Intelligent desert animal husbandry comprehensive industry system
By utilizing wind turbines and photovoltaic power generation systems in desert areas to convert heat energy into steam turbine power generation, and combining this with the construction of a suitable environment and the cultivation of economic crops, the problem of local utilization of desert photovoltaic and wind power has been solved, achieving economic benefits and sustainable desertification control.
Patent Information
- Application Number
- CN202222806044.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2022-10-25
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2032-10-25
AI Technical Summary
The local utilization efficiency of photovoltaic and wind power in desert areas is low, making it difficult to achieve economic benefits and lacking a sound and sustainable desertification control model.
The green electricity generated by wind turbines and photovoltaics is used locally and converted into thermal energy storage. It is then used to drive steam turbines to generate electricity through high-temperature working fluids. Combined with electricity, heat sources, or cold sources, suitable environments are built for soilless or soil-based economic crop cultivation and economic animal breeding. The economic crops and animal manure are used to improve the suitability of deserts for planting, and ultimately economic benefits are achieved through products and services.
It has achieved efficient utilization of desert photovoltaic and wind power, created a suitable living environment, developed a variety of economic industries, and achieved considerable economic benefits and a sound and sustainable desertification control model.
Smart Images

Figure CN223844527U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model patent belongs to the technical field of desert management, especially a wisdom desert stockbreeding comprehensive industry system. BACKGROUND
[0002] Desert areas are windy, have less cloud cover and strong sunlight, for example, the annual total radiation of solar radiation in a desert area is 6000-6200 MJ / m 2, which is more than 10% higher than that in the same latitude area, and is more suitable for photovoltaic and wind power generation. In recent years, deserts, gobi and desert areas have gradually become a hot spot for the development of light and wind resources.
[0003] Invention patent CN 104025974 A discloses a technical solution of a desert management system combined with a photovoltaic power station, which includes a photovoltaic power station system, a photovoltaic water pump system, a desert water supply irrigation system, a windproof system and a desert greening system. Although this technical solution mentions the combination of photovoltaic power generation and desert management, it does not involve the localized economic use of photovoltaic power generation. Invention patent CN 113924900 A discloses a mobile agricultural greenhouse sand control method. The method disclosed in this invention patent uses a photovoltaic + mobile agricultural greenhouse mode for desert management. The technical solution of this invention mentions the construction of a fabricated agricultural greenhouse on a sand field, soil improvement in the greenhouse, and the use of the improved area as agricultural land. The fabricated agricultural greenhouse is then moved to a new sand control site to achieve the retraction of people into the sand. However, this invention does not involve the more economic use of photovoltaic power generation, and lacks a systematic and technical solution for desert management.
[0004] Due to the lack of economic and industrial resources in desert areas, the demand for electricity and other forms of energy is very limited, and it is difficult to completely consume the energy converted from light and wind resources. In addition, due to the limitation of local consumption capacity and power transmission channels, there is still a lack of good methods and technical solutions to solve the problem of more economic use of photovoltaic and wind power. It is worth for technical personnel to conduct in-depth research on how to achieve economic benefits of sand control and form a new positive and sustainable sand control mode. SUMMARY
[0005] The technical problems solved by the utility model patent are firstly the more efficient and higher value localized use of desert photovoltaic and / or wind power, secondly how to convert desert photovoltaic and / or wind power into a suitable living environment and provide various forms of energy such as cold, heat and electricity for the suitable living environment, and finally how to achieve economic benefits of sand control and form a new positive and sustainable sand control mode.
[0006] The technical solution of the utility model patent is as follows:
[0007] The application discloses a wisdom desert stock farming comprehensive industry system, and relates to the technical route for desert control of the wisdom desert stock farming comprehensive industry system.
[0008] The wisdom desert stock farming comprehensive industry system comprises at least one wisdom desert green living environment energy system, wherein the wisdom desert green living environment energy system comprises green electricity (1-1), at least one electric heat storage system (1-2), at least one steam power generation system (1-3), at least one power transmission and distribution system (1-4), at least one cold and heat source system (1-6), at least one living environment energy system equipment system (1-7) and at least one living environment area (1-8).
[0009] Or / and at least one air water production system (1-11),
[0010] Or / and at least one distributed light heat collection device (1-9) and heat storage system (1-10).
