Layout structure of dairy product production workshop

By adopting a layout structure of primary power distribution room and multiple secondary power distribution rooms in the dairy production workshop, and setting up functional workshops nearby as needed, the problems of large land area and high energy consumption in existing dairy production workshops have been solved, achieving the effects of energy conservation, emission reduction and production cost reduction.

CN223813951UActive Publication Date: 2026-01-20蒙牛乳业(宁夏)有限公司 +1
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Patent Information

Application Number
CN202520395607.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-07
Publication Date
2026-01-20
Estimated Expiration
2035-03-07

AI Technical Summary

Technical Problem

The existing dairy production workshops have an unreasonable layout, occupy a large area, have high energy consumption, high production costs, and long pipeline spans, resulting in significant losses along the pipeline route.

Method used

The layout adopts a primary power distribution room and multiple secondary power distribution rooms, with functional workshops set up nearby as needed, shortening pipeline length, optimizing power supply lines, and reducing the footprint.

Benefits of technology

It has achieved energy conservation and emission reduction, reduced production costs, improved production efficiency, and reduced pipeline losses.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of dairy product processing, and provides a dairy product production workshop layout structure which comprises a production main workshop, a power distribution room and a plurality of functional workshops. The production main workshop comprises a plurality of production chambers, and each production chamber executes different production processes on dairy products; the power distribution room comprises a first-stage power distribution room and a plurality of second-stage power distribution rooms, and the first-stage power distribution room is electrically connected with each second-stage power distribution room; the functional workshop is connected with the production compartment through a pipeline; the primary power distribution room and a part of the plurality of functional workshops are located outside the production main workshop and are arranged around the production main workshop; and the other parts of the plurality of secondary power distribution rooms and the plurality of functional workshops are arranged in at least part of the production rooms. The dairy product production workshop layout structure is small in occupied area, and is beneficial to reducing dairy product processing energy consumption and reducing dairy product production cost.
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Description

TECHNICAL FIELD

[0001] The utility model relates to dairy product processing technical field especially relates to a dairy product production workshop layout structure. BACKGROUND

[0002] In the dairy product processing, usually based on production main workshop completes the pretreatment, filling, packaging and finished product warehousing to dairy product, in order to meet the processing demand of dairy product, adopts the principle of centralized layout to set up distribution room and function workshop on the side of production main workshop, distribution room is used to satisfy the power supply of electrical equipment in production main workshop, and function workshop is used to provide pure water, ice water, high temperature steam and fresh air in the dairy product processing, and the treatment of waste liquid.

[0003] In practical application, it is found that the layout of the existing dairy product production workshop is unreasonable, and this centralized layout mode not only occupies a large area, but also has a long pipeline span, and there is a large along-path loss in the pipeline conveying process, which is not conducive to energy saving and emission reduction and reducing production cost. UTILITY MODEL CONTENT

[0004] The utility model provides a kind of dairy product production workshop layout structure to at least solve or improve the problem that the layout of the existing dairy product production workshop not only occupies a large area, but also has large energy consumption and high production cost in dairy product processing.

[0005] The utility model provides a kind of dairy product production workshop layout structure, comprising: production main workshop, distribution room and multiple function workshops;

[0006] The production main workshop includes multiple production rooms, each production room performs different production processes on dairy products;The distribution room includes a primary distribution room and multiple secondary distribution rooms, the primary distribution room is electrically connected with each secondary distribution room;The function workshop is connected with the production room by pipeline;Part of the primary distribution room and multiple function workshops are located outside the production main workshop and are arranged around the production main workshop;Another part of the multiple secondary distribution rooms and multiple function workshops is arranged in at least part of the production room.

[0007] The primary distribution room is used to supply power to each function workshop around the production main workshop and the production room in the production main workshop without the secondary distribution room, and the secondary distribution room is used to supply power to the production room where it is located.

[0008] According to the utility model provides a kind of dairy product production workshop layout structure, multiple production rooms include at least pretreatment workshop, filling workshop, packaging workshop and stereoscopic warehouse.

[0009] The pre-treatment workshop, the filling workshop, the packaging workshop and the stereoscopic warehouse are sequentially arranged according to the dairy product production process; the two secondary power distribution rooms are provided, one of which is arranged in the pre-treatment workshop, and the other is arranged in the filling workshop.

