CN201828006U - Pipeline fluid heater - Google Patents
Pipeline fluid heater Download PDFInfo
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- CN201828006U CN201828006U CN 201020275681 CN201020275681U CN201828006U CN 201828006 U CN201828006 U CN 201828006U CN 201020275681 CN201020275681 CN 201020275681 CN 201020275681 U CN201020275681 U CN 201020275681U CN 201828006 U CN201828006 U CN 201828006U
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Abstract
Description
技术领域technical field
本实用新型涉及一种管道流体加热器,属于电加热技术领域。 The utility model relates to a pipeline fluid heater, which belongs to the technical field of electric heating. the
背景技术Background technique
管道流体加热器,是石油、化工、食品和制药等生产行业常用的一种加热设备。已有的管道流体加热器,有电阻加热、蒸汽加热和导热油加热等结构形式。蒸汽加热和导热油加热必须要有锅炉等设备,且采用燃油或燃煤加热方式,这不但设备投资大,大气污染重,而且热利用效率较低;而电阻加热由于其结构不合适,运行安全性能差,热利用效率也相对较低,因而在工业生产上,基本不采用管道流体电阻加热的方式。 Pipeline fluid heater is a kind of heating equipment commonly used in petroleum, chemical, food and pharmaceutical production industries. Existing pipeline fluid heaters have structural forms such as resistance heating, steam heating and heat transfer oil heating. Steam heating and heat conduction oil heating must have boilers and other equipment, and use fuel oil or coal-fired heating methods, which not only requires a large investment in equipment, but also causes heavy air pollution, and the heat utilization efficiency is low; and resistance heating is safe to operate due to its inappropriate structure. The performance is poor, and the heat utilization efficiency is relatively low. Therefore, in industrial production, the method of pipeline fluid resistance heating is basically not used. the
发明内容Contents of the invention
本实用新型的目的在于提供一种结构简单合理、操作简便,节能环保的管道流体加热器,以满足社会低碳环保经济的发展。 The purpose of the utility model is to provide a pipeline fluid heater with simple and reasonable structure, easy operation, energy saving and environmental protection, so as to meet the development of social low-carbon environmental protection economy. the
本实用新型实现其目的的技术方案是: The technical scheme that the utility model realizes its purpose is:
一种管道流体加热器,包括铁质管,其创新点在于,其加热器是包覆在铁质管外表面的电磁加热线圈。 A pipeline fluid heater includes an iron pipe, and its innovation is that the heater is an electromagnetic heating coil coated on the outer surface of the iron pipe. the
由以上所给出的技术方案可以明了,本实用新型由于采用电磁加热线圈作为管道流体的加热器,而当所述线圈给以高频电流以后,即由电磁效应所产生的涡流热效应,对存在于管道内的流体加热。这种加热方式基本相似于热处理领域的高频线圈加热,从而实现了本实用新型的目的。 It can be understood from the technical solutions given above that the utility model adopts the electromagnetic heating coil as the heater of the pipeline fluid, and when the coil is given a high-frequency current, the eddy current heat effect generated by the electromagnetic effect will affect the existing Fluid heating in the pipeline. This heating method is basically similar to the high-frequency coil heating in the field of heat treatment, thereby achieving the purpose of the utility model. the
