape belongs to wisdom energy and green ecology field. BACKGROUND
[0002] With the rapid development of internet, big data and other technologies, the application of intelligent equipment and the Internet of Things is also accelerating. This trend has driven the continuous evolution of urban park construction strategies. Urban parks not only serve as important places for citizens to relax, entertain and exercise, but also serve as key platforms for promoting social interaction and enhancing community cohesion. Interactive design emphasizes the two-way relationship between people and the environment. Through specific landscapes, facilities and activities, citizens' enthusiasm for participation is stimulated, and the harmonious coexistence of man and nature is promoted. The number of new smart parks is increasing, and the construction of smart parks has become a key factor in promoting the innovative development of urban parks. However, the existing smart parks generally use internet, big data and other technologies to improve management levels, while parks with interactive functions are few and far between. At the same time, the existing pocket parks have problems such as insufficient green area, uneven space utilization, and insufficient maintenance and management, which further leads to local water pollution and other phenomena. Interactive design of parks has become a key factor in improving park service quality and meeting the diverse needs of citizens. SUMMARY
[0003] The utility model is to solve the technical problem of poor interactivity of existing smart parks, and provides an ecological interactive park landscape system based on a micro water ecological system of Chlorella, which makes the existing pocket park interactive, builds a micro dynamic ecological system with Chlorella vulgaris as the core, forms a unique micro ecological environment, improves water quality, forms an interactive urban park landscape, and significantly improves the ecological value and public participation of urban parks through innovative ecological concepts and advanced technical means.
[0004] The ecological interactive park landscape system based on the micro water ecological system of Chlorella of the utility model comprises a pool 1, a dot matrix light source 2, an energy storage battery 3, a motion power generation facility 4, a solar panel 5, a photosynthesis monitor 6 and a controller 7; Chlorella 8 is put into the pool 1;
[0005] The dot matrix light source 2 is laid at the bottom of the pool 1, the solar panel 5 is connected with the energy storage battery 3, the energy storage battery 3 is connected with the dot matrix light source 2, the solar panel 5 converts solar energy into electrical energy and stores it in the energy storage battery 3 to supply power to the dot matrix light source 2, and the motion power generation facility 4 is also connected with the energy storage battery 3, the electrical energy generated by the motion power generation facility 4 is also stored in the energy storage battery 3 to supply power to the dot matrix light source 2;
[0006] The photosynthesis monitor 6 is arranged above the water pool 1, monitors the growth state of the chlorella in the water pool and transmits to the controller 7; the controller 7 is also connected with the dot matrix light source 2, controls the light mode and light intensity of each light source point in the dot matrix light source 2.
[0007] Further, the controller 7 is provided with an interactive applet, the participants use the mobile phone 9 to perform the recognition on the water pool 1 through the interactive applet, control the light mode and light intensity of each light source point in the dot matrix light source 2, and the interactive applet provides the feedback of the growth state of the chlorella to the participants, thereby forming the ecological landscape with the characteristics of the participants.
[0008] Further, the motion power generation facility 4 is a power generation bicycle or a power generation treadmill. When the participants use these motion facilities, they can not only exercise the body, but also provide the power for the light source. This design not only encourages the participants to actively participate in the motion and enhances the fitness consciousness of the participants, but also enhances the interaction and participation of the users with the natural ecology, realizes the improvement of the ecological environment, promotes the healthy lifestyle of the users, and realizes the harmonious coexistence of the human and the nature.
[0009] Further, the light in the dot matrix light source 2 is an LED light.
[0010] Further, the light mode is that all the light source points in the dot matrix light source 2 are turned on or turned on according to the rules defined by the participants. The power supply of the dot matrix light source completely depends on the renewable energy, including the solar energy and the power generated by the participants in the motion power generation facility 4.
[0011] Further, the light mode is that the light source points in the dot matrix light source 2 are turned on according to the pattern or the pattern.
[0012] Further, the light intensity is 1000-9000 lx.
[0013] Further, the light intensity is 5500 lx, under which the growth effect of the chlorella is best, and the chlorella has the stability and repeatability of the directional growth.
[0014] Further, the Chlorella put in the pool 1 is Chlorella vulgaris, Chlorella pyrenoidosa or Scenedesmus. Chlorella is a kind of efficient water purification organism, which can not only effectively improve water quality, but also reduce carbon dioxide concentration and play an important role in carbon absorption in the ecological system. Chlorella vulgaris, Chlorella pyrenoidosa and Scenedesmus have significant effects on the treatment of rainwater and low-concentration organic sewage. Among them, Chlorella pyrenoidosa shows the highest algal density in the cultivation process, which shows its superiority in growth and reproduction. In addition, Chlorella pyrenoidosa has a faster response speed to light sources and can quickly adapt to different light conditions, showing strong environmental tolerance. This feature enables it to more effectively utilize natural light for photosynthesis in practical applications, thereby improving the efficiency of sewage treatment.
