Network for sustainable aquatic ecosystem development
By constructing a global water ecosystem sustainable development network that balances water supply and drainage, and utilizing pipeline networks and intelligent equipment, the problem of global water ecosystem imbalance has been solved, achieving efficient scheduling and management of water resources, restoring the water ecosystem, reducing construction and operation costs, and ensuring the sustainable development of human society and the natural environment.
Patent Information
- Application Number
- PCT/CN2025/094140
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-05-22
- Filing Date
- 2025-05-12
- Publication Date
- 2025-11-27
AI Technical Summary
Existing water ecology technologies cannot effectively solve the problems of torrential rains and floods, droughts, high temperatures and desertification caused by global warming, resulting in water ecological imbalances that seriously endanger the sustainable development of human society and nature.
By adopting a pipeline network and a network management system with minimal human intervention, a global water ecological sustainable development network with balanced water supply and drainage is constructed. Through laying underground pipelines and installing intelligent equipment, remote scheduling and management of water resources can be achieved, including components such as inlet and outlet pipelines, power pipes, and well pipes. Combined with wireless communication and global communication, automated monitoring and management can be realized.
It achieves harmony and balance in the global water ecosystem, provides sufficient water supply, timely drainage, greens the earth, restores the water ecosystem, reduces carbon emissions, lowers construction and operating costs, and ensures the sustainable development of human society and the stability of the natural environment.
Smart Images

Figure CN2025094140_27112025_PF_FP_ABST
Abstract
Description
Water ecological sustainable development network TECHNICAL FIELD
[0001] TECHNICAL FIELD, the present application relates to mechanical, electronic information technology field, specifically relates to pipe network, network, less people on duty intelligent operation and control operation and maintenance system, the water ecological sustainable development network of the balance of water supply and drainage in the whole country and the whole world. BACKGROUND
[0002] The existing water ecological technology, water conservancy ditch pond, open channel reservoir dam, river lake, water supply and drainage pipe network technology production result live recording, shows that it cannot solve the problem of global climate warming, rainstorm flood disaster, drought, high temperature desertification intensification, harm is extraordinary, life and property loss is huge and other problems. The water ecology of 260 countries and regions on the earth is unbalanced, which seriously endangers the sustainable development of human society and nature, and the current irreversible global warming drought rainstorm flood disaster crisis makes people worry.
[0003] Global natural disasters, drought accounts for 55%, flood accounts for 25%, and other disasters accounts for 18%. Drought disaster is caused by water shortage disaster, that is, 80% is the disaster formed by water ecological imbalance in hundreds of millions of years, and the situation is more serious than rainstorm flood disaster year after year. It is urgent to control water with technology, and the earlier the better.
[0004] The earth with life, atmosphere, water, biology, rock and soil five circles are not in harmony, and the global warming drought desertification, water disaster and water ecological imbalance lead to circle abnormality.
[0005] Search for patents, global resources, and no water supply and drainage intelligent operation technology is found to cure the water ecological imbalance in the whole country and the whole world, and to make the whole country and the whole world, social life and production normal, and benefit human beings. There is no water ecological sustainable development network technology document example in the world. SUMMARY
[0006] The purpose of the present application changes the deficiencies of the existing technology, and provides a water supply and drainage balance without water shortage and drought in the whole country and the whole world, short construction period, low operation and maintenance cost of water supply and drainage, clean water irrigation and drainage, service 360 industries, pipe network, network, less people on duty intelligent operation and control operation and maintenance system, and five circle water ecological sustainable development network. The technical content is as follows:
[0007] Water ecological sustainable development network, characterized by the water ecological sustainable development network 1 is formed by the pipe network 25, the network pipe less man value guard intelligent dynamic measurement and control operation and maintenance system 30, the water inlet 31 and the water outlet 32, the straight pipe 8, the vertical pipe 9, the circle pipe 10, the inclined pipe 11, the intersection pipe 12, the water inlet pipe 13, the water outlet pipe 14, the pipe branch 16, the power pipe 21, the four-way pipe 22, the water well pipe 24 and the pipe connection 20 are connected to form the pipe network 25 in the country and the world; the import and export 17 has the inlet and outlet passage gate 18 and the laid inlet and outlet cluster cable 19; the four-way pipe 22 is provided with the pipe gate 23; the power pipe 21 is provided with the flowmeter 27, the motor 34, the balancing wheel 38 and the rotating blade 39; the cluster cable 19, the wireless communication 28 and the global communication 29 are connected to the network pipe less man value guard intelligent dynamic measurement and control operation and maintenance system 30, and the water well pipe 24 is provided with the intelligent lens water level instrument 26 outside and the flowmeter 27 inside.
