Camel milk powder workshop waste heat recycling device
By designing a waste heat recovery device in the camel milk powder processing workshop, and using the partition plate and connecting pipe in the tank for heat exchange, the resource waste problem of direct discharge of high-temperature water vapor is solved, and waste heat recycling and energy conservation and emission reduction are achieved.
Patent Information
- Application Number
- CN202421948446.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-13
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2034-08-13
AI Technical Summary
The high-temperature water vapor generated during camel milk powder processing is directly discharged, resulting in waste of resources and the inability to achieve energy conservation and emission reduction.
A waste heat recovery device for camel milk powder workshop is designed. By setting two partitions in the tank, it is divided into three chambers, and multiple connecting pipes are set up between the partitions. The connection pipes made of highly thermally conductive material are used for heat exchange, and the waste heat of high-temperature water vapor is converted into hot water for recycling.
The recycling and reuse of waste heat in high-temperature water vapor has been achieved, resource waste has been reduced, and the purpose of energy conservation and emission reduction has been achieved.
Smart Images

Figure CN223050491U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of heat energy recovery, in particular to a waste heat recovery and utilization device for a camel milk powder workshop. Background Art
[0002] Camel milk powder is a formulated milk powder processed mainly from camel milk. Camel milk powder contains rich proteins, carbohydrates, fats, minerals, vitamins and other nutrients, which helps to improve blood circulation, promote the health of the digestive system and enhance immunity. During the processing of camel milk, it needs to be concentrated to remove most of the water in the camel milk. A large amount of high-temperature water vapor will be generated during the concentration process. At present, these high-temperature water vapor are generally discharged directly from the air outlet. Since these high-temperature water vapor have high temperature and high energy, direct discharge will cause waste of resources and cannot achieve the purpose of energy conservation and emission reduction. Therefore, a waste heat recovery and utilization device for a camel milk powder workshop is proposed. Content of the Utility Model
[0003] The purpose of the utility model is to solve any of the above technical problems, and thus a waste heat recovery and utilization device for a camel milk powder workshop is proposed, which includes a tank body. One side of the top of the tank body is provided with an air inlet pipe and a water inlet pipe, and one side of the bottom of the tank body is provided with a first drain pipe and an exhaust pipe. Two partitions are symmetrically arranged in the tank body, and the two partitions divide the inside of the tank body into three chambers, which are the first chamber, the second chamber and the third chamber from left to right. A plurality of connecting pipes are also provided between the two partitions for connection. The air entering the air inlet pipe is discharged from the exhaust pipe through the connecting pipes.
[0004] Further, a plurality of support frames are equidistantly arranged at the bottom of the tank body. The second chamber is not communicated with the first chamber and the third chamber, and the water inlet pipe and the first drain pipe are communicated with the second chamber.
[0005] Further, the connecting pipes are made of metallic copper and connect the first chamber and the third chamber.
[0006] Further, a plurality of baffles are arranged in the tank body. The baffles are semicircular and are located in the second chamber. The baffles are used to reinforce the connecting pipes.
[0007] Further, the baffles are arranged in a staggered up and down manner. A second drain pipe is also provided on one side of the bottom of the tank body, and the second drain pipe is located between the first drain pipe and the exhaust pipe.
[0008] Further, a waterproof breathable film is provided at the connection between the exhaust pipe and the tank body.