[0011] The green electricity (1-1) enters the electric heat storage system (1-2) through a cable (1-12); the electric heat storage system (1-2) is connected with the steam power generation system (1-3) through a high-temperature working medium pipeline (1-13); and the steam power generation system (1-3) is connected with the power transmission and distribution system (1-4) through a cable (1-12).
[0012] The electric heat storage system (1-2) is connected with the cold and heat source system (1-6) through the high-temperature working medium pipeline (1-13); and the steam power generation system (1-3) is connected with the cold and heat source system (1-6) through a heat pipeline (1-14).
[0013] The cold and heat source system (1-6) is connected with the suitable living energy environment equipment system (1-7) through a heat pipe (1-14); the power transmission and distribution system (1-4) is connected with the suitable living energy environment equipment system (1-7) through a cable (1-12); the suitable living energy environment equipment system (1-7) is connected with the suitable living environment area (1-8) through a suitable living energy environment pipe (1-16); in the case that no air water system (1-11) is arranged, the suitable living energy environment equipment system (1-7) can draw underground water through a water pump for use;
[0014] Or / and the cold and heat source system (1-6) is connected with the air water system (1-11) through the heat pipe (1-14); the air water system (1-11) is connected with the suitable living energy environment equipment system (1-7) through a water pipe (1-15); the air water system (1-11) can improve the environmental friendliness of the intelligent desert green suitable living energy environment system and avoid the extraction of underground water in the desert.
[0015] Or / and the distributed light heat collection device (1-9) is connected with the heat storage system (1-10) through a high-temperature working medium pipe (1-13); the heat storage system (1-10) is connected with the cold and heat source system (1-6) through the high-temperature working medium pipe (1-13); the distributed light heat collection device (1-9) and the heat storage system (1-10) can improve the energy efficiency of the intelligent desert green suitable living energy environment system and decouple the thermal-electric correlation of the system.
[0016] An intelligent desert pasture comprehensive industry system, characterized in that:
[0017] The operation mechanism of the intelligent desert green suitable living energy environment system is as follows:
[0018] The green electricity (1-1) is wind power generated by a wind turbine generator system or / and photovoltaic power generated by a photovoltaic power generation system; the green electricity (1-1) is transmitted to an external power grid (1-5) or a localized system for self-use through the power transmission and distribution system (1-4) through the cable (1-12).
[0019] The energy storage process of the electric heat storage system (1-2) is as follows: when the external power grid (1-5) cannot consume the green electricity (1-1), the green electricity (1-1) is converted into heat energy in the electric heat storage system (1-2) through the cable (1-12) and stored in the electric heat storage system (1-2), so as to realize the energy storage process of the electric heat storage system (1-2).
[0020] The discharging process of the electric heat storage system (1-2): during the time of the electric peak or the electric peak time of the external power grid (1-5), the high-temperature working medium in the electric heat storage system (1-2) enters the steam power generation system (1-3) through the high-temperature working medium pipeline (1-13); in the steam power generation system (1-3), the high-temperature working medium exchanges heat with water to change the water into high-temperature and high-pressure water vapor, the high-temperature and high-pressure water vapor drives the steam turbine to generate electricity, and the generated electricity is transmitted to the external power grid (1-5) or the local system through the cable through the power transmission and distribution system (1-4), thereby realizing the discharging process of the electric heat storage system (1-2);
[0021] Or / and the solar thermal energy is heated by the distributed light heat collection device (1-9) to form a high-temperature working medium, and the high-temperature working medium enters the heat storage system (1-10) through the high-temperature working medium pipeline (1-13) for storage;
[0022] The heat storage system is composed of the heat storage system (1-10) and the electric heat storage system (1-2);
[0023] The generation process of the cold source and the heat source: a. The high-temperature working medium stored in the electric heat storage system (1-2) enters the cold and heat source system (1-6) through the high-temperature working medium pipeline (1-13), and exchanges heat with water in the cold and heat source system (1-6) to form water vapor, and the water vapor enters the heat and cold conversion equipment (such as lithium bromide equipment) in the cold and heat source system (1-6) to form a cold source, or exchanges heat with water in the cold and heat source system (1-6) to form a heat source;