[0008] The power motor 34, the shaft 37, the balancing wheel 38 and the rotating blade 39 in the power pipe 21 are assembled by the cluster cable 19 power supply, the motor 34 is installed on the motor support 33, the bearing 36 is installed on the bearing support 35, the shaft 37 is installed in the bearing 36, the balancing wheel 38 is installed on the shaft 37, the rotating blade 39 is installed at the end of the shaft 37, the flowmeter 27 is arranged on one side of the motor support 33, the cluster cable 19 is connected to the flowmeter 27 and the motor 34, the rotating blade 39 is set according to the flow, and the balancing wheel 38 is matched with the motor 34.
[0009] The water well pipe 24 is connected to the water inlet pipe 13 and the import and export 17 of the pipe network 25. The horizontal, vertical and inclined pipe circle value 15 of the pipe network 25 is implemented according to the scale of the topography. The intersection pipe 12, the pipe branch 16, the four-way pipe 22 of the pipe network 25 are all provided with the pipe gate 23, and the import and export 17 is provided with the inlet and outlet passage gate 18.
[0010] The cluster cable 19, the wireless communication 28, the intelligent lens water level instrument 26, the flowmeter 27 and the global communication 29 of the pipe network 25 are all connected to the network pipe less man value guard intelligent dynamic measurement and control operation and maintenance system 30.
[0011] The pipe network 25 and the network pipe less man value guard intelligent dynamic measurement and control operation and maintenance system 30 are built in the country geography 40 to form the water ecological sustainable development network 1 country network 4.
[0012] The pipe network 25 and the network pipe less man value guard intelligent dynamic measurement and control operation and maintenance system 30 are built in the global geography 41 to form the water ecological sustainable development network 1 global network 5.
[0013] The water ecological sustainable development network 1 country network 4 is located in the four river water source water inlet 31 and then water outlet 32 directly supplies the north.
[0014] The water inlet 31 of the water well 24 connected by the pipe network 25 and the network pipe less man value guard intelligent dynamic measurement and control operation and maintenance system 30 is arranged at the hydrological water level super-normal drainage position to drain water, and the water well 24 has the construction of water supply and cable elevator maintenance channel.
[0015] The beneficial effects of the present technology:
[0016] The clause management builds the network of the present invention, and the network is responsible for the global scheduling of water supply and drainage. The water ecology of the earth is innovated, the five circles of space environment and harmonious climate, the human survival and reproduction, the social and natural coordinated development, the human health, beauty, and long life.
[0017] 1. Sustainable development of human beings. The network of the present invention is built, and the network is responsible for the global scheduling of water supply and drainage. The water ecology of the earth is innovated, the five circles of space environment and harmonious climate, the human survival and reproduction, the social and natural coordinated development, the human health, beauty, and long life. The water supply and drainage are timely, the earth is green, the water is normally involved in the balanced and coordinated development of the five circles, the human life is healthy and beautiful in the stable and suitable space environment, and the human life is endless. There will be no similar five mass extinctions caused by water ecological imbalance on the earth.
[0018] 2. Adequate water supply. The network of the present invention is distributed in the country and the world, and the water supply meets the water demand of 360 industries and eradicates water shortage and drought. Several trillion tons of river water flows into the sea and out of the country every year, and a large amount of fresh water flowing into the sea in various countries in the world can be scheduled for water supply. The remote water transfer speed of the network is much faster than the self-flow of the open channel.
[0019] 3. Timely drainage. The water well of the present invention is set at the hydrological point to drain the water exceeding the daily water level, and the global water disaster will not be generated.
[0020] 4. Greening the earth continent. The network of the present invention has large and remote scheduling and water transportation capacity, adequate water supply, global desertification, desertification, drought, and 1 / 4 desertification of the national territory. The desertification of the African Sahara desert and the global land drought area is changed into a green oasis.
