Micro intelligent fire extinguishing control system and method
Through the combination of micro mobile fire extinguishing deformation bodies, infrared sensing monitoring and fire situation analysis and prediction cloud platforms, the precise fire extinguishing problem of micro precision components and microstructured items is solved, and efficient and accurate fire extinguishing control is achieved.
Patent Information
- Application Number
- CN202211546609.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-12-05
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2042-12-05
AI Technical Summary
The prior art is difficult to accurately deliver the fire point source locations of micro precision components and microstructured items, and it is difficult to monitor the local temperature distribution of the fire point source locations, predict the fire situation and spread trends of the fire point source, making it difficult to achieve accurate tracking and blocking of fire extinguishing control.
The micro mobile fire extinguishing deformation subsystem, fire point root sensing and tracking subsystem and the cloud-based rapid analysis and prediction subsystem are adopted, and the micro-intelligent fire extinguishing deformation control subsystem is combined, through the micro-deformable combined structure, infrared sensing monitoring and fire situation analysis and prediction cloud platform, the precise delivery of fire extinguishing materials, tracking of fire point roots and prediction and blocking of spread trends.
It realizes accurate fire extinguishing of micro precision components and microstructured items, uses fire extinguishing materials more accurately, and extinguishes fire faster and thoroughly, reducing secondary damage to fire points and surrounding areas, and improving the fire extinguishing effect.
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Figure CN115999102B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of micro intelligent precision control for fire extinguishing, and more specifically, to a micro intelligent fire extinguishing control system and method. Background Art
[0002] At present, it is usually difficult to detect the burning state of the fire point of micro precision components and micro structured articles from the outside. It is difficult to intuitively judge the fire situation at the root of the fire point, and it is even more difficult to predict the spread trend of the fire point through conventional experience. It is basically difficult to carry out precise fire point root tracking and fire extinguishing for fire control. These problems are difficult to solve by conventional means of the existing technology. The problems existing in the current technology include: how to accurately deliver the fire extinguishing material to the root of the fire point, how to monitor the local temperature distribution at the fire occurrence site to track the root of the fire point, how to obtain the fire situation analysis result of the fire point root and the cloud analysis result of the fire point spread trend, how to read the fire situation analysis result of the fire point root and the cloud analysis result of the fire point spread trend to intelligently control the deformation and movement of the micro mobile fire extinguishing deformable body to reach the root of the fire point and the fire point spread trend site, and trigger the micro mobile fire extinguishing deformable body to accurately extinguish the fire and block the fire point spread trend, etc. Therefore, it is necessary to propose a micro intelligent fire extinguishing control system and method to at least partially solve the problems existing in the existing technology. Summary of the Invention
[0003] A series of simplified concepts are introduced in the Summary of the Invention section, which will be further described in detail in the Detailed Description section; the Summary of the Invention section of the present invention does not mean to attempt to define the key features and essential technical features of the claimed technical solution, nor does it mean to attempt to determine the protection scope of the claimed technical solution.
[0004] To at least partially solve the above problems, the present invention provides a micro intelligent fire extinguishing control system, including:
[0005] A micro mobile fire extinguishing deformable body subsystem, which forms a micro mobile fire extinguishing deformable body with fire extinguishing materials through a micro deformable combined structure, and combines and deforms according to the pore shape at the fire point to accurately deliver the fire extinguishing materials to the root of the fire point;
[0006] A fire point root sensing and tracking subsystem, which monitors the local temperature distribution at the fire occurrence site through infrared sensing to track the root of the fire point;
[0007] A cloud rapid fire situation analysis and prediction subsystem, which rapidly analyzes the fire situation at the root of the fire point and rapidly predicts the fire point spread trend site through a fire situation analysis and prediction cloud platform to obtain the fire situation analysis result of the fire point root and the cloud analysis result of the fire point spread trend;
[0008] The micro-intelligent fire extinguishing deformation control subsystem reads the fire situation analysis results at the root of the fire point and the cloud analysis results of the fire spread trend through a microprocessor and intelligent modules, intelligently controls the deformation of the micro mobile fire extinguishing deformable body and moves it to the root part of the fire point and the fire spread trend part, triggers the micro mobile fire extinguishing deformable body to accurately extinguish the fire, and blocks the fire spread trend.
[0009] Preferably, the micro mobile fire extinguishing deformable body subsystem includes:
[0010] The micro mobile fire extinguishing deformable body subsystem uses a micro magnetic fluid fire extinguishing material containing capsule to load the fire extinguishing material to form a micro deformable combined structure;
[0011] The deformation structure fire extinguishing material assembly subsystem forms a micro mobile fire extinguishing deformable body with the fire extinguishing material by using the micro deformable combined structure and a transformable moving magnetic field;
[0012] The combined deformation precise delivery subsystem performs combined deformation according to the pore shape of the fire point part and precisely delivers the fire extinguishing material to the root part of the ignition point.
[0013] Preferably, the fire point root sensing and tracking subsystem includes:
[0014] The multi-dimensional distributed fire point scanning subsystem sets up a cross-sector infrared scanning sensing detection network for multi-dimensional distributed fire point scanning and positioning;
[0015] The temperature radiation induction monitoring subsystem, based on the multi-dimensional distributed fire point scanning and positioning, monitors the local temperature distribution of the fire occurrence part through the temperature radiation induction of infrared sensing;
[0016] The fire temperature distribution tracking subsystem tracks the root part of the fire point according to the local temperature distribution of the fire occurrence part.
[0017] Preferably, the cloud-based rapid fire situation analysis and prediction subsystem includes:
[0018] The fire situation state parameter simulation subsystem obtains the fire situation state parameter model of the fire point root part through the simulation training of the fire situation state parameters of the fire point root part, and transmits the fire situation state parameter model of the fire point root part to the fire situation analysis and prediction cloud platform;
[0019] The cloud platform fire point rapid analysis subsystem quickly analyzes the fire situation at the root of the fire point through the fire situation analysis and prediction cloud platform to obtain the fire situation analysis results at the root of the fire point;
[0020] The fire point spread trend prediction subsystem inputs the fire situation analysis results at the root of the fire point into the fire situation state parameter model of the fire point root part, quickly predicts the fire point spread trend part, and obtains the fire point spread trend cloud analysis results.
[0021] Preferably, the micro-intelligent fire extinguishing deformation control subsystem includes:
[0022] The fire situation analysis result reading subsystem reads the fire origin situation analysis result and the cloud analysis result of the fire spread trend through a microprocessor;
[0023] The intelligent control subsystem for the fire extinguishing deformable body intelligently controls the deformation and movement of the micro mobile fire extinguishing deformable body to reach the fire origin part and the fire spread trend part through the intelligent module for controlling the fire extinguishing deformable body of the microprocessor;
[0024] The micro mobile fire extinguishing and blocking subsystem triggers the precise fire extinguishing of the micro mobile fire extinguishing deformable body and blocks the fire spread trend by actively controlling the triggering of the micro mobile fire extinguishing deformable body and the passive thermal triggering of the micro mobile fire extinguishing deformable body.