[0024] b. The high-temperature working medium stored in the heat storage system (1-10) enters the cold and heat source system (1-6) through the high-temperature working medium pipeline (1-13), and exchanges heat with water in the cold and heat source system (1-6) to form water vapor, and the water vapor enters the heat and cold conversion equipment (such as lithium bromide equipment) in the cold and heat source system (1-6) to form a cold source, or exchanges heat with water in the cold and heat source system (1-6) to form a heat source;
[0025] c. In the steam power generation system (1-3), after generating electricity, the high-temperature and high-pressure water vapor becomes exhaust steam, and the exhaust steam enters the cold and heat source system (1-6) through the heat pipeline (1-14) to form a heat source;
[0026] The working principle of the air-to-water system is as follows: during the day, water in the desert is evaporated into the air, and as the temperature decreases at night, the water vapor content in the air gradually increases. The air rich in water vapor enters the air-to-water system (1-11) under the action of the fan. The cold source in the cold-heat source system (1-6) enters the air-to-water system (1-11) through the heat pipe (1-14). The air rich in water vapor is greatly cooled in the air-to-water system (1-11) by the cold source from the cold-heat source system (1-6), so that the water vapor is condensed from the air rich in water vapor to form condensed water. The condensed water enters the suitable energy environment equipment system (1-7) through the water pipe (1-15).
[0027] The suitable energy environment equipment system (1-7) and the suitable environment area (1-8) form a suitable energy environment system.
[0028] The suitable energy environment equipment system (1-7) includes cold-heat source heat exchange equipment, air source heat pump, fan, gas separation system equipment, sunlight decomposition system equipment, light system equipment, sound system equipment, artificial rainfall system equipment, environmental atmosphere component adjustment system equipment, fire fighting system equipment, monitoring system equipment and intelligent control system, etc. The suitable environment in the suitable environment area (1-8) is realized through the equipment in the suitable energy environment equipment system (1-7).
[0029] Various sensors and monitoring instruments are arranged in the suitable environment area (1-8) to feed back the environmental information parameters in the suitable environment area (1-8) to the intelligent control system of the equipment in the suitable energy environment equipment system (1-7), so as to realize intelligent control of the temperature, humidity, air pressure, light mode, sound mode, wind mode and rain mode of the environment in the suitable environment area (1-8), and form an environment suitable for plant growth, breeding animals or human life.
[0030] A kind of intelligent desert stock farming comprehensive industry system, characterized in that:
[0031] The intelligent desert stock farming comprehensive industry system includes at least one stock farming comprehensive industry production area (13) and at least one cattle or / and sheep breeding area (8).
[0032] The stock farming comprehensive industry production area (13) is built near the highway (12); the cattle or / and sheep breeding area (8) is built adjacent to the stock farming comprehensive industry production area (13).
[0033] The cattle or / and sheep breeding area (8) is provided with at least one intelligent automatic feeding area (7), at least one photovoltaic power generation system (9), at least one wind power generation system (10) and at least one fence (11).
[0034] The fence (11) is built along the periphery of the cattle or / and sheep breeding area (8); the wind power generation system (10) is built close to the fence (11); the photovoltaic power generation system (9) is scattered in the cattle or / and sheep breeding area (8) or / and the integrated industry production area (13); the intelligent automatic feeding area (7) is arranged in the cattle or / and sheep breeding area (8) to facilitate the cattle or / and sheep to eat; the intelligent automatic feeding area (7) is connected with the suitable soilless cultivation pasture factory (2) through the intelligent automatic feeding system; the food in the intelligent automatic feeding area (7) comes from the suitable soilless cultivation pasture factory (2); the cattle or / and sheep breeding area (8) is planted with suitable crops; the manure of the cattle or / and sheep is discharged in the cattle or / and sheep breeding area (8) to improve the adaptability of the soil in the breeding area; the cattle or / and sheep are provided with digital tags or / and sensors, and the intelligent pasture management system collects, analyzes and stores various information parameters of the cattle or / and sheep; after the AI artificial intelligence expert system is processed, the feeding rules and breeding measures are optimized, and the cattle or / and sheep are scientifically bred in a pure green and pollution-free manner.
