CN205598764U - Two separation centrifugal filtration purifier - Google Patents
Two separation centrifugal filtration purifier Download PDFInfo
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- CN205598764U CN205598764U CN201620098402.4U CN201620098402U CN205598764U CN 205598764 U CN205598764 U CN 205598764U CN 201620098402 U CN201620098402 U CN 201620098402U CN 205598764 U CN205598764 U CN 205598764U
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Abstract
一种双分离离心过滤净水装置,包括离心装置与杂质沉淀装置,离心装置连接入杂质沉淀装置内,杂质沉淀装置下连接滤芯,滤芯下设有出水口。在净水装置内设离水装置,可以及时将需要处理的水进水泥水分离,将水通过离心泵进行离心作业,让水资源和泥沙进行分离,在离心力的作用下可以快速的将两者分离,泥水分离装置的设置,进一步将泥沙收集,泥沙沉积在泥水分离装置的底部的泥沙收集腔内,泥水分离过的水从溢水口溢出进入到蓄水池,蓄水池上设有滤网进行二次过程,能够降低净水装置的净水过滤成本。
A double-separation centrifugal filtration water purification device includes a centrifugal device and an impurity precipitation device, the centrifugal device is connected into the impurity precipitation device, the impurity precipitation device is connected to a filter element, and a water outlet is arranged under the filter element. A water separation device is installed in the water purification device, which can promptly separate the water that needs to be treated into the cement water, and the water is centrifugally operated through a centrifugal pump to separate the water resource and the sediment, and the two can be quickly separated under the action of centrifugal force. Separation of the former, the setting of the mud-water separation device further collects the sediment, and the sediment is deposited in the sediment collection chamber at the bottom of the mud-water separation device. There is a filter screen for the secondary process, which can reduce the cost of water purification and filtration of the water purification device.
Description
技术领域 technical field
本实用新型涉及一种净水装置,具体涉及一种双分离离心过滤净水装置。 The utility model relates to a water purification device, in particular to a double separation centrifugal filter water purification device.
背景技术 Background technique
目前城市的供水系统都是通过城市供水管网进行供水,在城市供水管网中有部分管道时间使用久远,管道的内壁会出现锈蚀,这些锈蚀的铁屑会随着自来水供应到工厂或者家庭,这些含有大量杂质的水源会给企业的生产和人们的生活带来影响,尤其是一些需要水源质量较高的生产企业,这些含杂质的水源会影响企业的生产活动,在需要干净水质的生产企业需要进行自来水的净化,在净化装置中很多净化装置只能够依靠吸附装置进行逐层的杂质吸附,不能够将杂质与水进行分离,吸附过程还是会有大量的杂质进入水中,净化的过程较长,使用成本较高。 At present, the urban water supply system supplies water through the urban water supply pipe network. Some pipes in the urban water supply pipe network have been used for a long time, and the inner wall of the pipe will be corroded. These rusted iron filings will be supplied to factories or households along with the tap water. These water sources containing a lot of impurities will affect the production of enterprises and people's lives, especially for some production enterprises that require high-quality water sources. These water sources containing impurities will affect the production activities of enterprises. In production enterprises that require clean water quality Purification of tap water is required. Many purification devices in the purification device can only rely on the adsorption device to adsorb impurities layer by layer, and cannot separate impurities from water. During the adsorption process, a large amount of impurities will still enter the water, and the purification process is longer. , the use cost is higher.
发明内容 Contents of the invention
本实用新型的目的是提供一种净化效果好,水砂分离的一种双分离离心过滤净水装置。 The purpose of the utility model is to provide a double-separation centrifugal filter water purification device with good purification effect and separation of water and sand.