[0021] According to my observation, a piece of land in the desert is watered and seeded with grass, and water is sprayed every day to maintain moisture. After being exposed to the sun and wind for 15 days, the grass grows to cover the desert land. Spraying water for small trees also makes them survive and grow vigorously. The evaporation of the wind invades the desert, and the human beings retreat. The desert is changed into a green oasis. 3000 years ago, the poem Tanmu trees were cut down and piled up on the river bank to make a cart axle, and the river water was clear. The trees were cut down on both sides of the Yellow River basin, and the vegetation was changed into a loess high slope. The rainwater washed the slope and turned into the Yellow River. The river water overflowed, and there were numerous floods.
[0022] 5. Sustainable development of water ecology. The present invention is used to generate a large number of vegetation forests on the earth, the atmospheric circulation is normal, the mountains are green and the water is clean, the human beings drink clean water, and the sewage is treated and discharged after reaching the standard. Eradicate water disaster, atmospheric circulation is normal.
[0023] 6. Ecological sustainable development. Repairing water ecology with the invention, clean energy developed by human beings replacing coal and oil gas burned by electric cars and ships, greatly reducing carbon emissions, sunshine, rainfall, vegetation forest water storage and water evaporation, river and lake water, five circles running normally, stable and suitable climate for human beings, 360 industry development contribution. No drought, flood, loss of peace and security, contemporary people, descendants, sustainable development.
[0024] 7. Fast construction. With the combined efforts of the clauses, domestic mechanical and electrical products, steel and cement, and related industries, a sustainable water ecological development network in Beijing-Tianjin-Hebei is built in 3 years, and a national network is built in 10 years. The production capacity of related industries is exported to other countries, and the global network is built and operated in 15-20 years. There is no resistance to land and various difficulties in the construction of the canal.
[0025] 8. Low cost. The pipe network is laid underground without land, and the wellhead network is distributed on the ground with minimal land occupation. The new shield machine excavates and constructs underground tunnels quickly, with low construction cost. The network has few people to supervise and low cost, and the water supply and drainage prices are low, which promotes the social development of various industries. The water ecological sustainable development network is built and operated for three years to recover the investment and generate benefits and taxes. The network is built for a hundred years, and then it can be updated and recycled.
[0026] 9. Clean drinking water. The network transports water from the four source rivers of the Qinghai-Tibet snow-capped mountains to Beijing, northern China, and foreign clean water to users. Clean drinking water promotes the health and beauty of human beings. Clean freshwater is abundant and can be dispatched in China and around the world. BRIEF DESCRIPTION OF DRAWINGS
[0027] Figure 1 is a structural diagram of a water ecological sustainable development network.
[0028] Figure 2 is a pipe arrangement structure diagram.
[0029] Figure 3 is a power pipe structure diagram.
[0030] Figure 4 is an application of the invention: a national network diagram.
[0031] Figure 5 is an application of the invention: a global network diagram.
[0032] Figure 6 is an application of the invention: a four-river source water remote supply to the north diagram.
[0033] Figure 7 is an application of the invention: a smart and dynamic daily water level structure diagram.
[0034] Figure No. 1. Water ecological sustainable development network, 2. Pipe arrangement, 3. Power pipe structure, 4. National network, 5. Global network, 6. Four river source water remote supply to the north, 7. Intelligent daily water level, 8. Straight pipe, 9. Vertical pipe, 10. Circle pipe, 11. Inclined pipe, 12. Intersection pipe, 13. Water inlet pipe, 14. Water outlet pipe, 15. Circle value of horizontal, vertical and inclined pipe, 16. Pipe branch, 17. Inlet and outlet, 18. Inlet and outlet passage gate, 19. Cluster cable, 20. Pipe joint, 21. Power pipe, 22. Four-way pipe, 23. Pipe gate, 24. Water well pipe, 25. Pipe network, 26. Intelligent lens water level instrument, 27. Flowmeter, 28. Wireless communication, 29. Global communication, 30. Network pipe less people on duty intelligent dynamic measurement and control operation and maintenance system, 31. Water inlet, 32. Water outlet, 33. Motor support, 34. Motor, 35. Bearing support, 36. Bearing, 37. Shaft, 38. Equalizing wheel, 39. Rotating blade, 40. National geography, 41. World geography, 42. National river map, 43. Mountains and rivers, 44. Daily water level, 45. Ten-year water level, 46. Fifty-year water level, 47. Hundred-year water level. DETAILED DESCRIPTION
[0035] The implementation of the present application is further described below in conjunction with the accompanying drawings.
