An e-commerce operation analysis and decision-making platform based on big data

By using an ice box and motor-driven fan blades for heat dissipation in e-commerce operation analysis equipment, combined with a refrigeration device and an automatic sealing structure, the heat dissipation problem during long-term high-load operation of the equipment is solved, achieving a highly efficient and energy-saving heat dissipation effect, and improving the stability and analytical decision-making capabilities of the equipment.

CN114521098BActive Publication Date: 2025-12-19QINGDAO SHILIHAI TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202210215831.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-03-07
Publication Date
2025-12-19
Estimated Expiration
2042-03-07

AI Technical Summary

Technical Problem

Existing e-commerce operation analysis equipment suffers from poor heat dissipation when working under high load for extended periods, leading to increased equipment temperature and impacting the processor's analysis and decision-making performance.

Method used

The device employs a cooling method that combines an ice box with a motor-driven fan blade. The cooling process involves cold air flowing into the device through ice, and the cooling system and automatic sealing structure optimize the heat dissipation process, resulting in energy efficiency.

Benefits of technology

It achieves efficient heat dissipation, reduces the impact of internal heat accumulation on analysis and decision-making, and is more energy-efficient than traditional refrigeration equipment, improving the practicality and stability of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application belongs to the technical field of big data, and particularly relates to an e-commerce operation analysis and decision-making platform based on big data, which comprises a workbench; an air inlet and an air outlet are respectively arranged on the side wall of the workbench, an air inlet cavity is arranged at the outer end of the air inlet, a motor and a fan blade are arranged in the air inlet cavity, and a placing box filled with ice blocks is arranged at the inner end of the air inlet; the ice blocks are put into the placing box, so that the external gas is driven by the fan blade to flow into the air inlet and become cold air flowing into the workbench under the action of the ice blocks, thereby the workbench can be efficiently cooled, the heat in the workbench can be effectively dissipated after long-time and high-load operation, and the influence of the heat on the analysis and decision-making of e-commerce operation is reduced; and the cold air is generated by placing the ice blocks, so that the generation of the cold air is more persistent, and the cold air is more energy-saving compared with the existing technology in which the cold air is continuously generated by a refrigeration device.
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Description

TECHNICAL FIELD

[0001] The present application belongs to the technical field of big data, and particularly relates to an e-commerce operation analysis and decision-making platform based on big data. BACKGROUND

[0002] Big data refers to a data collection that cannot be captured, managed and processed in a certain time range by conventional software tools, and is a mass, high growth rate and diversified information resource that needs a new processing mode to have stronger decision-making, insight discovery and process optimization capabilities. Electronic commerce, referred to as e-commerce, is a transaction activity and related service activity in an electronic transaction mode on the Internet, intranet and value-added network, and is the electronicization and networkization of each link of traditional commercial activities. Electronic commerce includes electronic currency exchange, supply chain management, electronic transaction market, network marketing, online transaction processing, electronic data interchange (EDI), inventory management and automatic data collection system. In this process, the information technology used includes the Internet, extranet, email, database, electronic catalog and mobile phone.

[0003] The device for e-commerce operation analysis in the prior art has a high internal temperature when working for a long time, especially during a high transaction peak period. If the internal temperature is not effectively dissipated, the stable operation of the device will be affected, thereby affecting the effective processing of the internal processor on analysis and decision-making.

[0004] Therefore, the present application provides an e-commerce operation analysis and decision-making platform based on big data. SUMMARY

[0005] In order to make up for the deficiencies of the prior art and solve at least one technical problem proposed in the background art.

