Fotiaoqiang raw material precooking heat energy circulation cooking pot
By using a Venturi tube to mix high-temperature steam and water in the pre-cooking equipment for Buddha Jumps Over the Wall, and utilizing the heat exchange tubes on the inner wall of the boiler for secondary heating, combined with an electric telescopic rod-driven retrieval and recovery shell and a blower for negative pressure suction to remove scum, the problems of incomplete scum removal and heat energy waste are solved, thereby improving production efficiency and finished product quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-07
- Publication Date
- 2026-03-17
AI Technical Summary
Existing Buddha Jumps Over the Wall pre-cooking equipment has shortcomings in terms of incomplete foam removal and heat waste, which affect the taste of the finished product and result in high energy consumption.
The system employs a heat energy circulation cooking pot, which mixes high-temperature steam and water through a venturi tube and uses heat exchange tubes on the inner wall of the boiler for secondary heating. Combined with an electric telescopic rod-driven retrieval and recovery shell and a blower for negative pressure suction to remove scum, it achieves efficient scum removal and heat recovery.
Ensure that the water used for replenishment is high-temperature hot water to reduce heat waste, improve production efficiency, ensure thorough removal of scum, and enhance the taste and quality of the finished product.
Smart Images

Figure CN121667412A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of Buddha Jumps Over the Wall processing technology, and in particular to a pre-cooking heat energy circulation cooking pot for Buddha Jumps Over the Wall ingredients. Background Technology
[0002] Pre-cooking the ingredients for Buddha Jumps Over the Wall is a crucial and time-consuming step in its preparation. Traditionally, it involves boiling in a simple, conventional pot at high temperatures to remove impurities and fishy smells from seafood and poultry, and to pre-cook them. This type of existing technology typically only includes the boiler body, pot lid, and basic heating system, and its applications are wide-ranging, covering most food processing steps that require long stewing or boiling.
[0003] The pre-cooking process of the ingredients for Buddha Jumps Over the Wall is a crucial step in ensuring the quality of the dish. Traditionally, this relies on high-temperature boiling in conventional pots to remove impurities and fishy smells from the ingredients. These existing pots are widely used and have a simple structure consisting of a pot body and heating device. The basic workflow involves putting the ingredients and water into the pot and heating it directly, then manually covering, skimming, and adding water. However, this simple operating mode has significant efficiency drawbacks. During the cooking process, the proteins and fats released from the ingredients form a large amount of foam on the surface. Current technology relies on inefficient manual skimming, resulting in incomplete foam removal. These residues can then contaminate the broth, directly affecting the taste and quality of the final product. Furthermore, the equipment cannot collect the escaping high-temperature steam during boiling, resulting in a significant waste of heat energy. This not only leads to high energy consumption but also, when manual water replenishment is needed, the addition of room-temperature water further lowers the temperature inside the pot, extending the production cycle. To address the aforementioned technical shortcomings, a solution is proposed. Summary of the Invention
[0004] The purpose of this invention is to: by adjusting the connection status of the blower, the high-temperature steam extracted from the boiler is discharged into the Venturi tube, where the steam is fully mixed with the newly injected water to achieve initial rapid heating; subsequently, the mixed hot water is introduced into the heat exchange tube spirally wound on the inner wall of the boiler, and the boiler itself is used for secondary heating, ensuring that the replenishment water is always high-temperature hot water. This compensates for the shortcomings of existing technology and equipment, which cannot collect the escaped high-temperature steam, resulting in a large amount of wasted heat energy. Not only is the energy consumption high, but when manual water replenishment is required, the room-temperature water added will further lower the temperature inside the boiler, prolonging the production cycle.
