CN118058125A - Permeable climate regulation and control and environment purification system - Google Patents

Permeable climate regulation and control and environment purification system Download PDF

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Publication number
CN118058125A
CN118058125A CN202410316272.6A CN202410316272A CN118058125A CN 118058125 A CN118058125 A CN 118058125A CN 202410316272 A CN202410316272 A CN 202410316272A CN 118058125 A CN118058125 A CN 118058125A
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module
energy
weather
control
environment
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许保贵
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    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G15/00Devices or methods for influencing weather conditions
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G7/00Botany in general
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01DMEASURING NOT SPECIALLY ADAPTED FOR A SPECIFIC VARIABLE; ARRANGEMENTS FOR MEASURING TWO OR MORE VARIABLES NOT COVERED IN A SINGLE OTHER SUBCLASS; TARIFF METERING APPARATUS; MEASURING OR TESTING NOT OTHERWISE PROVIDED FOR
    • G01D21/00Measuring or testing not otherwise provided for
    • G01D21/02Measuring two or more variables by means not covered by a single other subclass

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  • Life Sciences & Earth Sciences (AREA)
  • Environmental Sciences (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Biodiversity & Conservation Biology (AREA)
  • Botany (AREA)
  • Ecology (AREA)
  • Forests & Forestry (AREA)
  • Atmospheric Sciences (AREA)
  • Cultivation Of Plants (AREA)

Abstract

The invention belongs to the field of meteorological science, in particular to a climate regulation and environmental purification system with a through phenomenon, which solves the problem that extreme weather cannot be controlled and changed in the prior art, and comprises an energy collection and conversion module, wherein the output end of the energy collection and conversion module is connected with the input end of a control and analysis module, the output end of the control and analysis module is connected with the input end of an energy manipulation and weather control module, the output end of the energy manipulation and weather control module is connected with the input end of an agricultural yield increase and environmental module, the output end of the agricultural yield increase and environmental module is connected with the input end of an experiment verification and monitoring module, the output end of the experiment verification and monitoring module is connected with the input end of a data management library module, and the output end of the data management library module is connected with the input end of a safety and emergency response module.