[0006] The technical scheme adopted by the present application to solve its technical problems is: the e-commerce operation analysis and decision-making platform based on big data comprises a workbench; symmetrical two side walls of the workbench are respectively provided with an air inlet and an air outlet, an air inlet cavity is arranged at an outer end of the air inlet, a motor is installed in the air inlet cavity, a fan blade is connected to an end of the motor through a rotating shaft, and a placing box loaded with ice blocks is arranged at an inner end of the air inlet; in the prior art, when the equipment for e-commerce operation analysis works for a long time, especially during the peak period of activity transactions, the internal temperature of the equipment is relatively high due to long-time and high-load work, and if the internal heat dissipation is not effective, the stable operation of the equipment will be affected, thereby affecting the effective processing of the internal processor on analysis and decision-making; when the platform in the present application generates more heat during the process of processing a large amount of data, ice blocks can be put into the placing box at this time, and the fan blade is driven to rotate by the motor, so that the external gas flows into the air inlet under the driving of the fan blade, and the temperature is reduced after passing through the ice blocks at the placing box, and the cold air flows into the workbench, and then flows out from the air outlet after passing through the working equipment in the workbench, thereby achieving the effect of efficient heat dissipation in the platform, reducing the situation that the analysis and decision-making of e-commerce operation are affected due to the difficulty in effectively dissipating the internal heat after long-time and high-load operation of the platform, and generating cold air by placing ice blocks can make the generation of cold air more persistent, and compared with the continuous generation of cold air by the refrigeration equipment in the prior art, it is more energy-saving.

[0007] Preferably, a receiving cavity is arranged on the inner wall of the workbench corresponding to the bottom end of the placing box, a refrigeration device is arranged in the receiving cavity, a push rod is installed at the bottom end of the receiving cavity, the top end of the push rod is connected with the placing box, and a plugging structure is arranged at the top end of the receiving cavity; when the ice blocks in the placing box gradually melt, the placing box is driven by the push rod to enter the receiving cavity, and the plugging structure is controlled to plug the top end of the receiving cavity; when the placing box works next time, the refrigeration device works first, at this time, the temperature in the receiving cavity is reduced to make the melted water in the placing box form ice blocks again, then the refrigeration device stops working, and the plugging structure is opened, and the placing box is driven by the push rod to move to the air inlet again, thereby effectively dissipating heat in the workbench, and the refrigeration device can cool the gas in the workbench through the receiving cavity during the process of solidifying water into ice blocks, thereby also promoting the heat dissipation in the workbench.

[0008] Preferably, the sealing structure comprises a pair of symmetrically distributed sealing plates, the end of the sealing plate is connected to the top end of the receiving cavity by a torsional spring, the free end of the sealing plate is connected to the top end of the placing box by a pull rope, and the two sides of the receiving cavity are respectively provided with a magnetic block capable of attracting the free end of the sealing plate; when the water in the placing box solidifies and moves upward under the driving of the push rod, the placing box can open the closed sealing plate, so that the end of the sealing plate is attracted and fixed under the attraction of the magnetic block after being rotated to a certain angle, so that the air flowing into the air inlet can effectively contact the ice and form cold air, and when the placing box moves towards the inside of the receiving cavity, the end of the sealing plate can be pulled away from the magnetic block by the pull rope, so that the sealing plate can automatically reset and seal the placing box, so that the operation of the sealing structure can be automatically operated according to the movement of the placing box, and the practicability of the platform is improved.

[0009] Preferably, the outer side wall of the receiving cavity is connected with an inclined baffle, the side wall of the receiving cavity corresponding to the bottom end of the baffle is connected with a heat preservation layer, a collecting groove is formed at the position corresponding to the baffle bottom end of the receiving cavity side wall, the bottom end of the placing box is connected with a blocking block capable of sealing the collecting groove, and the bottom end of the receiving cavity is connected with a recovery pipe; when the refrigeration device is working, the temperature of the outer wall of the receiving cavity is reduced, so that the high-temperature gas in the workbench is easily condensed on the side wall of the receiving cavity and flows to the baffle, and during the upward movement of the placing box, the blocking block is driven to move upward synchronously, and the collecting groove is no longer sealed, so that the condensed water collected at the baffle can flow into the receiving cavity and flow out through the recovery pipe, reducing the influence of the condensed water on the internal parts of the platform.