[0005] To achieve the above objectives, the present invention adopts the following technical solution: a pre-cooking heat energy circulation cooking pot for Buddha Jumps Over the Wall, comprising a boiler body and a boiler cover, wherein the boiler cover is movably installed on the top surface of the boiler body, a connecting plate is fixedly installed on the outer surface of the boiler cover, a heat recovery pipe is installed on the inner wall of the boiler cover, a sealing rotary joint is installed on the top surface of the heat recovery pipe, an L-shaped adapter is installed on the inner wall of the sealing rotary joint, a retrieval and recovery shell is installed on the bottom surface of the heat recovery pipe, an extraction port is opened on the outer surface of the retrieval and recovery shell, a buoyancy cavity is provided inside the retrieval and recovery shell, a connecting bracket is fixedly installed on the outer surface of the retrieval and recovery shell, a positioning ring is provided on the bottom surface of the connecting bracket, a retrieval plate is provided on the inner wall of the positioning ring, a heat exchange assembly is installed on the outer surface of the boiler body, and a power mechanism is installed on the top surface of the boiler cover; The heat exchange assembly includes a heat exchange tube installed on the inner wall of the boiler body. A control housing is fixedly installed on one side surface of the boiler body. A venturi tube is fixedly installed on the inner wall of the control housing. A wastewater collection pipe is installed on the inner wall of the control housing. A flexible hose is installed on the top surface of the wastewater collection pipe. A steam discharge pipe is provided on the outer surface of the flexible hose. A fan is fixedly installed on one side surface of the control housing.
[0006] Furthermore, there are two connecting plates, which are equidistantly distributed on the outer surface of the boiler cover. One end of the heat recovery pipe extends from the top to the bottom of the boiler cover. The heat recovery pipe is rotatably connected to the boiler cover. The interior of the salvage and recovery shell is interconnected with the interior of the heat recovery pipe. Several suction ports are arranged in a ring array and equidistantly distributed on the outer surface of the salvage and recovery shell. Several salvage plates are arranged in a ring array and equidistantly distributed on the inner wall of the positioning ring.
[0007] Furthermore, one end of the heat exchange tube extends from the outer surface of the boiler body into its interior, and the heat exchange tube is spirally coiled around the inner wall of the boiler body. One end of the venturi tube is connected to one end of the heat exchange tube. The wastewater collection tube consists of two equidistantly distributed pipes on the inner wall of the control housing.
[0008] Furthermore, one end of the flexible hose is connected to the top of the wastewater collection pipe, the other end of the flexible hose is fixedly connected to one end of the L-adapter, and one end of the steam exhaust pipe is connected to the input end of the blower.
[0009] Furthermore, the power mechanism includes a drive assembly and a tilting assembly. The drive assembly includes a rotary bearing, which is fixedly mounted on the top surface of the boiler cover. A gear is mounted on the top surface of the rotary bearing. A positioning plate is fixedly mounted on the top surface of the boiler cover. A worm gear is rotatably mounted on the inner wall of the positioning plate. A drive motor is mounted on the top surface of the boiler cover. An electric telescopic rod is fixedly mounted on the top surface of the boiler cover. A retaining ring is fixedly mounted on the extended end of the electric telescopic rod.
[0010] Furthermore, the outer surface of the rotary bearing is fixedly connected to the boiler cover, the worm gear and the gear mesh with each other, the output end of the drive motor is fixedly connected to one end of the worm gear, the positioning plates are two equidistantly distributed on the top surface of the boiler cover, the electric telescopic rods are two equidistantly distributed on the top surface of the boiler cover, the bottom surface of the fixing ring is fixedly connected to the extended ends of the two electric telescopic rods, the inner wall of the connecting plate is rotatably connected to the outer surface of the L-type adapter, and the inner wall of the rotary bearing is rotatably and slidably connected to the heat recovery pipe.
[0011] Furthermore, the flipping assembly includes a positioning block, which is fixedly installed on the outer surface of the boiler body. A hydraulic rod is rotatably installed on one side surface of the positioning block, and a support frame is fixedly installed on the outer surface of the boiler body.
[0012] Furthermore, there are two positioning blocks, and hydraulic rods are distributed on one side surface of each of the two positioning blocks. The protruding ends of the two hydraulic rods are rotatably connected to the inner walls of the two connecting plates.