Description

Permeable climate regulation and control and environment purification system
Technical Field
The invention relates to the technical field of meteorological science, in particular to a ventilation climate control and environmental purification system.
Background
At present, in the field of meteorological science, an attractive technology, namely a permeability phenomenon, appears in recent years, the permeability phenomenon is that energy space fission, compression and amplification are carried out by utilizing a thief nuclear brain wave, extreme weather phenomenon is controlled and changed by decomposing atmospheric water system energy, the technology discovers the potential of the thief nuclear brain wave in changing extreme weather through long-term experiments and researches, the permeability phenomenon is that the water system energy is fissionally and compressed by utilizing the thief nuclear brain wave to connect a matter space and the energy space and enter the energy space, then the precipitation amount is controlled and natural disasters are reduced by decomposing and releasing the water system energy, and by the technology, the precipitation level can be reduced, the influence of extreme weather such as storm, typhoon and the like is reduced, and a new way for changing weather is provided for human society.
In the prior art, although energy collection can detect and convert energy fluctuation in the environment, the energy conversion efficiency is still to be improved, the problem of energy loss exists, the accurate prediction of complex climate conditions and environmental changes is still limited to a certain extent, and although energy density and range can be adjusted by energy manipulation and weather control, the fine control of atmospheric climate conditions is realized, but the emergency response capability to extreme weather events is still to be improved.
Disclosure of Invention
The invention aims to provide a ventilation climate control and environmental purification system, which solves the problem that extreme weather cannot be controlled and changed.
In order to achieve the above purpose, the present invention provides the following technical solutions: the energy collection and conversion module is connected with the input end of the control and analysis module, the output end of the control and analysis module is connected with the input end of the energy manipulation and weather control module, the output end of the energy manipulation and weather control module is connected with the input end of the agricultural yield increasing and environment module, the output end of the agricultural yield increasing and environment module is connected with the input end of the experiment verification and monitoring module, the output end of the experiment verification and monitoring module is connected with the input end of the data management library module, and the output end of the data management library module is connected with the input end of the safety and emergency response module;
The system comprises an energy acquisition and conversion module, a control and analysis module, an energy management and weather control module, an experiment verification and monitoring module, a data management library module and an emergency response module, wherein the energy acquisition and conversion module is used for detecting and receiving energy fluctuation in the environment and converting the energy fluctuation into an energy form available for the system, the control and analysis module is used for analyzing acquired data, formulating an energy management strategy and accurately controlling distribution and flow direction of energy in the system, the energy management and weather control module is used for adjusting energy density and range, realizing fine control on atmospheric weather conditions so as to achieve expected weather effects, the agricultural yield and environment module is used for decomposing carbon dioxide in the atmosphere through energy conversion and optimizing soil conditions so as to improve agricultural yield and improve environmental quality, the experiment verification and monitoring module is used for recording and monitoring experimental data of the crop production effect of the system and evaluating the environmental purification performance of the system, the data management library module is used for storing historical weather control cases, analyzing the data so as to optimize future operation and provide a prediction model, and the safety and emergency response module is used for ensuring the safety of the system operation, evaluating the environmental effects and providing emergency response when the operation does not reach the expected effects.
Preferably, the energy collection and conversion module comprises a chest wave detector module, a heaven eye receiver module, a substance spirit converter module, an energy storage unit module and an energy conversion efficiency module.
Preferably, the chest wave detector module is used for detecting weak energy fluctuation in the environment and capturing trace energy of the brain waves of the thief, the heaven eye receiver module is used for capturing and converting signals from a non-material energy space, the material spirit converter module is used for converting the captured spirit energy into physical energy so as to be convenient for the system to use, the energy storage unit module is used for storing the converted energy and providing stable energy supply when the system needs, and the energy conversion efficiency module is used for monitoring and improving the efficiency of the energy conversion process and ensuring that the energy loss is minimized.
Preferably, the energy manipulation and weather control module comprises an energy distribution control module, a weather influence simulation module, a weather pattern database module, a weather dynamic detection module and an emergency intervention execution module.
Preferably, the energy distribution control module decides and adjusts the distribution and flow direction of energy to realize accurate manipulation of weather phenomena, the weather effect simulation module is used for simulating potential influence of energy operation on weather, predicting weather change after manipulation, the weather pattern database module is used for collecting and analyzing historical weather data and providing a reference model for weather intervention, the weather dynamic detection module is used for continuously monitoring weather conditions in the environment and providing real-time data for energy operation, and the emergency intervention execution module is used for automatically starting preset intervention measures to lighten influence when potential extreme weather events are predicted.
Preferably, the agricultural yield increasing and environment module comprises an atmospheric component analysis module, a CO2 decomposition catalyst module, an energy excitation grower module, a soil structure optimizing module and an environment pollution purifying module.