[0010] According to the dairy product production workshop layout structure, the pre-treatment workshop and the stereoscopic warehouse are both single-layer structures, and the filling workshop and the packaging workshop are both two-layer structures.

[0011] The upper layer of the filling workshop is used for placing filling equipment, and the lower layer of the filling workshop is used for arranging the secondary power distribution room and part of the functional workshops; the upper and lower layers of the packaging workshop are both used for placing packaging equipment.

[0012] According to the dairy product production workshop layout structure, the top of the pre-treatment workshop and the filling workshop is provided with a transparent skylight.

[0013] The ground height of the upper layer of the filling workshop is lower than that of the pre-treatment workshop, the ground height of the upper layer of the packaging workshop is lower than that of the upper layer of the filling workshop, and the ground height of the stereoscopic warehouse is flush with that of the lower layer of the packaging workshop.

[0014] According to the dairy product production workshop layout structure, the functional workshop comprises a plurality of air conditioning machine rooms.

[0015] Part of the plurality of air conditioning machine rooms is arranged outside the pre-treatment workshop to supply fresh air into the pre-treatment workshop, and another part of the plurality of air conditioning machine rooms is arranged in the lower layer of the filling workshop to supply fresh air into the filling workshop.

[0016] According to the dairy product production workshop layout structure, the functional workshop further comprises an air compressor room.

[0017] The air compressor room is arranged in the lower layer of the filling workshop to respectively supply compressed air to the pre-treatment workshop, the filling workshop and the packaging workshop.

[0018] According to the dairy product production workshop layout structure, the functional workshop further comprises a water treatment room, the water treatment room is arranged in the pre-treatment workshop, and the water treatment room is used for supplying pure water to the pre-treatment workshop and the filling workshop.

[0019] According to the dairy product production workshop layout structure, the water treatment room comprises a water storage tank, a water pump equipment room and a filter equipment room.

[0020] The water storage tank and the water pump equipment room are arranged on one side of the filter equipment room, and the water pump equipment room is arranged on the lower side of the water storage tank.

[0021] The filter equipment room comprises an ultrafiltration equipment room and a reverse osmosis equipment room, and the ultrafiltration equipment room and the reverse osmosis equipment room are arranged in a layered manner.

[0022] According to the dairy product production workshop layout structure, the refrigeration workshop is located outside the production main workshop and is electrically connected with the primary power distribution room, and the refrigeration workshop is used for providing ice water for the pretreatment workshop.

[0023] And / or, the functional workshop further comprises a boiler room, the boiler room is located outside the production main workshop and is electrically connected with the primary power distribution room, and the boiler room is used for providing high-temperature steam for the pretreatment workshop.

[0024] According to the dairy product production workshop layout structure, the sewage treatment room is located outside the production main workshop and is electrically connected with the primary power distribution room, and the sewage treatment room is used for treating waste liquid discharged by the production main workshop.

[0025] The dairy product production workshop layout structure provided by the utility model, by setting the power distribution room as a primary power distribution room and a plurality of secondary power distribution rooms, arranging the secondary power distribution rooms and a part of the functional workshops in the corresponding production rooms of the production main workshop according to the principle of near arrangement, the design not only reduces the floor area of the power distribution room and the functional workshop outside the production main workshop, but also optimizes the power supply line corresponding to the power distribution room, shortens the pipe layout length from the functional workshop to each production room, is favorable for reducing the large along-the-way loss caused by the long pipeline in the dairy product processing, realizes energy saving and emission reduction, and reduces the production cost. BRIEF DESCRIPTION OF DRAWINGS

[0026] In order to more clearly illustrate the technical scheme in the utility model or the prior art, the following will briefly introduce the drawings needed to be used in the embodiment or the prior art description, and obviously, the drawings in the following description are some embodiments of the utility model, and for ordinary skilled in the art, other drawings can be obtained according to these drawings without creative labor.

[0027] Figure 1 It is a top view structural schematic diagram of the dairy product production workshop layout structure provided by the utility model.

[0028] Figure 2 It is a side view structural schematic diagram of the production main workshop provided by the utility model.

[0029] Figure 3 This is a side view structural diagram of the water treatment room provided by this utility model.