[0015] Further, the ecological interactive park landscape system based on the Chlorella micro water ecological system further comprises a water quality monitoring device, the water quality monitoring device is connected with the controller; the water quality can be monitored in real time and the water flow speed is adjusted through the controller.
[0016] Further, the ecological interactive park landscape system based on the Chlorella micro water ecological system further comprises a light intensity detector, the light intensity detector is connected with the controller; the light intensity of the dot matrix light source 2 is monitored and the light intensity is adjusted through the controller.
[0017] The ecological interaction type park landscape system based on the Chlorella micro water ecological system has the following advantages: the light source with the specific shape designed by the participant through the interactive applet on the mobile phone can effectively affect the growth form of the Chlorella and the participant can receive the feedback of the growth state of the Chlorella in real time, so that the sense of mission and ecological awareness of the participant are enhanced, thereby deepening the interaction between the participant and the ecology; after the end of the recognition period, the growth cycle of the Chlorella is also ended, and the mature Chlorella can be washed away and collected by increasing the flow rate of the water flow; and the cleaned pool and the Chlorella in the pool continue to be recognized and cultivated. The collected Chlorella can be further used to produce clean biomass energy, realizing the recycling of resources and sustainable development.
[0018] The ecological interaction type park landscape system based on the Chlorella micro water ecological system has the following advantages: the light source with the specific shape designed by the participant through the interactive applet on the mobile phone can effectively affect the growth form of the Chlorella and the participant can receive the feedback of the growth state of the Chlorella in real time, so that the sense of mission and ecological awareness of the participant are enhanced, thereby deepening the interaction between the participant and the ecology; after the end of the recognition period, the growth cycle of the Chlorella is also ended, and the mature Chlorella can be washed away and collected by increasing the flow rate of the water flow; and the cleaned pool and the Chlorella in the pool continue to be recognized and cultivated. The collected Chlorella can be further used to produce clean biomass energy, realizing the recycling of resources and sustainable development.
[0019] The ecological interaction type park landscape system based on the Chlorella micro water ecological system has the following advantages: the light source with the specific shape designed by the participant through the interactive applet on the mobile phone can effectively affect the growth form of the Chlorella and the participant can receive the feedback of the growth state of the Chlorella in real time, so that the sense of mission and ecological awareness of the participant are enhanced, thereby deepening the interaction between the participant and the ecology; after the end of the recognition period, the growth cycle of the Chlorella is also ended, and the mature Chlorella can be washed away and collected by increasing the flow rate of the water flow; and the cleaned pool and the Chlorella in the pool continue to be recognized and cultivated. The collected Chlorella can be further used to produce clean biomass energy, realizing the recycling of resources and sustainable development.
[0020] The innovative design of the utility model not only significantly improves the ecological value of the urban park, but also enhances the public's awareness and participation in the natural environment. Through the setting of the interactive display area and the rich educational activities, users can learn ecological knowledge while playing, enhance environmental awareness, and thus realize the harmonious coexistence of ecological protection and urban life. Ultimately, the urban park not only becomes an ideal place for people to relax and entertain, but also an important platform for ecological education and environmental protection, promoting the sustainable development of urban ecological civilization.
[0021] The ecological interactive park landscape system based on the micro-aquatic ecological system of chlorella of the utility model can effectively promote the improvement of urban ecological environment, improve the quality of life of residents, and promote the attention and participation of society to ecological protection. Through the utility model, the urban park will not only be a leisure place, but also a front position of ecological education, stimulating the enthusiasm of the public for ecological protection and promoting the participation of all sectors of society in the practice of sustainable development, which can be used in the field of urban parks. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 is a structural schematic view of the ecological interactive park landscape system based on the micro-aquatic ecological system of chlorella of the utility model; in the figure: 1 is a pool, 2 is a dot matrix light source, 3 is an energy storage battery, 4 is a motion power generation facility, 5 is a solar panel, 6 is a photosynthesis monitor, 7 is a controller, 8 is a chlorella, and 9 is a mobile phone.
[0023] Figure 2 is a schematic view of the dot matrix light source 2 forming the "creative" character shape in Example 1. DETAILED DESCRIPTION
[0024] The beneficial effects of the utility model are verified by the following examples.