[0035] The integrated industry production area (13) comprises at least one green suitable energy environment system (1), at least one suitable soilless or soil cultivation pasture factory (2),
[0036] Or / and at least one external pasture factory (6),
[0037] Or / and at least one slaughtering factory (3), cold storage (4) or / and meat food factory (5);
[0038] In the integrated industry production area (13), the green suitable energy environment system (1), the external pasture factory (6), the slaughtering factory (3), the cold storage (4) or / and the meat food factory (5) are arranged close to the highway (12); the suitable soilless cultivation pasture factory (2) is built close to the cattle or / and sheep breeding area (8); the suitable soilless cultivation pasture factory (2) is connected with the intelligent automatic feeding area (7) through the intelligent automatic feeding system.
[0039] Compared with the prior art, the utility model patent has the following advantages and outstanding technical effects:
[0040] (1) The problem of local use of desert photovoltaic, wind power and other green electricity is solved, and it is possible to build an oasis in the desert;
[0041] (2) Higher efficient and more economically valuable use of desert photovoltaic, wind power and other green electricity is realized;
[0042] (3) Desert photovoltaic and wind power are converted into a livable environment, and the required cold and heat and electricity and other energy modes are provided for the livable environment, which makes it possible to develop various forms of economic industries in the environment, thereby achieving considerable economic benefits and realizing a new mode of sand control that is benign and sustainable. BRIEF DESCRIPTION OF DRAWINGS
[0043] Figure 1 is a schematic diagram of a green desert livable energy environment system;
[0044] Figure 2 is a schematic diagram of a comprehensive desert pasture industry system;
[0045] In the figure: 1-1, green electricity; 1-2, electric heat storage system; 1-3, steam power generation system; 1-4, power transmission and distribution system; 1-5, external power grid; 1-6, cold and heat source system; 1-7, livable energy environment equipment system; 1-8, livable environment area; 1-9, distributed light and heat collection device; 1-10, heat storage system; 1-11, air water production system; 1-12, cable; 1-13, high-temperature working medium pipeline; 1-14, heat pipeline; 1-15, water pipeline; 1-16, livable energy environment pipeline;
[0046] 1, green livable energy environment system; 2, soilless pasture cultivation factory; 3, slaughter factory; 4, cold storage; 5, meat food factory; 6, external pasture factory; 7, intelligent automatic feeding area; 8, cattle or / and sheep breeding area; 9, photovoltaic power generation system; 10, wind power generation system; 11, fence; 12, highway; 13, comprehensive pasture industry production area. DETAILED DESCRIPTION
[0047] The present application will be further described below in combination with the drawings and specific embodiments as follows:
[0048] The application discloses a wisdom desert pasture comprehensive industry system, and relates to the technical route for desert control by using the wisdom desert pasture comprehensive industry system.
[0049] As Figure 1 A composition diagram of the wisdom desert green livable energy environment system is shown.
[0050] The wisdom desert green livable energy environment system comprises green electricity (1-1), an electric heat storage system (1-2), a steam power generation system (1-3), a power transmission and distribution system (1-4), a cold and heat source system (1-6), a livable energy environment equipment system (1-7), a livable environment area (1-8), an air water production system (1-11), a distributed light heat collection device (1-9) and a heat storage system (1-10).
[0051] The green electricity (1-1) enters the electric heat storage system (1-2) through a cable (1-12); the electric heat storage system (1-2) is connected with the steam power generation system (1-3) through a high-temperature working medium pipeline (1-13); and the steam power generation system (1-3) is connected with the power transmission and distribution system (1-4) through the cable (1-12).
[0052] The electric heat storage system (1-2) is connected with the cold and heat source system (1-6) through the high-temperature working medium pipeline (1-13); and the steam power generation system (1-3) is connected with the cold and heat source system (1-6) through a heat pipeline (1-14).
[0053] The cold and heat source system (1-6) is connected with the suitable energy environment equipment system (1-7) through a heat pipe (1-14); the power transmission and distribution system (1-4) is connected with the suitable energy environment equipment system (1-7) through a cable (1-12); the suitable energy environment equipment system (1-7) is connected with the suitable energy environment area (1-8) through a suitable energy environment pipe (1-16);
[0054] The cold and heat source system (1-6) is connected with the air water system (1-11) through the heat pipe (1-14); the air water system (1-11) is connected with the suitable energy environment equipment system (1-7) through a water pipe (1-15); the air water system (1-11) can improve the environmental friendliness of the intelligent desert green suitable energy environment system and avoid the extraction of desert underground water.
