CN204369848U - A kind of fermentor tank with temperature-detecting device for the beer production main ferment phase - Google Patents

A kind of fermentor tank with temperature-detecting device for the beer production main ferment phase Download PDF

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Publication number
CN204369848U
CN204369848U CN201520017488.9U CN201520017488U CN204369848U CN 204369848 U CN204369848 U CN 204369848U CN 201520017488 U CN201520017488 U CN 201520017488U CN 204369848 U CN204369848 U CN 204369848U
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CN
China
Prior art keywords
digital comparator
outer hull
converter
temperature sensor
group
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Expired - Fee Related
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CN201520017488.9U
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Chinese (zh)
Inventor
周超
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Ningbo Zhong Ru Machinery Co Ltd
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Ningbo Zhong Ru Machinery Co Ltd
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Priority to CN201520017488.9U priority Critical patent/CN204369848U/en
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Abstract

A kind of fermentor tank with temperature-detecting device for the beer production main ferment phase, the empty internal of the epimere of described outer hull is provided with the first temperature sensor, the empty internal in the stage casing of described outer hull is provided with the second temperature sensor, the empty internal of the hypomere of described outer hull is provided with three-temperature sensor, the first described temperature sensor is connected with the first filter amplification circuit, the first described filter amplification circuit is connected with the first A/D converter, the first described A/D converter is connected with first group of data input pin of the first digital comparator.If such device avoid prior art cannot ensure real-time and fermentor tank arrange position too high will cause judge difficulty increase defect.