[0010] Preferably, the recovery pipe is connected with a control valve, the bottom end of the placing box is provided with a liquid inlet groove, the groove opening of the liquid inlet groove gradually increases from bottom to top, the inside of the liquid inlet groove is provided with a blocking block, the blocking block and the top end of the liquid inlet groove are connected with an elastic member, and the bottom end of the placing box is in close contact with the inner wall of the receiving cavity; during the melting process of the ice in the placing box, a certain evaporation is generated, so that the water in the placing box gradually decreases, at this time, the recovery pipe is controlled to be closed through the control valve, so that the condensed water can be accumulated in the receiving cavity, and during the downward movement of the placing box, the blocking block at the liquid inlet groove is opened by extruding the accumulated water, so that the accumulated water in the receiving cavity is pressed into the placing box and balanced, and the blocking block is sealed to the liquid inlet groove again under the action of the elastic member, so that the cooling water in the placing box can be effectively supplemented, and the condensed water generated in the receiving cavity can be effectively utilized.

[0011] Preferably, a chute is arranged on the side wall of the receiving cavity, and an impact block is slidably connected in the chute; the impact block is connected with a spring at one end of the chute close to the placing box; and a magnetic layer capable of attracting the impact block is arranged at the bottom end of the placing box; during the upward movement of the placing box, the impact block is impacted against the side wall of the receiving cavity by the attraction of the magnetic layer, so that the condensed water remaining on the side wall of the receiving cavity falls more fully and is collected.

[0012] Preferably, a plurality of groups of air guide pipes are connected to the side wall in the placing box, and air guide grooves are arranged on the side walls of the placing box corresponding to the two ends of the air guide pipes; the gas at the air inlet can pass through the air guide pipes through the air guide grooves, and more effective cold air is formed in the air guide pipes under the action of the lower environment, further improving the heat dissipation effect in the workbench.

[0013] Preferably, filter screens are arranged in the air inlets and air outlets, respectively, and the motor is a reversible servo motor; the filter screens can reduce the impurities flowing into the workbench from the air inlets and air outlets; when the impurities accumulated on the outer surface of the filter screen at the air inlet are more, the motor is controlled to drive the fan blades to reverse, so that the gas in the workbench flows to the outside of the filter screen under the action of the fan blades, thereby achieving a "backwashing" effect on the filter screen and improving the cleanliness of the surface of the filter screen.

[0014] Preferably, the air guide pipes are arranged in a wave shape; by arranging the shape of the air guide pipes, the external gas can flow through the placing box for a longer distance, improving the cooling effect of the ice blocks on the gas, and the water vapor in the gas can condense on the side wall of the air guide pipe and collect at the bottom end of the concave part; during the subsequent cooling process in the receiving cavity, the water in the concave part can also form ice blocks and more effectively cool the subsequent passing gas, thereby further improving the heat dissipation effect in the workbench.

[0015] Preferably, a water inlet is arranged at the bottom end of the concave part of the air guide pipe, a one-way valve is arranged in the water inlet, an arc-shaped deformation layer is connected to the inner wall of the air guide pipe on the side of the water inlet away from the air inlet end of the air guide pipe, a gap is formed between the free end of the deformation layer and the inner wall of the air guide pipe, the deformation layer is made of a memory metal material and can bend towards the water inlet after being cooled, and the water in the concave part gradually exerts pressure on the deformation layer after the deformation layer deforms and adheres to the inner wall of the air guide pipe, so that the water flows into the placing box after the one-way valve is opened, thereby achieving the effect of recycling the condensed water in the air guide pipe.

[0016] The beneficial effects of the present application are as follows:

[0017] 1. The present application can efficiently cool the inside of the platform by putting ice blocks into the placing box, driving the fan blades by the motor, making the outside gas flow into the placing box under the driving of the fan blades, and then reducing the temperature after passing the ice blocks in the placing box, and becoming cold air to flow into the workbench, and then flowing out from the air outlet after passing the working equipment in the workbench, thereby reducing the situation that the heat in the platform is difficult to be effectively dissipated after long time and high load operation, and affecting the analysis and decision of e-commerce operation, and the cold air is generated by placing ice blocks, which can make the generation of cold air more persistent, and compared with the existing technology of continuously generating cold air by refrigeration equipment, it is more energy-saving.