[0025] The micro intelligent fire extinguishing control method of the present invention includes:
[0026] S100, forming a micro mobile fire extinguishing deformable body from fire extinguishing materials through a micro deformable combined structure, and deforming and combining according to the pore shape of the fire point part to accurately deliver the fire extinguishing materials to the fire origin part;
[0027] S200, monitoring the local temperature distribution of the fire occurrence part through infrared sensing to track the fire origin part;
[0028] S300, quickly analyzing the fire situation of the fire origin part and quickly predicting the fire spread trend part through the fire situation analysis and prediction cloud platform to obtain the fire origin situation analysis result and the cloud analysis result of the fire spread trend;
[0029] S400, reading the fire origin situation analysis result and the cloud analysis result of the fire spread trend through a microprocessor and an intelligent module, intelligently controlling the deformation and movement of the micro mobile fire extinguishing deformable body to reach the fire origin part and the fire spread trend part, triggering the precise fire extinguishing of the micro mobile fire extinguishing deformable body, and blocking the fire spread trend.
[0030] Preferably, S100 includes:
[0031] S101, loading fire extinguishing materials into a micro magnetic fluid fire extinguishing material containing capsule to form a micro deformable combined structure;
[0032] S102, forming a micro mobile fire extinguishing deformable body from fire extinguishing materials through the micro deformable combined structure by using a transformable moving magnetic field;
[0033] S103, deforming and combining according to the pore shape of the fire point part to accurately deliver the fire extinguishing materials to the fire origin part.
[0034] Preferably, S200 includes:
[0035] S201, set up a cross-sector infrared scanning sensing detection network to perform multi-dimensional distributed fire point scanning and positioning;
[0036] S202, based on the multi-dimensional distributed fire point scanning and positioning, use the temperature radiation induction monitored by infrared sensors to monitor the local temperature distribution at the fire occurrence site;
[0037] S203, based on the local temperature distribution at the fire occurrence site, trace the root cause of the fire point.
[0038] Preferably, S300 includes:
[0039] S301, through the simulation training of the fire situation state parameters at the root cause of the fire point, obtain the fire situation state parameter model at the root cause of the fire point, and transmit the fire situation state parameter model at the root cause of the fire point to the fire situation analysis and prediction cloud platform;
[0040] S302, quickly analyze the fire situation at the root cause of the fire point through the fire situation analysis and prediction cloud platform to obtain the fire situation analysis result at the root cause of the fire;
[0041] S303, input the fire situation analysis result at the root cause of the fire into the fire situation state parameter model at the root cause of the fire point to quickly predict the fire spread trend area and obtain the fire spread trend cloud analysis result.
[0042] Preferably, S400 includes:
[0043] S401, through the microprocessor, read the fire situation analysis result at the root cause of the fire and the fire spread trend cloud analysis result;
[0044] S402, through the fire extinguishing deformation body control intelligent module of the microprocessor, intelligently control the deformation and movement of the micro mobile fire extinguishing deformation body to reach the root cause of the fire point and the fire spread trend area;
[0045] S403, trigger the precise fire extinguishing of the micro mobile fire extinguishing deformation body and block the fire spread trend by actively controlling the trigger of the micro mobile fire extinguishing deformation body and the passive thermal trigger of the micro mobile fire extinguishing deformation body.
[0046] The beneficial effects of the technical solution of the present invention are:
[0047] The present invention provides a micro-intelligent fire extinguishing control system and method, including: a micro mobile fire extinguishing deformation subsystem, which forms a micro mobile fire extinguishing deformation body from fire extinguishing materials through a micro deformable combined structure, and combines and deforms according to the pore shape at the fire point to accurately deliver the fire extinguishing materials to the root of the fire point; a fire point root sensing and tracking subsystem, which monitors the local temperature distribution at the fire occurrence site through infrared sensing to track the root of the fire point; a cloud-based rapid fire situation analysis and prediction subsystem, which rapidly analyzes the fire situation at the root of the fire point and quickly predicts the fire spreading trend through a fire situation analysis and prediction cloud platform to obtain the fire situation analysis result at the root of the fire point and the cloud analysis result of the fire spreading trend; a micro-intelligent fire extinguishing deformation control subsystem, which reads the fire situation analysis result at the root of the fire point and the cloud analysis result of the fire spreading trend through a microprocessor and an intelligent module, intelligently controls the deformation and movement of the micro mobile fire extinguishing deformation body to reach the root of the fire point and the fire spreading trend, triggers the micro mobile fire extinguishing deformation body to accurately extinguish the fire, and blocks the fire spreading trend; it can accurately deliver fire extinguishing materials to the micro pores of micro-precision components and micro-structured items; the micro mobile fire extinguishing deformation body has a higher heat insulation performance at the root of the fire point, uses fire extinguishing materials more accurately, extinguishes the fire more quickly and thoroughly, and causes less secondary damage to the fire point and its surrounding areas, greatly improving the fire extinguishing effect of micro-devices and micro-parts.
[0048] For the micro-intelligent fire extinguishing control system and method of the present invention, other advantages, objectives and features of the present invention will be partially reflected by the following description, and will also be understood by those skilled in the art through the research and practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0049] The drawings are used to provide a further understanding of the present invention, and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention, and do not constitute a limitation to the present invention. In the drawings:
[0050] Figure 1 It is a block diagram of the micro-intelligent fire extinguishing control system of the present invention.
[0051] Figure 2 It is a step diagram of the micro-intelligent fire extinguishing control method of the present invention.
[0052] Figure 3 It is a diagram of an embodiment of the micro-intelligent fire extinguishing control method of the present invention. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0053] The following further describes the present invention in detail with reference to the drawings and embodiments, so that those skilled in the art can implement it according to the description in the specification; as Figures 1-3 shown, the present invention provides a micro-intelligent fire extinguishing control system, including:
[0054] The micro mobile fire - fighting deformable subsystem forms a micro mobile fire - fighting deformable body with fire - fighting materials through a micro - deformable combined structure, and combines and deforms according to the pore shape of the fire point part, so as to accurately deliver the fire - fighting materials to the root part of the ignition point;
[0055] The fire - point root sensing and tracking subsystem monitors the local temperature distribution of the fire - occurring part through infrared sensing, and tracks the root part of the fire point;
[0056] The cloud - based rapid fire - situation analysis and prediction subsystem quickly analyzes the fire - situation at the root part of the fire point and quickly predicts the fire - spreading trend part through the fire - situation analysis and prediction cloud platform, obtaining the fire - situation analysis result of the fire - point root and the cloud - analysis result of the fire - spreading trend;
[0057] The micro - intelligent fire - fighting deformation control subsystem reads the fire - situation analysis result of the fire - point root and the cloud - analysis result of the fire - spreading trend through a micro - processor and an intelligent module, intelligently controls the deformation and movement of the micro mobile fire - fighting deformable body to reach the root part of the fire point and the fire - spreading trend part, triggers the micro mobile fire - fighting deformable body to accurately extinguish the fire, and blocks the fire - spreading trend.
[0058] The working principle of the above - mentioned technical solution is as follows: The present invention provides a micro - intelligent fire - fighting control system, including:
[0059] The micro mobile fire - fighting deformable subsystem forms a micro mobile fire - fighting deformable body with fire - fighting materials through a micro - deformable combined structure, and combines and deforms according to the pore shape of the fire point part, so as to accurately deliver the fire - fighting materials to the root part of the ignition point;
[0060] The fire - point root sensing and tracking subsystem monitors the local temperature distribution of the fire - occurring part through infrared sensing, and tracks the root part of the fire point;
[0061] The cloud - based rapid fire - situation analysis and prediction subsystem quickly analyzes the fire - situation at the root part of the fire point and quickly predicts the fire - spreading trend part through the fire - situation analysis and prediction cloud platform, obtaining the fire - situation analysis result of the fire - point root and the cloud - analysis result of the fire - spreading trend;
[0062] The micro - intelligent fire - fighting deformation control subsystem reads the fire - situation analysis result of the fire - point root and the cloud - analysis result of the fire - spreading trend through a micro - processor and an intelligent module, intelligently controls the deformation and movement of the micro mobile fire - fighting deformable body to reach the root part of the fire point and the fire - spreading trend part, triggers the micro mobile fire - fighting deformable body to accurately extinguish the fire, and blocks the fire - spreading trend.