Description

A kind of fermentor tank with temperature-detecting device for the beer production main ferment phase
Technical field
The utility model belongs to the temperature-detecting device technical field of beer production, is specifically related to a kind of fermentor tank with temperature-detecting device for the beer production main ferment phase.
Background technology
9 DEG C of main ferment phases, yeast metabolism effect is strong, along with generating a large amount of CO2 and discharging a large amount of heats.In order to make in tank body each section of wine liquid temp strictly balancedly control within the scope of (9 ± 0.5) DEG C, the cooling jacket just must opening fermentor tank is lowered the temperature.In this stage, the cooling jacket of fermentor tank is used to carry out segmentation cooling, make the epimere temperature < stage casing temperature < hypomere temperature of wine liquid temp in fermentation tank, form a thermograde reduced gradually from top to bottom, and during in tank body, wine liquid temp will keep epimere temperature < stage casing temperature < hypomere temperature, can only rely on now to be estimated by thermometer and carry out judging whether that in tank body, wine liquid temp will keep the state of epimere temperature < stage casing temperature < hypomere temperature, if cannot ensure like this detect real-time and fermentor tank arrange position too high will cause judge difficulty increase.
Summary of the invention
The purpose of this utility model provides a kind of fermentor tank with temperature-detecting device for the beer production main ferment phase, comprise the support fixed with ground by bolt, the added outer hull being provided with hollow of described support, the bottom of described outer hull is the conical structure of pointed end, the top of described outer hull is the cylindrical structure that same conical structure is connected, one end of same first pipeline in bottom of described conical structure is connected and the empty internal of conical structure is conducted with the first pipeline, the other end of the first described pipeline is beer import, be cavity structure between the outer wall of outer hull and inwall in addition, the first chuck being provided with conduit in cavity structure between the outer wall of described conical structure and inwall and being conducted with conduit, described conduit is used for transmitting refrigerant, the second chuck that same conduit is conducted is provided with in outer wall in the middle part of described cylindrical structure and the cavity structure between inwall, the top of described outer hull is provided with pressure vessel head, pressure vessel head is provided with hops and saccharomycetic entrance, the empty internal of the epimere of described outer hull is provided with the first temperature sensor, the empty internal in the stage casing of described outer hull is provided with the second temperature sensor, the empty internal of the hypomere of described outer hull is provided with three-temperature sensor, the first described temperature sensor is connected with the first filter amplification circuit, the first described filter amplification circuit is connected with the first A/D converter, the first described A/D converter is connected with first group of data input pin of the first digital comparator, the output terminal of the first digital comparator is connected with the one end with the coil of the first rly. of normally opened contact, and the other end ground connection of the coil of the first rly., and the first hummer being arranged on outer hull is connected by the power supply of same first hummer of the normally opened contact of the first rly., the second described temperature sensor is connected with the second filter amplification circuit, and the second described filter amplification circuit is connected with the second A/D converter, and the second described A/D converter is connected with second group of data input pin of the first digital comparator, described three-temperature sensor is connected with the 3rd filter amplification circuit, the 3rd described filter amplification circuit is connected with the 3rd A/D converter, the 3rd described A/D converter is connected with first group of data input pin of the second digital comparator, the output terminal of the second digital comparator is connected with the one end with the coil of the second rly. of normally opened contact, and the other end ground connection of the coil of the second rly., and the second hummer being arranged on outer hull is connected by the power supply of same second hummer of the normally opened contact of the second rly., the second described in addition A/D converter is also connected with second group of data input pin of the second digital comparator.If such device avoids the real-time that cannot ensure to judge of prior art and the defect of the too high difficulty increase that will cause judging in the position of fermentor tank setting.
In order to overcome deficiency of the prior art, the utility model provides a kind of solution of the fermentor tank with temperature-detecting device for the beer production main ferment phase, specific as follows:
A kind of fermentor tank with temperature-detecting device for the beer production main ferment phase, comprise the support 1 fixed with ground by bolt, the added outer hull 3 being provided with hollow of described support 1, the bottom of described outer hull 3 is the conical structure of pointed end, the top of described outer hull 3 is the cylindrical structure that same conical structure is connected, one end of same first pipeline 2 in bottom of described conical structure is connected and the empty internal of conical structure is conducted with the first pipeline 2, the other end of the first described pipeline 2 is beer import, be cavity structure between the outer wall of outer hull 3 and inwall in addition, the first chuck 4 being provided with conduit n1 in cavity structure between the outer wall of described conical structure and inwall and being conducted with conduit, described conduit is used for transmitting refrigerant, the second chuck that same conduit is conducted is provided with in outer wall in the middle part of described cylindrical structure and the cavity structure between inwall, the top of described outer hull 3 is provided with pressure vessel head 8, pressure vessel head 8 is provided with hops and saccharomycetic entrance m, the empty internal of the epimere of described outer hull 3 is provided with the first temperature sensor 100, the empty internal in the