[0030] Figure label:

[0031] 1. Main production workshop; 101. Transparent skylight; 11. Pre-treatment workshop; 12. Filling workshop; 13. Packaging workshop; 14. Automated warehouse;

[0032] 2. Power distribution room; 21. Primary power distribution room; 22. Secondary power distribution room;

[0033] 3. Functional workshops; 31. Air conditioning room; 32. Air compressor room; 33. Water treatment room; 331. Water storage tank; 332. Water pump equipment room; 333. Filtration equipment room; 34. Refrigeration workshop; 35. Boiler room; 36. Sewage treatment room. Detailed Implementation

[0034] To make the objectives, technical solutions, and advantages of this utility model clearer, the technical solutions of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0035] The following is combined Figures 1-3 The layout structure of the dairy production workshop provided by the utility model embodiment is described in detail through specific embodiments and application scenarios.

[0036] like Figure 1 and Figure 2 As shown, this utility model embodiment provides a layout structure for a dairy product production workshop, including: a main production workshop 1, a power distribution room 2, and multiple functional workshops 3;

[0037] The main production workshop 1 includes multiple production rooms, each performing different production processes for dairy products; the power distribution room 2 includes a primary power distribution room 21 and multiple secondary power distribution rooms 22, with the primary power distribution room 21 electrically connected to each of the secondary power distribution rooms 22; the functional workshops 3 are connected to the production rooms via pipelines; a portion of the primary power distribution room 21 and the multiple functional workshops 3 are located outside the main production workshop 1 and are arranged around the main production workshop 1; another portion of the multiple secondary power distribution rooms 22 and the multiple functional workshops 3 are located within at least some of the production rooms;

[0038] The first power distribution room 21 is used to supply power to each functional workshop 3 around the main production workshop 1 and each production room in the main production workshop 1 without the second power distribution room 22.

[0039] It can be understood that the main production workshop 1 is used to complete the pretreatment, filling, packaging and finished product storage of dairy products, and each production room in the main production workshop 1 can be configured to be isolated from each other, and each production room performs a production process on dairy products.

[0040] The power distribution room 2 is used to realize power supply, for example, the power distribution room 2 is provided with power devices such as transformers, circuit breakers, switching power supplies and the like; the first power distribution room 21 and each second power distribution room 22 can be provided with substantially the same power devices. Figure 1 The first power distribution room 21 is used to supply power to each second power distribution room 22 and some functional workshops 3.

[0041] The functional workshop 3 is used to provide pure water, ice water, high-temperature steam and fresh air to the production room in the dairy product processing, and to treat waste liquid, wherein the functional workshop 3 which is not suitable to be arranged in the production room is arranged around the main production workshop 1, and the other functional workshops 3 are arranged according to the energy demand of each production room.

[0042] The dairy product production workshop layout structure provided by the utility model, by setting the power distribution room 2 as the first power distribution room 21 and the plurality of second power distribution rooms 22, the second power distribution room 22 and a part of the functional workshop 3 are arranged in the corresponding production room of the main production workshop 1 according to the principle of near arrangement, this design not only reduces the land occupation of the power distribution room 2 and the functional workshop 3 outside the main production workshop 1, but also realizes the optimization of the power supply line corresponding to the power distribution room 2, shortens the pipe arrangement length of the functional workshop 3 to each production room, is favorable for reducing the large along-the-way loss caused by the long pipeline in the dairy product processing, realizes energy saving and emission reduction, and reduces the production cost.

[0043] In some embodiments, as shown in Figure 1 and Figure 2 The plurality of production rooms at least include a pretreatment workshop 11, a filling workshop 12, a packaging workshop 13 and a stereoscopic warehouse 14.

[0044] The pretreatment workshop 11, the filling workshop 12, the packaging workshop 13 and the stereoscopic warehouse 14 are sequentially arranged according to the dairy product production process; the second power distribution room 22 is provided with two, one of which is arranged in the pretreatment workshop 11, and the other is arranged in the filling workshop 12.

[0045] It can be understood that the pre-treatment workshop 11 is used for performing pre-treatment operations on the dairy products before filling, and the pre-treatment operations include homogenization treatment, pasteurization treatment, cooling treatment, ingredient treatment, and degassing treatment, etc. on the dairy products. The filling workshop 12 is usually configured with filling machines, so as to perform filling treatment on the pre-treated dairy products by using the filling machines, and fill the dairy products into milk bags. The packaging workshop 13 is used for packaging the milk bags into cartons based on a packaging production line. The stereoscopic warehouse 14 is provided with stereoscopic shelves, so as to put the cartons containing the milk bags into the stereoscopic shelves with the assistance of transfer equipment.