[0055] The distributed light heat collection device (1-9) is connected with the heat storage system (1-10) through a high-temperature working medium pipe (1-13); the heat storage system (1-10) is connected with the cold and heat source system (1-6) through the high-temperature working medium pipe (1-13); the distributed light heat collection device (1-9) and the heat storage system (1-10) can improve the energy efficiency of the intelligent desert green suitable energy environment system and decouple the thermal-electric correlation of the system. The high-temperature working medium is molten salt.
[0056] The operation mechanism of the intelligent desert green suitable energy environment system is as follows:
[0057] The green electricity (1-1) is wind power generated by a wind turbine or / and photovoltaic power generated by a photovoltaic power generation system; the green electricity (1-1) is transmitted to an external power grid (1-5) or a localized system through the power transmission and distribution system (1-4) through the cable (1-12).
[0058] The energy storage process of the electric heat storage system (1-2) is as follows: when the external power grid (1-5) cannot consume the green electricity (1-1), the green electricity (1-1) is converted into heat energy in the electric heat storage system (1-2) through the cable (1-12) and stored in the electric heat storage system (1-2), so as to realize the energy storage process of the electric heat storage system (1-2).
[0059] The discharging process of the electric heat storage system (1-2): during the time of the electric peak or the electric peak time of the external power grid (1-5), the high-temperature working medium in the electric heat storage system (1-2) enters the steam power generation system (1-3) through the high-temperature working medium pipeline (1-13); in the steam power generation system (1-3), the high-temperature working medium exchanges heat with water to change the water into high-temperature and high-pressure water vapor, the high-temperature and high-pressure water vapor drives the steam turbine to generate electricity, and the generated electricity is transmitted to the external power grid (1-5) or the local system through the cable through the power transmission and distribution system (1-4), thereby realizing the discharging process of the electric heat storage system (1-2); the high-temperature working medium adopts molten salt;
[0060] Or / and the solar thermal energy is heated by the distributed light heat collection device (1-9) to form a high-temperature working medium, and the high-temperature working medium enters the heat storage system (1-10) through the high-temperature working medium pipeline (1-13) for storage;
[0061] The heat storage system (1-10) and the electric heat storage system (1-2) constitute a heat storage system;
[0062] The generation process of the cold source and the heat source: a. The high-temperature working medium stored in the electric heat storage system (1-2) enters the cold and heat source system (1-6) through the high-temperature working medium pipeline (1-13), and exchanges heat with water in the cold and heat source system (1-6) to form water vapor, and the water vapor enters the heat and cold conversion equipment (such as lithium bromide equipment) in the cold and heat source system (1-6) to form a cold source, or exchanges heat with water in the cold and heat source system (1-6) to form a heat source;
[0063] b. The high-temperature working medium stored in the heat storage system (1-10) enters the cold and heat source system (1-6) through the high-temperature working medium pipeline (1-13), and exchanges heat with water in the cold and heat source system (1-6) to form water vapor, and the water vapor enters the heat and cold conversion equipment (such as lithium bromide equipment) in the cold and heat source system (1-6) to form a cold source, or exchanges heat with water in the cold and heat source system (1-6) to form a heat source;
[0064] c. In the steam power generation system (1-3), after generating electricity, the high-temperature and high-pressure water vapor becomes exhaust steam, and the exhaust steam enters the cold and heat source system (1-6) through the heat pipeline (1-14) to form a heat source;
[0065] The working principle of the air-to-water system is as follows: during the day, water in the desert is evaporated into the air, and as the temperature decreases at night, the water vapor content in the air gradually increases. The air rich in water vapor enters the air-to-water system (1-11) under the action of the fan. The cold source in the cold-heat source system (1-6) enters the air-to-water system (1-11) through the heat pipe (1-14). The air rich in water vapor is greatly cooled in the air-to-water system (1-11) by the cold source from the cold-heat source system (1-6), so that the water vapor is condensed from the air rich in water vapor to form condensed water. The condensed water enters the Yisheng energy environment equipment system (1-7) through the water pipe (1-15);
[0066] The Yisheng energy environment equipment system (1-7) and the Yisheng environment area (1-8) constitute a Yisheng energy environment system.
