WO2018023974A1 - 一种无菌水调温装置及系统 - Google Patents

一种无菌水调温装置及系统 Download PDF

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Publication number
WO2018023974A1
WO2018023974A1 PCT/CN2017/075508 CN2017075508W WO2018023974A1 WO 2018023974 A1 WO2018023974 A1 WO 2018023974A1 CN 2017075508 W CN2017075508 W CN 2017075508W WO 2018023974 A1 WO2018023974 A1 WO 2018023974A1
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Prior art keywords
temperature
sterile water
temperature regulating
outlet
inlet
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PCT/CN2017/075508
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English (en)
French (fr)
Inventor
刘波
杨亚军
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江苏新美星包装机械股份有限公司
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Publication of WO2018023974A1 publication Critical patent/WO2018023974A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B3/00Cleaning by methods involving the use or presence of liquid or steam
    • B08B3/02Cleaning by the force of jets or sprays
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28DHEAT-EXCHANGE APPARATUS, NOT PROVIDED FOR IN ANOTHER SUBCLASS, IN WHICH THE HEAT-EXCHANGE MEDIA DO NOT COME INTO DIRECT CONTACT
    • F28D7/00Heat-exchange apparatus having stationary tubular conduit assemblies for both heat-exchange media, the media being in contact with different sides of a conduit wall
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28FDETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
    • F28F27/00Control arrangements or safety devices specially adapted for heat-exchange or heat-transfer apparatus
    • F28F27/02Control arrangements or safety devices specially adapted for heat-exchange or heat-transfer apparatus for controlling the distribution of heat-exchange media between different channels

Definitions

  • the invention relates to a sterile water temperature regulating device and system.
  • the empty bottles and caps are usually washed with sterile water of different temperatures.
  • the general practice is to use the cooling tower water to separately cool the sterile water to reach the required temperature.
  • the sterile water is first heated by steam to a certain temperature, and then cooled separately by the tower water to the temperature required for the flushing.
  • the energy consumption is large, and the cooling and the cooling have a certain degree of waste on the steam and the tower water.
  • the object of the present invention is to provide a sterile water temperature regulating device and a sterile water temperature regulating system, which can control the temperature of the sterile water by heat exchange of the sterile water itself, without using cooling water in the production process, and saving steam consumption. ,Energy saving and environmental protection.
  • a sterile water temperature regulating device is disposed between a sterile water storage tank and a steam heating mechanism, the steam heating mechanism comprising a first inlet and a first outlet for heating sterile water, the temperature regulating device
  • the invention comprises at least one temperature regulating unit disposed between the sterile water storage tank and the steam heating mechanism, the temperature regulating unit comprising:
  • a heat exchanger comprising a temperature rising pipe and a cooling pipe disposed inside the body for exchanging heat
  • the temperature rising pipe comprising a temperature rising pipe connected to the sterile water storage tank or another temperature regulating unit a second inlet, a second outlet communicating with the temperature rising conduit of the first inlet or another temperature regulating unit
  • the cooling conduit comprising a cooling conduit connected to the first outlet or another temperature regulating unit a third inlet, a third outlet in communication with a sterile water outlet port or a cooling conduit of another temperature regulating unit;
  • a split conduit connected to the at least one of the second inlets for connecting the sterile water storage tank and the temperature control unit and Or connecting each of the temperature control units to provide water to be heated by the temperature adjustment unit;
  • the flow regulating valve is disposed on the diverting pipe, the diverting pipe is further connected to the second outlet, and the second inlet and the second outlet of the at least one temperature regulating unit are disposed There is a flow regulating valve as described;
  • a temperature sensor disposed at the third outlet, specifically between the third outlet and the sterile water output port, the temperature sensor being electrically connected to the flow regulating valve to be set according to The output temperature and the measured temperature of the temperature sensor adjust the opening of the flow regulating valve.
  • the temperature adjustment unit has two, including a first temperature adjustment unit and a second temperature adjustment unit;
  • the second inlet in the first temperature regulating unit is in communication with the sterile water storage tank, the second outlet in the first temperature regulating unit and the second one in the second temperature regulating unit The entrances are connected;
  • the second outlet in the second temperature regulating unit is in communication with the first inlet
  • the third inlet in the second temperature regulating unit is in communication with the first outlet
  • the second temperature regulating unit The third outlet in the first temperature control unit is in communication with the third inlet in the first temperature adjustment unit
  • the sterile water output port in the second temperature adjustment unit is disposed in the second temperature adjustment unit.