[0063] The beneficial effects of the above technical solution are as follows: The present invention provides a micro-intelligent fire extinguishing control system, including: a micro-mobile fire extinguishing deformation body subsystem, which forms a micro-mobile fire extinguishing deformation body from fire extinguishing materials through a micro-deformable combined structure, and combines and deforms according to the pore shape at the fire point to accurately deliver the fire extinguishing materials to the root of the fire point; a fire point root sensing and tracking subsystem, which monitors the local temperature distribution at the fire occurrence site through infrared sensing to track the root of the fire point; a cloud-based rapid fire situation analysis and prediction subsystem, which quickly analyzes the fire situation at the root of the fire point and quickly predicts the fire spread trend site through a fire situation analysis and prediction cloud platform to obtain the fire situation analysis result at the root of the fire point and the cloud analysis result of the fire spread trend; a micro-intelligent fire extinguishing deformation control subsystem, which reads the fire situation analysis result at the root of the fire point and the cloud analysis result of the fire spread trend through a micro-processor and an intelligent module, intelligently controls the deformation and movement of the micro-mobile fire extinguishing deformation body to reach the root of the fire point and the fire spread trend site, triggers the micro-mobile fire extinguishing deformation body to accurately extinguish the fire, and blocks the fire spread trend; it can accurately deliver fire extinguishing materials to the micro-pores of micro-precision components and micro-structured items; the micro-mobile fire extinguishing deformation body has a higher heat insulation performance at the root of the fire point, the use of fire extinguishing materials is more accurate, the fire extinguishing is faster and more thorough, and the secondary damage to the fire point and its surroundings during fire extinguishing is smaller, greatly improving the fire extinguishing effect of micro-devices and micro-parts.
[0064] In one embodiment, the micro-mobile fire extinguishing deformation body subsystem includes:
[0065] A micro-mobile fire extinguishing deformation body subsystem, which uses a micro-magnetic fluid fire extinguishing material containing capsule to load fire extinguishing materials to form a micro-deformable combined structure;
[0066] A deformation structure fire extinguishing material assembly subsystem, through the micro-deformable combined structure, uses a changing moving magnetic field to form a micro-mobile fire extinguishing deformation body from fire extinguishing materials;
[0067] A combined deformation and accurate delivery subsystem, which combines and deforms according to the pore shape at the fire point to accurately deliver the fire extinguishing materials to the root of the fire point.
[0068] The working principle of the above technical solution is as follows: The micro-mobile fire extinguishing deformation body subsystem includes: a micro-mobile fire extinguishing deformation body subsystem, which uses a micro-magnetic fluid fire extinguishing material containing capsule to load fire extinguishing materials to form a micro-deformable combined structure; a deformation structure fire extinguishing material assembly subsystem, through the micro-deformable combined structure, uses a changing moving magnetic field to form a micro-mobile fire extinguishing deformation body from fire extinguishing materials; a combined deformation and accurate delivery subsystem, which combines and deforms according to the pore shape at the fire point to accurately deliver the fire extinguishing materials to the root of the fire point.
[0069] The beneficial effects of the above technical solution are as follows: The micro mobile fire extinguishing deformable subsystem uses a micro magnetic fluid fire extinguishing material containing capsule to load the fire extinguishing material to form a micro deformable combined structure; the deformable structure fire extinguishing material assembly subsystem uses the micro deformable combined structure and transforms the moving magnetic field to form a micro mobile fire extinguishing deformable body with the fire extinguishing material; the combined deformation precise delivery subsystem performs combined deformation according to the pore shape of the fire point part and precisely delivers the fire extinguishing material to the root part of the ignition point.
[0070] In one embodiment, the fire point root sensing and tracking subsystem includes:
[0071] The multi-dimensional distributed fire point scanning subsystem sets up a cross-sector infrared scanning sensing detection network to perform multi-dimensional distributed fire point scanning and positioning;
[0072] The temperature radiation induction monitoring subsystem, based on the multi-dimensional distributed fire point scanning and positioning, monitors the local temperature distribution of the fire occurrence part through the temperature radiation induction monitored by infrared sensing;
[0073] The fire temperature distribution tracking subsystem tracks the root part of the fire point according to the local temperature distribution of the fire occurrence part.
[0074] The working principle of the above technical solution is as follows: The fire point root sensing and tracking subsystem includes: The multi-dimensional distributed fire point scanning subsystem sets up a cross-sector infrared scanning sensing detection network to perform multi-dimensional distributed fire point scanning and positioning; the temperature radiation induction monitoring subsystem, based on the multi-dimensional distributed fire point scanning and positioning, monitors the local temperature distribution of the fire occurrence part through the temperature radiation induction monitored by infrared sensing; the fire temperature distribution tracking subsystem tracks the root part of the fire point according to the local temperature distribution of the fire occurrence part.
[0075] The beneficial effects of the above technical solution are as follows: The multi-dimensional distributed fire point scanning subsystem sets up a cross-sector infrared scanning sensing detection network to perform multi-dimensional distributed fire point scanning and positioning; the temperature radiation induction monitoring subsystem, based on the multi-dimensional distributed fire point scanning and positioning, monitors the local temperature distribution of the fire occurrence part through the temperature radiation induction monitored by infrared sensing; the fire temperature distribution tracking subsystem tracks the root part of the fire point according to the local temperature distribution of the fire occurrence part.
[0076] In one embodiment, the cloud-based rapid fire situation analysis and prediction subsystem includes:
[0077] The fire situation state parameter simulation subsystem obtains the fire situation state parameter model of the fire point root part through the simulation training of the fire situation state parameters of the fire point root part, and transmits the fire situation state parameter model of the fire point root part to the fire situation analysis and prediction cloud platform;
[0078] The cloud platform fire point rapid analysis subsystem quickly analyzes the fire situation of the fire point root part through the fire situation analysis and prediction cloud platform to obtain the fire situation analysis result of the fire point root.
[0079] The fire point spread trend prediction subsystem inputs the fire situation analysis result of the fire point source into the fire situation state parameter model of the fire point source part, quickly predicts the fire point spread trend part, and obtains the cloud analysis result of the fire point spread trend.
[0080] The working principle of the above technical solution is as follows: The cloud-based rapid fire situation analysis and prediction subsystem includes: The fire situation state parameter simulation subsystem obtains the fire situation state parameter model of the fire point source part through the simulation training of the fire situation state parameters of the fire point source part, and transmits the fire situation state parameter model of the fire point source part to the fire situation analysis and prediction cloud platform; The cloud platform fire point rapid analysis subsystem quickly analyzes the fire situation of the fire point source part through the fire situation analysis and prediction cloud platform to obtain the fire situation analysis result of the fire point source; The fire point spread trend prediction subsystem inputs the fire situation analysis result of the fire point source into the fire situation state parameter model of the fire point source part, quickly predicts the fire point spread trend part, and obtains the cloud analysis result of the fire point spread trend.