Preferably, the atmospheric component analysis module is used for analyzing components in air, carbon dioxide level and providing data support for the CO2 decomposition catalyst, the CO2 decomposition catalyst module accelerates the decomposition of carbon dioxide in the atmosphere through energy catalysis, reduces greenhouse effect, the energy excitation grower module promotes crop growth by using converted energy, improves yield and improves quality, the soil structure optimization module is used for adjusting soil density and structure to enable the soil structure to be more suitable for crop growth, and the environmental pollution purification module is used for removing harmful substances in the atmosphere, purifying ecological environment and providing more suitable growth conditions.
Compared with the prior art, the invention has the following beneficial effects:
1. According to the invention, through the energy manipulation and weather control module of the ventilation climate control and environment purification system, the system can accurately regulate and control weather and weather conditions, and through the synergistic effect of the modules such as energy distribution control, weather influence simulation, weather pattern database, weather dynamic detection and the like, the system can control factors such as temperature, humidity, air pressure and the like, thereby achieving the expected weather effect and realizing the regulation and control of agriculture and weather.
2. The agricultural yield and environment module of the ventilation climate control and environment purification system can improve the agricultural yield and the environment quality by utilizing energy conversion, and the system can improve the yield and the quality of crops and improve the soil condition and the environment quality and realize the effects of sustainable development of agriculture and ecological environment protection by analyzing the atmospheric components, accelerating the decomposition of carbon dioxide, promoting the growth of crops, optimizing the soil structure and other modules.
Drawings
FIG. 1 is a block diagram of a permeance climate control and environmental purification system;
FIG. 2 is a block diagram of an energy management and weather control module.
Detailed Description
The following description of the embodiments of the present invention will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present invention, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
Example 1
Referring to fig. 1-2, the permeable climate control and environmental purification system comprises an energy collection and conversion module 1, wherein the output end of the energy collection and conversion module 1 is connected with the input end of a control and analysis module 2, the output end of the control and analysis module 2 is connected with the input end of an energy manipulation and weather control module 3, the output end of the energy manipulation and weather control module 3 is connected with the input end of an agricultural yield and environmental module 4, the output end of the agricultural yield and environmental module 4 is connected with the input end of an experiment verification and monitoring module 5, the output end of the experiment verification and monitoring module 5 is connected with the input end of a data management library module 6, the output end of the data management library module 6 is connected with the input end of a safety and emergency response module 7, the energy collection and conversion module 1 is used for detecting and receiving energy fluctuation in the environment and converting the energy fluctuation into an energy form usable for the system, the control and analysis module 2 is used for analyzing the collected data, formulating an energy control strategy and precisely controlling the distribution and flow direction of energy in the system, the energy control and weather control module 3 is used for adjusting the energy density and range, realizing the fine control on the atmospheric weather conditions so as to achieve the expected weather effect, the agricultural yield increase and environment module 4 is used for decomposing the carbon dioxide in the atmosphere through energy conversion and optimizing the soil conditions so as to improve the agricultural yield and the environmental quality, the experimental verification and monitoring module 5 is used for recording and monitoring the experimental data of the effect of the system on the crop production and evaluating the environmental purification performance of the system, the data management library module 6 is used for storing historical weather control cases, analyzing the data so as to optimize future operation and providing a prediction model, the safety and emergency response module 7 is used for ensuring the safety of the operation of the system, the environmental impact is evaluated and an emergency response is provided when the operation fails to reach the desired effect.
Referring to fig. 1, the energy collection and conversion module 1 includes a chest detector module 11, a heaven eye receiver module 12, a physical-to-mental converter module 13, an energy storage unit module 14, and an energy conversion efficiency module 15.
Referring to fig. 1, a chest wave detector module 11 is used for detecting weak energy fluctuation in the environment, capturing trace energy of brain waves of a thief, a heaven eye receiver module 12 is used for capturing and converting signals from a non-material energy space, a material mental converter module 13 is used for converting the captured mental energy into physical energy so as to facilitate system use, an energy storage unit module 14 is used for storing the converted energy, a stable energy supply is provided when the system needs, an energy conversion efficiency module 15 is used for monitoring and improving the efficiency of the energy conversion process, and energy loss is ensured to be minimized.
The specific implementation process of the invention is as follows: firstly, the energy collection and conversion module 1 senses weak energy fluctuation in the environment through the chest wave body detector module 11 and captures the weak energy fluctuation, then the astronomical receiver module 12 receives and converts signals from a non-material energy space, further, the material mental converter module 13 is responsible for converting the captured mental energy into physical energy so as to be convenient for the system to use, the energy storage unit module 14 stores the converted energy and provides stable energy supply when the system needs, and finally, the energy conversion efficiency module 15 monitors and improves the efficiency of the energy conversion process and ensures that the energy loss is minimized;