  • the third outlet of the first temperature regulating unit is connected with an output port for outputting the sterile water; the third outlet of the second temperature regulating unit is connected with another output for directly outputting the sterile water. port.
  • a sterile water temperature regulating system comprising a sterile water storage tank and a steam heating mechanism for heating sterile water, the steam heating mechanism having a first inlet for entering and exiting sterile water, and a first outlet
  • the sterile water temperature regulating system further includes the sterile water temperature regulating device disposed between the sterile water storage tank and the steam heating mechanism, each of the temperature regulating units of the aseptic temperature regulating device At least one second inlet is in communication with the sterile water storage tank, at least one second outlet is in communication with the first inlet, and at least one third inlet is in communication with the first outlet.
  • the sterile water storage tank, the first temperature regulating unit, the second temperature regulating unit and the steam heating mechanism are sequentially connected, wherein the sterile water storage tank and the first temperature regulating unit are a heating pipe, a temperature rising pipe of the second temperature regulating unit, and a first inlet of the steam heating mechanism are sequentially connected, a first outlet of the steam heating mechanism, a cooling pipe of the second temperature regulating unit, and a first temperature adjustment
  • the cooling pipes of the unit are connected in sequence.
  • a bypass conduit is provided between the sterile water storage tank and the first inlet of the steam heating mechanism, and the second inlet and the second outlet of the first and second temperature regulating units are both
  • the flow dividing pipe is connected, and the flow regulating pipe is provided with two flow regulating valves, wherein the first flow regulating valve is located between the second inlet and the second outlet of the first temperature regulating unit, and the second flow regulating valve Located between the second inlet and the second outlet of the second temperature regulating unit.
  • a third outlet of the first temperature regulating unit is connected to a sterile water output port.
  • a temperature sensor is disposed between the third outlet of the first temperature regulating unit and the sterile water output port, and the temperature sensor is electrically connected to the first flow regulating valve to be according to the first setting
  • the bacterial water output port output temperature and the measured temperature of the temperature sensor adjust the opening of the first flow regulating valve.
  • a third outlet of the second temperature regulating unit is connected to a sterile water output port.
  • a temperature sensor is disposed between the third outlet of the second temperature regulating unit and the sterile water output port, and the temperature sensor is electrically connected to the second flow regulating valve to be configured according to the second The bacterial water output port output temperature and the measured temperature of the temperature sensor adjust the opening of the second flow regulating valve.
  • the present invention has the following advantages compared with the prior art: the temperature of the sterile water itself is exchanged by the temperature regulating unit, and the whole process does not need to use the tower water for cooling, and all can be realized by heat exchange. Preparation of two or more temperature rinse waters. The hot water is used to achieve the required use temperature of the sterile water, and the heat is recycled to the greatest extent, which reduces the consumption of the tower water during the cooling process and also saves the steam consumption during the heating process.
  • FIG. 1 is a schematic structural view of a sterile water temperature control system of the present invention.
  • a sterile water temperature control system including a sterile water storage tank 1 and a steam heating mechanism 2 And a sterile water temperature control device.
  • the above-mentioned sterile water temperature regulating device is disposed between the sterile water storage tank 1 and the steam heating mechanism 2.
  • the steam heating mechanism 2 includes a first inlet for inputting sterile water 21 And a first outlet for outputting the heated sterile water 22 .
  • the temperature regulating device comprises at least one of a sterile water storage tank 1 and a steam heating mechanism 2 Between the temperature control units, each temperature adjustment unit is used to output sterile water at different temperatures.