本实用新型的技术方案为:一种双分离离心过滤净水装置,包括离心装置与杂质沉淀装置,所述的离心装置连接入杂质沉淀装置内,杂质沉淀装置下连接滤芯,滤芯下设有出水口。 The technical solution of the utility model is: a double-separation centrifugal filtration water purification device, including a centrifugal device and an impurity precipitation device, the centrifugal device is connected into the impurity precipitation device, the impurity precipitation device is connected to the filter element, and the filter element is provided with an outlet. Shuikou.
所述的离心装置包括了离心泵和蓄水池,离心泵延伸接入杂质沉淀装置内,杂质沉淀装置上设有溢水口,溢水口呈斜状结构或平台状结构设置在杂质沉淀装置上,蓄水池上设有过滤装置,杂质沉淀装置下部设斜状或平台状混合区,在混合区的两侧分别设有泥沙收集腔,杂质沉淀装置内的泥沙收集腔下设出砂口,杂质沉淀装置与蓄水池之间设活动或固定连接密封装置。 The centrifugal device includes a centrifugal pump and a water storage tank, the centrifugal pump is extended into the impurity precipitation device, the impurity precipitation device is provided with an overflow port, and the overflow port is arranged on the impurity precipitation device in an inclined structure or a platform structure, A filtering device is installed on the reservoir, and an oblique or platform-shaped mixing zone is set at the lower part of the impurity sedimentation device. Sediment collection chambers are respectively arranged on both sides of the mixing zone, and sand outlets are set under the sediment collection chamber in the impurity sedimentation device. A movable or fixed connection sealing device is set between the impurity precipitation device and the reservoir.
所述的管路分为管路A和管路B,管路A接入增压泵,增压泵下连接离心装置,所述的管路B上设有检修装置,检修装置为检修阀。 The pipeline is divided into pipeline A and pipeline B. The pipeline A is connected to the booster pump, and the centrifugal device is connected under the booster pump. The pipeline B is provided with a maintenance device, and the maintenance device is a maintenance valve.
所述的溢水口的倾斜角度为10°-45°,所述的溢水口排出泥水分离装置内的水,在溢水口的倾斜角最小处溢出水量大。 The inclination angle of the overflow port is 10°-45°, and the overflow port discharges the water in the mud-water separation device, and the amount of overflowing water is large at the minimum inclination angle of the overflow port.
所述的杂质沉淀装置上的泥沙收集腔为尖角状结构或者半圆弧状结构。 The sediment collection chamber on the impurity precipitation device has a pointed structure or a semi-arc structure.
所述的泥沙收集腔的尖角状的倾斜角度为15°-55°。 The pointed angle of the sediment collection cavity is 15°-55°.
所述的泥沙收集腔的圆弧角度为0°-180°。 The arc angle of the sediment collection cavity is 0°-180°.
本实用新型的优点是:在净水装置内设离水装置,可以及时将需要处理的水进水泥水分离,将水通过离心泵进行离心作业,让水资源和泥沙进行分离,在离心力的作用下可以快速的将两者分离,泥水分离装置的设置,进一步将泥沙收集,泥沙沉积在杂质沉淀装置的底部的泥沙收集腔内,泥水分离过的水从溢水口溢出进入到蓄水池,蓄水池上设有滤网进行二次过程,能够降低净水装置的净水过滤成本。 The utility model has the advantages that: a water separation device is installed in the water purification device, which can timely separate the water that needs to be treated into the cement water, and the water can be centrifugally operated through the centrifugal pump, so that the water resource and the sediment can be separated. Under the action, the two can be quickly separated. The setting of the mud-water separation device further collects the sediment. The sediment is deposited in the sediment collection chamber at the bottom of the impurity sedimentation device. The water separated from the mud-water overflows from the overflow port into the storage tank. The water tank and the water storage tank are provided with a filter screen to carry out the secondary process, which can reduce the water purification and filtration cost of the water purification device.
附图说明 Description of drawings
图1为本实用新型的结构示意图。 Fig. 1 is the structural representation of the utility model.
图2为本实用新型的零部件图。 Fig. 2 is a component diagram of the utility model.