[0013] In summary, due to the adoption of the above technical solution, the beneficial effects of the present invention are: 1. The Buddha Jumps Over the Wall ingredient pre-cooking heat energy circulation cooking pot, by adjusting the connection status of the blower, discharges the high-temperature steam extracted from the pot into the Venturi tube. The steam is fully mixed with the newly injected water in the Venturi tube to achieve initial rapid heating. Subsequently, the mixed hot water is introduced into the heat exchange tube spirally wound on the inner wall of the boiler, and the heat of the boiler itself is used for secondary heating, ensuring that the replenishment water is always high-temperature hot water. This makes up for the shortcomings of existing technology and equipment that cannot collect the escaped high-temperature steam, resulting in a large amount of heat energy wasted. Not only is the energy consumption high, but when artificial water replenishment is required, the room temperature water added will further lower the temperature inside the pot, prolonging the production cycle.
[0014] 2. This Buddha Jumps Over the Wall ingredient pre-cooking heat energy circulation cooking pot uses an electric telescopic rod to drive the heat recovery pipe to precisely position the scum collection shell to the water surface. Then, the drive motor drives the scum collection plate to rotate, effectively gathering the scum in the center. At the same time, the fan starts to generate negative pressure, which efficiently sucks the gathered scum and steam into the flexible hose through the suction port and separates and collects it into the wastewater collection pipe. This solves the problem of existing technology relying on inefficient manual scum collection, which leads to incomplete scum removal. These residues will re-contaminate the soup and directly affect the taste and quality of the final product. Attached Figure Description
[0015] Figure 1 A schematic diagram of the overall external structure of the present invention is shown; Figure 2 A schematic diagram of the overall internal structure of the present invention is shown; Figure 3 A schematic diagram of the internal structure of the boiler body of the present invention is shown; Figure 4 A schematic diagram of the salvage and recovery shell structure of the present invention is shown; Figure 5 This diagram shows a different angle of the salvage and recovery shell structure of the present invention; Figure 6 A schematic diagram of the heat exchange component structure of the present invention is shown; Figure 7 This diagram shows a different angle of the heat exchange assembly of the present invention. Figure 8 This invention illustrates a schematic diagram of the internal structure of the boiler body from another angle. Figure 9 The present invention is shown. Figure 5 Enlarged structural diagram of the structure at point A.
[0016] Legend: 1. Boiler body; 101. Boiler cover; 102. Connecting plate; 103. Heat recovery pipe; 104. Sealing rotary joint; 105. L-shaped adapter; 106. Salvage and recovery shell; 107. Suction port; 108. Buoyancy cavity; 109. Connecting bracket; 110. Positioning ring; 111. Salvage plate; 2. Heat exchange pipe; 201. Control shell; 202. Venturi tube; 203. Wastewater collection pipe; 204. Flexible hose; 205. Steam exhaust pipe; 206. Fan; 3. Rotary bearing; 301. Gear; 302. Positioning plate; 303. Worm gear; 304. Drive motor; 305. Electric telescopic rod; 306. Fixing ring; 4. Positioning block; 401. Hydraulic rod; 402. Support frame. Detailed Implementation
[0017] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0018] It should be noted that, in the description of this invention, the terms "center," "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.
[0019] like Figures 1-9 As shown, a pre-cooking heat energy circulation cooking pot for Buddha Jumps Over the Wall includes a boiler body 1 and a boiler cover 101. The boiler cover 101 is movably installed on the top surface of the boiler body 1. Two connecting plates 102 are fixedly installed on the outer surface of the boiler cover 101, and the two connecting plates 102 are equidistantly distributed on the outer surface of the boiler cover 101. A heat recovery pipe 103 is installed on the inner wall of the boiler cover 101. The heat recovery pipe 103 is rotatably connected to the boiler cover 101. One end of the heat recovery pipe 103 extends from the top to the bottom of the boiler cover 101. A sealing rotary joint 104 is installed on the top surface of the heat recovery pipe 103. An L-shaped adapter 105 is installed on the inner wall of the sealing rotary joint 104. A retrieval and recovery shell is installed on the bottom surface of the heat recovery pipe 103. The body 106, the interior of the salvage and recovery shell 106 is interconnected with the interior of the heat recovery pipe 103. The outer surface of the salvage and recovery shell 106 is provided with a suction port 107, which is a plurality of suction ports 107 distributed equidistantly in a ring array on the outer surface of the salvage and recovery shell 106. The interior of the salvage and recovery shell 106 is provided with a buoyancy cavity 108. A connecting bracket 109 is fixedly installed on the outer surface of the salvage and recovery shell 106. A positioning ring 110 is provided on the bottom surface of the connecting bracket 109. A salvage plate 111 is provided on the inner wall of the positioning ring 110, which is a plurality of salvage plates 111 distributed equidistantly in a ring array on the inner wall of the positioning ring 110. A heat exchange component is installed on the outer surface of the boiler body 1, and a power mechanism is installed on the top surface of the boiler cover 101.
