Heat exchange system
By using a segmented cooling heat exchange system, the temperature of the liquor vapor is controlled by the first and second heat exchangers respectively, which solves the problems of negative pressure and impurity entry during the distillation of Maotai-flavor liquor and improves the quality of the liquor.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-16
- Publication Date
- 2026-03-27
AI Technical Summary
In the existing technology, when the distillation process of Maotai-flavor liquor is cooled to 37℃-45℃ by water cooling, it is easy to cause negative pressure in the heat exchange system, and impurities enter the system, affecting the taste of the liquor.
A segmented cooling heat exchange system is adopted. By using the combination of the first heat exchanger and the second heat exchanger, the temperature of the alcohol vapor is controlled at 60℃-90℃ and 37℃-45℃ respectively, avoiding negative pressure caused by excessive cooling and reducing the entry of impurities.
This effectively avoids negative pressure in the heat exchange system, reduces the entry of impurities from the still, and improves the quality of the finished wine.
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Figure CN224051141U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of brewing, in particular to a heat exchange system. BACKGROUND
[0002] At present, in the distillation process of Jiang-flavor liquor industry, the distillation steam needs to be cooled, and the commonly used methods include air cooling and water cooling. In order to ensure the taste of the liquor, the temperature of the cooled liquor needs to be controlled in the range of 37-45℃, however, the cooling effect cannot be ensured by water cooling, which may affect the taste of the liquor.
[0003] Therefore, the distillation steam is preferably cooled by water, but if the distillation steam is directly cooled to 37-45℃, a large negative pressure may be generated in the heat exchange system, so that the impurities in the retort enter the heat exchange system, thereby affecting the taste of the finished liquor. CONTENT OF THE INVENTION
[0004] Therefore, the present application provides a heat exchange system which can cool the distillation steam in stages, avoid excessive cooling of the heat exchange system, and improve the taste of the finished liquor.
[0005] Therefore, the present application provides a heat exchange system, which comprises: a mounting frame comprising a first mounting bracket and a second mounting bracket connected to each other; a first heat exchanger located at the first mounting bracket, an inlet end of the first heat exchanger being used for connecting with a retort, and the temperature of the liquor flowing out of the outlet of the first heat exchanger being 60-90℃; and a second heat exchanger located at the second mounting bracket, an inlet end of the second heat exchanger being in communication with the outlet end of the first heat exchanger, and an outlet of the second heat exchanger being used for connecting with a liquor receiver, and the temperature of the liquor flowing out of the outlet of the second heat exchanger being 37-45℃.
[0006] In one of the embodiments, the first mounting bracket comprises: a first mounting frame, a first base located in the first mounting frame, the first base being used for mounting the first heat exchanger; and a first lifting assembly located between the first mounting frame and the first base, the first lifting assembly being used for driving the first base to lift; and / or, the second mounting bracket comprises: a second mounting frame, a second base located in the first mounting frame, the second base being used for mounting the second heat exchanger; and a second lifting assembly located between the second mounting frame and the second base, the second lifting assembly being used for driving the second base to lift.
[0007] In one of the embodiments, the first mounting frame is provided with a first sliding hole along the length direction, the first lifting assembly comprises: a first sliding rod, the end of which extends into the first sliding hole and is slidable in the first sliding hole; a first screw rod, one end of which is rotatably connected with the first mounting frame, the other end of which is threadedly connected with the first sliding rod, the first screw rod being perpendicular to the first sliding rod; a first lifting rod, one end of which is rotatably connected with the first base, the other end of which is rotatably connected with the first sliding rod; and / or the second mounting frame is provided with a second sliding hole along the length direction, the second lifting assembly comprises: a second sliding rod, the end of which extends into the second sliding hole and is slidable in the second sliding hole; a second screw rod, one end of which is rotatably connected with the second mounting frame, the other end of which is threadedly connected with the second sliding rod, the second screw rod being perpendicular to the second sliding rod; a second lifting rod, one end of which is rotatably connected with the second base, the other end of which is rotatably connected with the second sliding rod.