[0081] Non-contact sensing is used to collect the fire situation data and conduct intelligent analysis and prediction on the fire situation state parameters of the fire point source part in the narrow pores of micro-precision components and micro-structured items; The micro mobile fire extinguishing deformable bodies are dispersed around the micro pores of the micro-precision components and micro-structured items; When the internal structure or hidden part of the micro-precision components and micro-structured items catches fire, the oxygen around the fire point source part is quickly consumed, and the external air flows into the fire point source part through the pores of the fire point part of the micro-precision components and micro-structured items, forming a negative pressure air flow in the micro pores; The micro mobile fire extinguishing deformable bodies reach the fire point source part along with the negative pressure air flow in the micro pores; According to the flow rate and field state change of the micro mobile fire extinguishing deformable bodies, the fire situation state parameters of the fire point source part are obtained, and the simulation training of the fire situation state parameters of the fire point source part is carried out to obtain the fire situation state parameter model of the fire point source part; And through the fire situation analysis and prediction cloud platform, the fire situation of the fire point source part is quickly analyzed to obtain the fire situation analysis result of the fire point source; The fire situation analysis result of the fire point source is input into the fire situation state parameter model of the fire point source part, and the cloud-based large-scale trend deduction of the fire situation state parameters of the fire point source part is carried out through the fire situation analysis and prediction cloud platform to quickly predict the fire point spread trend part and obtain the cloud analysis result of the fire point spread trend.
[0082] The beneficial effects of the above technical solution are as follows: The cloud-based rapid fire situation analysis and prediction subsystem includes: a fire situation state parameter simulation subsystem, which obtains a fire situation state parameter model of the fire source part through simulation training of the fire situation state parameters of the fire source part, and transmits the fire situation state parameter model of the fire source part to the fire situation analysis and prediction cloud platform; a cloud platform fire point rapid analysis subsystem, which rapidly analyzes the fire situation of the fire source part through the fire situation analysis and prediction cloud platform to obtain a fire source fire situation analysis result; a fire point spread trend prediction subsystem, which inputs the fire source fire situation analysis result into the fire situation state parameter model of the fire source part to rapidly predict the fire point spread trend part and obtain a fire point spread trend cloud analysis result.
[0083] Non-contact sensing is used to collect fire source fire situation data and perform intelligent analysis and prediction on the fire situation state parameters of the fire source part in the narrow pores of micro-precision components and micro-structured items; the micro mobile fire extinguishing deformable bodies are dispersed around the micro-pores of the micro-precision components and micro-structured items; when the internal structure or hidden part of the micro-precision components and micro-structured items catches fire, the oxygen around the fire source part is rapidly consumed, and the external air flows into the fire source part through the pores of the fire point part of the micro-precision components and micro-structured items, forming a micro-pore negative pressure air flow; the micro mobile fire extinguishing deformable bodies reach the fire source part along with the micro-pore negative pressure air flow; according to the flow rate and field state change of the micro mobile fire extinguishing deformable bodies, the fire situation state parameters of the fire source part are obtained, and simulation training of the fire situation state parameters of the fire source part is carried out to obtain a fire situation state parameter model of the fire source part; and the fire situation of the fire source part is rapidly analyzed through the fire situation analysis and prediction cloud platform to obtain a fire source fire situation analysis result; the fire source fire situation analysis result is input into the fire situation state parameter model of the fire source part, and large-scale trend deduction of the fire situation state parameters of the fire source part is carried out on the cloud through the fire situation analysis and prediction cloud platform to rapidly predict the fire point spread trend part and obtain a fire point spread trend cloud analysis result.
[0084] In one embodiment, the micro intelligent fire extinguishing deformation control subsystem includes:
[0085] A fire situation analysis result reading subsystem, which reads the fire source fire situation analysis result and the fire point spread trend cloud analysis result through a microprocessor.
[0086] A fire extinguishing deformable body intelligent control subsystem, which intelligently controls the deformation and movement of the micro mobile fire extinguishing deformable bodies to reach the fire source part and the fire point spread trend part through the fire extinguishing deformable body control intelligent module of the microprocessor.
[0087] A micro mobile fire extinguishing and blocking subsystem, which triggers the micro mobile fire extinguishing deformable bodies to accurately extinguish the fire and block the fire point spread trend through active control of the triggering of the micro mobile fire extinguishing deformable bodies and passive thermal triggering of the micro mobile fire extinguishing deformable bodies.
[0088] The working principle of the above technical solution is as follows: The micro-intelligent fire extinguishing deformation control subsystem includes: a fire situation analysis result reading subsystem, which reads the fire origin situation analysis result and the cloud analysis result of the fire spread trend through a microprocessor; a fire extinguishing deformation body intelligent control subsystem, which intelligently controls the deformation and movement of the micro mobile fire extinguishing deformation body to reach the fire origin part and the fire spread trend part through the fire extinguishing deformation body control intelligent module of the microprocessor; a micro mobile fire extinguishing and blocking subsystem, which triggers the precise fire extinguishing of the micro mobile fire extinguishing deformation body and blocks the fire spread trend by actively controlling the triggering of the micro mobile fire extinguishing deformation body and the passive thermal triggering of the micro mobile fire extinguishing deformation body; actively controlling the triggering of the micro mobile fire extinguishing deformation body and the passive thermal triggering of the micro mobile fire extinguishing deformation body includes: performing high-frequency magnetic field oscillation on the micro mobile fire extinguishing deformation body through a high-frequency alternating magnetic field, and controlling the moving direction of the high-frequency alternating magnetic field, so that the micro mobile fire extinguishing deformation body releases fire extinguishing materials at the fire origin part and the fire spread trend part to actively control the triggering of the micro mobile fire extinguishing deformation body; when the remaining temperature is still higher than the safe temperature after the active control of the triggering of the micro mobile fire extinguishing deformation body at the fire origin part and the fire spread trend part, the micro magnetic fluid fire extinguishing material containing capsule of the micro mobile fire extinguishing deformation body expands passively due to heat and melts and sprays out the fire extinguishing materials at the highest temperature point to perform passive thermal triggering of the micro mobile fire extinguishing deformation body;
[0089] Calculate the fire heat resistance performance parameter value of the micro mobile fire extinguishing deformation body:
[0090]
[0091] Among them, WDMNc represents the fire heat resistance performance parameter value of the micro mobile fire extinguishing deformation body, Dlh represents the micro magnetic fluid convective heat transfer coefficient value, Zd represents the equivalent diameter value of the pores through which the micro magnetic fluid flows, R represents the thermal conductivity of the micro magnetic fluid, Bo represents the standard convective heat transfer intensity value of the micro magnetic fluid, Ys represents the pressure loss value before and after the micro magnetic fluid flows through the pores, Fo represents the standard friction factor of the micro magnetic fluid, m represents the density value of the micro magnetic fluid, L represents the equivalent length value of the pores through which the micro magnetic fluid flows, and Vmax represents the maximum flow velocity of the micro magnetic fluid.
