CN207894282U - A kind of structure improved cooling system - Google Patents
A kind of structure improved cooling system Download PDFInfo
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- CN207894282U CN207894282U CN201820074008.6U CN201820074008U CN207894282U CN 207894282 U CN207894282 U CN 207894282U CN 201820074008 U CN201820074008 U CN 201820074008U CN 207894282 U CN207894282 U CN 207894282U
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Abstract
Description
技术领域technical field
本实用新型涉及冷却系统技术领域,尤其涉及一种结构改良的冷却系统。The utility model relates to the technical field of cooling systems, in particular to a cooling system with improved structure.
背景技术Background technique
在现有技术中,设备的散热一般是借助冷却水塔来实现,具体的:设备工作时所产生的热水经由冷却水塔冷却后再循环进入设备中并对设备进行冷却处理。In the prior art, the heat dissipation of the equipment is generally realized by means of cooling water towers. Specifically, the hot water generated during the operation of the equipment is cooled by the cooling water tower and then circulated into the equipment for cooling treatment.
需进一步指出,对于上述冷却水塔水直接冷却方式而言,其存在以下缺陷,具体的:水路经常堵塞、散热不好、工艺不稳定且设备加速老化的问题。It should be further pointed out that for the above-mentioned direct cooling method of cooling water tower water, it has the following defects, specifically: the waterway is often blocked, the heat dissipation is not good, the process is unstable, and the aging of the equipment is accelerated.
实用新型内容Utility model content
本实用新型的目的在于针对现有技术的不足而提供一种结构改良的冷却系统,该结构改良的冷却系统结构设计新颖、散热效果好、使用方便,且能够有效地解决冷却水塔水直接冷却使水路经常堵塞、散热不好、工艺不稳定且设备加速老化的问题。The purpose of the utility model is to provide a cooling system with an improved structure for the deficiencies of the prior art. The improved cooling system has a novel structure design, good heat dissipation effect, and is easy to use, and can effectively solve the problem of direct cooling of the cooling tower water. The waterway is often blocked, the heat dissipation is not good, the process is unstable, and the aging of the equipment is accelerated.
为达到上述目的,本实用新型通过以下技术方案来实现。In order to achieve the above object, the utility model is realized through the following technical solutions.
一种结构改良的冷却系统,包括有板式换热器、冷却水塔,板式换热器设置有相互连通的冷水入口、热水出口以及相互连通的冷水出口、热水入口,板式换热器的热水入口连设有与使用设备的出水口连接的设备出水管道,冷却水塔的出水口通过水塔出水管道与板式换热器的冷水入口连接,冷却水塔的入水口通过水塔进水管道与板式换热器的热水出口连接;A cooling system with improved structure, including a plate heat exchanger and a cooling water tower. The plate heat exchanger is provided with interconnected cold water inlets, hot water outlets and interconnected cold water outlets and hot water inlets. The water inlet is connected with an equipment outlet pipe connected to the water outlet of the equipment used. The outlet of the cooling water tower is connected to the cold water inlet of the plate heat exchanger through the water tower outlet pipe, and the water inlet of the cooling tower is connected to the plate heat exchanger through the water tower inlet pipe. The hot water outlet connection of the appliance;
该结构改良的冷却系统还包括有至少三个驱动水泵,各驱动水泵的入水口分别通过水泵进水管道与板式换热器的冷水出口连接,各驱动水泵的出水口分别连设有水泵出水管道;The cooling system with improved structure also includes at least three driving water pumps, the water inlet of each driving water pump is respectively connected with the cold water outlet of the plate heat exchanger through the water pump inlet pipe, and the water outlet of each driving water pump is respectively connected with a water pump outlet pipe ;
该结构改良的冷却系统还包括有串联管道以及若干与使用设备连接的设备进水管道,各设备进水管道分别装设有用于控制相应设备进水管道通断状态的球阀,各水泵出水管道以及各设备进水管道分别与串联管道连接。The cooling system with improved structure also includes series pipes and a number of equipment water inlet pipes connected to the equipment used. Each equipment water inlet pipe is equipped with a ball valve for controlling the on-off state of the corresponding equipment water inlet pipe, each water pump outlet pipe and The water inlet pipes of each equipment are respectively connected with series pipes.
其中,各所述水泵出水管道分别装设有用于控制相应水泵出水管道通断状态的止回阀。Wherein, each of the water pump outlet pipes is respectively equipped with a check valve for controlling the on-off state of the corresponding water pump outlet pipe.