  • Each temperature regulating unit includes:
  • Heat exchanger 3 the heat exchanger 3
  • the invention comprises a heating pipe and a cooling pipe arranged inside the heat exchange between the heat exchange pipe, and a second inlet 31 connected to the temperature rising pipe of the sterile water storage tank 1 or another temperature regulating unit, and the first inlet 21 Or a second outlet 32 communicating with the temperature rising pipe of the other temperature regulating unit, the cooling pipe comprising a third inlet 33 communicating with the cooling pipe of the first outlet 22 or another temperature regulating unit, and the sterile water output port 4 Or a third outlet 34 of the cooling pipe of another temperature regulating unit;
  • a split pipe 5 which is respectively associated with the second inlet 31 and the second outlet 32 Connected to separate sterile water into the heating line;
  • the flow regulating valve 6 is disposed on the diverting pipe 5 , and the flow regulating valve 6 is located at the second inlet 31 and the second outlet Between 32, used to regulate the flow of sterile water into the warming pipe;
  • Temperature sensor 7 the temperature sensor 7 is arranged between the third outlet 34 and the sterile water output port 4, the temperature sensor 7 It is connected to the flow regulating valve 6 circuit for adjusting the opening degree of the flow regulating valve 6 according to the output temperature set by the sterile water output port 4 so as to enter the sterile water output port through the cooling pipe 4 The sterile water is kept at the required temperature.
  • the temperature adjustment unit has two, including a first temperature adjustment unit 8 and a second temperature adjustment unit. It is used to clean empty bottles and caps respectively; when multiple sterile waters of different temperatures are needed, only a corresponding number of temperature regulating units can be set.
  • the second inlet 31 in the first temperature regulating unit 8 is in communication with the sterile water storage tank 1, and the second outlet 32 in the first temperature regulating unit 8 Connected with the second inlet 31 in the second temperature regulating unit 9; the second outlet 32 of the second temperature regulating unit 9 communicates with the first inlet 21, and the third inlet of the second temperature regulating unit 9 33 In communication with the first outlet 22, the third outlet 34 of the second temperature regulating unit 9 communicates with the third inlet 33 of the first temperature regulating unit 8, and the sterile water in the second temperature regulating unit 9 Output 4 It is disposed between the third outlet 34 in the second temperature regulating unit 9 and the third inlet 33 in the first temperature regulating unit 8.
  • the sterile water storage tank 1 and the first temperature control unit 8 The heating pipe, the temperature rising pipe of the second temperature regulating unit 9, and the first inlet 21 of the steam heating mechanism 2 are sequentially connected to form a temperature rising pipe, the first outlet 22 of the steam heating mechanism 2, and the second temperature regulating unit
  • the cooling pipe of 9 and the cooling pipe of the first temperature regulating unit 8 are connected in sequence to form a cooling pipe.
  • the above-mentioned split pipe 5 is disposed between the sterile water storage tank 1 and the first inlet 21 of the steam heating mechanism 2, the first and second temperature regulating units
  • the second inlet 31 and the second outlet 32 of 8, 9 are both connected to the split conduit 5, and the split conduit 5 is provided with two flow regulating valves 6, wherein the first flow regulating valve 6 Located between the second inlet 31 and the second outlet 32 of the first temperature regulating unit 8, the second flow regulating valve 9 is located at the second inlet 31 and the second outlet 32 of the second temperature regulating unit 9.
  • a third outlet 34 of the first temperature regulating unit 8 is connected to a first sterile water outlet port 4.
  • Third outlet of the first temperature control unit 8 A temperature sensor 7 is provided between the 34 and the sterile water output port 4, and the temperature sensor 7 is electrically connected to the first flow regulating valve to output a temperature and temperature sensor according to the set first sterile water output port 4 The measured temperature adjusts the opening of the first flow regulating valve.
  • a third outlet 34 of the second temperature regulating unit 9 is connected to a sterile water outlet port 4.
  • the third outlet of the second temperature regulating unit 9 34 A temperature sensor 7 is provided between the second sterile water output port 4 and the temperature sensor 7
  • the second flow regulating valve is electrically connected to adjust the opening of the second flow regulating valve according to the set second sterile water output port output temperature and the measured temperature of the temperature sensor.
  • Sterile water is output from the sterile water storage tank 1 at a flow rate Q, and enters the first temperature control unit 8 at the flow rate Q1.
  • the third inlet 33 of the medium heat exchanger 3 is cooled to the outlet temperature T5 of the sterile water output port 4 in the second temperature control unit 9, and is divided into two paths, one for the flow rate Q5 and the second for the second temperature control unit 9
  • the sterile water output port 4 is output, and the other path enters the first temperature control unit 8 at flow rate Q6.
  • the third inlet 33 of the heat exchanger 3 is cooled to the sterile water output port of the first temperature control unit 8. 4
  • the outlet temperature T6 is then output by the sterile water output 4 in the first temperature control unit 8 at flow rate Q6.