[0046] The pre-treatment workshop 11, the filling workshop 12, the packaging workshop 13, and the stereoscopic warehouse 14 are isolated from each other, and are sequentially arranged along the length direction of the production main workshop 1, which is consistent with the dairy production process, and is beneficial to reduce the transfer path of the dairy products between different workshops, and improve the production efficiency.

[0047] Among them, the secondary power distribution room 22 in the pre-treatment workshop 11 is used for supplying power to the dairy product pre-treatment equipment such as the homogenizer, the pasteurization equipment, the ingredient equipment, and the degassing equipment in the pre-treatment workshop 11, and supplying power to the related function workshop 3 in the pre-treatment workshop 11. The secondary power distribution room 22 in the filling workshop 12 is used for supplying power to the filling machines in the filling workshop 12.

[0048] In some embodiments, as shown in Figure 1 and Figure 2 , the pre-treatment workshop 11 and the stereoscopic warehouse 14 are both single-story structures, and the filling workshop 12 and the packaging workshop 13 are both two-story structures; the upper layer of the filling workshop 12 is used for placing filling equipment, and the lower layer of the filling workshop 12 is used for arranging the secondary power distribution room 22 and part of the function workshop 3; the upper and lower layers of the packaging workshop 13 are both used for placing packaging equipment.

[0049] It can be understood that the filling operation of the dairy products is performed in a sterile environment, and by arranging the filling workshop 12 as a two-story structure, the secondary power distribution room 22 and part of the function workshop 3 can be arranged in the lower layer of the filling workshop 12, and the filling machines can be arranged in the upper layer of the filling workshop 12, so as to separate the filling machines from the electrical equipment and other function auxiliary equipment.

[0050] At the same time, since the packaging equipment is usually arranged in the form of a packaging line, by arranging the packaging workshop 13 as a two-story structure, the packaging equipment can be placed in the upper and lower layers of the packaging workshop 13, so as to fully utilize the internal space of the packaging workshop 13, and is beneficial to improve the packaging efficiency of the products.

[0051] As shown in Figure 2As shown, the lower ground of the filling workshop 12 and the packaging workshop 13 can be laid with 0-meter height as the reference datum, and the ground of the pretreatment workshop 11 and the upper ground of the filling workshop 12 and the packaging workshop 13 can be laid with 6-meter height as the reference datum.

[0052] In some embodiments, as shown in Figure 2 As shown, the top of the pretreatment workshop 11 and the filling workshop 12 is provided with a transparent skylight 101.

[0053] It can be understood that the transparent skylight 101 can be made of glass or transparent PVC plate. By providing the transparent skylight 101 on the top of the pretreatment workshop 11 and the filling workshop 12, it is ensured that sunlight can directly enter the pretreatment workshop 11 and the filling workshop 12 through the transparent skylight 101. In the case that the outdoor light condition is good, the brightness in the pretreatment workshop 11 and the filling workshop 12 can be ensured, so that the lighting equipment in the pretreatment workshop 11 and the filling workshop 12 does not need to be turned on, achieving environmental protection and energy saving.

[0054] In some embodiments, as shown in Figure 2 As shown, the upper ground of the filling workshop 12 is lower than the ground of the pretreatment workshop 11, the upper ground of the packaging workshop 13 is lower than the upper ground of the filling workshop 12, and the ground of the stereoscopic warehouse 14 is flush with the lower ground of the packaging workshop 13.

[0055] It can be understood that the ground of the pretreatment workshop 11, the upper ground of the filling workshop 12 and the upper ground of the packaging workshop 13 are in a stepped distribution form with a gradient decreasing in turn. This design can ensure that the dairy products can automatically flow from the pretreatment workshop 11 to the filling workshop 12 and then to the packaging workshop 13 along the pipeline under the action of their own gravity, and the sewage generated in each workshop can also flow along the pipeline in turn, reducing the demand for pumping power of the pumping equipment on the pipeline.