[0008] In one of the embodiments, the first lifting assembly further comprises a third lifting rod, the first base is provided with a third sliding hole, one end of the third lifting rod extends into the third sliding hole, and the third lifting rod is slidable and rotatable in the third sliding hole, the other end of the third lifting rod being rotatably connected with the first mounting frame; and / or the second lifting assembly further comprises a fourth lifting rod, the second base is provided with a fourth sliding hole, one end of the fourth lifting rod extends into the fourth sliding hole, and the fourth lifting rod is slidable and rotatable in the fourth sliding hole, the other end of the fourth lifting rod being rotatably connected with the second mounting frame.
[0009] In one of the embodiments, the middle part of the first lifting rod is rotatably connected with the middle part of the third lifting rod, and / or the middle part of the second lifting rod is rotatably connected with the middle part of the fourth lifting rod.
[0010] In one of the embodiments, the first base comprises: a first bottom plate, rotatably connected with the first lifting rod, the first bottom plate being provided with a first sliding groove; a first sliding block, provided with a first sliding part, the first sliding part extending into the first sliding groove and being slidably connected with the first bottom plate, the first sliding block being connected with the first heat exchanger; and / or the second base comprises: a second bottom plate, rotatably connected with the second lifting rod, the second bottom plate being provided with a second sliding groove; a second sliding block, provided with a second sliding part, the second sliding part extending into the second sliding groove and being slidably connected with the second bottom plate, the second sliding block being connected with the second heat exchanger.
[0011] In one of the embodiments, the width of the first sliding groove gradually decreases towards the opening end, the first sliding part being adapted to the first sliding groove, and / or the width of the second sliding groove gradually decreases towards the opening end, the second sliding part being adapted to the second sliding groove.
[0012] In one of the embodiments, the first sliding block is provided with a plurality of blocks, and the plurality of first sliding blocks are arranged at intervals along the length direction of the bottom plate, and / or the second sliding block is arranged at intervals along the length direction of the bottom plate.
[0013] In one of the embodiments, one end of the first sliding block is provided with a first handle, and / or one end of the second sliding block is provided with a second handle.
[0014] In one of the embodiments, the first mounting frame and the second mounting frame are connected through a support rod, and the support rod is arranged obliquely.
[0015] The heat exchange system provided by the embodiment of the present application comprises a mounting frame, a first heat exchanger and a second heat exchanger. The mounting frame comprises a first mounting support and a second mounting support which are connected to each other. The first heat exchanger is located at the first mounting support, and the inlet end of the first heat exchanger is used to be connected with a wine retort. The temperature of the wine liquid flowing out of the outlet of the first heat exchanger is 60-90℃. The second heat exchanger is located at the second mounting support, and the inlet end of the second heat exchanger is communicated with the outlet end of the first heat exchanger. The outlet of the second heat exchanger is used to be connected with a wine receiving device. The temperature of the wine liquid flowing out of the outlet of the second heat exchanger is 37-45℃. The wine steam is cooled in sections by the first heat exchanger and the second heat exchanger, so that the large negative pressure generated in the heat exchange system during heat exchange and cooling is avoided, the impurities in the wine retort are reduced to enter the heat exchange system, and the quality of the wine is improved. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 FIG. 1 shows a structure schematic diagram of a heat exchange system provided by an embodiment of the present application;
[0017] Figure 2 FIG. 2 shows a structure schematic diagram of a first mounting support provided by an embodiment of the present application;
[0018] Figure 3 FIG. 3 shows a structure schematic diagram of a second mounting support provided by an embodiment of the present application.
[0019] Legend of reference signs:
[0020] 1, first heat exchanger; 2, second heat exchanger; 3, first mounting support; 31, first mounting frame; 311, first sliding hole; 32, first base; 321, third sliding hole; 322, first bottom plate; 3221, first sliding groove; 323, first sliding block; 3231, first sliding part; 3232, first handle; 33, first lifting assembly; 331, first sliding rod; 332, first screw rod; 333, first lifting rod; 334, third lifting rod; 4, second mounting support; 41, second mounting frame; 411, second sliding hole; 42, second base; 421, fourth sliding hole; 422, second bottom plate; 4221, second sliding groove; 423, second sliding block; 4231, second sliding part; 4232, second handle; 43, second lifting assembly; 431, second sliding rod; 432, second screw rod; 433, second lifting rod; 434, fourth lifting rod; 5, support rod. DETAILED DESCRIPTION
[0021] In order to make the purpose, technical scheme and advantages of the present application clearer, the present application will be further described in detail below in combination with the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and not to limit the present application.