[0036] Referring to Figure 1, the water ecological sustainable development network is composed of the pipe network 25, the network pipe less people on duty intelligent dynamic measurement and control operation and maintenance system 30, and the water inlet 31 and the water outlet 32. The straight pipe 8, the vertical pipe 9, the circle pipe 10, the inclined pipe 11, the intersection pipe 12, the water inlet pipe 13, the water outlet pipe 14, the pipe branch 16, the power pipe 21, the four-way pipe 22, and the water well pipe 24 are arranged and connected to form the pipe network 25 in the country and the world. The inlet and outlet passage gate 18 and the cluster cable 19 are arranged in the inlet and outlet 17. The pipe gate 23 is arranged in the four-way pipe 22. The flowmeter 27, the motor 34, the equalizing wheel 38, and the rotating blade 39 are arranged in the power pipe 21. The cluster cable 19, the wireless communication 28, and the global communication 29 are connected to the network pipe less people on duty intelligent dynamic measurement and control operation and maintenance system 30. The intelligent lens water level instrument 26 is installed outside the water well pipe 24, and the flowmeter 27 is arranged inside the water well pipe 24. The water well pipe 24 is connected to the water inlet pipe 13 and the inlet and outlet 17 of the pipe network 25.
[0037] The circle value 15 of the horizontal, vertical and inclined pipe of the pipe network 25 is implemented in the scale of the topography and geomorphology. The intersection pipe 12, the pipe branch 16, the four-way pipe 22, the inlet and outlet passage gate 18, and the pipe gate 23 are all installed in the pipe network 25.
[0038] The present application, the electromechanical Internet of Things water supply and drainage network, uses the inlet and outlet passage gate 18 pipe gate 23, intelligent lens water level instrument 26 flow rate instrument 27 motor 34 cable network to form a bundled cable 19, and wireless communication 28 and global communication 29 to connect the network, the water inlet 31 and the water outlet 32, the intersection pipe 12, the inlet pipe 13 of the water inlet pipe 13 side connected to the ground direction of the pipe network, the water outlet pipe 14 downwardly connected to the deeper pipe network, together constitute the water supply and drainage network, that is, the water ecological sustainable development network 1. The pipe network 25 is laid underground without land, good farmland, and no land. The wellhead of the water well 24 is on the ground. The network management and operation system 30 is also mainly set on the ground. The water supply and drainage management three-dimensional system uses very little land.
[0039] The water ecological sustainable development network 1 is built into a clean water network, and the drainage network is a special water network. The clean water network is temporarily used for local rainwater drainage. After that, it must be cleaned. The inlet and outlet 17 are also the water inlet 31 and the water outlet 32. The relevant gate is closed at the present site and remotely. When there is no water in the pipeline, the maintenance personnel enter the pipeline through the inlet and outlet 17.
[0040] The network management and operation system 30 uses wireless and wired, Internet of Things, water ecological sustainable development network 1 related components hardware and software to timely display, store, process related signal operation status, problems, automatically process, and notify the on-duty personnel to process. The maintenance personnel distributed in various places are also network managers. Regular maintenance is a common item, and the on-site rapid reaction to eliminate faults can be achieved. Good quality related devices and software are used. Within the warranty period, there are backups, and the situation of affecting production is less.
[0041] The network management and operation system 30 has an Internet of Things display screen display, language alarm, and notification sending information to the post and mobile phone, and flexible modification.
[0042] The network management and operation system 30 has a main control system, a subsystem, and a subsystem. Among them, the intelligentization, a small number of personnel, use computer system management and operation, measurement and control, alarm, and handle faults. The on-site working condition water level flow rate flow parameter of the network management and operation system 30 is watched by a small number of people. The software and hardware are updated. The computer cannot do the work service, such as network personnel training management, spare parts warehouse inventory, assignment of maintenance, user mobile phone, online and offline customized water supply and drainage service, and water service personnel ratio, which are all in the best value.
[0043] The pipe hardware of the pipe network 25 is mainly made of reinforced concrete materials. The service life is one hundred years. The software of the network management and operation system 30 needs to be maintained and can be updated. There is a shield machine to build a tunnel in segments underground. A kind of production mode with high operation efficiency is also used. Faster equipment is being developed and produced to improve productivity.