[0092] The beneficial effects of the above technical solution are as follows: The fire situation analysis result reading subsystem reads the fire source fire situation analysis result and the cloud analysis result of the fire spread trend through a microprocessor; the intelligent control subsystem of the fire extinguishing deformable body intelligently controls the deformation and movement of the micro mobile fire extinguishing deformable body to reach the fire source part and the fire spread trend part through the fire extinguishing deformable body control intelligent module of the microprocessor; the micro mobile fire extinguishing and delaying subsystem triggers the micro mobile fire extinguishing deformable body precisely to extinguish the fire and blocks the fire spread trend by actively controlling the triggering of the micro mobile fire extinguishing deformable body and the passive heat triggering of the micro mobile fire extinguishing deformable body; the active control of the triggering of the micro mobile fire extinguishing deformable body and the passive heat triggering of the micro mobile fire extinguishing deformable body include: performing high-frequency magnetic field oscillation on the micro mobile fire extinguishing deformable body through a high-frequency alternating magnetic field and controlling the moving direction of the high-frequency alternating magnetic field, so that the micro mobile fire extinguishing deformable body releases fire extinguishing materials at the fire source part and the fire spread trend part to actively control the triggering of the micro mobile fire extinguishing deformable body; when the remaining temperature at the fire source part and the fire spread trend part is still higher than the safety temperature after the active control of the triggering of the micro mobile fire extinguishing deformable body, the micro magnetic fluid fire extinguishing material containing capsule of the micro mobile fire extinguishing deformable body expands passively due to heat and melts and sprays out the fire extinguishing materials at the highest temperature point to perform passive heat triggering of the micro mobile fire extinguishing deformable body; it can further make the fire extinguishing at the fire source part and the fire spread trend part more thorough, the control and elimination of the remaining temperature more complete, and more fundamentally prevent the fire from reigniting and greatly reduce the loss.
[0093] Calculate the fire point heat resistance performance parameter value of the micro mobile fire extinguishing deformable body: where WDMNc represents the fire point heat resistance performance parameter value of the micro mobile fire extinguishing deformable body, Dlh represents the value of the micro magnetic fluid convective heat transfer coefficient, Zd represents the equivalent diameter value of the pores through which the micro magnetic fluid flows, R represents the thermal conductivity of the micro magnetic fluid, Bo represents the standard convective heat transfer intensity value of the micro magnetic fluid, Ys represents the pressure loss value before and after the micro magnetic fluid flows through the pores, Fo represents the standard friction factor of the micro magnetic fluid, m represents the density value of the micro magnetic fluid, L represents the equivalent length value of the pores through which the micro magnetic fluid flows, and Vmax represents the maximum flow rate of the micro magnetic fluid; by calculating the fire point heat resistance performance parameter value of the micro mobile fire extinguishing deformable body, the micro mobile fire extinguishing deformable body has higher heat resistance performance at the fire source part, uses the fire extinguishing materials more precisely, extinguishes the fire more quickly and thoroughly, and causes less secondary damage to the fire point part and its surrounding areas, greatly improving the fire extinguishing effect of micro devices and micro parts.
[0094] The micro intelligent fire extinguishing control method of the present invention includes:
[0095] S100, forming a micro mobile fire extinguishing deformable body with fire extinguishing materials through a micro deformable combined structure, and combining and deforming according to the pore shape of the fire point part to accurately deliver the fire extinguishing materials to the fire source part of the ignition point;
[0096] S200. Monitor the local temperature distribution at the fire occurrence location through infrared sensing to trace the root cause of the fire point.
[0097] S300. Through the fire situation analysis and prediction cloud platform, quickly analyze the fire situation at the root cause of the fire point and quickly predict the fire spread trend location, obtaining the fire situation analysis result of the root cause of the fire point and the cloud analysis result of the fire spread trend.
[0098] S400. Through the microprocessor and intelligent module, read the fire situation analysis result of the root cause of the fire point and the cloud analysis result of the fire spread trend, intelligently control the deformation and movement of the micro mobile fire extinguishing deformable body to reach the root cause location of the fire point and the fire spread trend location, trigger the micro mobile fire extinguishing deformable body to accurately extinguish the fire, and block the fire spread trend.
[0099] The working principle of the above technical solution is as follows: For the micro-intelligent fire extinguishing control method of the present invention, the fire extinguishing materials are formed into a micro mobile fire extinguishing deformable body through a micro deformable combined structure, and are combined and deformed according to the pore shape of the fire point location to accurately deliver the fire extinguishing materials to the root cause location of the fire point; monitor the local temperature distribution at the fire occurrence location through infrared sensing to trace the root cause of the fire point; through the fire situation analysis and prediction cloud platform, quickly analyze the fire situation at the root cause of the fire point and quickly predict the fire spread trend location, obtaining the fire situation analysis result of the root cause of the fire point and the cloud analysis result of the fire spread trend; through the microprocessor and intelligent module, read the fire situation analysis result of the root cause of the fire point and the cloud analysis result of the fire spread trend, intelligently control the deformation and movement of the micro mobile fire extinguishing deformable body to reach the root cause location of the fire point and the fire spread trend location, trigger the micro mobile fire extinguishing deformable body to accurately extinguish the fire, and block the fire spread trend.
[0100] The beneficial effects of the above technical solution are as follows: The micro-intelligent fire extinguishing control method of the present invention includes: forming the fire extinguishing materials into a micro mobile fire extinguishing deformable body through a micro deformable combined structure, and being combined and deformed according to the pore shape of the fire point location to accurately deliver the fire extinguishing materials to the root cause location of the fire point; monitoring the local temperature distribution at the fire occurrence location through infrared sensing to trace the root cause of the fire point; through the fire situation analysis and prediction cloud platform, quickly analyze the fire situation at the root cause of the fire point and quickly predict the fire spread trend location, obtaining the fire situation analysis result of the root cause of the fire point and the cloud analysis result of the fire spread trend; through the microprocessor and intelligent module, read the fire situation analysis result of the root cause of the fire point and the cloud analysis result of the fire spread trend, intelligently control the deformation and movement of the micro mobile fire extinguishing deformable body to reach the root cause location of the fire point and the fire spread trend location, trigger the micro mobile fire extinguishing deformable body to accurately extinguish the fire, and block the fire spread trend; it can accurately deliver the fire extinguishing materials to the micro pores of micro-precision components and micro-structured items; the micro mobile fire extinguishing deformable body has a higher heat insulation performance at the root cause location of the fire point, the use of fire extinguishing materials is more accurate, the fire extinguishing is faster and more thorough, and the secondary damage to the fire point location and its surroundings during fire extinguishing is smaller, greatly improving the fire extinguishing effect of micro-devices and micro-locations.
[0101] In one embodiment, S100 includes:
[0102] S101, using a micro magnetic fluid fire extinguishing material containment capsule to load the fire extinguishing material to form a micro deformable combined structure;
[0103] S102, through the micro deformable combined structure, using a transformable moving magnetic field to form the fire extinguishing material into a micro moving fire extinguishing deformable body;
[0104] S103, performing combined deformation according to the pore shape at the fire point location to accurately deliver the fire extinguishing material to the root location of the fire point.
[0105] The working principle of the above technical solution is as follows: using a micro magnetic fluid fire extinguishing material containment capsule to load the fire extinguishing material to form a micro deformable combined structure; through the micro deformable combined structure, using a transformable moving magnetic field to form the fire extinguishing material into a micro moving fire extinguishing deformable body; performing combined deformation according to the pore shape at the fire point location to accurately deliver the fire extinguishing material to the root location of the fire point;
[0106] When a micro precision component and a micro structured article catch fire, load the fire extinguishing material into a micro magnetic fluid fire extinguishing material containment capsule; control the shape of the micro deformable combined structure and the movement of the micro moving fire extinguishing deformable body through an external magnetic field; move the micro moving fire extinguishing deformable body to the root location of the fire point and the fire spreading trend location; the external magnetic field control is performed by a microprocessor and an intelligent module through an external electromagnetic field for intelligent adjustment of the magnetic field intensity and intelligent control of the magnetic field guiding direction.