[0022] It should be noted that the diagrams provided in the embodiments only schematically illustrate the basic concept of the present application, and only the components related to the present application are shown in the diagrams, not the components number, shape and size when actually implemented. The shape, number and proportion of each component when actually implemented can be arbitrarily changed, and the component layout pattern can also be more complex.
[0023] The structure, proportion, size, etc. shown in the drawings of the present specification are only used to cooperate with the content disclosed in the specification, so that those skilled in the art can understand and read, and not to limit the implementation conditions of the present application, so it does not have substantial technical significance. Any modification of structure, change of proportion relationship or adjustment of size, without affecting the effects and purposes that the present application can produce, should still fall within the scope of the technical content disclosed by the present application.
[0024] The orientations or positional relationships indicated by the terms such as "upper", "lower", "left", "right", "intermediate", "longitudinal", "lateral", "horizontal", "inner", "outer", "radial", "circumferential", etc. in the present specification are based on the orientations or positional relationships shown in the drawings, and are only for the convenience of simplifying the description, and not to indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application. In addition, the terms "first", "second" are only for descriptive purposes, and cannot be understood as indicating or implying relative importance.
[0025] The wine steam after distillation is preferably water-cooled, but if the wine steam is directly cooled to 37-45℃, a large negative pressure will be generated in the heat exchange system, so that impurities in the retort enter the heat exchange system, thereby affecting the taste of the finished wine.
[0026] To solve the above problems, with reference to Figure 1 , Figure 1 The structure of the heat exchange system provided by the embodiment of the application is shown. The application provides a heat exchange system, which comprises a mounting frame, a first heat exchanger 1 and a second heat exchanger 2. The mounting frame comprises a first mounting bracket 3 and a second mounting bracket 4 connected to each other. The first heat exchanger 1 is located at the first mounting bracket 3, and the inlet end of the first heat exchanger 1 is used to be connected to a retort. The temperature of the wine liquid flowing out of the outlet of the first heat exchanger 1 is 60-90℃. The second heat exchanger 2 is located at the second mounting bracket 4, and the inlet end of the second heat exchanger 2 is in communication with the outlet end of the first heat exchanger 1. The outlet of the second heat exchanger 2 is used to be connected to a wine receiving device. The temperature of the wine liquid flowing out of the outlet of the second heat exchanger 2 is 37-45℃.
[0027] It should be understood that the mounting frame comprises the first mounting bracket 3 and the second mounting bracket 4, and the first mounting bracket 3 is located above the second mounting bracket 4, so that the first heat exchanger 1 is located above the second heat exchanger 2.
[0028] The first heat exchanger 1 and the second heat exchanger 2 are both plate heat exchangers. The inlet end of the first heat exchanger 1 is connected to the retort through a pipeline, so that the wine steam enters the first heat exchanger 1 from the retort. The cooling channel of the first heat exchanger 1 is connected to a cooling liquid. The temperature of the cooling liquid is about 60℃, so that the temperature of the wine steam after condensation is between 60-90℃. The wine steam is condensed without being excessively condensed, so as to avoid excessive negative pressure in the first heat exchanger 1 and reduce the impurities in the retort from entering the first heat exchanger 1.
[0029] The inlet end of the second heat exchanger 2 is connected to the outlet end of the first heat exchanger 1, so that the wine liquid cooled by the first heat exchanger 1 enters the second heat exchanger 2. The cooling channel of the second heat exchanger 2 is connected to a cooling liquid, and the temperature of the cooling liquid is about 32℃, so that the temperature of the wine liquid flowing out of the outlet of the second heat exchanger 2 is between 37-45℃, thereby improving the quality of the wine. The outlet of the second heat exchanger 2 is connected to the wine receiving device, so as to facilitate the sub-packaging of the wine liquid.
[0030] The application provides the first heat exchanger 1 and the second heat exchanger 2 to segmentally cool the wine steam, so as to avoid a large negative pressure generated in the heat exchange system during heat exchange and cooling, reduce the impurities in the retort from entering the heat exchange system, and improve the quality of the wine.