[0044] Water ecological sustainable development network 1, water governance, water ecological sustainable development network 1, in the plain, hilly, mountainous, plateau and basin, in water, underwater, east, south, north, four directions, scheduling water, realizing water ecological existence, development balance, and beautiful human life.
[0045] Figure 2 is a pipe setting 2, the inlet and outlet 17 has an inlet and outlet passage gate 18 and lays the inlet and outlet cluster cable 19; The four-way pipe 22 is provided with a pipe gate 23, and the cluster cable 19 is laid.
[0046] The end of the four pipes of the pipe branch 16 power pipe 21 four-way pipe 22 is connected to the pipe matching combination part 20, and is manufactured in series to form the water passage of the water inlet 31 and the water outlet 32. The combination part 20 of the pipe is not obvious, and various pipe fittings are combined according to the needs of water supply 31 and drainage 32. The inlet and outlet 17 of the pipe branch 16 is the passage of the maintenance personnel, the water inlet and outlet, the pipe gate 23 is the water passage, the gate is opened, the water passes through, the gate is closed, the water flow is stopped, according to the direction of water flow, the gate is opened and closed in the pipe network 25 according to the needs to form the water passage, guide the water flow, and the water flow is four directions. The diameter of each pipe, the number of joint branches, the combination form, and the specific setting in the construction. The pipe of the present application can be made of steel plate, steel reinforced concrete, suitable for water flow, pressure and durable material process requirements.
[0047] Figure 3 is a power pipe structure 3, the power motor 34, shaft 37 and balance wheel 38 and rotating blade 39 in power pipe 21 are assembled to form power supply with cluster cable 19, motor support 33 is installed on motor 34, bearing support 35 is installed on bearing 36, shaft 37 is installed in bearing 36, balance wheel 38 is installed on shaft 37, rotating blade 39 is installed on the end of shaft 37, flowmeter 27 is arranged on one side of motor support 33, cluster cable 19 is connected between flowmeter 27 and motor 34, and the other end is connected to network pipe unattended intelligent dynamic monitoring and operation system 30. The type, size and number of rotating blade 39 are set according to the flow, and the balance wheel 38 cooperates with the motor 34.
[0048] The flowmeter 27, the motor support 33 and the bearing support 35 are fixed on the pipe of the power pipe 21, the cluster cable 19 of the cable of the motor 34 and the flowmeter 27 is connected to the network pipe unattended intelligent dynamic monitoring and operation system 30 through the inlet and outlet 17 of the pipe branch 16. The wall thickness of the pipe, the flowmeter 27 support, the motor 34, the balance wheel 38 and the rotating blade 39 in the pipe are all two-dimensional representation of mechanical and electrical structure in the application drawing, which are not equal to the mechanical and electrical product size, type and number of network pipe unattended intelligent dynamic monitoring and operation system 30, and the mechanical and electrical product and software parameter specification are set according to the actual needs.
[0049] Figure 4 is the national network 4, pipe network 25 and network management less people value-added intelligent monitoring and operation system 30 is built in the national geography 40 is configured into water ecological sustainable development network 1 national network 4.
[0050] Water treatment, water ecological sustainable development network 1 national network 4, in the plain, hilly, mountainous, plateau and basin, water, underwater, east, south, north and center, four-way water scheduling, realize water ecological existence development beautiful human life.
[0051] Water disaster affects social production and life, from 2012 to 2022, there are 472 times of rainstorm weather process in the country, and the average annual number is about 42.9 times; more than 600 cities in the country, more than 300 cities have water resources shortage.
[0052] The demand for water in the country and the world is to build pipe network, network management less people value-added intelligent monitoring and operation system in the earth geography, and the water is in. The construction cost of underground tunnel pipe network is low, the construction period is short, and the operation is less people value-added intelligent. Water supply and drainage, natural and social water supply is sufficient and the cost is low.
[0053] The practicability of pipe network 25 can transport the four river source water melted by Qinghai and Tibet snow mountains, that is, Yangtze River, Yellow River, Lancang River and Yarlung Zangbo River, to the north and the water resource shortage areas in the country.
[0054] China has abundant fresh water, which can be scheduled by the present application. Yangtze River, Pearl River, Heilongjiang River, Yellow River, and other rivers flow into the sea all the year round. In addition, the runoff of Lancang River and Yarlung Zangbo River is large. For this purpose, the present application is used to supply water to the north and other places with less water resources. The water resource utilization method is similar to this. These water resources can be scheduled and transported, which indicates that the present application is related to the technical application, the technical effect and the practicability. The water resource shortage in more than 300 cities in the country can be solved.