[0056] In some embodiments, as shown in Figure 1 and Figure 2 As shown, the functional workshop 3 includes a plurality of air conditioning machine rooms 31. Part of the plurality of air conditioning machine rooms 31 is arranged outside the pretreatment workshop 11 to send fresh air into the pretreatment workshop 11, and another part of the plurality of air conditioning machine rooms 31 is arranged in the lower layer of the filling workshop 12 to send fresh air into the filling workshop 12.

[0057] It can be understood that the air conditioning machine room 31 is provided with a fresh air unit for sending fresh air into the pretreatment workshop 11 or the filling workshop 12. This fresh air sending design can ensure the air quality in the pretreatment workshop 11 or the filling workshop 12 and meet the requirement of differential pressure of the workshop, and is also conducive to reducing the layout length of the air supply pipeline.

[0058] For the pre-treatment workshop 11, the pre-treatment workshop 11 is configured with four air-conditioning machine rooms 31, the four air-conditioning machine rooms 31 are powered by the secondary power distribution room 22 in the pre-treatment workshop 11, and the four air-conditioning machine rooms 31 are arranged outside the wall on the side of the pre-treatment workshop 11 away from the filling workshop 12.

[0059] For the filling workshop 12, the filling workshop 12 is configured with three air-conditioning machine rooms 31, the three air-conditioning machine rooms 31 are arranged on the lower layer of the filling workshop 12 and are powered by the secondary power distribution room 22 arranged on the lower layer of the filling workshop 12, and the three air-conditioning machine rooms 31 are used to send fresh air to the upper layer of the filling workshop 12 to ensure the air quality of the filling area.

[0060] In some embodiments, as shown in Figure 1 and Figure 2 , the functional workshop 3 further comprises an air compressor room 32; the air compressor room 32 is arranged on the lower layer of the filling workshop 12 to respectively deliver compressed air to the pre-treatment workshop 11, the filling workshop 12 and the packaging workshop 13.

[0061] It can be understood that since the filling workshop 12 is located at the center of the working area of the main workshop 1 of the production, by arranging the air compressor room 32 on the lower layer of the filling workshop 12, it is beneficial to ensure that the air compressor room 32 delivers compressed air to the pre-treatment workshop 11, the filling workshop 12 and the packaging workshop 13 through the shortest compressed air delivery pipeline.

[0062] Since the air compressor room 32 is arranged on the lower layer of the filling workshop 12, the arrangement of the air compressor room 32 will not affect the normal filling operation of the filling equipment on the upper layer of the filling workshop 12.

[0063] The air compressor room 32 is used to provide compressed air by an air compressor, and the compressed air is used to provide power for air cylinders and other pneumatic devices in the pre-treatment workshop 11, the filling workshop 12 and the packaging workshop 13.

[0064] In some embodiments, as shown in Figure 1 and Figure 2 , the functional workshop 3 further comprises a water treatment room 33, the water treatment room 33 is arranged in the pre-treatment workshop 11, and the water treatment room 33 is used to supply pure water to the pre-treatment workshop 11 and the filling workshop 12 respectively. Figure 1 In the figure, the solid line connected with the water treatment room 33 shows the water delivery pipeline of the water treatment room 33 supplying pure water to the pre-treatment workshop 11.

[0065] It can be understood that by arranging the water treatment room 33 in the pre-treatment workshop 11, the water treatment room 33 can supply pure water to the pre-treatment workshop 11 and the filling workshop 12 through relatively shorter water delivery pipelines, and this design can shorten the pipeline layout length by about 50% compared with the pipeline of a traditional enterprise.

[0066] The water treatment room 33 is arranged at a position about 50 meters away from the water using equipment in the pretreatment workshop 11.

[0067] In some embodiments, as shown in FIG. 1, in order to reduce the floor area of the water treatment room 33 in the pretreatment workshop 11, the water treatment room 33 comprises a water storage tank 331, a water pump equipment room 332 and a filtration equipment room 333; the water storage tank 331 and the water pump equipment room 332 are arranged on one side of the filtration equipment room 333, and the water pump equipment room 332 is arranged below the water storage tank 331; the filtration equipment room 333 comprises an ultrafiltration equipment room and a reverse osmosis equipment room, and the ultrafiltration equipment room and the reverse osmosis equipment room are arranged in a layered manner. Figure 3

[0068] Specifically, the water storage tank 331 is used for storing tap water, the tap water in the water storage tank 331 reaches the ultrafiltration equipment room and the reverse osmosis equipment room under the pumping of a part of the pumping equipment in the water pump equipment room 332, the ultrafiltration equipment room and the reverse osmosis equipment room purify the tap water to obtain pure water, and the pure water reaches the pretreatment workshop 11 under the pumping of another part of the pumping equipment in the water pump equipment room 332 to participate in the pipeline cleaning of the related equipment in the pretreatment workshop 11 and the ingredient of the dairy products.