[0067] The Yisheng energy environment equipment system (1-7) includes cold-heat source heat exchange equipment, air source heat pump, fan, gas separation system equipment, sunlight decomposition system equipment, light system equipment, sound system equipment, artificial rainfall system equipment, environmental atmosphere component adjusting system equipment, fire fighting system equipment, monitoring system equipment and intelligent control system, etc. The Yisheng environment required in the Yisheng environment area (1-8) is realized through the equipment in the Yisheng energy environment equipment system (1-7).
[0068] Various sensors and monitoring instruments are arranged in the Yisheng environment area (1-8) to feed back the environmental information parameters in the Yisheng environment area (1-8) to the intelligent control system of the equipment in the Yisheng energy environment equipment system (1-7), so as to realize intelligent control of the temperature, humidity, air pressure, light mode, sound mode, wind mode and rain mode of the environment in the Yisheng environment area (1-8), and form an environment suitable for plant growth, breeding animals or human life.
[0069] As shown in the composition schematic diagram of the intelligent desert pastoral comprehensive industry system, Figure 2 As shown in the composition schematic diagram of the intelligent desert pastoral comprehensive industry system,
[0070] The intelligent desert pastoral comprehensive industry system includes one pastoral comprehensive industry production area (13) and one cattle or / and sheep breeding area (8). The pastoral comprehensive industry production area is constructed near the highway (12). The cattle or / and sheep breeding area (8) is constructed adjacent to the pastoral comprehensive industry production area (13).
[0071] The cattle or / and sheep breeding area (8) is provided with two intelligent automatic feeding areas (7), one photovoltaic power generation system (9), one wind power generation system (10) and two fences (11).
[0072] The fence (11) is built along the edge of the cattle or / and sheep breeding area (8); the wind power generation system (10) is built close to the fence (11); the photovoltaic power generation system (9) is scattered in the cattle or / and sheep breeding area (8) or / and the integrated industry production area (13); the intelligent automatic feeding area (7) is arranged in the cattle or / and sheep breeding area (8) for the cattle or / and sheep to eat; the intelligent automatic feeding area (7) is connected with the suitable life soilless cultivation of forage grass factory (2) through the intelligent automatic feeding system; the food in the intelligent automatic feeding area (7) comes from the suitable life soilless cultivation of forage grass factory (2);
[0073] The suitable life soilless cultivation of forage grass factory (2) is provided with a forage grass soilless cultivation production line, which produces oats as cattle or / and sheep feed for self use or / and external supply to realize economic benefits;
[0074] The cattle or / and sheep breeding area (8) is planted with crops suitable for growth; the manure of the cattle or / and sheep is discharged in the cattle or / and sheep breeding area (8) to improve the adaptability of the soil in the breeding area;
[0075] The cattle or / and sheep in the cattle or / and sheep breeding area (8) are provided with digital tags or / and sensors, and the intelligent livestock management system collects, analyzes and stores various information parameters of the cattle or / and sheep, optimizes the feeding rules and breeding measures after being processed by an AI artificial intelligence expert system, and scientifically breeds the cattle or / and sheep in a pure green and pollution-free manner.
[0076] The integrated industry production area (13) includes one green suitable life energy environment system (1), two suitable life soilless cultivation of forage grass factories (2), two external supply forage grass factories (6), one slaughtering factory (3), one cold storage (4) and one meat food factory (5);
[0077] In the integrated industry production area (13), the green suitable life energy environment system (1), the external supply forage grass factory (6), the slaughtering factory (3), the cold storage (4) and the meat food factory (5) are arranged close to the highway (12); the suitable life soilless cultivation of forage grass factory (2) is built close to the cattle or / and sheep breeding area (8); the suitable life soilless cultivation of forage grass factory (2) is connected with the intelligent automatic feeding area (7) through the intelligent automatic feeding system.
[0078] The forage grass soilless cultivation production line produces oats as cattle or / and sheep feed for self use or / and external supply to realize economic benefits; the bred cattle or / and sheep are externally supplied to realize economic benefits; the meat of the cattle or / and sheep and the deep processing food of the meat are externally supplied to realize economic benefits; thus, the economic benefits of sand control are realized, and a new mode of sustainable sand control is formed.