[0020] In this embodiment of the invention, when the heat recovery pipe 103 rotates, the retrieval shell, the connecting bracket 109 installed on its outer surface, and the retrieval plate 111 will all rotate on the inner wall of the boiler body 1. The retrieval plate 111 has a certain curvature, so when the retrieval plate 111 rotates, it will come into contact with the foam on the water surface and gather the foam at the center of the boiler body 1 through rotational contact. Since the retrieval and recovery shell 106 is located at the center of the boiler body 1 at this time, the gathered foam will come into contact with the rotating retrieval and recovery shell 106, thereby realizing the function of gathering foam.
[0021] Reference Figures 1-9 Specifically, the heat exchange assembly includes a heat exchange tube 2, which is installed on the inner wall of the boiler body 1. One end of the heat exchange tube 2 extends from the outer surface of the boiler body 1 into its interior. The heat exchange tube 2 is spirally coiled around the inner wall of the boiler body 1. A control housing 201 is fixedly installed on one side surface of the boiler body 1. A Venturi tube 202 is fixedly installed on the inner wall of the control housing 201. One end of the Venturi tube 202 is connected to one end of the heat exchange tube 2. A wastewater collection pipe 203 is installed on the inner wall of the control housing 201. Wastewater... Two collection pipes 203 are equidistantly distributed on the inner wall of the control housing 201. A flexible hose 204 is installed on the top surface of the wastewater collection pipe 203. One end of the flexible hose 204 is connected to the top of the wastewater collection pipe 203, and the other end of the flexible hose 204 is fixedly connected to one end of the L-adapter 105. A steam exhaust pipe 205 is provided on the outer surface of the flexible hose 204. One end of the steam exhaust pipe 205 is connected to the input end of the fan 206. The fan 206 is fixedly installed on one side surface of the control housing 201.
[0022] In this embodiment of the invention, when the water level in the boiler body 1 is low and water needs to be injected, the water to be discharged is injected into one end of the venturi tube 202. At this time, the connection state between the output end of the blower 206 and the steam discharge pipe 205 can be adjusted. By adjusting, the output end of the blower 206 is connected to one end of the venturi tube 202. When both the output end and the input end of the blower 206 are connected to the steam discharge pipe 205, the extracted steam will be discharged back into the steam discharge pipe 205 and finally discharged from the steam discharge pipe 205 into the venturi tube 202. When both steam and water are injected into the venturi tube 202, the water and steam will mix in the pipe. The water is rapidly heated by the mixing of high-temperature steam and water and finally discharged into the interior of the heat exchange tube 2. As the water moves along the heat exchange tube 2, the heat of the boiler body 1 itself will heat the input water through the heat exchange tube 2 to achieve the function of heat exchange.