本实用新型还主张,还包括电磁及温控电路芯板;电磁及温控电路芯板,分别与电磁加热线圈和温度传感器电连接。其中所述温度传感器可以设在铁质管道内部,也可以设在铁质管道的外壁上;而所述电磁及温控电路芯板,可以设在铁质管道外壁上,也可以设在具有变频器的电控柜内;当然也可以将变频电路布置在所述芯板上。这一技术方案,由于电磁及温控电路芯板的存在,可以进一步方便操作和对加热过程的相对严格控制。 The utility model also claims that the core board of the electromagnetic and temperature control circuit is also included; the core board of the electromagnetic and temperature control circuit is electrically connected with the electromagnetic heating coil and the temperature sensor respectively. The temperature sensor can be set inside the iron pipeline or on the outer wall of the iron pipeline; and the electromagnetic and temperature control circuit core board can be set on the outer wall of the iron pipeline or can be set on the outer wall of the iron pipeline. In the electric control cabinet of the device; of course, the frequency conversion circuit can also be arranged on the core board. This technical solution, due to the existence of the electromagnetic and temperature control circuit core board, can further facilitate operation and relatively strict control of the heating process. the
本实用新型还主张,在铁质管内还设有铁质内管;所述铁质内管通过支架固定在铁质管管内。这一技术方案,由于铁质内管的存在,且构成与铁质外管的复合结构,可以进一步有效提高电磁涡流热效应,在同等给电量的条件下,进一步提高管道流体的加热效果,节约能源消耗。 The utility model also claims that an iron inner pipe is also provided in the iron pipe; the iron inner pipe is fixed in the iron pipe through a bracket. This technical solution, due to the existence of the iron inner tube and the composite structure with the iron outer tube, can further effectively improve the electromagnetic eddy current thermal effect, and further improve the heating effect of the pipeline fluid under the same power supply conditions, saving energy consume. the
本实用新型还主张,由所述由铁质管和包覆在铁质管外表面的电磁加热线圈所组成的管道流体加热器有若干个,且若干个管道流体加热器呈平列式 布置,而其上游铁质管的出口端与下游铁质管的进口端连接,从而令铁质管构成蛇形管。这一技术方案,是本发明旨在进一步提高管道流体加热效果的一种结构形式。这种结构形式,显然在于在加长管道流体加热的长度的条件下,可以有效紧缩其实体结构的长度,降低其所占空间的距离。 The utility model also claims that there are several pipeline fluid heaters composed of iron pipes and electromagnetic heating coils coated on the outer surface of the iron pipes, and several pipeline fluid heaters are arranged in parallel, And the outlet end of the upstream iron pipe is connected with the inlet end of the downstream iron pipe, so that the iron pipe forms a serpentine pipe. This technical solution is a structural form of the present invention aimed at further improving the heating effect of the pipeline fluid. This structural form obviously lies in that under the condition of lengthening the length of pipeline fluid heating, the length of its physical structure can be effectively shortened, and the distance of the space occupied by it can be reduced. the
本发明还主张,所述铁质管呈矩形;在矩形铁质管内,设有若干个与矩形铁质管内壁连接的铁质隔板,从而令矩形铁质管内腔分隔成若干个管内流体通道。这一技术的设计理念如同在铁质管内加设铁质内管那样,以有效提高电磁涡流热效应,进一步提高管道流体的加热效果,节约能源消耗。 The present invention also claims that the iron pipe is rectangular; inside the rectangular iron pipe, there are several iron partitions connected to the inner wall of the rectangular iron pipe, so that the inner cavity of the rectangular iron pipe is divided into several fluid passages in the pipe . The design concept of this technology is like adding an iron inner pipe to the iron pipe to effectively improve the electromagnetic eddy current heat effect, further improve the heating effect of the pipeline fluid, and save energy consumption. the