[0079] The above has carried out the specific explanation to one embodiment of the utility model, but the content is only the preferred embodiment of the utility model creation, cannot be identified as for limiting the implementation scope of the utility model. Any simple modification, equivalent change and modification made according to the utility model application scope should still be within the patent coverage of the utility model.
Claims
1. A smart desert livestock integrated industry system, characterized in that: Intelligent desert green livable energy environment system, the intelligent desert green livable energy environment system comprises green electricity (1-1), at least one electric heat storage system (1-2), at least one steam power generation system (1-3), at least one power transmission and distribution system (1-4), at least one cold and heat source system (1-6), at least one livable energy environment equipment system (1-7) and at least one livable environment area (1-8), Or / and at least one air water production system (1-11), Or / and at least one distributed light heat collection device (1-9) and heat storage system (1-10); The green electricity (1-1) enters the electric heat storage system (1-2) through the cable (1-12); the electric heat storage system (1-2) is connected with the steam power generation system (1-3) through the high-temperature working medium pipeline (1-13); the steam power generation system (1-3) is connected with the power transmission and distribution system (1-4) through the cable (1-12); The electric heat storage system (1-2) is connected with the cold and heat source system (1-6) through the high-temperature working medium pipeline (1-13); the steam power generation system (1-3) is connected with the cold and heat source system (1-6) through the heat pipeline (1-14); The cold and heat source system (1-6) is connected with the livable energy environment equipment system (1-7) through the heat pipeline (1-14); the power transmission and distribution system (1-4) is connected with the livable energy environment equipment system (1-7) through the cable (1-12); the livable energy environment equipment system (1-7) is connected with the livable environment area (1-8) through the livable energy environment pipeline (1-16); in the case that the air water production system (1-11) is not arranged, the livable energy environment equipment system (1-7) can draw underground water through a water pump for use; Or / and the cold and heat source system (1-6) is connected with the air water production system (1-11) through the heat pipeline (1-14); the air water production system (1-11) is connected with the livable energy environment equipment system (1-7) through the water pipeline (1-15); the air water production system (1-11) can improve the environmental friendliness of the intelligent desert green livable energy environment system and avoid the drawing of underground water in the desert; Or / and the distributed light heat collection device (1-9) is connected with the heat storage system (1-10) through the high-temperature working medium pipeline (1-13); the heat storage system (1-10) is connected with the cold and heat source system (1-6) through the high-temperature working medium pipeline (1-13); the distributed light heat collection device (1-9) and the heat storage system (1-10) can improve the energy efficiency of the intelligent desert green livable energy environment system and decouple the thermal-electric correlation of the system; The wisdom desert green livable energy environment system is connected with an external power grid (1-5) through a power transmission and distribution system (1-4); in the case that the external power grid (1-5) allows, the external power grid (1-5) can be powered at any time; in particular, the external power grid (1-5) is powered during a power peak or a high peak period; the power from the external power grid (1-5) is used as a guarantee for safe operation of the wisdom desert green livable energy environment system; The wisdom desert green livable energy environment system is particularly used in the field of desert management, and can also be used in the field of non-desert management; The livable energy environment equipment system (1-7) comprises cold and heat source heat exchange equipment, an air source heat pump, a fan, gas separation system equipment, sunlight decomposition system equipment, light system equipment, sound system equipment, artificial rainfall system equipment, environment atmosphere component adjustment system equipment, a fire fighting system, monitoring system equipment and a wisdom control system; the livable environment required in the livable environment area (1-8) is realized through the equipment in the livable energy environment equipment system (1-7).
2. The system according to claim 1, wherein: In the livable environment area (1-8), sensors and monitoring instruments are arranged, and the wisdom control system of the equipment in the livable energy environment equipment system (1-7) is fed back with environment information parameters in the livable environment area (1-8), so that the wisdom control of the temperature, humidity, air pressure, light mode, sound mode, wind mode and rain mode of the environment in the livable environment area (1-8) can be realized, and the environment suitable for plant growth, breeding animals or human life is formed.
Citation Information
Patent Citations
Desert control system for use with photovoltaic power station
CN104025974A
Mobile agricultural greenhouse desertification control method
CN113924900A