[0031] With reference to Figure 2 andFigure 3 , Figure 2 Fig. 1 shows a structural schematic diagram of a first mounting bracket provided by an embodiment of the present application, Figure 3 Fig. 2 shows a structural schematic diagram of a second mounting bracket provided by an embodiment of the present application.
[0032] In some optional embodiments, the first mounting bracket 3 comprises a first mounting frame 31, a first base 32 and a first lifting assembly 33. The first base 32 is located in the first mounting frame 31 and is used for mounting the first heat exchanger 1. The first lifting assembly 33 is located between the first mounting frame 31 and the first base 32 and is used for driving the first base 32 to lift.
[0033] The first mounting frame 31 is in a cuboid frame structure. The first base 32 is located in the first mounting frame 31. The first heat exchanger 1 is located at the first base 32 and is connected with the first base 32, which can be connected through bolts. The first lifting assembly 33 is located between the first mounting frame 31 and the first base 32. The first lifting assembly 33 can be a linear drive motor. The first lifting assembly 33 can also be a lead screw guide rail sliding table. The present application does not make any limitation. The first lifting assembly 33 is arranged to control the position of the first base 32 in the first mounting frame 31, thereby facilitating the installation of the first heat exchanger 1. When installing, the first heat exchanger 1 is first installed at the first base 32. The first lifting assembly 33 adjusts the position of the first base 32, so as to facilitate the connection of the first heat exchanger 1 with the retort.
[0034] The second mounting bracket 4 comprises a second mounting frame 41, a second base 42 and a second lifting assembly 43. The second base 42 is located in the second mounting frame 41 and is used for mounting the second heat exchanger 2. The second lifting assembly 43 is located between the second mounting frame 41 and the second base 42 and is used for driving the second base 42 to lift.
[0035] The second mounting frame 41 is in a cuboid frame structure. The second base 42 is located in the second mounting frame 41. The second heat exchanger 2 is located at the second base 42 and is connected with the second base 42, which can be connected through bolts. The second lifting assembly 43 is located between the second mounting frame 41 and the second base 42. The second lifting assembly 43 can be a linear drive motor. The second lifting assembly 43 can also be a lead screw guide rail sliding table. The present application does not make any limitation. The second lifting assembly 43 is arranged to control the position of the second base 42 in the second mounting frame 41, thereby facilitating the installation of the second heat exchanger 2. When installing, the second heat exchanger 2 is first installed at the second base 42. The second lifting assembly 43 adjusts the position of the second base 42, so as to facilitate the connection of the second heat exchanger 2 with the wine connector.
[0036] In some optional embodiments, the first mounting frame 31 is provided with a first sliding hole 311 along the length direction, and the first lifting assembly 33 comprises a first sliding rod 331, a first screw rod 332 and a first lifting rod 333. The first sliding rod 331 extends into the first sliding hole 311 and is slidable in the first sliding hole 311. One end of the first screw rod 332 is threadedly connected with the first mounting frame 31, and the other end of the first screw rod 332 is threadedly connected with the first sliding rod 331. The first screw rod 332 is perpendicular to the first sliding rod 331. One end of the first lifting rod 333 is rotatably connected with the first base 32, and the other end of the first lifting rod 333 is rotatably connected with the first sliding rod 331.
[0037] The opposite sides of the first mounting frame 31 are provided with the first sliding holes 311, and the first sliding holes 311 extend along the length direction of the first mounting frame 31. The first lifting assembly 33 comprises the first sliding rod 331, which is in a cylindrical shape and extends along the width direction of the first mounting frame 31, i.e. the first sliding rod 331 is perpendicular to the first sliding holes 311. Both ends of the first sliding rod 331 extend into the two first sliding holes 311, and the first sliding rod 331 is slidable in the first sliding holes 311.
[0038] The first lifting assembly 33 further comprises the first screw rod 332, which is parallel to the first sliding holes 311. One end of the first screw rod 332 is rotatably connected with the first mounting frame 31, i.e. the first screw rod 332 does not move relative to the first mounting frame 31. The end of the first screw rod 332 extending into the first mounting frame 31 is threadedly connected with the middle part of the first sliding rod 331, i.e. the position of the first sliding rod 331 at the first screw rod 332 can be controlled. In other words, the first screw rod 332 can be used to control the position of the first sliding rod 331 in the first sliding hole 311.