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Apparatus For Disinfection Or Sterilisation (AREA)

Abstract

无菌水调温装置及系统,无菌水调温装置,设于无菌水储罐(1)和蒸汽加热机构(2)之间,蒸汽加热机构(2)包括第一入口(21)和第一出口(22),调温装置包括至少一个调温单元(8,9),调温单元(8,9)包括热交换器(3),热交换器(3)包括升温管道和降温管道。无菌水调温装置通过调温单元使无菌水自身进行热交换,对热量进行了最大程度的回收利用,节省了加热过程中的蒸汽消耗。

Description

一种无菌水调温装置及系统
技术领域
本发明涉及一种无菌水调温装置及系统。
背景技术
在中温热灌装饮料生产线中,通常采用不同温度的无菌水对空瓶和瓶盖进行冲洗,一般的做法是采用冷却塔水对无菌水分别进行冷却,来达到所需要的温度。无菌水首先要被蒸汽加热至一定的温度后,再通过塔水分别冷却至冲洗所需的温度,能耗较大,加热后再冷却对蒸汽和塔水均有一定程度的浪费。
发明内容
本发明的目的是提供一种无菌水调温装置及无菌水调温系统,通过无菌水自身的热交换来控制无菌水的温度,生产过程中无需使用冷却水,且节约蒸汽用量,节能环保。
为达到上述目的,本发明采用的一种技术方案是:
一种无菌水调温装置,设于无菌水储罐和蒸汽加热机构之间,所述蒸汽加热机构,包括第一入口和第一出口,用于加热无菌水,所述调温装置包括至少一个设于所述无菌水储罐和所述蒸汽加热机构之间的调温单元,所述调温单元包括:
热交换器,所述热交换器包括设于其内部的用于相互交换热量的升温管道和降温管道,所述升温管道包括与所述无菌水储罐或另一调温单元的升温管道相连通的第二入口、与所述第一入口或另一调温单元的升温管道相连通的第二出口,所述降温管道包括与所述第一出口或另一调温单元的降温管道相连通的的第三入口、与一无菌水输出端口或另一调温单元的降温管道相连通的第三出口;
分流管道,和至少一个所述的第二入口相连用于连通无菌水储罐和所述调温单元和 / 或连通各所述调温单元以向调温单元提供待升温的水;
流量调节阀,所述流量调节阀设于所述分流管道上,所述分流管道还和所述第二出口相连,至少一个调温单元的所述第二入口和所述第二出口之间设有一个所述的流量调节阀;
温度传感器,设于所述第三出口处,具体是设于所述第三出口和所述无菌水输出端口之间,所述温度传感器,与所述流量调节阀电连接,以根据设定的输出温度和所述温度传感器的实测温度调节所述流量调节阀的开度。
优选地,所述调温单元有两个,包括第一个调温单元和第二个调温单元;
第一个调温单元中的所述第二入口与所述无菌水储罐相连通,第一个调温单元中的所述第二出口与第二个调温单元中的所述第二入口相连通;
第二个调温单元中的所述第二出口与所述第一入口相连通,第二个调温单元中的所述第三入口与所述第一出口相连通,第二个调温单元中的所述第三出口与第一个调温单元中的所述第三入口相连通,第二个调温单元中的所述无菌水输出端口设于第二个调温单元中的所述第三出口和第一个调温单元中的所述第三入口之间。
进一步地,第一个调温单元的第三出口连接有一用于将无菌水输出的输出端口;第二个调温单元的第三出口连接有另一用于将无菌水直接输出的输出端口。
本发明采用的另一种技术方案为:
一种无菌水调温系统,包括无菌水储罐和用于加热无菌水的蒸汽加热机构,所述蒸汽加热机构具有供无菌水进、出的第一入口、第一出口,该无菌水调温系统还包括设于所述无菌水储罐和所述蒸汽加热机构之间的所述的无菌水调温装置,所述无菌调温装置的各所述调温单元中至少一个第二入口和所述无菌水储罐相连通、至少一个第二出口和所述第一入口相连通、至少一个第三入口和所述第一出口相连通。