[0069] For example, six water storage tanks 331 can be arranged, and the capacity of each water storage tank 331 is 80T.

[0070] For example, a plurality of ultrafiltration membranes are arranged in the ultrafiltration equipment room, the plurality of ultrafiltration membranes are arranged side by side on a rack, and the plurality of ultrafiltration membranes are arranged in series and in parallel according to the actual water demand.

[0071] For example, a plurality of reverse osmosis membranes are arranged in the reverse osmosis equipment room, the plurality of reverse osmosis membranes are arranged side by side on a rack, and the plurality of reverse osmosis membranes are arranged in series and in parallel according to the actual water demand.

[0072] In some embodiments, as shown in FIG. 1, the functional workshop 3 further comprises a refrigeration workshop 34, the refrigeration workshop 34 is arranged outside the production main workshop 1 and is electrically connected with the primary distribution room 21, and the refrigeration workshop 34 is used for providing ice water to the pretreatment workshop 11. Among them, Figure 1 The solid line connected with the refrigeration workshop 34 in FIG. 1 shows the pipeline of the ice water provided by the refrigeration workshop 34 to the pretreatment workshop 11. Figure 1 It can be understood that the refrigeration workshop 34 is provided with a water chiller, the water chiller works according to the electric energy provided by the primary distribution room 21, can provide ice water of zero degree (or cold water of 0-5℃), and the ice water is transported to the pretreatment workshop 11 through the pipeline to cool the dairy products after the pasteurization treatment.

[0073] It can be understood that the refrigeration workshop 34 is provided with a water chiller, the water chiller works according to the electric energy provided by the primary distribution room 21, can provide ice water of zero degree (or cold water of 0-5℃), and the ice water is transported to the pretreatment workshop 11 through the pipeline to cool the dairy products after the pasteurization treatment.

[0074] ​The refrigeration workshop 34 is arranged at one side of the first power distribution room 21, and is arranged at a position about 50m away from the production main workshop 1.

[0075] In some embodiments, as shown in FIG. 3, the functional workshop 3 further comprises a boiler room 35, which is arranged outside the production main workshop 1 and is electrically connected with the first power distribution room 21, and is used to provide high-temperature steam to the pretreatment workshop 11. Figure 1 Figure 1 In some embodiments, as shown in FIG. 3, the functional workshop 3 further comprises a boiler room 35, which is arranged outside the production main workshop 1 and is electrically connected with the first power distribution room 21, and is used to provide high-temperature steam to the pretreatment workshop 11.

[0076] It can be understood that the boiler room 35 uses the combustion of fuels such as coal and natural gas to heat the boiler, so that the water in the boiler absorbs heat and the temperature rises and is converted into high-temperature steam. The temperature of the high-temperature steam is about 100-200℃, and the high-temperature steam is transported to the pretreatment workshop 11 through the steam pipeline. The high-temperature steam can be used for pasteurization of dairy products and heating treatment of dairy products based on plate heat exchangers.

[0077] It can be understood that the boiler room 35 is arranged at a position about 200m away from the production main workshop 1.

[0078] In some embodiments, as shown in FIG. 3, the functional workshop 3 further comprises a sewage treatment room 36, which is arranged outside the production main workshop 1 and is electrically connected with the first power distribution room 21, and is used to treat waste liquid discharged from the production main workshop 1. Figure 1

[0079] It can be understood that the sewage treatment room 36 is arranged at a position away from the production main workshop 1, and each production room of the production main workshop 1 is communicated with the sewage treatment room 36 through a sewage discharge pipeline. The sewage treatment room 36 treats the waste liquid discharged from the production main workshop 1 based on sewage treatment equipment such as a sedimentation tank, a biological filter tank, and a sludge thickener.

