CN211311416U - Dual heater boiling system - Google Patents

Dual heater boiling system Download PDF

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Publication number
CN211311416U
CN211311416U CN201922020296.4U CN201922020296U CN211311416U CN 211311416 U CN211311416 U CN 211311416U CN 201922020296 U CN201922020296 U CN 201922020296U CN 211311416 U CN211311416 U CN 211311416U
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heater
pot
boiling
dual
external heating
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CN201922020296.4U
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黄粤宁
于永靖
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Ningbo Lehui International Engineering Equipment Co Ltd
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Ningbo Lehui International Engineering Equipment Co Ltd
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Abstract

The utility model provides a dual heater system of boiling, including boiling pot, setting at the inside inner heater of boiling pot, setting at the outside outer heater of boiling pot, the boiling pot has pot body discharge gate, and outer heater has the external heating feed inlet of heating body and intercommunication heating body, and pot body discharge gate and external heating feed inlet are linked together, and outer heater has the external heating discharge gate of intercommunication heating body, and the external heating discharge gate is linked together with the boiling pot. The utility model discloses a dual heater system of boiling can rectify and change on the basis of the system of boiling now, reduces the transformation cost of enterprise, satisfies the technological requirement simultaneously.

Description

Dual heater boiling system
Technical Field
The utility model relates to a food processing field, in particular to double-heater boils system.
Background
In the mash wort boiling system, a boiling pot is a device for boiling wort, is used for boiling and concentrating the wort, evaporates redundant water in the wort to ensure that the wort reaches the required concentration, and adds hops to leach bitter and fragrant substances in the hops, thereby playing the roles of heating and solidifying protein, sterilizing and inactivating enzyme.
The boiling pot can be divided into jacket type boiling pot, boiling pot with inner heater and boiling pot with outer heater according to different heating devices. The 3 modes are the most extensive design ideas in the application of the prior boiling pot. The boiling system is used in boiling systems of more large beer enterprises, and has the characteristics of high yield and large volume.
At present, most of high-yield beer companies in the beer industry adopt a boiling pot with an internal heater, and the volume of the boiling pot is 60-100m3The boiling volume is very large, and it is relatively difficult to produce small batches of product. How to more effectively reduce the running cost is a problem which is concerned by people to arrange and use related processes.
In view of the above, there is a need for an improved boiling system to solve the above problems.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a dual heater system of boiling to solve the problem that the current pot of boiling can't the small batch production product.
In order to achieve the above object, the utility model provides a dual-heater system of boiling, dual-heater system of boiling has a pot body discharge gate including boiling pot, setting at the inside internal heating ware of boiling pot, setting at the outside external heating ware of boiling pot, the boiling pot, and the external heating ware has the external heating feed inlet of heating body and intercommunication heating body, and pot body discharge gate and external heating feed inlet are linked together, and the external heating ware has the external heating discharge gate of intercommunication heating body, and the external heating discharge gate is linked together with the boiling pot.
As a further improvement of the utility model, the external heating discharge hole is communicated with the boiling pot through the external heating discharge pipe, and the one end of the external heating discharge pipe in the boiling pot is provided with the spray header for discharging.
As a further improvement, the utility model discloses a pot body discharge gate with through pot body discharging pipe intercommunication between the external heating feed inlet with be equipped with external heating feeding valve between the pot body discharging pipe.
As the utility model discloses a further improvement, the double heater boils the system and still includes the pot body discharge valve with pot body discharging pipe intercommunication, and pot body discharge valve boils the external equipment intercommunication of system with the double heater for lead the material to external equipment.
As a further improvement of the present invention, the dual-heater boiling system further includes an outer heater exhaust port connected to the outer heater for releasing pressure of the outer heater.
As a further improvement of the utility model, the double-heater boiling system further comprises an outer heater condensation water port connected with the outer heater for discharging condensation water.
As a further improvement of the utility model, the double-heater boiling system further comprises a steam input device which is used for being connected with the inner heater and the outer heater to let in steam.