优选地,所述无菌水储罐、第一个调温单元、第二个调温单元以及所述蒸汽加热机构依次连接,其中,所述无菌水储罐、第一个调温单元的升温管道、第二个调温单元的升温管道以及所述蒸汽加热机构的第一入口依次连通,所述蒸汽加热机构的第一出口、第二个调温单元的降温管道以及第一个调温单元的降温管道依次连通。
更优选地,所述无菌水储罐和所述蒸汽加热机构的第一入口之间设有一分流管道,第一个和第二个调温单元的第二入口和第二出口均和所述分流管道相连通,且所述分流管道上设有两个流量调节阀,其中第一个流量调节阀位于第一个调温单元的第二入口和第二出口之间,第二个流量调节阀位于第二个调温单元的第二入口和第二出口之间。
进一步地,第一个调温单元的第三出口连接有一无菌水输出端口。
更进一步地,第一个调温单元的第三出口和无菌水输出端口之间设有一温度传感器,该温度传感器与所述第一个流量调节阀相电连以根据设定的第一无菌水输出端口输出温度和所述温度传感器的实测温度调节第一个流量调节阀的开度。
进一步地,第二个调温单元的第三出口连接有一无菌水输出端口。
更进一步地,第二个调温单元的第三出口和无菌水输出端口之间设有一温度传感器,该温度传感器与所述第二个流量调节阀相电连以根据设定的第二无菌水输出端口输出温度和所述温度传感器的实测温度调节第二个流量调节阀的开度。
由于上述技术方案的运用,本发明与现有技术相比具有下列优点:通过调温单元使无菌水自身进行热交换,整个过程不需要用到塔水进行降温,全部通过热交换即可实现两种或多种温度冲洗水的制备。通过热交换使无菌水达到要求的使用温度,对热量进行了最大程度的回收利用,降低了冷却过程中塔水的消耗,也节省了加热过程中的蒸汽消耗。
附图说明
附图 1 为本发明的一种无菌水调温系统的结构示意图 。
其中: 1 、无菌水储罐; 2 、蒸汽加热机构; 21 、第一入口; 22 、第一出口; 3 、热交换器; 31 、第二入口; 32 、第二出口; 33 、第三入口; 34 、第三出口; 4 、无菌水输出端; 5 、分流管道; 6 、流量调节阀; 7 、温度传感器; 8 、第一调温单元; 9 、第二调温单元。
具体实施方式
下面结合附图来对本发明的技术方案作进一步的阐述。
参见图 1 所示,一种无菌水调温系统,包括无菌水储罐 1 和蒸汽加热机构 2 以及无菌水调温装置。上述一种无菌水调温装置,设于无菌水储罐 1 和蒸汽加热机构 2 之间。蒸汽加热机构 2 包括用于输入无菌水的第一入口 21 和用于输出加热后无菌水的第一出口 22 。该调温装置包括至少一个设于无菌水储罐 1 和蒸汽加热机构 2 之间的调温单元,每个调温单元均用于输出不同温度的无菌水。每个调温单元分别包括:
热交换器 3 ,该热交换器 3 包括设于其内部的用于相互交换热量的升温管道和降温管道,升温管道包括与无菌水储罐 1 或另一调温单元的升温管道相连通的第二入口 31 、与第一入口 21 或另一调温单元的升温管道相连通的第二出口 32 ,降温管道包括与第一出口 22 或另一调温单元的降温管道相连通的的第三入口 33 、与无菌水输出端口 4 或另一调温单元的降温管道相连通的第三出口 34 ;
分流管道 5 ,该分流管道 5 分别与第二入口 31 和第二出口 32 相连通,用于分流进入升温管道中的无菌水;
流量调节阀 6 ,该流量调节阀 6 设于分流管道 5 上,该流量调节阀 6 位于第二入口 31 和第二出口 32 之间,用于调节进入升温管道中的无菌水流量;
温度传感器 7 ,该温度传感器 7 设于第三出口 34 和无菌水输出端口 4 之间,温度传感器 7 与流量调节阀 6 电路连接,用于根据无菌水输出端口 4 设定的输出温度调节流量调节阀 6 的开度以使得通过降温管道进入无菌水输出端口 4 的无菌水保持在需要的温度。
在本实施例中,该调温单元有两个,包括第一个调温单元 8 和第二个调温单元 9 ,分别用于为空瓶和瓶盖进行清洗;当需要多路不同温度的无菌水时,只需要设置对应个数的调温单元即可。