[0039] The first lifting assembly 33 further comprises the first lifting rod 333, which is in a strip shape. One end of the first lifting rod 333 is rotatably connected with the first base 32, and the other end of the first lifting rod 333 is rotatably connected with the first sliding rod 331. When the first sliding rod 331 slides in the first sliding hole 311, the first lifting rod 333 rotates, i.e. the position of the first base 32 in the first mounting frame 31 can be adjusted.
[0040] When adjusting, the operator rotates the first screw rod 332 to adjust the distance of the first screw rod 332 extending into the first mounting frame 31, so as to drive the first sliding rod 331 to move in the first sliding hole 311, and further drive the first lifting rod 333 to rotate, so as to raise or lower the first base 32.
[0041] The second installation frame 41 is provided with a second sliding hole 411 along the length direction, and the second lifting assembly 43 comprises a second sliding rod 431, a second screw rod 432 and a second lifting rod 433. The second sliding rod 431 extends into the second sliding hole 411 and can slide in the second sliding hole 411. One end of the second screw rod 432 is threadedly connected with the second installation frame 41, and the other end of the second screw rod 432 is threadedly connected with the second sliding rod 431. The second screw rod 432 is perpendicular to the second sliding rod 431. One end of the second lifting rod 433 is rotationally connected with the second base 42, and the other end of the second lifting rod 433 is rotationally connected with the second sliding rod 431.
[0042] The second installation frame 41 is provided with a second sliding hole 411 on each of the opposite sides, and the second sliding hole 411 extends along the length direction of the second installation frame 41. The second lifting assembly 43 comprises a second sliding rod 431, which is provided in a cylindrical shape and extends along the width direction of the second installation frame 41, i.e. the second sliding rod 431 is provided perpendicularly to the second sliding hole 411. Both ends of the second sliding rod 431 extend into the two second sliding holes 411, and the second sliding rod 431 can roll and move in the second sliding hole 411.
[0043] The second lifting assembly 43 further comprises a second screw rod 432, which is provided parallel to the second sliding hole 411. One end of the second screw rod 432 is rotationally connected with the second installation frame 41, i.e. the second screw rod 432 does not move relative to the second installation frame 41. The end of the second screw rod 432 extending into the second installation frame 41 is threadedly connected with the middle part of the second sliding rod 431, i.e. the position of the second sliding rod 431 at the second screw rod 432 can be controlled. Therefore, the second screw rod 432 can be used to control the position of the second sliding rod 431 in the second sliding hole 411.
[0044] The second lifting assembly 43 further comprises a second lifting rod 433, which is provided in a strip shape. One end of the second lifting rod 433 is rotationally connected with the second base 42, and the other end of the second lifting rod 433 is rotationally connected with the second sliding rod 431. When the second sliding rod 431 slides in the second sliding hole 411, the second lifting rod 433 rotates, i.e. the position of the second base 42 in the second installation frame 41 can be adjusted.
[0045] When adjusting, the operator rotates the second screw rod 432 to adjust the distance of the second screw rod 432 extending into the second installation frame 41, so as to drive the second sliding rod 431 to move in the second sliding hole 411, and further drive the second lifting rod 433 to rotate, so that the second base 42 is raised or lowered.
[0046] In some optional embodiments, the first lifting assembly 33 further comprises a third lifting rod 334, the first base 32 is provided with a third sliding hole 321, one end of the third lifting rod 334 extends into the third sliding hole 321, and the third lifting rod 334 slides and rotates in the third sliding hole 321, and the other end of the third lifting rod 334 is rotationally connected with the first mounting frame 31.
[0047] The third sliding hole 321 extends along the length direction of the first base 32, and the third sliding hole 321 is provided with two third sliding holes respectively located at two sides of the first base 32, and the third lifting rod 334 is also provided with two third lifting rods. The third lifting rod 334 is in a strip shape, one end of the third lifting rod 334 is provided with a cylindrical protrusion, the cylindrical protrusion extends into the third sliding hole 321, so that the third lifting rod 334 can slide and rotate in the third sliding hole 321, the other end of the third lifting rod 334 is rotationally connected with the first mounting frame 31, and the third lifting rod 334 is crosswise arranged with the first lifting rod 333, that is, the third lifting rod 334 can further support the first base 32, and the stability of supporting the first base 32 is improved.