[0009] Beneficial effects: In the present utility model, two partition plates are arranged inside the tank body. The partition plates divide the inside of the tank body into three chambers. At the same time, a plurality of connecting pipes are arranged between the two partition plates for connection. The high-temperature water vapor generated during the concentration process enters the tank body from the air inlet pipe and is discharged from the exhaust pipe via the connecting pipes. When the high-temperature water vapor passes through the connecting pipes, it will exchange heat with the natural water in the second chamber, heating the natural water, converting the natural water into hot water and then recycling it, so as to realize the recycling of the waste heat in the high-temperature water vapor, reduce resource waste, and achieve energy conservation and emission reduction. Brief Description of the Drawings
[0010] Figure 1 is the overall structural schematic diagram of the present utility model;
[0011] Figure 2 is the cross-sectional view of the present utility model;
[0012] Figure 3 is the structural schematic diagram of the tank body of the present utility model;
[0013] Reference Signs:
[0014] Tank body 1; Support frame 101; First chamber 102; Second chamber 103; Third chamber 104; Air inlet pipe 2; Water inlet pipe 3; First drain pipe 4; Second drain pipe 5; Exhaust pipe 6; Waterproof and breathable membrane 601; Partition plate 7; Baffle plate 8; Connecting pipe 9. Detailed Description of the Invention
[0015] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments.
[0016] The following disclosure provides many different embodiments or examples for implementing different structures of the present utility model. To simplify the disclosure of the present utility model, components and settings of specific examples are described below. Of course, they are only examples and are not intended to limit the present utility model.
[0017] Next, a waste heat recovery and utilization device for a camel milk powder workshop according to an embodiment of the present utility model will be described with reference to the accompanying drawings, as Figures 1 to 3 shown, the waste heat recovery and utilization device for a camel milk powder workshop includes a tank body 1. One side of the top of the tank body 1 is provided with an air inlet pipe 2 and a water inlet pipe 3. One side of the bottom of the tank body 1 is provided with a first drain pipe 4 and an exhaust pipe 6. Two partition plates 7 are symmetrically arranged inside the tank body 1. The two partition plates 7 divide the inside of the tank body 1 into three chambers, which are the first chamber 102, the second chamber 103, and the third chamber 104 from left to right. A plurality of connecting pipes 9 are also arranged between the two partition plates 7 for connection. The air entering through the air inlet pipe 2 is discharged from the exhaust pipe 6 via the connecting pipes 9.
[0018] Preferably, a plurality of support frames 101 are equidistantly arranged at the bottom of the tank body 1. The second chamber 103 is not connected to the first chamber 102 and the third chamber 104. The water inlet pipe 3 and the first drain pipe 4 are connected to the second chamber 103.
[0019] Preferably, the connecting pipe 9 is made of copper. The connecting pipe 9 connects the first chamber 102 and the third chamber 104. The connecting pipe 9 is located in the second chamber 103. Copper is a high thermal conductivity material, thereby improving the heat exchange efficiency between the high-temperature water vapor in the connecting pipe 9 and the natural water in the second chamber 103.
[0020] In a specific embodiment: during use, the high-temperature water vapor generated during the concentration process of camel milk powder is injected into the tank body 1 from the air inlet pipe 2. The high-temperature water vapor will first enter the first chamber 102, and then be injected into the third chamber 104 through the connecting pipe 9. During the process of the high-temperature water vapor flowing through the connecting pipe 9, by injecting the external natural water into the second chamber 103 of the tank body 1 from the water inlet pipe 3, and since the connecting pipe 103 is a high thermal conductivity material and the connecting pipe 9 is located in the second chamber 103, the high-temperature water vapor will exchange heat with the natural water in the second chamber 103 during the process of flowing through the connecting pipe 9, converting the normal-temperature natural water into hot water. The hot water will be discharged from the first drain pipe 4. The hot water can be used for people's heating or bathing, thereby realizing the recovery and reuse of the waste heat in the high-temperature water vapor, reducing resource waste, and achieving energy conservation and emission reduction.
[0021] Preferably, a plurality of baffles 8 are arranged in the tank body 1. The baffles 8 are semi-circular. The baffles 8 are located in the second chamber 103. The baffles 8 are used to reinforce the connecting pipe 9.
[0022] Preferably, the baffles 8 are arranged in a staggered manner up and down. A second drain pipe 5 is also arranged on one side of the bottom of the tank body 1. The second drain pipe 5 is located between the first drain pipe 4 and the exhaust pipe 6.