[0055] When water ecological sustainable development network 1 is running, it is the time when the world's difficult problems such as water shortage, drought, excessive rain and flood drainage, and water ecological imbalance are solved, and the new life and new era of human society are opened up by technology.
[0056] Figure 5 is a global network 5. Pipe network 25 and network management less people value-added intelligent monitoring and operation system 30 are built in global geography 41 and configured into water ecological sustainable development network 1 global network 5.
[0057] Water ecological sustainable development network 1 global network 5, water treatment, water ecological sustainable development network 1, in the plain, hilly, mountainous, plateau and basin, water, underwater, east, south, north and center, four-way water scheduling, realize water ecological existence development beautiful human life.
[0058] The adaptation of the global water ecological demand is to build a network, a network, a few people value-added intelligent monitoring and operation system in the geography of the earth, and the water is supplied and discharged. The underground pipe network does not need to build on the ground, and the construction cost is low and the construction period is short, such as the domestic construction industry.
[0059] The world is divided into more than 260 countries and regions, and the water basin and water management should not have borders. Each country and region cooperates to face water, builds a water ecological sustainable development network 1, and shows global sustainable development.
[0060] Figure 6 is a four-river source water remote supply to the north 6, a water ecological sustainable development network 1 nationwide network 4, located in the four-river source water inlet 31 and outlet 32 directly supplied to the north. In the pipe network 25 and the network, a few people value-added intelligent monitoring and operation system 30, the water inlet 31 in the geographical location of the four-river source is remotely transported to the north outlet 30, and the inlet and outlet passages gate 18 and pipe gate 23 of the branch pipe 16 along the way can be opened and closed in time. A water source flows through the branch pipe 16 and is distributed to all parts of the country.
[0061] All rivers flowing into the sea in Heilongjiang can be supplied to the north by the pipe network 25. All snow and rain flowing in the country can be supplied by the pipe network 25. The pipe network 25 is buried underground from the four-river source through the basin, plateau, mountain, hilly, and plain to the north. The whole country drinks clean water from the four-river source of the Qinghai-Tibetan snow mountain, and the whole nation is healthy, and the nation is endless and has a significant effect on the development.
[0062] The invention is practical, and the water is dispatched to transport clean water to the place where it is needed for drinking, and the health is improved, and the water resources are abundant in the city and town.
[0063] Figures 4, 5, and 6 refer to maps, which are only used for the invention to illustrate and intuitively explain, and are not used for types.
[0064] Figure 7 is a water well 24 connected to the water inlet 31 of the pipe network 25 and the network, a few people value-added intelligent monitoring and operation system 30, which is set in the water level overflow position of the water well 24. The water well 24 has a water supply and cable elevator maintenance channel. The water well pipe 24 is connected to the inlet pipe 13 and the inlet and outlet 17 of the pipe network 25. In the water 43, the water well pipe 24 is installed with an intelligent camera water level instrument 26 outside and a flowmeter 27 inside, a daily water level 44, a ten-year water level 45, a fifty-year water level 46, and a hundred-year water level 47. The history of water, the invention of intelligent drainage, will not appear again.
[0065] The intelligent lens water level instrument 26 detects that the water level is abnormal, and reacts to the network management unattended intelligent operation and control system 30 to open the related pipe gate 23 in the pipe network 25 to let the water 31 flow away. The flow meter 27 detects that there is no water 31, and closes the pipe gate 23. The number of water wells 24 is constructed according to the implementation needs, and is used for cable access, water inlet and outlet, and elevator maintenance channel.
[0066] The flow of each pipe in the pipe network 25 at the geographical location network point is set according to the prediction. The pipe diameter and the power of the pipe determine the flow per second, and the pipe size can be set to 100-1000 cubic meters per second. The flow is set smaller or larger according to the actual use. Multiple drainage pipes are distributed at each hydrological drainage point to drain rain faster than the rain speed, so that waterlogging and other water disasters such as floods will not occur.
[0067] In an area where a hundred-year or thousand-year rainstorm occurs, multiple water wells 24 are set to drain water from the initial time of the rainstorm, and there is no water accumulation, so that water disasters are completely eliminated. The pipe network 25 transports the drained water to water reservoirs in areas where water is needed, desertification areas, deserts, and seas.