[0018] 2. When the ice blocks in the placing box gradually melt, the placing box is driven into the storage cavity by the push rod, and the blocking structure blocks the top end of the storage cavity, and the refrigeration device works first when the placing box works next time, at this time, the temperature in the storage cavity is reduced to make the melted water in the placing box form ice blocks again, and then the refrigeration device stops working, and the blocking structure is opened, and the placing box is driven by the push rod to move to the air inlet again, thereby effectively cooling the inside of the workbench. BRIEF DESCRIPTION OF DRAWINGS

[0019] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor.

[0020] The present application will be further described below in combination with the drawings.

[0021] Figure 1 is a structural schematic view of the present application;

[0022] Figure 2 is Figure 1 is an enlarged view of A in

[0023] Figure 3 is Figure 2 is an enlarged view of B in

[0024] Figure 4 is a partial structural schematic view of the air guide pipe in the second embodiment;

[0025] As shown in the figure, the workbench 1, the air inlet 2, the air outlet 3, the air inlet cavity 4, the motor 5, the fan blade 6, the placing box 7, the storage cavity 8, the refrigeration device 9, the push rod 10, the blocking plate 11, the pull rope 12, the magnetic block 13, the baffle 14, the collection groove 15, the stop block 16, the recovery pipe 17, the control valve 18, the blocking block 19, the elastic member 20, the impact block 21, the magnetic layer 22, the air guide pipe 23, the air guide groove 24, the filter screen 25, the one-way valve 26, the deformation layer 27. DETAILED DESCRIPTION

[0026] In order to make the technical means, creative features, purposes and effects of the present application easy to understand, the present application will be further described below in conjunction with specific embodiments. Obviously, the described embodiments are only some of the embodiments of the present application, not all. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0027] Embodiment one:

[0028] Please refer to Figures 1-3 As shown in the figure, the workbench 1, the air inlet 2, the air outlet 3, the air inlet cavity 4, the motor 5, the fan blade 6, the placing box 7, the storage cavity 8, the refrigeration device 9, the push rod 10, the blocking plate 11, the pull rope 12, the magnetic block 13, the baffle 14, the collection groove 15, the stop block 16, the recovery pipe 17, the control valve 18, the blocking block 19, the elastic member 20, the impact block 21, the magnetic layer 22, the air guide pipe 23, the air guide groove 24, the filter screen 25, the one-way valve 26, the deformation layer 27. The device for e-commerce operation analysis in the prior art can produce a large amount of heat during a long time of work, especially during the peak period of activity transaction. If the heat is not effectively dissipated, the stable operation of the device will be affected, and the effective processing of the internal processor on the analysis and decision will be affected. When the platform in the present application produces a large amount of heat during the process of processing a large amount of data, ice blocks can be put into the placing box 7, and the fan blade 6 can be driven to rotate by the motor 5. The gas outside can flow into the air inlet 2 under the driving of the fan blade 6, and the temperature can be reduced after passing through the ice blocks at the placing box 7. The cold gas can flow into the workbench 1, and can flow out from the air outlet 3 after passing through the working device inside the workbench 1. Therefore, the platform can have the effect of efficient heat dissipation, and the situation that the analysis and decision of e-commerce operation are affected due to the difficulty in effectively dissipating the heat inside the platform after a long time and high load operation can be reduced. The cold gas can be generated by placing ice blocks, and the generation of cold gas can be more persistent. Compared with the continuous generation of cold gas by the refrigeration device in the prior art, the present application is more energy-saving.