本发明还主张,还包括绝缘隔热保护材料层;所述绝缘隔热保护材料层,设在铁质管与电磁加热线圈之间。尽管电磁加热线圈的导线是具有高绝缘性能的漆包线,但为了进一步提高其绝缘保温性能,加设所述保护材料层,是有积极意义的。本发明主张采用石棉或微晶玻璃棉作为所述保护材料层。 The present invention also claims that it further includes an insulation and heat insulation protection material layer; the insulation and heat insulation protection material layer is arranged between the iron pipe and the electromagnetic heating coil. Although the lead wire of the electromagnetic heating coil is an enameled wire with high insulation performance, it is positive to add the protective material layer in order to further improve its insulation performance. The present invention proposes to use asbestos or glass-ceramic wool as the protective material layer. the
本发明还主张,还包括散热装置,所述散热装置包括设有若干个散热孔的散热装置外壳和至少2只轴流风机;所述散热装置外壳通过其左内端板和右内端板,与铁质管外表面连接且包容整个电磁加热线圈;至少2只轴流风机设在散热装置外壳的左内端板上,或者设在散热装置外壳的右内端板上,或者分别设在散热装置外壳的左内端板和右内端板上。这一技术方案,可以有效保障电磁加热线圈长时期正常工作,并具有良好的电性能。 The present invention also claims that it also includes a heat sink, and the heat sink includes a heat sink shell provided with several cooling holes and at least two axial flow fans; the heat sink shell passes through its left inner end plate and right inner end plate, It is connected to the outer surface of the iron pipe and contains the entire electromagnetic heating coil; at least two axial flow fans are set on the left inner end plate of the heat sink shell, or on the right inner end plate of the heat sink shell, or respectively on the heat sink The left and right inner end panels of the device housing. This technical solution can effectively guarantee the long-term normal operation of the electromagnetic heating coil, and has good electrical performance. the
本发明还主张,所述电磁及温控电路芯板,布置在散热装置外壳上,或者布置在电控柜内。当然,将电磁及温控电路芯板布置在电控柜内,要比将其布置在散热装置外壳上更加合理。 The present invention also claims that the core board of the electromagnetic and temperature control circuit is arranged on the shell of the cooling device, or arranged in the electric control cabinet. Of course, it is more reasonable to arrange the electromagnetic and temperature control circuit core board in the electric control cabinet than to arrange it on the heat sink shell. the
上述技术方案得以实施后,本发明所具有的结构简单合理,操作方便,加热效果好,节能环保等特点,是十分明显的。 After the above technical solution is implemented, the present invention has the characteristics of simple and reasonable structure, convenient operation, good heating effect, energy saving and environmental protection, etc., which are very obvious. the
附图说明Description of drawings
图1是本发明一种具体实施方式的简意示图;图中所示10为电控柜; Fig. 1 is a schematic diagram of a specific embodiment of the present invention; 10 shown in the figure is an electric control cabinet;
图2是本发明第2种具体实施方式的简易示图;图中所示10为电控柜; Fig. 2 is a simple diagram of the second embodiment of the present invention; 10 shown in the figure is an electric control cabinet;
图3是本发明第3种具体实施方式的简易示图;图中所示10为电控柜; Fig. 3 is the simple diagram of the 3rd specific embodiment of the present invention; 10 shown in the figure is an electric control cabinet;
图4是图2的左视图; Fig. 4 is the left view of Fig. 2;
图5是本发明第4种具体实施方式的简易示意图;图中所示10为电控柜; Fig. 5 is the simplified schematic diagram of the 4th specific embodiment of the present invention; 10 shown in the figure is an electric control cabinet;
图6是图5的左视图。由该图可以明了,所述隔板6除了如图布置形式外,也可以全部沿纵向布置,也可以全部沿横向布置,也可以倾斜着布置等等。 FIG. 6 is a left side view of FIG. 5 . It can be understood from this figure that, in addition to the arrangement shown in the figure, the partitions 6 can also be arranged all along the longitudinal direction, all can be arranged along the transverse direction, and can also be arranged obliquely and so on. the