[0048] Further, the middle part of the first lifting rod 333 is rotationally connected with the middle part of the third lifting rod 334. The connection of the first lifting rod 333 and the third lifting rod 334 is arranged such that the first screw rod 332 can simultaneously drive the first lifting rod 333 and the third lifting rod 334 to rotate, and the rotational connection of the first lifting rod 333 and the third lifting rod 334 can improve the stability of the first lifting rod 333 and the third lifting rod 334, and further improve the supporting effect on the first base 32.
[0049] The second lifting assembly 43 further comprises a fourth lifting rod 434, the second base 42 is provided with a fourth sliding hole 421, one end of the fourth lifting rod 434 extends into the fourth sliding hole 421, and the fourth lifting rod 434 slides and rotates in the fourth sliding hole 421, and the other end of the fourth lifting rod 434 is rotationally connected with the second mounting frame 41.
[0050] The fourth sliding hole 421 extends along the length direction of the second base 42, and the fourth sliding hole 421 is provided with two fourth sliding holes respectively located at two sides of the second base 42, and the fourth lifting rod 434 is also provided with two fourth lifting rods. The fourth lifting rod 434 is in a strip shape, one end of the fourth lifting rod 434 is provided with a cylindrical protrusion, the cylindrical protrusion extends into the fourth sliding hole 421, so that the fourth lifting rod 434 can slide and rotate in the fourth sliding hole 421, the other end of the fourth lifting rod 434 is rotationally connected with the second mounting frame 41, and the fourth lifting rod 434 is crosswise arranged with the second lifting rod 433, that is, the fourth lifting rod 434 can further support the second base 42, and the stability of supporting the second base 42 is improved.
[0051] Further, the middle part of the second lifting rod 433 is rotationally connected with the middle part of the fourth lifting rod 434. The connection of the second lifting rod 433 and the fourth lifting rod 434 is arranged so that the second screw rod 432 can drive the second lifting rod 433 and the fourth lifting rod 434 to rotate at the same time, and the rotation connection of the second lifting rod 433 and the fourth lifting rod 434 can improve the stability of the second lifting rod 433 and the fourth lifting rod 434, thereby improving the support effect on the second base 42.
[0052] In some optional embodiments, the first base 32 comprises a first bottom plate 322 and a first sliding block 323. The first bottom plate 322 is connected with the first lifting rod 333, and the first bottom plate 322 is provided with a first sliding groove 3221. The first sliding block 323 is provided with a first sliding part 3231, the first sliding part 3231 extends into the first sliding groove 3221 and is in sliding connection with the first bottom plate 322, and the first sliding block 323 is connected with the first heat exchanger 1. The first sliding groove 3221 extends along the length direction of the first bottom plate 322, the first sliding groove 3221 is provided with two and is arranged in the width direction of the first bottom plate 322, the first sliding block 323 extends along the width direction of the first bottom plate 322, the first sliding block 323 is arranged perpendicularly to the first sliding groove 3221, the first sliding block 323 is provided with the first sliding part 3231 on one side of the first bottom plate 322, the first sliding part 3231 extends into the first sliding groove 3221, that is, the first sliding block 323 can move along the length direction of the first bottom plate 322, so that the position of the first sliding block 323 at the first bottom plate 322 can be adjusted, and the first heat exchanger 1 is located at the first sliding block 323, so that the position of the first heat exchanger 1 can be adjusted.
[0053] In the above embodiments, the first base 32 is provided with one first sliding block 323, and the first heat exchanger 1 is arranged at the first sliding block 323. In some optional embodiments, the first base 32 is provided with a plurality of first sliding blocks 323, and the plurality of first sliding blocks 323 are arranged in the length direction of the first bottom plate 322, so that a plurality of first heat exchangers 1 can be installed.