stage casing of described outer hull is provided with the second temperature sensor 200, the empty internal of the hypomere of described outer hull is provided with three-temperature sensor 300, the first described temperature sensor 100 is connected with the first filter amplification circuit 103, the first described filter amplification circuit 103 is connected with the first A/D converter 104, the first described A/D converter 104 is connected with first group of data input pin of the first digital comparator 105, the output terminal of the first digital comparator 105 is connected with the one end with the coil of the first rly. 106 of normally opened contact, and the other end ground connection of the coil of the first rly. 106, and the first hummer 107 being arranged on outer hull is connected by the power supply 108 of same first hummer of the normally opened contact of the first rly. 106, the second described temperature sensor 200 is connected with the second filter amplification circuit 203, the second described filter amplification circuit 203 is connected with the second A/D converter 204, and the second described A/D converter 204 is connected with second group of data input pin of the first digital comparator 105, described three-temperature sensor 300 is connected with the 3rd filter amplification circuit 303, the 3rd described filter amplification circuit 303 is connected with the 3rd A/D converter 304, the 3rd described A/D converter 304 is connected with first group of data input pin of the second digital comparator 305, the output terminal of the second digital comparator 305 is connected with the one end with the coil of the second rly. 306 of normally opened contact, and the other end ground connection of the coil of the second rly. 306, and the second hummer 307 being arranged on outer hull is connected by the power supply 308 of same second hummer of the normally opened contact of the second rly. 306, the second described in addition A/D converter 204 is also connected with second group of data input pin of the second digital comparator 305.
When the input data of first group of data input pin of the first described digital comparator 105 are greater than the input data of second group of data input pin of the first digital comparator 105, the output terminal of the first digital comparator 105 exports high level; When the input data of first group of data input pin of the second described digital comparator 305 are greater than the input data of second group of data input pin of the second digital comparator 305, the output terminal of the second digital comparator 305 exports high level.
The first described digital comparator and the second digital comparator are 74LS686 digital comparator.
Described pressure vessel head 8 is also provided with hanger 9.
Application the utility model such scheme, tool has the following advantages:
The empty internal of the epimere of described outer hull is provided with the first temperature sensor, the empty internal in the stage casing of described outer hull is provided with the second temperature sensor, the empty internal of the hypomere of described outer hull is provided with three-temperature sensor, the first described temperature sensor is connected with the first filter amplification circuit, the first described filter amplification circuit is connected with the first A/D converter, the first described A/D converter is connected with first group of data input pin of the first digital comparator, the output terminal of the first digital comparator is connected with the one end with the coil of the first rly. of normally opened contact, and the other end ground connection of the coil of the first rly., and the first hummer being arranged on outer hull is connected by the power supply of same first hummer of the normally opened contact of the first rly., the second described temperature sensor is connected with the second filter amplification circuit, and the second described filter amplification circuit is connected with the second A/D converter, and the second described A/D converter is connected with second group of data input pin of the first digital comparator, described three-temperature sensor is connected with the 3rd filter amplification circuit, the 3rd described filter amplification circuit is connected with the 3rd A/D converter, the 3rd described A/D converter is connected with first group of data input pin of the second digital comparator, the output terminal of the second digital comparator is connected with the one end with the coil of the second rly. of normally opened contact, and the other end ground connection of the coil of the second rly., and the second hummer being arranged on outer hull is connected by the power supply of same second hummer of the normally opened contact of the second rly., the second described in addition A/D converter is also connected with second group of data input pin of the second digital comparator, and the input data of first group of data input pin of the first digital comparator described in combining are when being greater than the input data of second group of data input pin of the first digital comparator, the output terminal of the first digital comparator exports high level, when the input data of first group of data input pin of the second described digital comparator are greater than the input data of second group of data input pin of the second digital comparator, the output terminal of the second digital comparator exports the function of high level, just can compare each section of temperature value, once occur that abnormal situation just carries out buzzer warning in real time.
Accompanying drawing explanation
Figure l is front view of the present utility model.
Embodiment
Below in conjunction with drawings and Examples, utility model content is described further:
As shown in Figure 1, for the fermentor tank with temperature-detecting device of beer production main ferment phase, comprise the support 1 fixed with ground by bolt, the added outer hull 3 being provided with hollow of described support 1, the bottom of described outer hull 3 is the conical structure of pointed end, the top of described outer hull 3 is the cylindrical structure that same conical structure is connected, one end of same first pipeline 2 in bottom of described conical structure is connected and the empty internal of conical structure is conducted with the first pipeline 2, the other end of the first described pipeline 2 is beer import, be cavity structure between the outer wall of outer hull 3 and inwall in addition, the first chuck 4 being provided with conduit n1 in cavity structure between the outer wall of described conical structure and inwall and being conducted with conduit, described conduit is used for transmitting refrigerant, the second chuck that same conduit is conducted is provided with in outer wall in the middle part of described cylindrical structure and the cavity structure between inwall, the top of described outer hull 3 is provided with pressure vessel head 8, pressure vessel head 8 is provided with hops and saccharomycetic entrance m, the empty internal of the epimere of described outer hull 3 is provided with the first temperature sensor 100, the empty internal in the stage casing of described outer hull is provided with the second temperature sensor 200, the empty internal of the hypomere of described outer hull is provided with three-temperature sensor 300, the first described temperature sensor 100 is connected with the first filter amplification circuit 103, the first described filter amplification circuit 103 is connected with the first A/D converter 104, the first described A/D converter 104 is connected with first group of data input pin of the first digital comparator 105, the output terminal of the first digital comparator 105 is connected with the one end with the coil of the first rly. 106 of normally opened contact, and the other end ground connection of the coil of the first rly. 106, and the first hummer 107 being arranged on outer hull is connected by the power supply 108 of same first hummer of the normally opened contact of the first rly. 106, the second described temperature sensor 200 is connected with the second filter amplification circuit 203, the second described filter amplification circuit 203 is connected with the second A/D converter 204, and the second described A/D converter 204 is connected with second group of data input pin of the first digital comparator 105, described three-temperature sensor 300 is connected with the 3rd filter amplification circuit 303, the 3rd described filter amplification circuit 303 is connected with the 3rd A/D converter 304, the 3rd described A/D converter 304 is connected with first group of data input pin of the second digital comparator 305, the output terminal of the second digital comparator 305 is connected with the one end with the coil of the second rly. 306 of normally opened contact, and the other end ground connection of the coil of the second rly. 306, and the second hummer 307 being arranged on outer hull is connected by the power supply 308 of same second hummer of the normally opened contact of the second rly. 306, the second described in addition A/D converter 204 is also connected with second group of data input pin of the second digital comparator 305.When the input data of first group of data input pin of the first described digital comparator 105 are greater than the input data of second group of data input pin of the first digital comparator 105, the output terminal of the first digital comparator 105 exports high level; When the input data of first group of data input pin of the second described digital comparator 305 are greater than the input data of second group of data input pin of the second digital comparator 305, the output terminal of the second digital comparator 305 exports high level.The first described digital comparator and the second digital comparator are 74LS686 digital comparator.Described pressure vessel head 8 is also provided with hanger 9, just can plays resultant pressure vessel head more easily by hanger.
Principle of work of the present utility model is 9 DEG C of main ferment phases, in this stage, use the first chuck in fermentor tank and the second chuck to pass into refrigerant at conduit and carry out segmentation cooling, the first temperature sensor 100 simultaneously by arranging at the empty internal of the epimere of described outer hull 3, the second temperature sensor 200 that empty internal in the stage casing of described outer hull is arranged and the empty internal of the hypomere of described outer hull is provided with the temperature that three-temperature sensor 300 gathers the epimere of described outer hull 3 respectively, the temperature of the temperature in the stage casing of described outer hull 3 and the hypomere of described outer hull 3, and after the temperature signal that collection comes carries out filter and amplification by each self-corresponding filter amplification circuit, again after each self-corresponding A/D converter carries out analog-to-digital conversion, be sent to respectively in the first digital comparator and the second digital comparator and compare, if the temperature data of epimere is greater than the temperature data in stage casing, the output terminal of the first digital comparator just exports high level and allows the coil electricity of the first rly., the power supply that the normally opened contact of the first rly. so just can be allowed to close conducting first hummer and the first hummer allows the first buzzer rings, staff so just can be allowed to know in real time, and the temperature data of epimere is greater than the abnormal conditions appearance of the temperature data in stage casing, if the temperature data in stage casing is greater than the temperature data of hypomere, the output terminal of the second digital comparator just exports high level and allows the coil electricity of the second rly., the power supply that the normally opened contact of the second rly. so just can be allowed to close conducting second hummer and the second hummer allows people's buzzer rings, and staff so just can be allowed to know in real time, and the abnormal conditions that the temperature data in stage casing is greater than the temperature data of hypomere occurs.
The above, it is only preferred embodiment of the present utility model, not any pro forma restriction is done to the utility model, although the utility model discloses as above with preferred embodiment, but and be not used to limit the utility model, any those skilled in the art, do not departing within the scope of technical solutions of the utility model, make a little change when the technology contents of above-mentioned announcement can be utilized or be modified to the Equivalent embodiments of equivalent variations, in every case be do not depart from technical solutions of the utility model content, according to technical spirit of the present utility model, within spirit of the present utility model and principle, to any simple amendment that above embodiment is done, equivalent replacement and improvement etc., within the protection domain all still belonging to technical solutions of the utility model.