[0029] The bottom end of the placing box 7 is provided with a receiving cavity 8 in the inner wall of the workbench 1, the receiving cavity 8 is internally provided with a refrigeration device 9, the bottom end of the receiving cavity 8 is provided with a push rod 10, the top end of the push rod 10 is connected with the placing box 7, and the top end of the receiving cavity 8 is provided with a sealing structure; when the ice blocks in the placing box 7 gradually melt, the placing box 7 is driven into the receiving cavity 8 by the push rod 10, and the sealing structure is controlled to seal the top end of the receiving cavity 8; when the placing box 7 works next time, the refrigeration device 9 works first, at this time, the temperature in the receiving cavity 8 is reduced to make the melted water in the placing box 7 form ice blocks again, then the refrigeration device 9 stops working, and the sealing structure is opened, and the placing box 7 is driven to move to the air inlet 2 again under the action of the push rod 10, so that the heat dissipation of the inside of the workbench 1 can be effectively realized, and meanwhile, in the process that the refrigeration device 9 makes the water solidify into ice blocks, the receiving cavity 8 can cool the gas in the workbench 1, so that the heat dissipation of the inside of the workbench 1 is also promoted.

[0030] The sealing structure comprises a pair of sealing plates 11 which are symmetrically distributed, the end portions of the sealing plates 11 are rotationally connected to the top end of the receiving cavity 8 through torsion springs, the free ends of the sealing plates 11 are connected with the top end of the placing box 7 through a pull rope 12, and the two sides of the receiving cavity 8 are respectively provided with magnetic blocks 13 which can attract the free ends of the sealing plates 11; when the water in the placing box 7 solidifies and moves upward under the action of the push rod 10, the placing box 7 can push open the closed sealing plates 11, so that the end portions of the sealing plates 11 are attracted and fixed under the attraction of the magnetic blocks 13 after being rotated to a certain angle, so that the air flowing into the air inlet 2 can effectively contact the ice blocks and form cold air, when the placing box 7 moves into the receiving cavity 8, the end portions of the sealing plates 11 can be separated from the magnetic blocks 13 through the pull rope 12, so that the sealing plates 11 can be automatically reset and seal the placing box 7, so that the working of the sealing structure can be automatically realized according to the movement of the placing box 7, and the practicability of the platform is improved.

[0031] The outer side wall of the receiving cavity 8 is connected with an inclined baffle 14, the side wall and the bottom surface of the receiving cavity 8 corresponding to the bottom end of the baffle 14 are connected with a heat preservation layer, the side wall of the receiving cavity 8 is provided with a collecting groove 15 at a position corresponding to the bottom end of the baffle 14, the bottom end of the placing box 7 is connected with a blocking block 16 which can seal the collecting groove 15, and the bottom end of the receiving cavity 8 is connected with a recovery pipe 17; when the refrigeration device 9 works, the high-temperature gas in the workbench 1 is easily condensed on the side wall of the receiving cavity 8 due to the reduced temperature of the outer wall of the receiving cavity 8, and flows to the baffle 14, and in the process that the placing box 7 moves upward, the blocking block 16 is driven to move upward synchronously and no longer seals the collecting groove 15, so that the condensed water collected at the baffle 14 can flow into the receiving cavity 8 and flow out through the recovery pipe 17, and the influence of the condensed water on the parts in the platform is reduced.

[0032] The recovery pipe 17 is connected with a control valve 18, the bottom end of the placing box 7 is provided with a liquid inlet groove, the groove opening of the liquid inlet groove gradually increases from bottom to top, the inside of the liquid inlet groove is provided with a blocking piece 19, the blocking piece 19 and the top end of the liquid inlet groove are connected with an elastic element 20, the bottom end of the placing box 7 is attached to the inner wall of the receiving cavity 8; during the melting process of the ice blocks in the placing box 7, a certain evaporation is generated, so that the water amount in the placing box 7 gradually decreases, at this time, the recovery pipe 17 is closed by controlling the control valve 18, so that the condensed water can be accumulated in the receiving cavity 8, and during the downward movement of the placing box 7, the blocking piece 19 at the liquid inlet groove is pried open by extruding the accumulated water, so that the accumulated water in the receiving cavity 8 is pressed into the placing box 7, and after balance, the blocking piece 19 again blocks the liquid inlet groove under the action of the elastic element 20, so that the cooling water in the placing box 7 can be effectively supplemented, and the condensed water generated in the receiving cavity 8 can be effectively utilized.