具体实施方式Detailed ways
具体实施方式之一,如附图1所示, One of specific implementation modes, as shown in accompanying
一种管道流体加热器,包括铁质管1,其加热器是包覆在铁质管1外表 面的电磁加热线圈2。还包括电磁及温控电路芯板3;电磁及温控电路芯板3,分别与电磁加热线圈2和温度传感器4电连接。还包括绝缘隔热保护材料层8;所述绝缘隔热保护材料层8,设在铁质管1与电磁加热线圈2之间。还包括散热装置9,所述散热装置9包括设有若干个散热孔的散热装置外壳9-1和至少2只轴流风机9-2;所述散热装置外壳9-1通过其左内端板9-1-1和右内端板9-1-2,与铁质管1外表面连接且包容整个电磁加热线圈2;至少2只轴流风机9-2分别设在散热装置外壳9-1的左内端板9-1-1和右内端板9-1-2上。 A pipeline fluid heater comprises an
具体实施方式之二,如附图3、4所示。 The second specific embodiment is shown in accompanying
一种管道流体加热器,除了在铁质管1内还设有铁质内管5;所述铁质内管5通过支架11固定在铁质管1管内之外,其它均如同具体实施方式之一。 A pipeline fluid heater, except that an iron inner pipe 5 is provided in the
具体实施方式之三,如附图2所示。 The third specific embodiment is shown in Figure 2. the
一种管道流体加热器,除了所述由铁质管1和包覆在铁质管1外表面的电磁加热线圈2所组成的管道流体加热器有4个,且4个管道流体加热器呈平列式布置,而其上游铁质管1的出口端与下游铁质管1的进口端连接,从而令铁质管1构成蛇形管之外,其它均如同具体实施方式之一。 A pipeline fluid heater, except that there are four pipeline fluid heaters composed of an
具体实施方式之四,如附图5、6所示。 The fourth specific embodiment is shown in accompanying drawings 5 and 6 . the
一种管道流体加热器,除了所述铁质管1呈矩形;在矩形铁质管1内,设有与矩形铁质管1内壁连接的2个呈纵向布置的铁质纵隔板6-1和2个呈横向布置的铁质横隔板6-2,从而令矩形铁质管1内腔分隔成呈格栅状布置的9个管内流体通道之外,其它均如同具体实施方式之一。 A pipeline fluid heater, except that the
本发明如具体实施方式之一的初样试用显示,在相同条件下,可比已有技术节约电能消耗10~20%,取得了十分令人满意的效果。 As shown in the trial trial of one of the specific implementations, the present invention can save 10-20% of power consumption compared with the prior art under the same conditions, and has achieved very satisfactory results. the
Claims (8)
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN 201020275681 CN201828006U (en) | 2010-07-22 | 2010-07-22 | Pipeline fluid heater |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN 201020275681 CN201828006U (en) | 2010-07-22 | 2010-07-22 | Pipeline fluid heater |
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CN201828006U true CN201828006U (en) | 2011-05-11 |
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CN 201020275681 Expired - Fee Related CN201828006U (en) | 2010-07-22 | 2010-07-22 | Pipeline fluid heater |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102425920A (en) * | 2011-09-13 | 2012-04-25 | 苏州科宝光电科技有限公司 | Electromagnetic heating mechanism and drying room equipped with same |
CN108684095A (en) * | 2018-07-18 | 2018-10-19 | 欧建文 | Super-long pipeline electromagnetic induction heater |
CN116294215A (en) * | 2023-03-29 | 2023-06-23 | 绵阳禾本生物工程有限公司 | Air heater, stoving hold device |
-
2010
- 2010-07-22 CN CN 201020275681 patent/CN201828006U/en not_active Expired - Fee Related
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102425920A (en) * | 2011-09-13 | 2012-04-25 | 苏州科宝光电科技有限公司 | Electromagnetic heating mechanism and drying room equipped with same |
CN108684095A (en) * | 2018-07-18 | 2018-10-19 | 欧建文 | Super-long pipeline electromagnetic induction heater |
CN108684095B (en) * | 2018-07-18 | 2021-11-16 | 欧建文 | Electromagnetic induction heating device for super-long pipeline |
CN116294215A (en) * | 2023-03-29 | 2023-06-23 | 绵阳禾本生物工程有限公司 | Air heater, stoving hold device |
CN116294215B (en) * | 2023-03-29 | 2023-11-03 | 绵阳禾本生物工程有限公司 | Air heater, stoving hold device |
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CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20110511 Termination date: 20130722 |