[0023] The power mechanism includes a drive assembly and a tilting assembly. The drive assembly includes a rotary bearing 3, which is fixedly mounted on the top surface of the boiler cover 101. A gear 301 is mounted on the top surface of the rotary bearing 3. A positioning plate 302 is fixedly mounted on the top surface of the boiler cover 101. A worm gear 303 is rotatably mounted on the inner wall of the positioning plate 302. A drive motor 304 is mounted on the top surface of the boiler cover 101. An electric telescopic rod 305 is fixedly mounted on the top surface of the boiler cover 101. A retaining ring 306 is fixedly mounted on the extended end of the electric telescopic rod 305. The outer surface of the rotary bearing 3... The worm gear 303 and gear 301 are fixedly connected to the boiler cover 101. The output end of the drive motor 304 is fixedly connected to one end of the worm gear 303. The positioning plates 302 are two equidistantly distributed on the top surface of the boiler cover 101. The electric telescopic rods 305 are two equidistantly distributed on the top surface of the boiler cover 101. The bottom surface of the fixing ring 306 is fixedly connected to the extended ends of the two electric telescopic rods 305. The inner wall of the connecting plate 102 is rotatably connected to the outer surface of the L-connector 105. The inner wall of the rotating bearing 3 is rotatably and slidably connected to the heat recovery pipe 103.
[0024] The flipping assembly includes a positioning block 4, which is fixedly installed on the outer surface of the boiler body 1. A hydraulic rod 401 is rotatably installed on one side surface of the positioning block 4. A support frame 402 is fixedly installed on the outer side plate surface of the boiler body 1. There are two positioning blocks 4, and hydraulic rods 401 are distributed on one side surface of each of the two positioning blocks 4. The protruding ends of the two hydraulic rods 401 are rotatably connected to the inner walls of the two connecting plates 102.
[0025] Specific usage process: When it is necessary to use the Buddha Jumps Over the Wall ingredient pre-cooking heat energy circulation pot, put the ingredients to be pre-cooked into the boiler body 1. After the ingredients are put in, add clean water into the boiler body 1 and start the pot to heat the water in the boiler body 1. After the boiler body 1 is started, immediately start the hydraulic rod 401. When the hydraulic rod 401 is started, its end will extend, thereby pushing the boiler cover 101 to rotate on one side surface of the boiler body 1 through the rotating connecting plate 102, so that the boiler cover 101 covers the top surface of the boiler body 1 by rotation. When the internal temperature of the boiler body 1 reaches a certain height, since the Buddha Jumps Over the Wall ingredients are generally seafood... Fresh and poultry meat products, including chicken and duck meat products, will produce a layer of foam on the surface of the water layer inside the boiler body 1 during pre-cooking. At this time, the electric telescopic rod 305 is activated. When the electric telescopic rod 305 is activated, it will drive the fixed ring 306 installed at the end to move downwards. The inner wall of the fixed ring 306 is fixedly connected to the outer surface of the L-connector 105, and the L-connector 105 is connected to the heat recovery pipe 103 through a sealed bearing. Therefore, when the electric telescopic rod 305 is activated, the heat recovery pipe 103 will move downwards along the inner wall of the rotating bearing 3. The distance of movement can be controlled by using a water level monitoring device to control the extension distance of the electric telescopic rod 305. A salvage and recovery shell 106 is installed at the bottom of the boiler cover. The salvage and recovery shell 106 moves downward along with the heat recovery pipe 103. When it reaches the water level, the electric telescopic rod 305 stops extending, and the fan 206 and drive motor 304 start. A worm gear 303 is installed at the output end of the drive motor 304. The worm gear 303 meshes with the gear 301. Therefore, when the drive motor 304 starts, the rotating worm gear 303 drives the rotary bearing 3 to rotate on the top surface of the boiler cover 101 through meshing with the gear 301. The inner wall of the rotary bearing 3 is slidably inserted into the heat recovery pipe 103. Therefore, when the rotary bearing 3 rotates, it drives the heat recovery pipe 103. Together, they rotate on the inner wall of the boiler cover 101. Since the salvage and recovery shell 106 is on a horizontal plane at this time, when the heat recovery pipe 103 rotates, the salvage shell, the connecting bracket 109 installed on its outer surface, and the salvage plate 111 will all rotate on the inner wall of the boiler body 1. The salvage plate 111 has a certain curvature, so when the salvage plate 111 rotates, it will come into contact with the foam on the water surface and gather the foam at the center of the boiler body 1 through rotational contact. Since the salvage and recovery shell 106 is at the center of the boiler body 1 at this time, the gathered foam will come into contact with the rotating salvage and recovery shell 106, thus realizing the function of gathering foam.