图3为本实用新型的零部件图。 Fig. 3 is a component diagram of the utility model.
图中:1为离心装置,2为增压泵,3为管路,4为进水口,5为杂质沉淀装置,6为离心泵,7为蓄水池,8为溢水口,9为过滤装置,10为混合区,11为泥沙收集腔,12为出砂口,13为连接密封装置,14为检修装置,15为滤芯。 In the figure: 1 is the centrifugal device, 2 is the booster pump, 3 is the pipeline, 4 is the water inlet, 5 is the impurity precipitation device, 6 is the centrifugal pump, 7 is the reservoir, 8 is the overflow port, 9 is the filter device , 10 is a mixing zone, 11 is a sediment collection chamber, 12 is a sand outlet, 13 is a connecting sealing device, 14 is a maintenance device, and 15 is a filter element.
具体实施方式 detailed description
下面结合附图对本实用新型进一步说明。 Below in conjunction with accompanying drawing, the utility model is further described.
一种双分离离心过滤净水装置,包括离心装置1与杂质沉淀装置5,离心装置1连接入杂质沉淀装置5内,杂质沉淀装置5下连接滤芯,滤芯下设有出水口,离心装置1包括了离心泵6和蓄水池7,离心泵6延伸接入杂质沉淀装置5内,杂质沉淀装置5上设有溢水口8,溢水口8呈斜状结构或平台状结构设置在杂质沉淀装置5上,蓄水池7上设有过滤装置9,杂质沉淀装置5下部设斜状或平台状混合区10,在混合区10的两侧分别设有泥沙收集腔11,杂质沉淀装置5内的泥沙收集腔11下设出砂口12,杂质沉淀装置5与蓄水池7之间设活动或固定连接密封装置13,管路3分为管路A和管路B,管路A接入增压泵,增压泵2下连接离心装置1,管路B上设有检修装置14,检修装置14为检修阀。 A double-separation centrifugal filtration water purification device, comprising a centrifugal device 1 and an impurity precipitation device 5, the centrifugal device 1 is connected into the impurity precipitation device 5, the impurity precipitation device 5 is connected to a filter element, and a water outlet is provided under the filter element, and the centrifugal device 1 includes The centrifugal pump 6 and the reservoir 7 are connected, and the centrifugal pump 6 is extended into the impurity precipitation device 5. The impurity precipitation device 5 is provided with an overflow port 8, and the overflow port 8 is arranged in an oblique structure or a platform structure on the impurity precipitation device 5. Above, the reservoir 7 is provided with a filtering device 9, and the lower part of the impurity precipitation device 5 is provided with an inclined or platform-shaped mixing zone 10, and the two sides of the mixing zone 10 are respectively provided with sediment collection chambers 11, and the impurities in the impurity precipitation device 5 A sand outlet 12 is set under the sediment collection chamber 11, a movable or fixed connection sealing device 13 is set between the impurity sedimentation device 5 and the reservoir 7, the pipeline 3 is divided into a pipeline A and a pipeline B, and the pipeline A is connected to A booster pump, the booster pump 2 is connected to the centrifugal device 1, and the pipeline B is provided with an inspection device 14, which is an inspection valve.
溢水口8的倾斜角度为10°-45°,优选25°溢水口8排出泥水分离装置内的水,在溢水口8的倾斜角最小处溢出水量大,杂质沉淀装置5上的泥沙收集腔11为尖角状结构或者半圆弧状结构,泥沙收集腔11的尖角状的倾斜角度为15°-55°优选35°,泥沙收集腔11的圆弧角度为0°-180°。 The inclination angle of the overflow port 8 is 10°-45°, preferably 25°. The overflow port 8 discharges the water in the mud-water separation device. The amount of overflowing water at the minimum inclination angle of the overflow port 8 is large, and the sediment collection chamber on the impurity precipitation device 5 11 is a pointed structure or a semicircular arc-shaped structure. The pointed angle of the sediment collection chamber 11 is 15°-55°, preferably 35°, and the arc angle of the sediment collection chamber 11 is 0°-180°.