[0054] The second base 42 comprises a second bottom plate 422 and a second sliding block 423. The second bottom plate 422 is connected with the second lifting rod 433, and is provided with a second sliding groove 4221. The second sliding block 423 is provided with a second sliding part 4231 which extends into the second sliding groove 4221 and is in sliding connection with the second bottom plate 422. The second sliding block 423 is connected with the second heat exchanger 2. The second sliding groove 4221 extends along the length direction of the second bottom plate 422, and is provided with two second sliding grooves which are spaced apart along the width direction of the second bottom plate 422. The second sliding block 423 extends along the width direction of the second bottom plate 422, and is perpendicular to the second sliding groove 4221. The second sliding block 423 is provided with the second sliding part 4231 on the side facing the second bottom plate 422. The second sliding part 4231 extends into the second sliding groove 4221, that is, the second sliding block 423 can move along the length direction of the second bottom plate 422, so that the position of the second sliding block 423 on the second bottom plate 422 can be adjusted. The second heat exchanger 2 is located at the second sliding block 423, so that the position of the second heat exchanger 2 can be adjusted.
[0055] In some optional embodiments, the second sliding block 423 is provided with a plurality of second sliding blocks 423 which are spaced apart along the length direction of the second bottom plate 422, so that a plurality of second heat exchangers 2 can be installed.
[0056] In some optional embodiments, the width of the first sliding groove 3221 gradually decreases towards the opening end, and the first sliding part 3231 is adapted to the first sliding groove 3221. The cross section of the first sliding groove 3221 is in trapezoidal shape, and the cross section of the first sliding part 3231 is in trapezoidal shape, so that the probability of the first sliding part 3231 falling out of the first sliding groove 3221 can be reduced, and the stability of the installation of the first sliding block 323 and the first bottom plate 322 can be improved.
[0057] The width of the second sliding groove 4221 gradually decreases towards the opening end, and the second sliding part 4231 is adapted to the second sliding groove 4221. The cross section of the second sliding groove 4221 is in trapezoidal shape, and the cross section of the second sliding part 4231 is in trapezoidal shape, so that the probability of the second sliding part 4231 falling out of the second sliding groove 4221 can be reduced, and the stability of the installation of the second sliding block 423 and the second bottom plate 422 can be improved.
[0058] In some optional embodiments, one end of the first sliding block 323 is provided with a first handle 3232. The first handle 3232 is provided to facilitate the insertion of a forklift, so as to facilitate the movement of the first sliding block 323, and also facilitate the connection of the first sliding block 323 and the first bottom plate 322.
[0059] One end of the second sliding block 423 is provided with a second handle 4232. The second handle 4232 is provided to facilitate the insertion of a forklift, so as to facilitate the movement of the second sliding block 423, and also facilitate the connection of the second sliding block 423 and the second bottom plate 422.
[0060] Referring to Figure 1 In some optional embodiments, the first mounting frame 31 and the second mounting frame 41 are connected through the support rod 5, and the support rod 5 is arranged obliquely to reinforce the first mounting frame 31 and the second mounting frame 41, thereby improving the stability of the connection between the first mounting frame 31 and the second mounting frame 41.
[0061] The technical features of the above embodiments can be combined in any manner. To make the description concise, all possible combinations of the technical features in the above embodiments are not described, but as long as the combinations of the technical features do not exist, they should be considered as the scope of the description.
[0062] The above embodiments only express several implementation manners of the application, and the description is relatively specific and detailed, but it should not be understood as a limitation on the scope of the utility model patent. It should be pointed out that for ordinary skilled persons in the art, some modifications and improvements can be made without departing from the concept of the application, and these all belong to the protection scope of the application. Therefore, the protection scope of the patent of the application should be subject to the appended claims.
Claims
1. A heat exchange system, characterized by, The utility model relates to a wine distillation device, including: a mounting frame comprising a first mounting bracket (3) and a second mounting bracket (4) connected to each other; a first heat exchanger (1) located at the first mounting bracket (3), the inlet end of the first heat exchanger (1) being used to be connected to a wine retort, the temperature of the wine flowing out of the outlet of the first heat exchanger (1) being 60-90 DEG C; a second heat exchanger (2) located at the second mounting bracket (4), the inlet end of the second heat exchanger (2) being communicated with the outlet end of the first heat exchanger (1), and the outlet of the second heat exchanger (2) being used to be connected to a wine receiving device, the temperature of the wine flowing out of the outlet of the second heat exchanger (2) being 37-45 DEG C.