[0033] The side wall of the receiving cavity 8 is provided with a sliding groove, the sliding groove is slidably connected with an impact block 21, the impact block 21 is connected with a spring at one end of the sliding groove close to the placing box 7, and the bottom end of the placing box 7 is provided with a magnetic layer 22 capable of attracting the impact block 21; during the upward movement of the placing box 7, the impact block 21 is driven to impact the side wall of the receiving cavity 8 by the attraction of the magnetic layer 22 to the impact block 21, so that the condensed water remaining in the side wall of the receiving cavity 8 falls more fully and is collected.

[0034] A plurality of groups of air guide pipes 23 are connected to the side wall in the placing box 7, and air guide grooves 24 are respectively formed in the side walls of the placing box 7 corresponding to the two ends of the air guide pipes 23; the gas at the air inlet 2 can pass through the air guide pipes 23 through the air guide grooves 24, and more effective cold air can be formed in the air guide pipes 23 under the action of the lower environment, further improving the heat dissipation effect inside the workbench 1.

[0035] The air inlet 2 and the air outlet 3 are respectively provided with filter screens 25, and the motor 5 is a servo motor capable of forward and reverse rotation; the filter screen 25 can reduce the impurities flowing into the inside of the workbench 1 from the air inlet 2 and the air outlet 3, when the impurities accumulated on the outer surface of the filter screen 25 at the air inlet 2 are more, the motor 5 is controlled to drive the fan blade 6 to reverse, so that the gas inside the workbench 1 flows to the outside of the filter screen 25 under the action of the fan blade 6, thereby achieving the effect of "backwashing" of the filter screen 25, and improving the cleanliness of the surface of the filter screen 25.

[0036] Example two:

[0037] As Figure 4As shown, the comparative example one, wherein another embodiment of the present application is: the gas guide pipe 23 is set to be wavy; by setting the shape of the gas guide pipe 23, the gas from the outside can flow through the inside of the placing box 7 for a longer distance, improving the cooling effect of the ice block on the gas, and the water vapor in the gas can condense on the side wall of the gas guide pipe 23 and collect at the bottom of the water vapor recess, then during the process of entering the storage cavity 8 for cooling, the water in the recess can also form ice blocks and can more effectively cool the subsequent passing gas, thereby further improving the heat dissipation effect inside the workbench 1.

[0038] The bottom end of the recess of the gas guide pipe 23 is provided with a water inlet, the inside of the water inlet is provided with a one-way valve 26, the inner wall of the gas guide pipe 23 corresponding to the side away from the gas inlet end of the water inlet is connected with an arc-shaped deformation layer 27, there is a gap between the free end of the deformation layer 27 and the inner wall of the gas guide pipe 23, the deformation layer 27 is made of a memory metal material and can be bent to the side of the water inlet after being cooled; when the recess bottom end of the gas guide pipe 23 has more water, when the placing box 7 enters the inside of the storage cavity 8 and cools, the end of the deformation layer 27 is cooled and deformed to the side of the water inlet, and after being attached to the inner wall of the gas guide pipe 23, gradually exerts pressure on the water in the recess, so that the accumulated water flows into the inside of the placing box 7 after opening the one-way valve 26, thereby being able to recycle the more condensed water in the gas guide pipe 23.