[0107] The beneficial effects of the above technical solution are as follows: using a micro magnetic fluid fire extinguishing material containment capsule to load the fire extinguishing material to form a micro deformable combined structure; forming the fire extinguishing material into a micro moving fire extinguishing deformable body through the micro deformable combined structure and performing combined deformation according to the pore shape at the fire point location to accurately deliver the fire extinguishing material to the root location of the fire point; when a micro precision component and a micro structured article catch fire, load the fire extinguishing material into a micro magnetic fluid fire extinguishing material containment capsule; control the shape of the micro deformable combined structure and the movement of the micro moving fire extinguishing deformable body through an external magnetic field; move the micro moving fire extinguishing deformable body to the root location of the fire point and the fire spreading trend location; the external magnetic field control is performed by a microprocessor and an intelligent module through an external electromagnetic field for intelligent adjustment of the magnetic field intensity and intelligent control of the magnetic field guiding direction; it can accurately deliver the fire extinguishing material to the micro pores of micro precision components and micro structured articles.
[0108] In one embodiment, S200 includes:
[0109] S201, setting up a cross-sector infrared scanning sensing detection network for multi-dimensional distributed fire point scanning and positioning;
[0110] S202. According to the multi-dimensional distributed fire point scanning and positioning, the local temperature distribution of the fire occurrence location is monitored by the temperature radiation induction of infrared sensing;
[0111] S203. According to the local temperature distribution of the fire occurrence location, trace the root location of the fire point.
[0112] The working principle of the above technical solution is as follows: Set up a cross-sector infrared scanning and sensing detection network for multi-dimensional distributed fire point scanning and positioning; According to the multi-dimensional distributed fire point scanning and positioning, the local temperature distribution of the fire occurrence location is monitored by the temperature radiation induction of infrared sensing; According to the local temperature distribution of the fire occurrence location, trace the root location of the fire point; Through the cross-sector infrared scanning and sensing detection network, cross-scan the fire occurrence location within the scanning ranges of the cross-sector infrared ray networks respectively. The cross-sector infrared rays have specific frequencies to distinguish the reflected infrared rays in the cross direction, forming a multi-dimensional distributed infrared scanning and sensing detection for multi-dimensional distributed fire point scanning and positioning.
[0113] The beneficial effects of the above technical solution are as follows: Set up a cross-sector infrared scanning and sensing detection network for multi-dimensional distributed fire point scanning and positioning; According to the multi-dimensional distributed fire point scanning and positioning, the local temperature distribution of the fire occurrence location is monitored by the temperature radiation induction of infrared sensing; According to the local temperature distribution of the fire occurrence location, trace the root location of the fire point; Through the cross-sector infrared scanning and sensing detection network, cross-scan the fire occurrence location within the scanning ranges of the cross-sector infrared ray networks respectively. The cross-sector infrared rays have specific frequencies to distinguish the reflected infrared rays in the cross direction, forming a multi-dimensional distributed infrared scanning and sensing detection for multi-dimensional distributed fire point scanning and positioning; It can accurately and quickly locate multiple fire points in spatial distribution.
[0114] In one embodiment, S300 includes:
[0115] S301. Through the simulation training of the fire situation state parameters of the fire point root location, obtain the fire situation state parameter model of the fire point root location, and transmit the fire situation state parameter model of the fire point root location to the fire situation analysis and prediction cloud platform;
[0116] S302. Quickly analyze the fire situation of the fire point root location through the fire situation analysis and prediction cloud platform to obtain the fire situation analysis result of the fire point root;
[0117] S303. Input the fire situation analysis result of the fire point root into the fire situation state parameter model of the fire point root location to quickly predict the fire spreading trend location and obtain the cloud analysis result of the fire spreading trend.
[0118] The working principle of the above technical solution is as follows: Through the simulation training of the fire situation state parameters of the fire source part, a fire situation state parameter model of the fire source part is obtained, and the fire situation state parameter model of the fire source part is transmitted to the fire situation analysis and prediction cloud platform; Through the fire situation analysis and prediction cloud platform, the fire situation of the fire source part is quickly analyzed to obtain the fire situation analysis result of the fire source; The fire situation analysis result of the fire source is input into the fire situation state parameter model of the fire source part, and the fire spread trend part is quickly predicted to obtain the cloud analysis result of the fire spread trend.
[0119] Non-contact sensing is used to collect the fire situation data and conduct intelligent analysis and prediction on the fire situation state parameters of the fire source part in the narrow pores of micro-precision components and micro-structured items; The micro mobile fire extinguishing deformable body is dispersed around the micro-pores of micro-precision components and micro-structured items; When the internal structure or hidden part of the micro-precision component and micro-structured item catches fire, the oxygen around the fire source part is quickly consumed, and the external air flows into the fire source part through the pores of the fire point of the micro-precision component and micro-structured item, forming a negative pressure air flow in the micro-pores; The micro mobile fire extinguishing deformable body reaches the fire source part along with the negative pressure air flow in the micro-pores; According to the flow rate and field state change of the micro mobile fire extinguishing deformable body, the fire situation state parameters of the fire source part are obtained, and simulation training of the fire situation state parameters of the fire source part is carried out to obtain the fire situation state parameter model of the fire source part; And through the fire situation analysis and prediction cloud platform, the fire situation of the fire source part is quickly analyzed to obtain the fire situation analysis result of the fire source; The fire situation analysis result of the fire source is input into the fire situation state parameter model of the fire source part, and large-scale trend deduction of the fire situation state parameters of the fire source part is carried out on the cloud through the fire situation analysis and prediction cloud platform, and the fire spread trend part is quickly predicted to obtain the cloud analysis result of the fire spread trend.
[0120] The beneficial effects of the above technical solution are as follows: Through the simulation training of the fire situation state parameters of the fire source part, a fire situation state parameter model of the fire source part is obtained, and the fire situation state parameter model of the fire source part is transmitted to the fire situation analysis and prediction cloud platform; Through the fire situation analysis and prediction cloud platform, the fire situation of the fire source part is quickly analyzed to obtain the fire situation analysis result of the fire source; The fire situation analysis result of the fire source is input into the fire situation state parameter model of the fire source part, and the fire spread trend part is quickly predicted to obtain the cloud analysis result of the fire spread trend.
[0121] Non-contact sensing is used to collect the fire condition parameter data of the fire source part in the narrow pores of micro-precision components and micro-structured articles and perform intelligent analysis and prediction; the micro mobile fire extinguishing deformable body is dispersed around the micro-pores of the micro-precision components and micro-structured articles; when the internal structure or hidden part of the micro-precision components and micro-structured articles catches fire, the oxygen around the fire source part is rapidly consumed, and the external air flows into the fire source part through the pores of the fire point part of the micro-precision components and micro-structured articles, forming a negative pressure air flow in the micro-pores; the micro mobile fire extinguishing deformable body reaches the fire source part along with the negative pressure air flow in the micro-pores; according to the flow rate and field state change of the micro mobile fire extinguishing deformable body, the fire condition parameter of the fire source part is obtained, and the simulation training of the fire condition parameter of the fire source part is carried out to obtain the fire condition parameter model of the fire source part; and the fire condition of the fire source part is quickly analyzed through the fire condition analysis and prediction cloud platform to obtain the fire condition analysis result of the fire source; the fire condition analysis result of the fire source is input into the fire condition parameter model of the fire source part, and the large-scale trend deduction of the fire condition parameter of the fire source part is carried out through the fire condition analysis and prediction cloud platform to quickly predict the fire spreading trend part and obtain the cloud analysis result of the fire spreading trend; it can timely detect the fire burning state of the micro-precision components and micro-structured articles, accurately judge the fire condition of the fire source part, and quickly predict the fire spreading trend for precise fire source tracking and prediction and precise fire extinguishing.