2. The heat exchange system according to claim 1, wherein The first mounting bracket (3) comprises: a first mounting frame (31), a first base (32) located in the first mounting frame (31), the first base (32) being used to mount the first heat exchanger (1); a first lifting assembly (33) located between the first mounting frame (31) and the first base (32), the first lifting assembly (33) being used to drive the first base (32) to lift; and / or The second mounting bracket (4) comprises: a second mounting frame (41), a second base (42) located in the first mounting frame (31), the second base (42) being used to mount the second heat exchanger (2); a second lifting assembly (43) located between the second mounting frame (41) and the second base (42), the second lifting assembly (43) being used to drive the second base (42) to lift.
3. The heat exchange system according to claim 2, wherein The first mounting frame (31) is provided with a first sliding hole (311) along the length direction, and the first lifting assembly (33) comprises: a first sliding rod (331) having an end portion extending into the first sliding hole (311) and being slidable in the first sliding hole (311); a first screw rod (332) having one end rotatably connected to the first mounting frame (31), the other end of the first screw rod (332) being threadedly connected to the first sliding rod (331), and the first screw rod (332) being perpendicular to the first sliding rod (331); a first lifting rod (333) having one end rotatably connected to the first base (32) and the other end rotatably connected to the first sliding rod (331); and / or The second mounting frame (41) is provided with a second sliding hole (411) along the length direction, and the second lifting assembly (43) comprises: a second sliding rod (431) having an end portion extending into the second sliding hole (411) and being slidable in the second sliding hole (411); a second screw rod (432) having one end rotatably connected to the second mounting frame (41), the other end of the second screw rod (432) being threadedly connected to the second sliding rod (431), and the second screw rod (432) being perpendicular to the second sliding rod (431); a second lifting rod (433) having one end rotatably connected to the second base (42) and the other end rotatably connected to the second sliding rod (431).
4. The heat exchange system according to claim 3, wherein The first lifting assembly (33) further comprises a third lifting rod (334), the first base (32) is provided with a third sliding hole (321), one end of the third lifting rod (334) extends into the third sliding hole (321), and the third lifting rod (334) slides and rotates in the third sliding hole (321), and the other end of the third lifting rod (334) is rotationally connected with the first mounting frame (31); and / or, The second lifting assembly (43) further comprises a fourth lifting rod (434), the second base (42) is provided with a fourth sliding hole (421), one end of the fourth lifting rod (434) extends into the fourth sliding hole (421), and the fourth lifting rod (434) slides and rotates in the fourth sliding hole (421), and the other end of the fourth lifting rod (434) is rotationally connected with the second mounting frame (41).
5. The heat exchange system of claim 4, wherein, The middle part of the first lifting rod (333) is rotationally connected with the middle part of the third lifting rod (334), and / or the middle part of the second lifting rod (433) is rotationally connected with the middle part of the fourth lifting rod (434).
6. The heat exchange system of claim 4, wherein, The first base (32) comprises: a first bottom plate (322) rotationally connected with the first lifting rod (333), the first bottom plate (322) is provided with a first sliding groove (3221); a first sliding block (323) provided with a first sliding part (3231) extending into the first sliding groove (3221) and slidably connected with the first bottom plate (322), the first sliding block (323) is connected with the first heat exchanger (1); and / or, The second base (42) comprises: a second bottom plate (422) rotationally connected with the second lifting rod (433), the second bottom plate (422) is provided with a second sliding groove (4221); a second sliding block (423) provided with a second sliding part (4231) extending into the second sliding groove (4221) and slidably connected with the second bottom plate (422), the second sliding block (423) is connected with the second heat exchanger (2).
7. The heat exchange system of claim 6, wherein, The width of the first sliding groove (3221) gradually decreases towards the opening end, the first sliding part (3231) is adapted to the first sliding groove (3221), and / or the width of the second sliding groove (4221) gradually decreases towards the opening end, the second sliding part (4231) is adapted to the second sliding groove (4221).
8. The heat exchange system of claim 7, wherein, The first sliding block (323) is provided with a plurality of first sliding blocks (323) which are spaced apart along the length direction of the bottom plate, and / or the second sliding block (423) is spaced apart along the length direction of the bottom plate.
9. The heat exchange system of claim 6, wherein, One end of the first sliding block (323) is provided with a first handle (3232), and / or one end of the second sliding block (423) is provided with a second handle (4232).
10. The heat exchange system of claim 2, wherein, The first mounting frame (31) and the second mounting frame (41) are connected by a support rod (5), and the support rod (5) is obliquely arranged.