Claims (4)

1. the fermentor tank with temperature-detecting device for the beer production main ferment phase, it is characterized in that comprising the support fixed with ground by bolt, the added outer hull being provided with hollow of described support, the bottom of described outer hull is the conical structure of pointed end, the top of described outer hull is the cylindrical structure that same conical structure is connected, one end of same first pipeline in bottom of described conical structure is connected and the empty internal of conical structure is conducted with the first pipeline, the other end of the first described pipeline is beer import, be cavity structure between the outer wall of outer hull and inwall in addition, the first chuck being provided with conduit in cavity structure between the outer wall of described conical structure and inwall and being conducted with conduit, described conduit is used for transmitting refrigerant, the second chuck that same conduit is conducted is provided with in outer wall in the middle part of described cylindrical structure and the cavity structure between inwall, the top of described outer hull is provided with pressure vessel head, pressure vessel head is provided with hops and saccharomycetic entrance, the empty internal of the epimere of described outer hull is provided with the first temperature sensor, the empty internal in the stage casing of described outer hull is provided with the second temperature sensor, the empty internal of the hypomere of described outer hull is provided with three-temperature sensor, the first described temperature sensor is connected with the first filter amplification circuit, the first described filter amplification circuit is connected with the first A/D converter, the first described A/D converter is connected with first group of data input pin of the first digital comparator, the output terminal of the first digital comparator is connected with the one end with the coil of the first rly. of normally opened contact, and the other end ground connection of the coil of the first rly., and the first hummer being arranged on outer hull is connected by the power supply of same first hummer of the normally opened contact of the first rly., the second described temperature sensor is connected with the second filter amplification circuit, and the second described filter amplification circuit is connected with the second A/D converter, and the second described A/D converter is connected with second group of data input pin of the first digital comparator, described three-temperature sensor is connected with the 3rd filter amplification circuit, the 3rd described filter amplification circuit is connected with the 3rd A/D converter, the 3rd described A/D converter is connected with first group of data input pin of the second digital comparator, the output terminal of the second digital comparator is connected with the one end with the coil of the second rly. of normally opened contact, and the other end ground connection of the coil of the second rly., and the second hummer being arranged on outer hull is connected by the power supply of same second hummer of the normally opened contact of the second rly., the second described in addition A/D converter is also connected with second group of data input pin of the second digital comparator.
2. the fermentor tank with temperature-detecting device for the beer production main ferment phase according to claim 1, when it is characterized in that the input data of first group of data input pin of the first described digital comparator are greater than the input data of second group of data input pin of the first digital comparator, the output terminal of the first digital comparator exports high level; When the input data of first group of data input pin of the second described digital comparator are greater than the input data of second group of data input pin of the second digital comparator, the output terminal of the second digital comparator exports high level.
3. the fermentor tank with temperature-detecting device for the beer production main ferment phase according to claim 2, is characterized in that the first described digital comparator and the second digital comparator are 74LS686 digital comparator.
4. the fermentor tank with temperature-detecting device for the beer production main ferment phase according to claim 1, is characterized in that described pressure vessel head is also provided with hanger.
CN201520017488.9U 2015-01-09 2015-01-09 A kind of fermentor tank with temperature-detecting device for the beer production main ferment phase Expired - Fee Related CN204369848U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107384659A (en) * 2017-09-06 2017-11-24 广州百兴网络科技有限公司 A kind of fermentation controlling method

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107384659A (en) * 2017-09-06 2017-11-24 广州百兴网络科技有限公司 A kind of fermentation controlling method

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Granted publication date: 20150603

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