next, the control and analysis module 2 receives the output from the energy collection and conversion module 1, analyzes and controls the output, and according to the collected data, formulates an energy manipulation strategy, precisely controls the distribution and flow direction of energy in the system to achieve the expected effect, the energy manipulation and weather control module 3 adjusts the energy density and range according to the output of the control and analysis module 2, realizes the fine control of the atmospheric climate condition, the energy distribution control module 31 determines and adjusts the distribution and flow direction of energy to realize the precise manipulation of the climate phenomenon, the weather influence simulation module 32 simulates the potential influence of the energy manipulation on the climate, predicts the weather change after manipulation, the weather pattern database module 33 collects and analyzes historical weather data, provides a reference model for the weather intervention, and meanwhile, the weather dynamic detection module 34 continuously monitors the weather conditions in the environment, provides real-time data for the energy manipulation, and the emergency intervention execution module 35 automatically starts preset intervention measures to reduce the influence when predicting the potential extreme climate event;
Further, the agricultural yield and environmental module 4 decomposes carbon dioxide in the atmosphere through energy conversion and optimizes soil conditions to promote agricultural yield and improve environmental quality, the atmospheric component analysis module 41 analyzes components in the air and carbon dioxide levels to provide data support for the CO2 decomposition catalyst, the CO2 decomposition catalyst module 42 accelerates decomposition of carbon dioxide in the atmosphere through energy catalysis, reduces greenhouse effect, the energy excitation grower module 43 promotes crop growth by using the converted energy, improves yield and improves quality, the soil structure optimization module 44 adjusts soil density and structure to make it more suitable for crop growth, the environmental pollution purification module 45 removes harmful substances in the atmosphere, purifies ecological environment, and provides more suitable growth conditions.
In addition, the experimental verification and monitoring module 5 records and monitors experimental data of the effect of the system on crop production and evaluates the environmental cleaning performance of the system, the data management library module 6 stores historical climate control cases, analyzes the data to optimize future operation and provides a predictive model, and the safety and emergency response module 7 ensures the safety of the system operation, evaluates environmental impact, and provides an emergency response when the operation does not reach the expected effect.
Example 2
As shown in fig. 2, based on the same concept as embodiment 1 described above, the present embodiment also proposes that the energy manipulation and weather control module 3 includes an energy distribution control module 31, a weather effect simulation module 32, a weather pattern database module 33, a weather dynamic detection module 34, and an emergency intervention execution module 35.
As shown in fig. 2, the energy distribution control module 31 determines and adjusts the distribution and flow direction of energy to achieve accurate manipulation of the climate phenomenon, the weather effect simulation module 32 is used to simulate potential impact of energy operation on the climate, predict the weather change after manipulation, the weather pattern database module 33 is used to collect and analyze historical climate data, provide a reference model for weather intervention, the weather dynamic detection module 34 is used to continuously monitor weather conditions in the environment, provide real-time data for energy operation, and the emergency intervention execution module 35 is used to automatically initiate preset intervention measures to mitigate the impact when potential extreme weather events are predicted.
The specific implementation process of the invention is as follows: first, in the energy management and weather control module 3, the energy distribution control module 31 determines and adjusts the distribution and flow direction of energy to realize accurate management of weather phenomena, the weather effect simulation module 32 simulates potential influence of energy operation on weather, predicts weather changes after management, further, the weather pattern database module 33 collects and analyzes historical weather data to provide a reference model for weather intervention, the weather dynamic detection module 34 continuously monitors weather conditions in the environment, provides real-time data for energy operation, and the emergency intervention execution module 35 automatically starts preset intervention measures to mitigate the influence when potential extreme weather events are predicted.
Example 3
As shown in fig. 1, based on the same concept as that of the above-described embodiment 1, the present embodiment also proposes that the agricultural yield and environment module 4 includes an atmospheric component analysis module 41, a CO2 decomposition catalyst module 42, an energy excitation grower module 43, a soil structure optimization module 44, and an environmental pollution purification module 45.
As shown in fig. 1, the atmospheric component analysis module 41 is configured to analyze components in air, carbon dioxide levels, provide data support for the CO2 decomposition catalyst, the CO2 decomposition catalyst module 42 accelerates decomposition of carbon dioxide in the atmosphere by energy catalysis, reduces greenhouse effect, the energy excitation grower module 43 promotes crop growth by using the converted energy, improves yield and quality, the soil structure optimization module 44 is configured to adjust soil density and structure so as to be more suitable for crop growth, the environmental pollution purification module 45 is configured to remove harmful substances in the atmosphere, purify ecological environment, and provide more suitable growth conditions.
The specific implementation process of the invention is as follows: in the agricultural yield-increasing and environment module 4, the atmospheric component analysis module 41 analyzes components and carbon dioxide levels in the air, data support is provided for the CO2 decomposition catalyst, the CO2 decomposition catalyst module 42 accelerates the decomposition of carbon dioxide in the atmosphere through energy catalysis, the greenhouse effect is reduced, the energy excitation grower module 43 promotes the growth of crops by using the converted energy, the yield is improved, the quality is improved, the soil structure optimization module 44 adjusts the soil density and structure, so that the soil structure is more suitable for the growth of crops, the environmental pollution purification module 45 removes harmful substances in the atmosphere, the ecological environment is purified, and more suitable growth conditions are provided.
Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (7)