[0026] Since the input end of the blower 206 is connected to the steam exhaust pipe 205, and the steam exhaust pipe 205 is connected to the heat recovery pipe 103 through the flexible hose 204, when the blower 206 starts, the negative pressure generated will draw the foam accumulated on the surface of the water layer inside the boiler body 1 into the heat recovery pipe 103 through the suction port 107. Since the opening angle of the suction port 107 is relatively large, when the salvage and recovery shell 106 is at the surface of the water layer, part of the suction port 107 will be above the water surface, while part of the suction port will be below the water surface. Therefore, when the blower 206 generates negative pressure to suck up the foam, it will not suck up too much water in the boiler body 1. After the foam is sucked up, the foam and the steam in the boiler body 1 will enter the interior of the flexible hose 204 and move along the flexible hose 204. After moving a certain distance, the foam will fall into the interior of the wastewater collection pipe 203 to achieve the function of collecting and discharging the foam.
[0027] When the water level in the boiler body 1 is low and water needs to be injected, the water to be discharged is injected into one end of the venturi tube 202. At this time, the connection between the output end of the blower 206 and the steam discharge pipe 205 can be adjusted so that the output end of the blower 206 is connected to one end of the venturi tube 202. When both the output end and the input end of the blower 206 are connected to the steam discharge pipe 205, the extracted steam will be discharged back into the steam discharge pipe 205 and finally discharged from the steam discharge pipe 205 into the venturi tube 202. When both steam and water are injected into the venturi tube 202, the water and steam will mix in the pipe. The water is rapidly heated by the mixing of high-temperature steam and water and finally discharged into the interior of the heat exchange tube 2. As the water moves along the heat exchange tube 2, the heat of the boiler body 1 itself will heat the input water through the heat exchange tube 2 to achieve the function of heat exchange.
[0028] The above are all preferred embodiments of the present invention and are not intended to limit the scope of protection of the present invention. Therefore, all equivalent changes made in accordance with the structure, shape and principle of the present invention should be covered within the scope of protection of the present invention.
Claims
1. A kind of Buddha jumps over wall raw material pre-cooking heat energy cycle cooking pot, including boiler body (1) and boiler cover (101), the boiler cover (101) is movably installed in the top end surface of boiler body (1), it is characterized by: The outer side surface of the boiler cover (101) is fixedly installed with a connecting plate (102), the inner wall of the boiler cover (101) is installed with a heat recovery pipe (103), the top end surface of the heat recovery pipe (103) is installed with a sealing rotary joint (104), the inner wall of the sealing rotary joint (104) is installed with an L adapter (105), the bottom end surface of the heat recovery pipe (103) is installed with a fishing recovery shell (106), the outer side surface of the fishing recovery shell (106) is provided with a tapping opening (107), the inside of the fishing recovery shell (106) is provided with a buoyancy cavity (108), the outer side surface of the fishing recovery shell (106) is fixedly installed with a connecting bracket (109), the bottom end surface of the connecting bracket (109) is provided with a positioning ring (110), the inner wall of the positioning ring (110) is provided with a fishing plate (111), the outer side surface of the boiler body (1) is installed with a heat exchange assembly, and the top end surface of the boiler cover (101) is installed with a power mechanism. The heat exchange assembly comprises a heat exchange pipe (2), the heat exchange pipe (2) is installed on the inner wall of the boiler body (1), one side surface of the boiler body (1) is fixedly installed with a control housing (201), the inner wall of the control housing (201) is fixedly installed with a Venturi tube (202), the inner wall of the control housing (201) is installed with a wastewater collection pipe (203), the top end surface of the wastewater collection pipe (203) is installed with a flexible hose (204), the outer side surface of the flexible hose (204) is provided with a steam exhaust pipe (205), and one side surface of the control housing (201) is fixedly installed with a fan (206).