As a further improvement of the utility model, the double-heater boiling system further comprises a blow-off pipe connected with the inner heater.
The utility model has the advantages that: the utility model discloses a dual heater system of boiling, through setting up inner heater and outer heater, thereby the interior heater of material use when more in the boiling pot is processed the material is less in the boiling pot, uses outer heater to carry out material processing to can reduce running cost, simultaneously, the utility model discloses can rectify on the basis of the current system of boiling and change, reduce the transformation cost and the construction cost of enterprise, satisfy the technological requirement simultaneously.
Drawings
Fig. 1 is a schematic structural view of a dual heater boiling system of the present invention.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention clearer, the present invention will be described in detail with reference to the accompanying drawings and specific embodiments.
As shown in fig. 1, the dual-heater boiling system 100 of the present invention includes a boiler 1, an inner heater 2 disposed inside the boiler 1, and an outer heater 3 disposed outside the boiler 1.
The boiling pot 1 is provided with a pot body discharge port 4, the external heater 3 is provided with a heating body 31 and a communicated heating bodyThe outer heating inlet port 36 of the body 31, the pot body outlet port 4 and the outer heating inlet port 36 are communicated through pipes so that the material (e.g., wort) can flow from the boiler 1 into the outer heater 3. The boiling pot 1 is provided with volume indicating device, wort flows into the boiling pot 1 from the previous device (such as gelatinizing pot), and when the amount of wort entering the boiling pot is large, such as 100m3Already contains 80m of boiling water3The wort of (2) can be heated by the internal heater 2 in the boiling pot 1. When the wort volume in the boiler is small, e.g. 100m3The boiling pot only contains 20m3The wort of (2) does not reach the height of the inner heater 2, so that the wort can not be fully contacted with the inner heater 2. In this case, the wort needs to be heated by passing through the external heater 3, thereby preventing the problem that the wort cannot be heated in the boiling pot 1 because of insufficient amount.
The external heater 3 is provided with an external heating discharge port 33 communicated with the heating body 31, and the external heating discharge port 33 is communicated with the boiling pot 1. Specifically, the external heating outlet 33 is connected to the boiling pot 1 via an external heating outlet pipe 34, and an external heating outlet valve 37 may be disposed on the external heating outlet pipe 34 to control the outflow of wort. A shower head 35 is arranged at the upper part of the boiler 1, for example, a shower head 35 is arranged at the end of the external heating outlet pipe 34 located in the boiler 1 for discharging. On the one hand, the external heater 3 can only heat a small part of wort at a time, and when the amount of wort is larger than the amount that can be accommodated by the external heater 3, the whole wort needs to be heated to a predetermined state by circulating the wort between the external heater 3 and the boiling pan 1. In addition, the wort itself often needs to be heated for a plurality of times by a cyclic heating method to reach the preset temperature and evaporation amount. An external heating feed port 36 and an external heating discharge port 33 of the external heater are respectively communicated with a pot body discharge port 4 of the boiling pot 1 and the upper part of the boiling pot 1, and the circulation of the wort between the boiling pot 1 and the external heater 3 is completed by setting a valve switch. On the other hand, since the wort heated by the external heater 3 is not completely processed, it is necessary to introduce the wort into the boiling pot 1 and perform a treatment in another step. Since the water evaporation amount of wort heated by the external heater 3 is low, the arrangement of the spray header 35 can increase the gas-liquid contact area and increase the evaporation amount when wort is introduced into the boiling pan 1.
In this embodiment, the external heater 3 is simply provided, and can be improved on the basis of the existing structure being unchanged. The external heater 3 is connected in parallel to the boiling pot 1 and is connected with the valve through a pipeline, so that the existing equipment and procedures do not need to be changed too much, and the cost is reduced.
With continued reference to fig. 1, the heating body 31 and the external heating inlet port 36 are communicated through a pot body outlet pipe 44, an external heating inlet valve 41 is disposed between the external heating inlet port 36 and the pot body outlet pipe 44, and the external heating inlet valve 41 is disposed, for example, on an external heating inlet pipe 40 branched from the pot body outlet pipe 44. When the external heating feed valve 41 is opened, wort in the boiling pan 1 flows into the external heating feed pipe 40 through the pan body discharge pipe 44 and enters the heating body 31.