[0068] In areas where water shortage, drought, flood, and seawater intrusion occur, the water ecological sustainable development network is built first to prevent disasters and create a good ecological environment.
[0069] The water wells 24 of the pipe network 25 are used to absorb water in water-rich areas and then transport the water to water-deficient areas, so as to eliminate water resource tension and drought, and meet the needs of industry, agricultural irrigation, water drainage, and 360-degree needs. The five circles of the water ecology of the earth are required to green the earth and change the ecological climate, build a pipe that can be used for hundreds of years, and create a stable, suitable space environment for human beings, so that the human race can prosper and live a healthy life.
Claims
1. A water ecological sustainable development network, characterized in that The water ecological sustainable development network 1 is composed of pipe network (25), network pipe unattended intelligent dynamic monitoring and operation system (30), water inlet (31) and water outlet (32). The straight pipe (8), vertical pipe (9), circle pipe (10), inclined pipe (11), intersection pipe (12), water inlet pipe (13), water outlet pipe (14), pipe branch (16), power pipe (21), four-way pipe (22), water well pipe (24) and pipe connection (20) are connected to form a three-dimensional pipe network (25) in the country and the world. The inlet and outlet (17) has an inlet and outlet passage gate (18) and a laid inlet and outlet cable (19). The four-way pipe (22) is provided with a pipe gate (23). The power pipe (21) is provided with a flowmeter (27), a motor (34), a balancing wheel (38) and a rotating blade (39). The cable (19), wireless communication (28) and global communication (29) are connected to the network pipe unattended intelligent dynamic monitoring and operation system (30). The water well pipe (24) is provided with an intelligent lens water level instrument (26) outside and a flowmeter (27) inside.
2. The water ecological sustainability network according to claim 1, wherein: The power motor (34), shaft (37), balancing wheel (38) and rotating blade (39) in the power pipe (21) are assembled with the cable (19) for power supply. The motor (34) is installed on the motor support (33). The bearing (36) is installed on the bearing support (35). The shaft (37) is installed in the bearing (36). The balancing wheel (38) is installed on the shaft (37). The rotating blade (39) is installed on the end of the shaft (37). The flowmeter (27) is arranged on one side of the motor support (33). The cable (19) is connected to the flowmeter (27) and the motor (34). The rotating blade (39) is set according to the type, size and number of flow. The balancing wheel (38) is matched with the motor (34).
3. The water ecological sustainability network of claim 1, wherein: The water well pipe (24) is connected to the water inlet pipe (13) and the inlet and outlet (17) of the pipe network (25).
4. The aquatic ecological sustainability network of claim 1, wherein: The number of horizontal, vertical and inclined pipes of the pipe network (25) is determined according to the size of the topography.
5. The aquatic ecological sustainability network of claim 1, wherein: The intersection pipe (12), pipe branch (16), four-way pipe (22) of the pipe network (25) are all provided with pipe gates (23). The inlet and outlet (17) is provided with an inlet and outlet passage gate (18).
6. The aquatic ecological sustainability network of claim 5, wherein: The cable (19), wireless communication (28), intelligent lens water level instrument (26), flowmeter (27) and global communication (29) of the pipe network (25) are all connected to the network pipe unattended intelligent dynamic monitoring and operation system (30).
7. The aquatic ecological sustainability network of claim 6, wherein: The pipe network (25) and the network pipe unattended intelligent dynamic monitoring and operation system (30) are built in the country geography (40) to form the national network (4) of the water ecological sustainable development network 1.
8. The aquatic ecological sustainability network of claim 7, wherein: The pipe network (25) and the network pipe unattended intelligent dynamic monitoring and operation system (30) are built in the global geography (41) to form the global network (5) of the water ecological sustainable development network 1.
9. The aquatic ecological sustainability network of claim 8, wherein: The national network (4) of the water ecological sustainable development network 1 is located in the water inlet (31) and water outlet (32) of the four rivers to supply water directly to the north.
10. The aquatic ecological sustainability network of claim 9, wherein: The water inlet (31) of the water well (24) connected to the pipe network (25) and the network pipe unattended intelligent dynamic monitoring and operation system (30) is arranged at the water level overflow position for drainage. The water well (24) is provided with a water supply and cable elevator maintenance channel.
Citation Information
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