第一个调温单元 8 中的第二入口 31 与无菌水储罐 1 相连通,第一个调温单元 8 中的第二出口 32 与第二个调温单元 9 中的第二入口 31 相连通;第二个调温单元 9 中的第二出口 32 与第一入口 21 相连通,第二个调温单元 9 中的第三入口 33 与第一出口 22 相连通,第二个调温单元 9 中的第三出口 34 与第一个调温单元 8 中的第三入口 33 相连通,第二个调温单元 9 中的无菌水输出端 4 设于第二个调温单元 9 中的第三出口 34 和第一个调温单元 8 中的第三入口 33 之间。也就是说,无菌水储罐 1 、第一个调温单元 8 的升温管道、第二个调温单元 9 的升温管道以及蒸汽加热机构 2 的第一入口 21 依次连通构成升温管路,蒸汽加热机构 2 的第一出口 22 、第二个调温单元 9 的降温管道以及第一个调温单元 8 的降温管道依次连通构成降温管路。
上述分流管道 5 设于无菌水储罐 1 和蒸汽加热机构 2 的第一入口 21 之间,第一个和第二个调温单元 8 、 9 的第二入口 31 和第二出口 32 均和分流管道 5 相连通,且分流管道 5 上设有两个流量调节阀 6 ,其中第一个流量调节阀 6 位于第一个调温单元 8 的第二入口 31 和第二出口 32 之间,第二个流量调节阀 9 位于第二个调温单元 9 的第二入口 31 和第二出口 32 之间。
第一个调温单元 8 的第三出口 34 连接有一第一无菌水输出端口 4 。第一个调温单元 8 的第三出口 34 和无菌水输出端口 4 之间设有一温度传感器 7 ,该温度传感器 7 与第一个流量调节阀相电连以根据设定的第一无菌水输出端口 4 输出温度和温度传感器 7 的实测温度调节第一个流量调节阀的开度。第二个调温单元 9 的第三出口 34 连接有一无菌水输出端口 4 。第二个调温单元 9 的第三出口 34 和第二无菌水输出端口 4 之间设有一温度传感器 7 ,该温度传感器 7 与第二个流量调节阀相电连以根据设定的第二无菌水输出端口输出温度和所述温度传感器的实测温度调节第二个流量调节阀的开度。以下具体阐述下本实施例的工作过程:
无菌水以流量 Q 从无菌水储罐 1 中输出,以流量 Q1 进入第一个调温单元 8 中热交换器 3 的第二入口 31 ,同时以流量 Q2 通过第一个调温单元 8 中的分流管道 5 ,通过第一段热交换无菌水的温度从 T1 升高至 T2 ;再以流量 Q3 进入第二个调温单元 9 中热交换器 3 的第二入口 31 ,同时以流量 Q4 通过第二个调温单元 9 中的分流管道 5 ,通过第二段热交换无菌水的温度从 T2 升高至 T3 ;再以流量 Q 通过第一入口 21 进入蒸汽加热机构 2 达到杀菌温度 T4 ,再以流量 Q 通过第一出口 22 进入第二个调温单元 9 中热交换器 3 的第三入口 33 被冷却至第二个调温单元 9 中无菌水输出端口 4 的出口温度 T5 ,并分为两路,一路以流量 Q5 由第二个调温单元 9 中的无菌水输出端口 4 输出,另一路则以流量 Q6 进入第一个调温单元 8 中热交换器 3 的第三入口 33 被冷却至第一个调温单元 8 中无菌水输出端口 4 的出口温度 T6 ,再以流量 Q6 由第一个调温单元 8 中的无菌水输出端 4 输出。其中 Q=Q1+Q2=Q3+Q4=Q5+Q6 。
上述实施例只为说明本发明的技术构思及特点,其目的在于让熟悉此项技术的人士能够了解本发明的内容并据以实施,并不能以此限制本发明的保护范围。凡根据本发明精神实质所作的等效变化或修饰,都应涵盖在本发明的保护范围之内。

Claims (13)

  1. 一种无菌水调温装置,用于设于无菌水储罐和蒸汽加热机构之间,其特征在于:所述调温装置包括至少一个调温单元,所述调温单元包括:
    热交换器,包括设于其内部的用于相互交换热量的升温管道和降温管道,所述升温管道具有用于与无菌水储罐或另一调温单元的升温管道相连通的第二入口、用于与蒸汽加热机构或另一调温单元的升温管道相连通的第二出口,所述降温管道具有用于与所述蒸汽加热机构或另一调温单元的降温管道相连通的第三入口、用于输出经加热冷却后的无菌水或与另一调温单元的降温管道相连通的第三出口。