[0023] Preferably, a waterproof breathable membrane 601 is arranged at the connection between the exhaust pipe 6 and the tank body 1. The waterproof breathable membrane 601 can only pass gas and liquid cannot pass through.
[0024] In a specific embodiment: when the high-temperature water vapor in the connecting pipe 9 exchanges heat with the natural water in the second chamber 103, the high-temperature water vapor will condense due to cooling to form condensed water. This part of the condensed water will flow into the third chamber 104. When the high-temperature water vapor stops entering the tank body 1, this part of the condensed water is discharged from the tank body 1 by opening the second drain pipe 5. When the high-temperature water vapor continuously exchanges heat with the natural water in the second chamber 103, the second drain pipe 5 is in a closed state, and the gas can only be discharged from the exhaust pipe 6 through the waterproof breathable membrane 601.
[0025] In this embodiment, the waterproof and breathable membrane 601 is mainly a conventional means for those skilled in the art, and its working principle will not be elaborated here.
[0026] Working principle: During use, the high-temperature water vapor generated during the concentration process of camel milk powder is injected into the tank body 1 from the air inlet pipe 2. The high-temperature water vapor will first enter the first chamber 102, and then be injected into the third chamber 104 through the connecting pipe 9. During the process of the high-temperature water vapor flowing through the connecting pipe 9, by injecting the external natural water into the second chamber 103 of the tank body 1 from the water inlet pipe 3, and since the connecting pipe 103 is made of a high heat-conducting material and the connecting pipe 9 is located in the second chamber 103, the high-temperature water vapor will exchange heat with the natural water in the second chamber 103 during the process of flowing through the connecting pipe 9, converting the normal-temperature natural water into hot water. The hot water will be discharged from the first drain pipe 4, and the hot water can be used for people's heating or bathing, thereby realizing the recovery and reuse of the waste heat in the high-temperature water vapor to reduce resource waste and achieve energy conservation and emission reduction.
Claims
1. A camel milk powder workshop waste heat recovery device, comprising a tank body (1), an air inlet pipe (2) and a water inlet pipe (3) are provided on one side of the top of the tank body (1), and a first drainage pipe (4) and an exhaust pipe (6) are provided on one side of the bottom of the tank body (1), characterized in that: Two partitions (7) are symmetrically arranged in the tank body (1), and the two partitions (7) divide the tank body (1) into three chambers, which are respectively a first chamber (102), a second chamber (103) and a third chamber (104) from left to right. A plurality of connecting pipes (9) are also arranged between the two partitions (7) for connection, and the air entering the air intake pipe (2) is discharged from the exhaust pipe (6) via the connecting pipes (9).
2. The camel milk powder workshop waste heat recovery and utilization device according to claim 1, characterized in that: A plurality of support frames (101) are equidistantly arranged at the bottom of the tank body (1); the second chamber (103) is not connected to the first chamber (102) and the third chamber (104); and the water inlet pipe (3) and the first drain pipe (4) are connected to the second chamber (103).
3. The camel milk powder workshop waste heat recovery and utilization device according to claim 1, characterized in that: The connecting pipe (9) is made of metal copper, and the connecting pipe (9) connects the first chamber (102) and the third chamber (104).
4. The camel milk powder workshop waste heat recovery and utilization device according to claim 1, characterized in that: A plurality of baffles (8) are arranged in the tank body (1); the baffles (8) are semicircular in shape; the baffles (8) are located in the second chamber (103); and the baffles (8) are used to reinforce the connecting pipe (9).
5. The camel milk powder workshop waste heat recovery and utilization device as claimed in claim 4, characterized in that: The baffles (8) are arranged in an up-and-down staggered manner, and a second drainage pipe (5) is also provided on one side of the bottom of the tank body (1), and the second drainage pipe (5) is located between the first drainage pipe (4) and the exhaust pipe (6).
6. The camel milk powder workshop waste heat recovery and utilization device as claimed in claim 4, characterized in that: A waterproof and breathable membrane (601) is provided at the connection point between the exhaust pipe (6) and the tank body (1).