[0039] Working principle: by putting ice into the placing box 7 inside, and through the motor 5 drive fan 6 rotation, so that the outside gas flow into the fan 6 under the drive of the air inlet 2, and after the ice in the placing box 7, the temperature is reduced, become cold air into the workbench 1 inside, after the work equipment in the workbench 1 inside from the air outlet 3, so as to be able to play the effect of efficient heat dissipation inside the platform, reduce the platform in long time and high load operation, because the internal heat is difficult to effectively dissipate, and the analysis and decision of e-commerce operation, and through the way of placing ice, can make the cold air production more lasting, compared with the prior art through refrigeration equipment to produce cold air, more energy saving; when the ice in the placing box 7 gradually melts, through the push rod 10 drive placing box 7 into the storage cavity 8 inside, and control the sealing structure to seal the top of the storage cavity 8, when the next placing box 7 work, refrigeration device 9 work first, at this time the temperature in the storage cavity 8 after reducing makes the water in the placing box 7 to form ice again, and then the refrigeration device 9 stop working, and the sealing structure opens, the placing box 7 is driven by the push rod 10 to move to the air inlet 2 again, so as to effectively dissipate heat inside the workbench 1, at the same time, the refrigeration device 9 can cool the gas in the workbench 1 through the storage cavity 8, so as to promote the heat dissipation inside the workbench 1; when the water in the placing box 7 solidifies, and is driven upward by the push rod 10, the placing box 7 can open the closed sealing plate 11, so that the end of the sealing plate 11 is attracted and fixed under the attraction of the magnetic block 13 after rotating to a certain angle, so that the air flowing into the air inlet 2 can effectively contact the ice and form cold air, when the placing box 7 moves to the storage cavity 8 inside, the end of the sealing plate 11 can be separated from the magnetic block 13 by pulling the rope 12, so that the sealing plate 11 can be automatically reset and sealed, so that the sealing structure can automatically work according to the movement of the placing box 7, improving the practicability of the platform; when the refrigeration device 9 works, the temperature of the outer wall of the storage cavity 8 is reduced, so that the high temperature gas in the workbench 1 is easily condensed on the side wall of the storage cavity 8 and flows to the baffle 14, and the placing box 7 moves upward during work, which can drive the stop block 16 to move upward synchronously and no longer seal the collecting groove 15, so that the condensed water collected at the baffle 14 can flow into the storage cavity 8 and flow out through the recovery pipe 17, reducing the influence of condensed water on the internal parts of the platform.The ice blocks in the placing box 7 will evaporate during the melting process, so that the water in the placing box 7 gradually decreases, at this time, the control valve 18 controls the recovery pipe 17 to be closed, so that the condensed water can accumulate in the storage cavity 8, and during the downward movement of the placing box 7, the accumulated water can be extruded to open the blocking block 19 at the liquid inlet groove, so that the accumulated water in the storage cavity 8 is pressed into the placing box 7 and balanced, and the blocking block 19 is blocked again under the action of the elastic element 20. The liquid inlet groove is blocked again, so that the cooling water in the placing box 7 can be effectively supplemented, and the condensed water generated in the storage cavity 8 can be effectively utilized; during the upward movement of the placing box 7, the impact block 21 can be attracted by the magnetic layer 22 to impact the side wall of the storage cavity 8, so that the condensed water remaining on the side wall of the storage cavity 8 can fall more fully and be collected; the gas at the air inlet 2 can pass through the air guide pipe 23 through the air guide groove 24, and can more effectively form cold air under the action of the lower environment in the air guide pipe 23, thereby further improving the heat dissipation effect inside the workbench 1; The filter screen 25 can reduce the impurities flowing into the workbench 1 from the air inlet 2 and the air outlet 3, when the impurities accumulated on the outer surface of the filter screen 25 at the air inlet 2 are more, the fan blade 6 is reversed under the action of the control motor 5, so that the gas in the workbench 1 flows to the outside of the filter screen 25, thereby achieving the effect of "backwashing" of the filter screen 25, and improving the cleanliness of the surface of the filter screen 25; By setting the shape of the air guide pipe 23, the external gas can flow through the inside of the placing box 7 for a longer distance, thereby improving the cooling effect of the ice blocks on the gas, and the water vapor in the gas can be condensed on the side wall of the air guide pipe 23 and collected at the bottom of the water vapor recess, and then during the cooling process of entering the storage cavity 8, the water in the recess can also form ice blocks and can more effectively cool the subsequent passing gas, thereby further improving the heat dissipation effect inside the workbench 1; When the water in the recess of the air guide pipe 23 is more, when the placing box 7 enters the inside of the storage cavity 8 and cools, the end of the deformation layer 27 is deformed to the water inlet side under the cold, and after being attached to the inner wall of the air guide pipe 23, gradually applies pressure to the water in the recess, so that the accumulated water flows into the inside of the placing box 7 after opening the one-way valve 26, thereby achieving the effect of recycling the more condensed water in the air guide pipe 23.