1. Penetrating phenomenon climate regulation and control and environmental purification system, including energy acquisition and conversion module (1), its characterized in that: the output end of the energy collection and conversion module (1) is connected with the input end of the control and analysis module (2), the output end of the control and analysis module (2) is connected with the input end of the energy manipulation and weather control module (3), the output end of the energy manipulation and weather control module (3) is connected with the input end of the agricultural yield increase and environment module (4), the output end of the agricultural yield increase and environment module (4) is connected with the input end of the experiment verification and monitoring module (5), the output end of the experiment verification and monitoring module (5) is connected with the input end of the data management library module (6), and the output end of the data management library module (6) is connected with the input end of the safety and emergency response module (7);
The system comprises an energy acquisition and conversion module (1) for detecting and receiving energy fluctuation in the environment and converting the energy fluctuation into an energy form usable for the system, a control and analysis module (2) for analyzing acquired data, formulating an energy manipulation strategy and precisely controlling the distribution and flow direction of energy in the system, an energy manipulation and weather control module (3) for adjusting energy density and range, realizing fine control on atmospheric weather conditions so as to achieve expected weather effects, an agricultural yield increasing and environment module (4) for decomposing carbon dioxide in the atmosphere through energy conversion and optimizing soil conditions so as to improve agricultural yield and environmental quality, an experimental verification and monitoring module (5) for recording and monitoring experimental data of the effect of the system on crop production and evaluating the environmental purification performance of the system, and a data management library module (6) for storing historical weather control cases, analyzing the data so as to optimize future operation and providing a prediction model, and an emergency response module (7) for ensuring the safety of system operation, evaluating the environmental effects and providing expected effects when the emergency operation does not reach the expected effects.
2. The through-phenomenon climate control and environmental purification system according to claim 1, wherein: the energy collection and conversion module (1) comprises a chest wave detector module (11), a sky-eye receiver module (12), a material spirit converter module (13), an energy storage unit module (14) and an energy conversion efficiency module (15).
3. The through-phenomenon climate control and environmental purification system according to claim 2, wherein: the chest wave detector module (11) is used for detecting weak energy fluctuation in the environment and capturing trace energy of the brain waves of the thieves, the heaven eye receiver module (12) is used for capturing and converting signals from a non-material energy space, the material mental converter module (13) is used for converting the captured mental energy into physical energy so as to be convenient for the system to use, the energy storage unit module (14) is used for storing the converted energy and providing stable energy supply when the system needs, and the energy conversion efficiency module (15) is used for monitoring and improving the efficiency of the energy conversion process and ensuring that the energy loss is minimized.
4. A through-phenomenon climate control and environmental purification system according to claim 3, wherein: the energy manipulation and weather control module (3) comprises an energy distribution control module (31), a weather influence simulation module (32), a weather pattern database module (33), a weather dynamic detection module (34) and an emergency intervention execution module (35).
5. The through-phenomenon climate control and environmental purification system according to claim 4, wherein: the energy distribution control module (31) decides and adjusts the distribution and flow direction of energy to realize accurate manipulation of weather phenomena, the weather effect simulation module (32) is used for simulating potential influence of energy operation on weather and predicting weather change after manipulation, the weather pattern database module (33) is used for collecting and analyzing historical weather data and providing a reference model for weather intervention, the weather dynamic detection module (34) is used for continuously monitoring weather conditions in the environment and providing real-time data for energy operation, and the emergency intervention execution module (35) is used for automatically starting preset intervention measures to lighten the influence when potential extreme weather events are predicted.
6. The through-phenomenon climate control and environmental purification system according to claim 5, wherein: the agricultural yield increasing and environment module (4) comprises an atmospheric component analysis module (41), a CO2 decomposition catalyst module (42), an energy excitation grower module (43), a soil structure optimizing module (44) and an environment pollution purifying module (45).
7. The through-phenomenon climate control and environmental purification system according to claim 6, wherein: the atmosphere component analysis module (41) is used for analyzing components in air and carbon dioxide level, data support is provided for the CO2 decomposition catalyst, the CO2 decomposition catalyst module (42) accelerates decomposition of carbon dioxide in the atmosphere through energy catalysis, greenhouse effect is reduced, the energy excitation grower module (43) promotes crop growth by using converted energy, yield is improved, quality is improved, the soil structure optimization module (44) is used for adjusting soil density and structure to enable the soil structure to be more suitable for crop growth, the environmental pollution purification module (45) is used for removing harmful substances in the atmosphere, purifying ecological environment and providing more suitable growth conditions.
CN202410316272.6A 2024-03-20 2024-03-20 Permeable climate regulation and control and environment purification system Pending CN118058125A (en)

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CN202410316272.6A CN118058125A (en) 2024-03-20 2024-03-20 Permeable climate regulation and control and environment purification system

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Application Number Priority Date Filing Date Title
CN202410316272.6A CN118058125A (en) 2024-03-20 2024-03-20 Permeable climate regulation and control and environment purification system

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CN118058125A true CN118058125A (en) 2024-05-24

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