  2. 根据权利要求 1 所述的无菌水调温装置,其特征在于:所述无菌水调温装置还包括:
    分流管道,和至少一个所述的第二入口相连用于连通无菌水储罐和所述调温单元和 / 或连通各所述调温单元以向调温单元提供待升温的水。
  3. 根据权利要求 2 所述的无菌水调温装置,其特征在于:所述无菌水调温装置还包括:
    流量调节阀,设于所述分流管道上;
    所述分流管道还和所述第二出口相连,至少一个调温单元的所述第二入口和所述第二出口之间设有一个所述的流量调节阀。
  4. 根据权利要求 3 所述的无菌水调温装置,其特征在于:所述调温单元还包括:
    温度传感器,设于所述第三出口处,所述温度传感器与所述流量调节阀电连接以根据设定的输出温度和所述温度传感器的实测温度调节所述流量调节阀的开度。
  5. 根据权利要求 1 所述的无菌水调温装置,其特征在于:该无菌水调温装置包括两个所述的调温单元;
    第一个调温单元具有用于与无菌水储罐相连通的第二入口以及与第二个调温单元的第二入口相连通的第二出口;第二个调温单元还具有用于与蒸汽加热机构相连通的第二出口以及第三入口,第二个调温单元的第三出口与第一个调温单元的第三入口相连通;
    所述第一个调温单元的第三出口连接有一用于将无菌水输出的输出端口。
  6. 根据权利要求 5 所述的无菌水调温装置,其特征在于:第二个调温单元的第三出口连接有另一用于将无菌水直接输出的输出端口。
  7. 一种无菌水调温系统,包括无菌水储罐和用于加热无菌水的蒸汽加热机构,所述蒸汽加热机构具有供无菌水进、出的第一入口、第一出口,其特征在于:该无菌水调温系统还包括设于所述无菌水储罐和所述蒸汽加热机构之间的如权利要求 1-6 中任一项所述的无菌水调温装置,所述无菌调温装置的各所述调温单元中至少一个第二入口和所述无菌水储罐相连通、至少一个第二出口和所述第一入口相连通、至少一个第三入口和所述第一出口相连通。
  8. 根据权利要求 7 所述的无菌水调温系统,其特征在于:所述无菌水储罐、第一个调温单元、第二个调温单元以及所述蒸汽加热机构依次连接,其中,所述无菌水储罐、第一个调温单元的升温管道、第二个调温单元的升温管道以及所述蒸汽加热机构的第一入口依次连通,所述蒸汽加热机构的第一出口、第二个调温单元的降温管道以及第一个调温单元的降温管道依次连通。
  9. 根据权利要求 8 所述的无菌水调温系统,其特征在于:所述无菌水储罐和所述蒸汽加热机构的第一入口之间设有一分流管道,第一个和第二个调温单元的第二入口和第二出口均和所述分流管道相连通,且所述分流管道上设有两个流量调节阀,其中第一个流量调节阀设于第一个调温单元的第二入口和第二出口之间,第二个流量调节阀设于第二个调温单元的第二入口和第二出口之间。
  10. 根据权利要求 9 所述的无菌水调温系统,其特征在于:第一个调温单元的第三出口连接有一无菌水输出端口。
  11. 根据权利要求 10 所述的无菌水调温系统,其特征在于:第一个调温单元的第三出口和无菌水输出端口之间设有一温度传感器,该温度传感器与所述第一个流量调节阀相电连以根据设定的第一无菌水输出端口输出温度和所述温度传感器的实测温度调节第一个流量调节阀的开度。
  12. 根据权利要求 9 所述的无菌水调温系统,其特征在于:第二个调温单元的第三出口连接有一无菌水输出端口。
  13. 根据权利要求 12 所述的无菌水调温系统,其特征在于:第二个调温单元的第三出口和无菌水输出端口之间设有一温度传感器,该温度传感器与所述第二个流量调节阀相电连以根据设定的第二无菌水输出端口输出温度和所述温度传感器的实测温度调节第二个流量调节阀的开度。
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