Further, the dual-heater boiling system further comprises a discharge valve 43 communicated with the pot body discharge pipe 44, namely, the discharge valve 43 is arranged at the extension section of the pot body discharge pipe 44 and communicated with external equipment of the dual-heater boiling system, and when the discharge valve 43 is opened, the material in the pot body discharge pipe 44 can be led to the external equipment. The external device is, for example, a device unit that enters the next step, i.e., a device unit in the next stage of the boiling pan of the present invention. The boiler outlet tube 44 of the present exemplary embodiment is modified in comparison to the existing outlet tube in that two branches extend, one branch being the outlet tube 42 for discharging wort to the next installation unit and the other branch being the external heating inlet tube 40 to the external heater 3. The wort in the boiling pot 1 can be controlled to be discharged or enter the external heater 3 for processing through the on-off of the external heating feeding valve 41 and the discharging valve 43.
The dual heater boiling system 100 further includes an external heater exhaust port 51 connected to the external heater 3, and an external heater condensation water port 52 connected to the external heater 3. The external heater exhaust port 51 is used for releasing pressure of the external heater 3, and prevents excessive pressure in the external heater 3 caused by steam generated by heating. The outer heater condensate drain port 52 is used to drain the condensate.
The dual heater boiling system 100 further comprises a steam inlet means for connection to the inner heater 2 and the outer heater 3 for introducing steam, which steam inlet means may likewise branch into two paths, one leading to the inner heater 2 in the boiler 1 and the other leading to the outer heating steam inlet 32 via the outer heating steam inlet pipe 6. The steam input device is used for supplementing steam to the inner heater 2 and the outer heater 3 so as to ensure that steam media in the inner heater 2 and the outer heater 3 are supplemented in time and ensure the heat exchange effect. In the embodiment, the steam can be controlled to enter the inner heater 2 or the outer heater 3 through the on-off of the valve. In addition, the dual heater boiling system 100 further includes a drain pipe 7 connected to the internal heater 2. The blow-off pipe 7 is used for discharging impurity sewage and can also be used as an outlet of waste gas.
The operation of the dual heater boiling system 100 in the above embodiment is described below. Firstly, wort from the previous device enters the boiling pot, when the wort needs to be heated externally, the pot body discharging valve 45, the external heating feeding valve 41 and the external heating discharging valve 37 are in an open state, and the discharging valve 42 is in a closed state. The wort enters the heating body 31 through the pot body discharging pipe 44, steam as a heating source enters the external heater 3 from the external heating steam input pipe 6 to heat the wort, the heated wort is discharged from the external heating discharging pipe 34 and returns to the boiling pot 1, and the water is circularly heated and evaporated. After the required concentration is reached and other treatment processes are finished, the external heating feeding valve 41 is closed, the discharging valve 43 is opened, and the wort enters the next equipment unit for subsequent treatment.
The utility model discloses a dual heater boils system 100 is through setting up inner heater 2 and outer heater 3 to use inner heater 2 to process when boiling pot 1 interior material is more, when boiling pot 1 interior material is less, use outer heater 3 to carry out material processing, thereby can reduce the running cost, simultaneously, the utility model discloses a dual heater boils system can be rectified and improved on the basis of the system of boiling now, reduces the transformation cost of enterprise, satisfies the technological requirement simultaneously.
The utility model discloses still provide a material heating technology, adopted the two heaters in above-mentioned each embodiment to boil the system and heat the material and boil. When the double-heater boiling system of the utility model is used, the wort from the previous device firstly enters the boiling pot 1 and then enters the external heater for heating. This is because although the wort is treated by external heating, the amount of wort that can be treated by the external heater is small in each heating, and the wort from the previous stage of the boiling pot is located in the gelatinizing pot, for example, and if the wort is not all put into the boiling pot but directly reaches the external heater, the gelatinizing pot still has the wort remained. The wort is transferred from the gelatinizing pot to the boiling pot for storage, so that the gelatinizing pot can be emptied as soon as possible, the wort in the last stage of the gelatinizing pot (such as a saccharifying pot) can enter the gelatinizing pot for treatment as soon as possible, and the time in the treatment process is saved.
The above embodiments are only for illustrating the technical solutions of the present invention and not for limiting, and although the present invention has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that the technical solutions of the present invention can be modified or replaced equivalently without departing from the spirit and scope of the technical solutions of the present invention.