本实用新型的有益效果为:本实用新型所述的一种结构改良的冷却系统,其包括有板式换热器、冷却水塔,板式换热器设置有相互连通的冷水入口、热水出口以及相互连通的冷水出口、热水入口,板式换热器的热水入口连设有与使用设备的出水口连接的设备出水管道,冷却水塔的出水口通过水塔出水管道与板式换热器的冷水入口连接,冷却水塔的入水口通过水塔进水管道与板式换热器的热水出口连接;该结构改良的冷却系统还包括有至少三个驱动水泵,各驱动水泵的入水口分别通过水泵进水管道与板式换热器的冷水出口连接,各驱动水泵的出水口分别连设有水泵出水管道;该结构改良的冷却系统还包括有串联管道以及若干与使用设备连接的设备进水管道,各设备进水管道分别装设有用于控制相应设备进水管道通断状态的球阀,各水泵出水管道以及各设备进水管道分别与串联管道连接。通过上述结构设计,本实用新型具有结构设计新颖、散热效果好、使用方便的优点,且能够有效地解决冷却水塔水直接冷却使水路经常堵塞、散热不好、工艺不稳定且设备加速老化的问题。The beneficial effects of the utility model are: a cooling system with improved structure described in the utility model, which includes a plate heat exchanger and a cooling water tower, and the plate heat exchanger is provided with interconnected cold water inlets, hot water outlets and interconnected Connected cold water outlet and hot water inlet. The hot water inlet of the plate heat exchanger is connected with the equipment outlet pipe connected to the water outlet of the equipment used. The outlet of the cooling water tower is connected to the cold water inlet of the plate heat exchanger through the water tower outlet pipe. , the water inlet of the cooling water tower is connected to the hot water outlet of the plate heat exchanger through the water tower inlet pipe; the cooling system with improved structure also includes at least three driving water pumps, and the water inlet of each driving water pump is respectively connected to the water inlet pipe of the water pump. The cold water outlet of the plate heat exchanger is connected, and the water outlets of each driving water pump are respectively connected with water pump outlet pipes; the cooling system with improved structure also includes series pipes and several equipment water inlet pipes connected with the equipment used. The pipelines are respectively equipped with ball valves for controlling the on-off status of the water inlet pipelines of the corresponding equipment, and the water outlet pipelines of each water pump and the water inlet pipelines of each equipment are respectively connected with the series pipelines. Through the above structural design, the utility model has the advantages of novel structural design, good heat dissipation effect, and convenient use, and can effectively solve the problems of frequent blockage of waterways due to direct cooling of cooling tower water, poor heat dissipation, unstable process, and accelerated aging of equipment .
附图说明Description of drawings
下面利用附图来对本实用新型进行进一步的说明,但是附图中的实施例不构成对本实用新型的任何限制。The utility model is further described below using the drawings, but the embodiments in the drawings do not constitute any limitation to the utility model.
图1为本实用新型的结构示意图。Fig. 1 is the structural representation of the utility model.
在图1中包括有:In Figure 1 are included:
1——板式换热器 111——冷水入口1——plate heat exchanger 111——cold water inlet
112——热水出口 121——冷水出口112——hot water outlet 121——cold water outlet
122——热水入口 2——冷却水塔122——Hot water inlet 2——Cooling water tower
31——设备出水管道 32——设备进水管道31——equipment outlet pipe 32——equipment inlet pipe
41——水塔出水管道 42——水塔进水管道41——Water tower outlet pipe 42——Water tower inlet pipe
5——驱动水泵 61——水泵进水管道5——drive water pump 61——water pump inlet pipe
62——水泵出水管道 7——串联管道62——Water pump outlet pipe 7——Series pipe
8——球阀 9——止回阀。8——Ball valve 9——Check valve.
具体实施方式Detailed ways
下面结合具体的实施方式来对本实用新型进行说明。The utility model will be described below in conjunction with specific embodiments.
如图1所示,一种结构改良的冷却系统,包括有板式换热器1、冷却水塔2,板式换热器1设置有相互连通的冷水入口111、热水出口112以及相互连通的冷水出口121、热水入口122,板式换热器1的热水入口122连设有与使用设备的出水口连接的设备出水管道31,冷却水塔2的出水口通过水塔出水管道41与板式换热器1的冷水入口111连接,冷却水塔2的入水口通过水塔进水管道42与板式换热器1的热水出口112连接。As shown in Figure 1, a cooling system with an improved structure includes a plate heat exchanger 1 and a cooling water tower 2. The plate heat exchanger 1 is provided with a cold water inlet 111 connected to each other, a hot water outlet 112 and a cold water outlet connected to each other 121. Hot water inlet 122. The hot water inlet 122 of the plate heat exchanger 1 is connected with the equipment outlet pipe 31 connected to the water outlet of the equipment used. The water outlet of the cooling water tower 2 is connected to the plate heat exchanger 1 through the water tower outlet pipe 41. The cold water inlet 111 of the cooling water tower 2 is connected to the water inlet 111 of the cooling water tower through the water tower inlet pipe 42 and the hot water outlet 112 of the plate heat exchanger 1 is connected.
进一步的,该结构改良的冷却系统还包括有至少三个驱动水泵5,各驱动水泵5的入水口分别通过水泵进水管道61与板式换热器1的冷水出口121连接,各驱动水泵5的出水口分别连设有水泵出水管道62。Further, the cooling system with improved structure also includes at least three driving water pumps 5, the water inlets of each driving water pump 5 are respectively connected to the cold water outlet 121 of the plate heat exchanger 1 through the water pump inlet pipe 61, and the water inlets of each driving water pump 5 The water outlets are respectively connected with water pump outlet pipes 62 .