[0025] Example 1: The ecological interactive park landscape system based on the micro-aquatic ecological system of chlorella of the utility model of this example is composed of a pool 1, a dot matrix light source 2, an energy storage battery 3, a motion power generation facility 4, a solar panel 5, a photosynthesis monitor 6, and a controller 7; Chlorella pyrenoidosa 8 is put into the pool 1, and the coverage area of the chlorella is 10%; wherein the motion power generation facility 4 is a power generation bicycle; the lamp in the dot matrix light source 2 is an LED lamp; wherein the pool 1 is simulated by an enamel square plate;
[0026] The dot matrix light source 2 is laid on the bottom of the pool 1, the solar panel 5 is connected with the energy storage battery 3; the energy storage battery 3 is connected with the dot matrix light source 2; the solar panel 5 converts solar energy into electrical energy and stores it in the energy storage battery 3 to supply power to the dot matrix light source 2; at the same time, the motion power generation facility 4 is also connected with the energy storage battery 3, and the electrical energy generated by the motion power generation facility 4 is also stored in the energy storage battery 3 to supply power to the dot matrix light source 2;
[0027] The photosynthesis monitor 6 is arranged above the water pool 1; the photosynthesis monitor 6 monitors the growth state of the chlorella in the water pool 1 and transmits the growth state to the controller 7; the controller 7 is also connected with the dot matrix light source 2, and controls the light mode and the light intensity of each light dot in the dot matrix light source 2; the controller 7 is provided with an interactive applet, and the participants use the mobile phone 9 to perform the recognition on the water pool 1 through the interactive applet, and form a "creative" shape by the lights of each light dot in the dot matrix light source 2, as shown in FIG. 6; the light intensity is controlled to be 5500 lx, the participants move in the motion power generation facility 4, the generated electric energy is also stored in the energy storage battery 3, and the interactive applet provides feedback of the growth state of the chlorella to the participants. Figure 2
[0028] In the embodiment, the participants scan the interactive applet on the controller 7 through the mobile phone, recognize the chlorella in the interactive water pool 1, and after the recognition is confirmed, the user customizes the light dot shape of the dot matrix light source in the applet and implements the operation of the participants through the controller 7; the dot matrix light source provides the light condition for the growth of the chlorella in the water pool 1, and the growth state of the chlorella is related to the light dot shape of the dot matrix light source; the photosynthesis monitor 6 feeds back the monitored growth state of the chlorella to the controller and to the mobile phone of the participants; each recognition period is 7 days, and the participants view the growth state and the morphological change of the chlorella in real time through the applet in the recognition period; meanwhile, the applet also popularizes the maintenance skills and scientific knowledge of the chlorella to the participants; the participants or other sports enthusiasts store the energy in the energy storage battery 3 by moving on the motion power generation facility 4. The specific shape of the light source designed by the participants through the interactive applet will effectively affect the growth form of the chlorella and the participants will receive the feedback of the growth state of the chlorella in real time, so that the sense of mission and the ecological consciousness of the recognized participants are enhanced, thereby deepening the interaction between the participants and the ecology. After the recognition period ends, the growth period of the chlorella also ends, and the mature chlorella can be washed away and collected by increasing the flow rate of the water flow. The cleaned water pool and the chlorella in the pool continue to be recognized and cultivated. The collected chlorella can be further used to produce clean biomass energy, so as to realize the recycling and sustainable development of resources.
[0029] The ecological interaction type park landscape system based on the Chlorella micro water ecological system of the embodiment carries out cultivation on Chlorella pyrenoidosa, and the Chlorella pyrenoidosa is designed according to participants, in the 7-day claim cultivation, the coverage area of the Chlorella pyrenoidosa is increased from 10% to 30% after 3 days and to 86% after 7 days, and presents the shape of "creation". The embodiment adopts light guide technology to lay dot matrix light sources to guide and promote the growth of Chlorella pyrenoidosa, and utilizes specific light shapes designed by participants to directionally control the growth mode of Chlorella pyrenoidosa, so as to form a personal ecological landscape with unique style and attractive of participants. Through the control of light, the natural growth environment of Chlorella pyrenoidosa can be effectively simulated, the photosynthesis efficiency is significantly improved, and the self-maintenance and prosperity of the ecological system are realized. Participants can not only exercise the body when using the sports facilities, but also provide power for the light source. The design not only encourages participants to actively participate in sports and enhances their fitness consciousness, but also improves the interaction and participation of users with the natural ecology, realizes the improvement of the ecological environment, promotes the healthy lifestyle of users, and realizes the harmonious coexistence of man and nature.