[0122] In one embodiment, S400 includes:
[0123] S401, reading the fire condition analysis result of the fire source and the cloud analysis result of the fire spreading trend through a microprocessor;
[0124] S402, through the fire extinguishing deformable body control intelligent module of the microprocessor, intelligently controlling the deformation and movement of the micro mobile fire extinguishing deformable body to reach the fire source part and the fire spreading trend part;
[0125] S403, triggering the precise fire extinguishing of the micro mobile fire extinguishing deformable body and the passive heat triggering of the micro mobile fire extinguishing deformable body through active control, and blocking the fire spreading trend.
[0126] The working principle of the above technical solution is as follows: Through a microprocessor, the fire source fire situation analysis result and the cloud analysis result of the fire spread trend are read; through the fire extinguishing deformation body control intelligent module of the microprocessor, the deformation of the micro mobile fire extinguishing deformation body is intelligently controlled and it moves to the fire source root part and the fire spread trend part; through the active control of the triggering of the micro mobile fire extinguishing deformation body and the passive thermal triggering of the micro mobile fire extinguishing deformation body, the micro mobile fire extinguishing deformation body is triggered to accurately extinguish the fire and block the fire spread trend; the active control of the triggering of the micro mobile fire extinguishing deformation body and the passive thermal triggering of the micro mobile fire extinguishing deformation body include: through a high-frequency alternating magnetic field, high-frequency magnetic field oscillation is carried out on the micro mobile fire extinguishing deformation body, and the moving direction of the high-frequency alternating magnetic field is controlled, so that the micro mobile fire extinguishing deformation body releases fire extinguishing materials at the fire source root part and the fire spread trend part, to actively control the triggering of the micro mobile fire extinguishing deformation body; when the remaining temperature is still higher than the safety temperature after the active control of the triggering of the micro mobile fire extinguishing deformation body at the fire source root part and the fire spread trend part, the micro magnetic fluid fire extinguishing material containing capsule of the micro mobile fire extinguishing deformation body expands passively due to heat and melts and sprays out the fire extinguishing materials at the highest temperature point, to carry out the passive thermal triggering of the micro mobile fire extinguishing deformation body;
[0127] Calculate the fire heat resistance performance parameter value of the micro mobile fire extinguishing deformation body:
[0128]
[0129] Among them, WDMNc represents the fire heat resistance performance parameter value of the micro mobile fire extinguishing deformation body, Dlh represents the micro magnetic fluid convective heat transfer coefficient value, Zd represents the equivalent diameter value of the pores through which the micro magnetic fluid flows, R represents the thermal conductivity of the micro magnetic fluid, Bo represents the standard convective heat transfer intensity value of the micro magnetic fluid, Ys represents the pressure loss value before and after the micro magnetic fluid flows through the pores, Fo represents the standard friction factor of the micro magnetic fluid, m represents the density value of the micro magnetic fluid, L represents the equivalent length value of the pores through which the micro magnetic fluid flows, and Vmax represents the maximum flow velocity of the micro magnetic fluid.
[0130] The beneficial effects of the above technical solution are as follows: Through a microprocessor, the fire source fire situation analysis result and the cloud analysis result of the fire spread trend are read; through the fire extinguishing deformation body control intelligent module of the microprocessor, the deformation of the micro mobile fire extinguishing deformation body is intelligently controlled and it moves to the fire source root part and the fire spread trend part; through the active control of the triggering of the micro mobile fire extinguishing deformation body and the passive thermal triggering of the micro mobile fire extinguishing deformation body, the micro mobile fire extinguishing deformation body is triggered to accurately extinguish the fire and block the fire spread trend;
[0131] The active control of the trigger of the micro mobile fire extinguishing deformable body and the passive thermal trigger of the micro mobile fire extinguishing deformable body include: by means of a high-frequency alternating magnetic field, performing high-frequency magnetic field oscillations on the micro mobile fire extinguishing deformable body, and controlling the moving direction of the high-frequency alternating magnetic field, so that the micro mobile fire extinguishing deformable body releases fire extinguishing materials at the root part of the fire point and the fire spreading trend part, to actively control the trigger of the micro mobile fire extinguishing deformable body; when the remaining temperature is still higher than the safe temperature after the active control of the trigger of the micro mobile fire extinguishing deformable body at the root part of the fire point and the fire spreading trend part, the micro magnetic fluid fire extinguishing material containing capsule of the micro mobile fire extinguishing deformable body expands passively due to heat and melts and sprays out the fire extinguishing materials at the highest temperature point, to perform the passive thermal trigger of the micro mobile fire extinguishing deformable body; it can further make the fire extinguishing at the root part of the fire point and the fire spreading trend part more thorough, the control and elimination of the remaining temperature more complete, and more fundamentally prevent the re-ignition of the fire point and greatly reduce the loss.
[0132] Calculating the fire point heat resistance performance parameter value of the micro mobile fire extinguishing deformable body: where WDMNc represents the fire point heat resistance performance parameter value of the micro mobile fire extinguishing deformable body, Dlh represents the value of the micro magnetic fluid convective heat transfer coefficient, Zd represents the equivalent diameter value of the pores through which the micro magnetic fluid flows, R represents the thermal conductivity of the micro magnetic fluid, Bo represents the standard convective heat transfer intensity value of the micro magnetic fluid, Ys represents the pressure loss value before and after the micro magnetic fluid flows through the pores, Fo represents the standard friction factor of the micro magnetic fluid, m represents the density value of the micro magnetic fluid, L represents the equivalent length value of the pores through which the micro magnetic fluid flows, and Vmax represents the maximum flow velocity of the micro magnetic fluid; by calculating the fire point heat resistance performance parameter value of the micro mobile fire extinguishing deformable body, the micro mobile fire extinguishing deformable body has a higher heat resistance performance at the root part of the fire point, the use of the fire extinguishing materials is more accurate, the fire extinguishing is faster and more thorough, and the secondary damage to the fire point part and its surrounding areas during fire extinguishing is smaller, greatly improving the fire extinguishing effect of micro devices and micro parts.
[0133] Although the embodiments of the present invention have been disclosed as above, they are not limited to only the applications listed in the specification and embodiments. It can be fully applied to various fields suitable for the present invention. For those familiar with the field, additional modifications can be easily achieved. Therefore, without departing from the general concept defined by the claims and the equivalent scope, the present invention is not limited to the specific details and the illustrated and described examples here.