Claims (8)

1. A dual heater boiling system characterized by: the dual-heater boiling system is in including boiling pot, setting boil inside inner heater of pot, setting and be in boil outside outer heater of pot, it has pot body discharge gate to boil the pot, outer heater has heating body and intercommunication the external heating feed inlet of heating body, pot body discharge gate and external heating feed inlet are linked together, outer heater has the intercommunication the external heating discharge gate of heating body, the external heating discharge gate with boil the pot and be linked together.
2. The dual heater boiling system of claim 1, wherein: the external heating discharge hole is communicated with the boiling pot through an external heating discharge pipe, and a spray head is arranged at one end of the external heating discharge pipe, which is positioned in the boiling pot, for discharging.
3. The dual heater boiling system of claim 1, wherein: the pot body discharge port is communicated with the external heating feed inlet through a pot body discharge pipe, and an external heating feed valve is arranged between the external heating feed inlet and the pot body discharge pipe.
4. A dual heater boiling system according to claim 3, wherein: the double-heater boiling system further comprises a pot body discharge valve communicated with the pot body discharge pipe, and the pot body discharge valve is communicated with external equipment of the double-heater boiling system and used for leading materials to the external equipment.
5. The dual heater boiling system of claim 1, wherein: the double-heater boiling system further comprises an outer heater exhaust port connected with the outer heater, and the outer heater exhaust port is used for releasing pressure of the outer heater.
6. The dual heater boiling system of claim 1, wherein: the dual-heater boiling system further comprises an outer heater condensate drain port connected with the outer heater for draining condensate.
7. The dual heater boiling system of claim 1, wherein: the dual heater boiling system further comprises a steam input device for connecting the inner heater and the outer heater to introduce steam.
8. The dual heater boiling system of claim 1, wherein: the dual-heater boiling system further comprises a drain pipe connected with the inner heater.
CN201922020296.4U 2019-11-20 2019-11-20 Dual heater boiling system Active CN211311416U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922020296.4U CN211311416U (en) 2019-11-20 2019-11-20 Dual heater boiling system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922020296.4U CN211311416U (en) 2019-11-20 2019-11-20 Dual heater boiling system

Publications (1)

Publication Number Publication Date
CN211311416U true CN211311416U (en) 2020-08-21

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Application Number Title Priority Date Filing Date
CN201922020296.4U Active CN211311416U (en) 2019-11-20 2019-11-20 Dual heater boiling system

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CN (1) CN211311416U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110713870A (en) * 2019-11-20 2020-01-21 宁波乐惠国际工程装备股份有限公司 Double-heater boiling system and material heating process

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110713870A (en) * 2019-11-20 2020-01-21 宁波乐惠国际工程装备股份有限公司 Double-heater boiling system and material heating process
CN110713870B (en) * 2019-11-20 2024-04-19 宁波乐惠国际工程装备股份有限公司 Double-heater boiling system and material heating process

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