[0040] The above shows and describes the basic principles, main features and advantages of the present application. Those skilled in the art should understand that the present application is not limited to the above embodiments, and the above embodiments and descriptions in the specification are only to illustrate the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the present application. The scope of protection of the present application is defined by the appended claims and their equivalents.

Claims

1. A big data-based e-commerce operation analysis and decision-making platform, comprising a workbench (1); characterized in that: The symmetry of the workbench (1) both sides wall respectively set up air inlet (2) and air outlet (3), air inlet (2) outer end is equipped with air inlet chamber (4), the inside of air inlet chamber (4) is installed motor (5), the end of motor (5) is connected with fan blade (6) through rotating shaft, the inner end of air inlet (2) is equipped with the placement box (7) loaded with ice block; The inside of the placement box (7) is connected with several groups of air guide pipe (23), the air guide pipe (23) both ends correspond to the placement box (7) side wall respectively set up air guide groove (24); The bottom of the placement box (7) correspond to the workbench (1) inner wall is equipped with storage cavity (8), the inside of storage cavity (8) is equipped with refrigeration device (9), the bottom of storage cavity (8) is installed push rod (10), the top of push rod (10) is connected with placement box (7), the top of storage cavity (8) is equipped with plugging structure; The plugging structure includes a pair of symmetrically distributed plugging plate (11), the end of plugging plate (11) is connected in the top of storage cavity (8) through torsional spring, the free end of plugging plate (11) and the top of placement box (7) are connected with pull rope (12), the both sides of storage cavity (8) are respectively equipped with magnetic block (13) can be attracted with the free end of plugging plate (11); The outside of the storage cavity (8) is connected with the inclined baffle (14), the bottom of baffle (14) correspond to the storage cavity (8) side wall and bottom surface are connected with heat preservation layer, the side wall of storage cavity (8) and baffle (14) bottom corresponding position set up collection groove (15), the bottom of placement box (7) is connected with the block (16) can be blocked collection groove (15), the bottom of storage cavity (8) is connected with recovery pipe (17); The recovery pipe (17) is connected with control valve (18), the bottom of placement box (7) set up liquid inlet groove, the slot of liquid inlet groove gradually increases from bottom to top, the inside of liquid inlet groove is equipped with blocking block (19), the free end of blocking block (19) and the top of liquid inlet groove are connected with elastic element (20), the bottom of placement box (7) and the inner wall of storage cavity (8) are consistent; The side wall of storage cavity (8) set up sliding slot, the inside of sliding slot is connected with impact block (21) slidingly, the end of impact block (21) and sliding slot close to placement box (7) is connected with spring, the bottom of placement box (7) is equipped with magnetic layer (22) can be attracted with impact block (21). 2.The big data-based e-commerce operation analysis and decision-making platform according to claim 1, characterized in that: The inside of air inlet (2) and air outlet (3) is respectively equipped with filter screen (25), the motor (5) is set up as servo motor can be forward and reverse. 3.The big data-based e-commerce operation analysis and decision-making platform according to claim 2, characterized in that: The air guide pipe (23) is set up as wave shape.

4. The big data-based e-commerce operation analysis and decision-making platform according to claim 3, characterized in that: The bottom end of the recess of the air guide pipe (23) is provided with a water inlet, the inside of the water inlet is provided with a one-way valve (26), the inner wall of the air guide pipe (23) corresponding to the side, away from the air inlet end of the air guide pipe (23), of the water inlet is connected with an arc-shaped deformation layer (27), a gap exists between the free end of the deformation layer (27) and the inner wall of the air guide pipe (23), the deformation layer (27) is made of a memory metal material and can bend to the side of the water inlet after being cooled.

Citation Information

Patent Citations

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