更进一步的,该结构改良的冷却系统还包括有串联管道7以及若干与使用设备连接的设备进水管道32,各设备进水管道32分别装设有用于控制相应设备进水管道32通断状态的球阀8,各水泵出水管道62以及各设备进水管道32分别与串联管道7连接。Furthermore, the cooling system with improved structure also includes series pipes 7 and several equipment water inlet pipes 32 connected to the equipment used. The ball valve 8, each water pump outlet pipeline 62 and each equipment water inlet pipeline 32 are connected with the series pipeline 7 respectively.
需进一步指出,各水泵出水管道62分别装设有用于控制相应水泵出水管道62通断状态的止回阀9。It should be further pointed out that each water pump outlet pipe 62 is respectively equipped with a check valve 9 for controlling the on-off state of the corresponding water pump outlet pipe 62 .
需进一步解释,本实用新型的水塔进水管道42或者水塔出水管道41装设有水塔循环水泵,工作时,在水塔循环水泵的驱动作用下,经冷却水塔2冷却后的冷水经由水塔出水管道41而进入至板式换热器1内,经板式换热器1热交换后而形成的热水经由水塔进水管道42而循环进入至冷却水塔2内进行冷却处理。Further explanation is required, the water tower water inlet pipe 42 or the water tower water outlet pipe 41 of the present utility model is equipped with a water tower circulating water pump. During operation, under the driving action of the water tower circulating water pump, the cold water cooled by the cooling water tower 2 passes through the water tower water outlet pipe 41 After entering the plate heat exchanger 1, the hot water formed after heat exchange by the plate heat exchanger 1 circulates into the cooling water tower 2 through the water tower inlet pipe 42 for cooling treatment.
另外,使用设备冷却时所产生的热水经由设备出水管道31而进入至板式换热器1内,经板式换热器1热交换后形成的冷水在驱动水泵5的作用下而通入至使用设备内,以实现对使用设备进行冷却处理。需强调的是,本实用新型设置有至少三个驱动水泵5,使用时可以采用一备多用的方式进行使用,在突发水泵坏的情况下可启动备用的驱动水泵5进行供水,从而不会影响水路水循环。In addition, the hot water generated when the equipment is used for cooling enters into the plate heat exchanger 1 through the equipment outlet pipe 31, and the cold water formed after the heat exchange of the plate heat exchanger 1 is passed into the used In the equipment, in order to realize the cooling treatment of the equipment in use. It should be emphasized that the utility model is provided with at least three driving water pumps 5, which can be used in a multi-purpose manner during use, and the spare driving water pump 5 can be started for water supply in the event of a sudden water pump failure, so as not to affect water circulation.
还有就是,本实用新型可以配置与外部电源电性连接的PLC控制器,驱动水泵5以及水塔循环水泵可分别与PLC控制器电性连接。In addition, the utility model can be configured with a PLC controller electrically connected to an external power supply, and the driving water pump 5 and the water tower circulating water pump can be electrically connected to the PLC controller respectively.
综合上述情况可知,通过上述结构设计,本实用新型具有结构设计新颖、散热效果好、使用方便的优点,且能够有效地解决冷却水塔2水直接冷却使水路经常堵塞、散热不好、工艺不稳定且设备加速老化的问题。Based on the above situation, it can be seen that through the above structural design, the utility model has the advantages of novel structural design, good heat dissipation effect, and convenient use, and can effectively solve the problem of frequent blockage of the waterway due to direct cooling of the water in the cooling tower 2, poor heat dissipation, and unstable process. And the problem of accelerated aging of equipment.
以上内容仅为本实用新型的较佳实施例,对于本领域的普通技术人员,依据本实用新型的思想,在具体实施方式及应用范围上均会有改变之处,本说明书内容不应理解为对本实用新型的限制。The above content is only a preferred embodiment of the present utility model. For those of ordinary skill in the art, according to the idea of the present utility model, there will be changes in the specific implementation and scope of application. The content of this specification should not be understood as Limitations on the Invention.
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| CN201820074008.6U CN207894282U (en) | 2018-01-17 | 2018-01-17 | A kind of structure improved cooling system |
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| CN201820074008.6U CN207894282U (en) | 2018-01-17 | 2018-01-17 | A kind of structure improved cooling system |
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| CN207894282U true CN207894282U (en) | 2018-09-21 |
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Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN106196799A (en) * | 2016-08-25 | 2016-12-07 | 浙江夏王纸业有限公司 | One utilizes public water delivery low-temperature receiver amount to replace production body paper thermal device |
| CN112577325A (en) * | 2019-09-30 | 2021-03-30 | 江苏永鼎光纤科技有限公司 | Process cooling water system and control method thereof |
-
2018
- 2018-01-17 CN CN201820074008.6U patent/CN207894282U/en not_active Expired - Fee Related
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN106196799A (en) * | 2016-08-25 | 2016-12-07 | 浙江夏王纸业有限公司 | One utilizes public water delivery low-temperature receiver amount to replace production body paper thermal device |
| CN112577325A (en) * | 2019-09-30 | 2021-03-30 | 江苏永鼎光纤科技有限公司 | Process cooling water system and control method thereof |
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