Claims
1. The micro intelligent fire extinguishing control system is characterized in that, Including: The micro mobile fire extinguishing deformable subsystem, which forms a micro mobile fire extinguishing deformable body with fire extinguishing materials through a micro deformable combined structure, and combines and deforms according to the pore shape at the fire point to accurately deliver the fire extinguishing materials to the root of the fire point; The fire point root sensing and tracking subsystem, which monitors the local temperature distribution at the fire occurrence site through infrared sensing and tracks the root of the fire point; The cloud-based rapid fire situation analysis and prediction subsystem, which rapidly analyzes the fire situation at the root of the fire point and quickly predicts the spreading trend of the fire point through the fire situation analysis and prediction cloud platform, obtaining the fire situation analysis result at the root of the fire point and the cloud analysis result of the fire point spreading trend; The micro intelligent fire extinguishing deformation control subsystem, which reads the fire situation analysis result at the root of the fire point and the cloud analysis result of the fire point spreading trend through a microprocessor and intelligent modules, intelligently controls the deformation and movement of the micro mobile fire extinguishing deformable body to reach the root of the fire point and the fire point spreading trend, triggers the micro mobile fire extinguishing deformable body to accurately extinguish the fire, and blocks the fire point spreading trend; The micro mobile fire extinguishing deformable subsystem, including: The micro mobile fire extinguishing deformable body subsystem, which uses a micro magnetic fluid fire extinguishing material containing capsule to load fire extinguishing materials to form a micro deformable combined structure; The deformation structure fire extinguishing material assembly subsystem, which forms a micro mobile fire extinguishing deformable body with fire extinguishing materials through a micro deformable combined structure by using a changing moving magnetic field; The combined deformation accurate delivery subsystem, which combines and deforms according to the pore shape at the fire point and accurately delivers the fire extinguishing materials to the root of the fire point; When a micro precision component and a micro structure item catch fire, load the fire extinguishing materials into the micro magnetic fluid fire extinguishing material containing capsule; control the shape of the micro deformable combined structure and the movement of the micro mobile fire extinguishing deformable body through an external magnetic field; move the micro mobile fire extinguishing deformable body to the root of the fire point and the fire point spreading trend; the external magnetic field control is carried out by a microprocessor and intelligent modules through an external electromagnetic field for intelligent adjustment of the magnetic field intensity and intelligent control of the magnetic field guiding direction; and it can accurately deliver the fire extinguishing materials to the micro pores of the micro precision component and the micro structure item.
2. The micro-intelligent fire extinguishing control system according to claim 1, characterized in that, The fire point root sensing and tracking subsystem, including: The multi-dimensional distributed fire point scanning subsystem, which sets up a cross-sector infrared scanning sensing detection network for multi-dimensional distributed fire point scanning and positioning; The temperature radiation induction monitoring subsystem, which monitors the local temperature distribution at the fire occurrence site through infrared sensing according to the multi-dimensional distributed fire point scanning and positioning; The fire temperature distribution tracking subsystem, which tracks the root of the fire point according to the local temperature distribution at the fire occurrence site.
3. The micro-intelligent fire extinguishing control system according to claim 1, characterized in that, The cloud-based rapid fire situation analysis and prediction subsystem, including: The fire situation state parameter simulation subsystem, which obtains the fire situation state parameter model at the root of the fire point through the simulation training of the fire situation state parameters at the root of the fire point and transmits the fire situation state parameter model at the root of the fire point to the fire situation analysis and prediction cloud platform; The cloud platform fire point rapid analysis subsystem, which rapidly analyzes the fire situation at the root of the fire point through the fire situation analysis and prediction cloud platform to obtain the fire situation analysis result at the root of the fire point; The fire point spread trend prediction subsystem inputs the analysis results of the fire source fire situation of the fire point into the fire situation state parameter model of the fire source part, quickly predicts the parts with the fire point spread trend, and obtains the cloud analysis results of the fire point spread trend.
4. The micro-intelligent fire extinguishing control system according to claim 1, characterized in that, The micro-intelligent fire extinguishing deformation control subsystem includes: The fire situation analysis result reading subsystem reads the analysis results of the fire source fire situation of the fire point and the cloud analysis results of the fire point spread trend through a microprocessor; The intelligent control subsystem for the fire extinguishing deformation body, through the intelligent module for controlling the fire extinguishing deformation body of the microprocessor, intelligently controls the deformation and movement of the micro mobile fire extinguishing deformation body to reach the fire source part and the parts with the fire point spread trend; The micro mobile fire extinguishing and blocking subsystem triggers the precise fire extinguishing of the micro mobile fire extinguishing deformation body and blocks the fire point spread trend by actively controlling the triggering of the micro mobile fire extinguishing deformation body and the passive thermal triggering of the micro mobile fire extinguishing deformation body.
5. Micro-intelligent fire extinguishing control method, characterized in that, It includes: S100, forming a micro mobile fire extinguishing deformation body with fire extinguishing materials through a micro deformable combined structure, and combining and deforming according to the pore shape of the fire point part, and accurately delivering the fire extinguishing materials to the root part of the ignition point; S200, monitoring the local temperature distribution of the fire occurrence part through infrared sensing, and tracking the root part of the fire point; S300, quickly analyzing the fire situation of the fire source part and quickly predicting the parts with the fire point spread trend through the fire situation analysis and prediction cloud platform, and obtaining the analysis results of the fire source fire situation of the fire point and the cloud analysis results of the fire point spread trend; S400, through the microprocessor and the intelligent module, reads the analysis results of the fire source fire situation of the fire point and the cloud analysis results of the fire point spread trend, intelligently controls the deformation and movement of the micro mobile fire extinguishing deformation body to reach the fire source part and the parts with the fire point spread trend, triggers the precise fire extinguishing of the micro mobile fire extinguishing deformation body, and blocks the fire point spread trend; S100 includes: S101, using a micro magnetic fluid fire extinguishing material containing capsule to load the fire extinguishing materials to form a micro deformable combined structure; S102, through the micro deformable combined structure, using a changing moving magnetic field to form a micro mobile fire extinguishing deformation body with the fire extinguishing materials; S103, combining and deforming according to the pore shape of the fire point part, and accurately delivering the fire extinguishing materials to the root part of the ignition point; For the ignition of micro-precision components and micro-structured items, load the fire extinguishing materials into the micro magnetic fluid fire extinguishing material containing capsule; control the shape of the micro deformable combined structure and the movement of the micro mobile fire extinguishing deformation body through an external magnetic field; move the micro mobile fire extinguishing deformation body to the root part of the fire point and the parts with the fire point spread trend; the external magnetic field control is performed by the microprocessor and the intelligent module through an external electromagnetic field for intelligent adjustment of the magnetic field intensity and intelligent control of the magnetic field guiding direction; it can accurately deliver the fire extinguishing materials to the micro pores of micro-precision components and micro-structured items.
6. The micro-intelligent fire extinguishing control method according to claim 5, characterized in that, S200 includes: S201, setting up a cross-sector infrared scanning sensing detection network for multi-dimensional distribution fire point scanning and positioning; S202, according to the multi-dimensional distribution fire point scanning and positioning, monitoring the local temperature distribution of the fire occurrence part through the temperature radiation induction of infrared sensing; S203, tracking the root part of the fire point according to the local temperature distribution of the fire occurrence part.
7. The micro-intelligent fire extinguishing control method according to claim 5, characterized in that S300 includes: S301. Through the simulation training of the fire situation state parameters at the root of the fire point, obtain the fire situation state parameter model at the root of the fire point, and transmit the fire situation state parameter model at the root of the fire point to the fire situation analysis and prediction cloud platform; S302. Through the fire situation analysis and prediction cloud platform, quickly analyze the fire situation at the root of the fire point to obtain the fire situation analysis result at the root of the fire point; S303. Input the fire situation analysis result at the root of the fire point into the fire situation state parameter model at the root of the fire point, quickly predict the fire spread trend part, and obtain the fire spread trend cloud analysis result.
8. The micro-intelligent fire extinguishing control method according to claim 5, characterized in that S400 includes: S401. Through the microprocessor, read the fire situation analysis result at the root of the fire point and the fire spread trend cloud analysis result; S402. Through the fire extinguishing deformation body control intelligent module of the microprocessor, intelligently control the deformation and movement of the micro mobile fire extinguishing deformation body to reach the root of the fire point and the fire spread trend part; S403. Through the active control of the trigger of the micro mobile fire extinguishing deformation body and the passive heat trigger of the micro mobile fire extinguishing deformation body, trigger the micro mobile fire extinguishing deformation body to accurately extinguish the fire and block the fire spread trend.
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