[0080] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, and not to limit them. Although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent substitutions for some technical features. These modifications or substitutions do not make the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.​​

Claims

1. A dairy product plant layout structure, characterized in that, The application relates to a production main workshop, a power distribution room and multiple function workshops. The production main workshop comprises multiple production rooms, each of which performs different production processes on dairy products; the power distribution room comprises a primary power distribution room and multiple secondary power distribution rooms, the primary power distribution room is electrically connected with each of the secondary power distribution rooms; the function workshops are connected with the production rooms through pipelines; the primary power distribution room and part of the multiple function workshops are located outside the production main workshop and surround the production main workshop; the multiple secondary power distribution rooms and the other part of the multiple function workshops are arranged in at least part of the production rooms. The primary power distribution room is used for supplying power to each of the function workshops around the production main workshop and the production rooms in the production main workshop without the secondary power distribution rooms; the secondary power distribution rooms are used for supplying power to the production rooms where the secondary power distribution rooms are arranged. The multiple production rooms at least comprise a pretreatment workshop, a filling workshop, a packaging workshop and a stereoscopic warehouse.

2. The dairy plant layout according to claim 1, characterized in that, The pretreatment workshop, the filling workshop, the packaging workshop and the stereoscopic warehouse are sequentially arranged according to the production processes of the dairy products; the secondary power distribution room is provided with two, one of which is arranged in the pretreatment workshop and the other is arranged in the filling workshop. The pretreatment workshop and the stereoscopic warehouse are both single-layer structures, and the filling workshop and the packaging workshop are both two-layer structures.

3. The dairy plant layout according to claim 2, characterized in that, The upper layer of the filling workshop is used for placing filling equipment, the lower layer of the filling workshop is used for arranging the secondary power distribution room and part of the function workshops; the upper and lower layers of the packaging workshop are both used for placing packaging equipment. The top of the pretreatment workshop and the filling workshop is provided with a transparent skylight.

4. The dairy plant layout according to claim 3, characterized in that, The ground height of the upper layer of the filling workshop is lower than that of the pretreatment workshop, the ground height of the upper layer of the packaging workshop is lower than that of the upper layer of the filling workshop, and the ground height of the stereoscopic warehouse is flush with that of the lower layer of the packaging workshop. The function workshops comprise multiple air conditioning machine rooms.

5. The dairy plant layout according to claim 3, characterized in that, Part of the multiple air conditioning machine rooms is arranged outside the pretreatment workshop to send fresh air into the pretreatment workshop, and the other part of the multiple air conditioning machine rooms is arranged in the lower layer of the filling workshop to send fresh air into the filling workshop. The function workshops further comprise an air compressor room.

6. The dairy products plant layout according to claim 3, characterized in that, The air compressor room is arranged in the lower layer of the filling workshop to respectively deliver compressed air to the pretreatment workshop, the filling workshop and the packaging workshop. The function workshops further comprise a water treatment room, which is arranged in the pretreatment workshop and is used for supplying pure water to the pretreatment workshop and the filling workshop.

7. The dairy products plant layout according to any one of claims 2 to 6, characterized in that, The water treatment room comprises a water storage tank, a water pump equipment room and a filter equipment room.

8. The dairy products plant layout according to claim 7, characterized in that, The water storage tank and the water pump equipment room are arranged on one side of the filter equipment room, and the water pump equipment room is located below the water storage tank. The filter equipment room comprises an ultrafiltration equipment room and a reverse osmosis equipment room, and the ultrafiltration equipment room and the reverse osmosis equipment room are arranged in layers. ​ 9. A dairy plant layout structure according to any one of claims 2 to 6, characterised in that, The functional workshop further comprises a refrigeration workshop, which is located outside the production main workshop and electrically connected with the primary power distribution room, and is used to provide ice water to the pretreatment workshop. And / or, the functional workshop further comprises a boiler room, which is located outside the production main workshop and electrically connected with the primary power distribution room, and is used to provide high-temperature steam to the pretreatment workshop.

10. A dairy plant layout according to any one of claims 2 to 6, characterized in that, The functional workshop further comprises a sewage treatment room, which is located outside the production main workshop and electrically connected with the primary power distribution room, and is used to treat waste liquid discharged from the production main workshop.