具体实施例1 Specific embodiment 1
净水装置内的进水口进入城市管网的自来水,自来水中自带水压,水压足够的前提下自来水从管路B进入到离心装置1内,离心装置1内的离心泵6作业将泥沙与水进行分离,分离后的水由管状物输送到杂质沉淀装置5的底部,杂质沉淀装置5上的溢水口8将水溢出,溢出的水进入到蓄水池7内,随着水量不断溢出将水排出蓄水池7,在排出蓄水池7的过程中再次过滤,在蓄水池7外侧设有滤网,水从滤网出进行了再次的过滤,过滤好的水进入到滤芯内,经过滤芯过滤后从出水排除,泥沙进入到了泥水收集腔11内,由泥沙收集腔11下的出砂口将泥沙排出,完成过滤过程。 The water inlet in the water purification device enters the tap water of the urban pipe network, and the tap water has its own water pressure. Under the premise of sufficient water pressure, the tap water enters the centrifugal device 1 from the pipeline B, and the centrifugal pump 6 in the centrifugal device 1 works to remove the sludge. The sand and water are separated, and the separated water is transported to the bottom of the impurity precipitating device 5 by the pipe, and the overflow port 8 on the impurity precipitating device 5 overflows the water, and the overflowing water enters the reservoir 7. As the water volume continues to The overflow discharges the water from the reservoir 7, and filters again during the process of discharging the reservoir 7. A filter screen is arranged outside the reservoir 7, and the water is filtered again from the filter screen, and the filtered water enters the filter element Inside, after being filtered by the filter core, the silt enters the mud water collection chamber 11, and the sand is discharged from the sand outlet under the silt collection chamber 11 to complete the filtration process.
具体实施例2 Specific embodiment 2
净水装置内的进水口进入城市管网的自来水,自来水中自带水压压力不够的前提下,自来水从管路A进入到增压泵,经过增压泵增压的水再进入到离心装置内,离心装置1内的离心泵6作业将泥沙与水进行分离,分离后的水由管状物输送到杂质沉淀装置5的底部,杂质沉淀装置5上的溢水口8将水溢出,溢出的水进入到蓄水池7内,随着水量不断溢出将水排出蓄水池7,在排出蓄水池7的过程中再次过滤,在蓄水池7外侧设有滤网,水从滤网出进行了再次的过滤,过滤好的水进入到滤芯内,经过滤芯过滤后从出水排除,泥沙进入到了泥水收集腔11内,由泥沙收集腔11下的出砂口将泥沙排出,完成过滤过程。 The water inlet in the water purification device enters the tap water of the urban pipe network. Under the premise that the water pressure in the tap water is not enough, the tap water enters the booster pump from the pipeline A, and the water pressurized by the booster pump enters the centrifugal device Inside, the centrifugal pump 6 in the centrifuge device 1 separates the sediment from the water, and the separated water is transported to the bottom of the impurity precipitator 5 by the pipe, and the overflow port 8 on the impurity precipitator 5 overflows the water. The water enters the reservoir 7, and the water is discharged from the reservoir 7 along with the continuous overflow of the water, and is filtered again in the process of discharging the reservoir 7. A filter screen is arranged on the outside of the reservoir 7, and the water flows out from the filter screen. Filtered again, the filtered water enters the filter element, and after being filtered by the filter element, it is discharged from the outlet water, and the sediment enters the mud and water collection chamber 11, and the sand is discharged from the sand outlet under the mud and sand collection chamber 11. filtering process.
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CN105617758A (en) * | 2016-02-01 | 2016-06-01 | 刁统洋 | Double-separation centrifugal filter water purification device |
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CN105617758A (en) * | 2016-02-01 | 2016-06-01 | 刁统洋 | Double-separation centrifugal filter water purification device |
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