[0030] The ecological interaction type park landscape system based on the Chlorella micro water ecological system of the embodiment carries out cultivation on Chlorella pyrenoidosa, and the Chlorella pyrenoidosa is designed according to participants, in the 7-day claim cultivation, the coverage area of the Chlorella pyrenoidosa is increased from 10% to 30% after 3 days and to 86% after 7 days, and presents the shape of "creation". The embodiment adopts light guide technology to lay dot matrix light sources to guide and promote the growth of Chlorella pyrenoidosa, and utilizes specific light shapes designed by participants to directionally control the growth mode of Chlorella pyrenoidosa, so as to form a personal ecological landscape with unique style and attractive of participants. Through the control of light, the natural growth environment of Chlorella pyrenoidosa can be effectively simulated, the photosynthesis efficiency is significantly improved, and the self-maintenance and prosperity of the ecological system are realized. Participants can not only exercise the body when using the sports facilities, but also provide power for the light source. The design not only encourages participants to actively participate in sports and enhances their fitness consciousness, but also improves the interaction and participation of users with the natural ecology, realizes the improvement of the ecological environment, promotes the healthy lifestyle of users, and realizes the harmonious coexistence of man and nature.
Claims
1. An ecological interactive park landscape system based on a micro-aquatic ecosystem of ball algae, characterized by The park landscape system comprises a pool (1), a dot matrix light source (2), an energy storage battery (3), a motion power generation facility (4), a solar panel (5), a photosynthesis monitor (6), and a controller (7); and Chlorella vulgaris (8) is put into the pool (1); The dot matrix light source (2) is laid on the bottom of the pool (1), the solar panel (5) is connected with the energy storage battery (3), the energy storage battery (3) is connected with the dot matrix light source (2), the solar panel (5) converts solar energy into electric energy and stores the electric energy in the energy storage battery (3) to supply power for the dot matrix light source (2); meanwhile, the motion power generation facility (4) is also connected with the energy storage battery (3), the electric energy generated by the motion power generation facility (4) is also stored in the energy storage battery (3) to supply power for the dot matrix light source (2); The photosynthesis monitor (6) is arranged above the pool (1); the photosynthesis monitor (6) monitors the growth state of the Chlorella vulgaris in the pool (1) and transmits the growth state to the controller (7); the controller (7) is also connected with the dot matrix light source (2) to control the light mode and the light intensity of each light source point of the dot matrix light source (2).
2. The ecological interactive park landscape system based on the micro-aquatic ecosystem of chlorella according to claim 1, characterized in that, An interactive applet is arranged on the controller (7), a participant uses a mobile phone (9) to perform recognition on the pool (1) through the interactive applet, controls the light mode and the light intensity of each light source point of the dot matrix light source (2), and the interactive applet provides feedback of the growth state of the Chlorella vulgaris to the participant.
3. The ecological interactive park landscape system based on the micro-aquatic ecosystem of chlorella according to claim 1 or 2, characterized in that, The motion power generation facility (4) is a power generation bicycle or a power generation treadmill.
4. The ecological interactive park landscape system based on the micro-aquatic ecosystem of chlorella according to claim 1 or 2, characterized in that, The light in the dot matrix light source (2) is an LED lamp.
5. The ecological interactive park landscape system based on the micro-aquatic ecosystem of chlorella according to claim 1 or 2, characterized in that, The light mode is that all light source points of the dot matrix light source (2) are turned on or are turned on according to a rule defined by the participant.
6. The ecological interactive park landscape system based on the micro-aquatic ecosystem of Chlorella according to claim 1 or 2, characterized in that, The light mode is that light source points of the dot matrix light source (2) are turned on according to a pattern or a design.
7. The ecological interactive park landscape system based on the micro-aquatic ecosystem of Chlorella according to claim 1 or 2, characterized in that, The light intensity is 1000-9000 lx.
8. The ecological interactive park landscape system based on the micro-aquatic ecosystem of chlorella according to claim 1 or 2, characterized in that, The light intensity is 5500 lx.
9. The ecological interactive park landscape system based on the micro-aquatic ecosystem of Chlorella according to claim 1 or 2, characterized in that, The Chlorella vulgaris put into the pool (1) is Chlorella vulgaris, Chlorella pyrenoidosa or Scenedesmus.
10. The ecological interactive park landscape system based on the micro-aquatic ecosystem of chlorella according to claim 1 or 2, characterized in that, The park landscape system further comprises water quality monitoring equipment, and the water quality monitoring equipment is connected with the controller (7).