2. The pre-cooking heat energy cycle cooker for raw materials of Buddha Jumps Over The Wall according to claim 1, characterized in that, The connecting plate (102) is two, two connecting plates (102) are equidistantly distributed on the outer side surface of the boiler cover (101), one end of the heat recovery pipe (103) extends from the top of the boiler cover (101) to the bottom thereof, the heat recovery pipe (103) is rotationally connected with the boiler cover (101), the inside of the fishing recovery shell (106) and the inside of the heat recovery pipe (103) are in communication with each other, the tapping openings (107) are a plurality of annular arrays equidistantly distributed on the outer side surface of the fishing recovery shell (106), and the fishing plates (111) are a plurality of annular arrays equidistantly distributed on the inner wall of the positioning ring (110).
3. The pre-cooking heat energy cycle cooker for raw materials of Buddha Jumps Over The Wall according to claim 1, characterized in that, One end of the heat exchange pipe (2) extends from the outer side surface of the boiler body (1) to the inside thereof, the heat exchange pipe (2) is spirally coiled on the inner wall of the boiler body (1), one end of the Venturi tube (202) and one end of the heat exchange pipe (2) are connected with each other, and the wastewater collection pipe (203) is two equidistantly distributed on the inner wall of the control housing (201).
4. The pre-cooking heat energy cycle cooker for raw materials of Buddha Jumps Over The Wall according to claim 1, characterized in that, One end of the flexible hose (204) and the top end of the wastewater collection pipe (203) are connected with each other, the other end of the flexible hose (204) and one end of the L adapter (105) are fixedly connected, and one end of the steam exhaust pipe (205) and the input end of the fan (206) are connected with each other.
5. The pre-cooking heat energy cycle cooker for raw materials of Buddha Jumps Over The Wall according to claim 1, characterized in that, The power mechanism includes a driving assembly and a turnover assembly, the driving assembly includes a rotating bearing (3), the rotating bearing (3) is fixedly installed on the top surface of the boiler cover (101), the top surface of the rotating bearing (3) is installed with a gear (301), the top surface of the boiler cover (101) is fixedly installed with a positioning plate (302), the inner wall of the positioning plate (302) is rotatably installed with a worm (303), the top surface of the boiler cover (101) is installed with a driving motor (304), the top surface of the boiler cover (101) is fixedly installed with an electric telescopic rod (305), and the extending end of the electric telescopic rod (305) is fixedly installed with a fixed ring (306).
6. The pre-cooking heat energy cycle cooker for raw materials of Buddha Jumps Over The Wall according to claim 5, characterized in that, The outer surface of the rotating bearing (3) is fixedly connected with the boiler cover (101), the worm (303) and the gear (301) are meshed with each other, the output end of the driving motor (304) is fixedly connected with one end of the worm (303), the positioning plate (302) is two equidistantly distributed on the top surface of the boiler cover (101), the electric telescopic rod (305) is two equidistantly distributed on the top surface of the boiler cover (101), the bottom surface of the fixed ring (306) is fixedly connected with the extending ends of the two electric telescopic rods (305), the inner wall of the connecting plate (102) is rotatably connected with the outer surface of the L adapter (105), and the inner wall of the rotating bearing (3) is rotatably and slidingly connected with the heat recovery pipe (103).
7. The pre-cooking heat energy cycle cooker for raw materials of Buddha Jumps Over The Wall according to claim 5, characterized in that, The turnover assembly includes a positioning block (4), the positioning block (4) is fixedly installed on the outer surface of the boiler body (1), one side surface of the positioning block (4) is rotatably installed with a hydraulic rod (401), and the outer plate surface of the boiler body (1) is fixedly installed with a support frame (402).
8. The pre-cooking heat energy cycle cooker for raw materials of Buddha Jumps Over The Wall according to claim 7, characterized in that, The positioning block (4) is two, one side surface of the two positioning blocks (4) is correspondingly provided with a hydraulic rod (401), and the extending ends of the two hydraulic rods (401) are rotatably connected with the inner walls of the two connecting plates (102).