WO2018102940A1 - 一种智能发电机提升泵站 - Google Patents

一种智能发电机提升泵站 Download PDF

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Publication number
WO2018102940A1
WO2018102940A1 PCT/CN2016/108483 CN2016108483W WO2018102940A1 WO 2018102940 A1 WO2018102940 A1 WO 2018102940A1 CN 2016108483 W CN2016108483 W CN 2016108483W WO 2018102940 A1 WO2018102940 A1 WO 2018102940A1
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pump
pump station
disposed
generator
lift pump
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PCT/CN2016/108483
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English (en)
French (fr)
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王彩霞
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王彩霞
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Priority to PCT/CN2016/108483 priority Critical patent/WO2018102940A1/zh
Publication of WO2018102940A1 publication Critical patent/WO2018102940A1/zh

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    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03FSEWERS; CESSPOOLS
    • E03F5/00Sewerage structures
    • E03F5/22Adaptations of pumping plants for lifting sewage

Definitions

  • the invention relates to a lifting pump station, in particular to a smart generator lifting pump station for sewage discharge treatment, belonging to a sewage treatment device.
  • the main object of the present invention is to overcome the above-mentioned shortcomings of the prior art, and to provide an intelligent lifting pump station, which adopts an integral sealing structure, has no odor and no pollution, and controls the flow rate of the pumping station through the rotation speed control of the frequency conversion regulating pump, and is configured with
  • the noise reduction layer reduces the running noise of the equipment, and is equipped with water level control and water level measurement redundant identification, and the intelligent control operation is simple, so it is suitable for promotion.
  • the utility model relates to a smart generator lifting pump station, which comprises: a first debris separator, a first speed regulating pump, a second speed regulating pump, a second debris separator, a sealed box, a generator, a control panel and a pipe, a double check valve is disposed at the water inlet, a flange is fixed on the pipe, an air venting valve is disposed at a bottom of the closed box, and a remote pressure gauge is fixed to the pipe by a bolt, and the sewage is Entering the first governor pump, the second governor pump, the first debris separator and the second debris separator via a first debris separator and a second debris separator, respectively
  • the drawn pipe is connected to the ozone disinfection chamber via a check valve, the ozone
  • the disinfection chamber is connected to the activated carbon adsorption chamber via the pipeline, and the outlet end of the pipeline drawn through the activated carbon adsorption chamber is provided with a water outlet, the generator is bolted to the sealed box body,
  • the superhydrophobic layer located in the inner layer of the closed box is made of a nano-hydrophobic material.
  • two remote level gauges are respectively connected to the control panel via wires.
  • a sound insulating layer is disposed inside the sealed case.
  • the ozone sterilization chamber and the activated carbon adsorption chamber are respectively disposed on the pipeline at the water outlet.
  • the remote electromagnetic flowmeter is disposed at the water inlet.
  • the intelligent generator lifting pump station of the invention has the following beneficial effects:
  • the intelligent generator lifting pump station designed by the invention adopts PLC control to adjust the flow rate of the pump, separates the debris in the sewage, prevents the water pump from being blocked, saves manpower and does not need to manually clean the pumping station.
  • the design of the water inlet of the invention adopts a remote electromagnetic flowmeter, and the flow rate of the water pump can be determined by knowing the flow rate of the water inlet, thereby improving the control effect.
  • the first speed regulating pump and the second speed regulating pump respectively adopt the frequency conversion speed regulation mode to adjust the rotation speed of the pump, and adopt the combination of the speed regulation and the fixed speed to adjust the flow range of the water.
  • the present invention is designed with two sets of remote liquid level gauges. If one of the water level gauges has problems, the control system will be paralyzed. Therefore, the water level detection redundancy and identification function is designed, and the control system is provided by comparing two sets of water level gauges. A judgment that selects the conditions of a real and safe water level, thereby greatly improving the safety and stability of the production system.
  • the invention is designed with a debris separator for separating debris and sewage, preventing the pump impeller from contacting foreign objects and avoiding pump clogging.
  • the controller controls the solenoid valve to close, the pipeline pressure increases, the venting valve and the overflow valve open, and the sewage flowing out of the overflow valve flushes the inside of the tank.
  • the design box of the invention adopts an integral closed type, does not pollute the environment, deodorizes, and is labor-saving to install.
  • the invention designs an ozone contact chamber and an activated carbon adsorption chamber to disinfect and sterilize the sewage, so that the sewage reaches the standard discharge.
  • Figure 1 is a schematic view of the structure of the present invention.
  • 1- far-reaching electromagnetic flowmeter 2-double check valve, 3-inlet, 4-flange, 5-sounding layer, 6-superhydrophobic layer, 7-exhaust valve, 8-first debris separation , 9-first speed control pump, 10-remote pressure gauge, 11-solenoid valve, 12-relief valve, 13-second speed control pump, 14-second debris separator, 15-check valve , 16-Ozone disinfection room, 17-activated carbon adsorption chamber, 18-outlet, 19-closed box, 20-generator, 21-management port, 22-control panel, 23-remote level gauge, 24-pipe .
  • the present invention is characterized in that it comprises a first debris separator 8, a first governor pump 9, a second governor pump 13, a second debris separator 14, a sealed casing 19, and a generator. 20.
  • the control panel 22 and the pipe 24, the double check valve 2 is disposed at the water inlet 3, the flange 4 is fixed to the pipe 24, and the venting valve 7 is disposed at the bottom of the closed casing 19, and the remote pressure gauge 10 is The bolt is fixed on the pipe 24, and the sewage enters the first speed governing pump 9, the second governing pump 13, the first mass separator 8 and the first through the first debris separator 8 and the second debris separator 14, respectively.
  • the pipe 24 drawn from the second debris separator 14 is connected to the ozone elimination via the check valve 15.
  • the poison chamber 16, the ozone disinfection chamber 16 is connected to the activated carbon adsorption chamber 17 via the pipeline 24, and the water outlet 18 is disposed at the end of the pipeline 24 led out by the activated carbon adsorption chamber 17, and the generator 20 is bolted to the sealed tank 19, and the electromagnetic flowmeter 1 is remotely transmitted.
  • the solenoid valve 11 and the generator 20, the first governor pump 9, and the second governor pump 13 are respectively connected to the control panel 22 via wires, and the control panel 22 is disposed at the upper end of the sealed casing 19, and the inspection port 21 is disposed in the sealed casing 19
  • the superhydrophobic layer 6 in the inner layer of the closed box 19 is made of a nano-hydrophobic material
  • the two remote liquid level gauges 23 are respectively connected to the control panel 22 via wires
  • the sound-insulating layer 5 is disposed inside the sealed box 19, and the ozone disinfecting chamber 16
  • the activated carbon adsorption chambers 17 are respectively disposed on the pipes 24 at the water outlet 18, and the remote electromagnetic flowmeter 1 is disposed at the water inlet 3.

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  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Hydrology & Water Resources (AREA)
  • Public Health (AREA)
  • Water Supply & Treatment (AREA)
  • Treatment Of Water By Oxidation Or Reduction (AREA)
  • Water Treatment By Sorption (AREA)

Abstract

一种智能发电机提升泵站,包括第一杂物分离器(8)、第一调速泵(9)、第二调速泵(13)、第二杂物分离器(14)、密闭箱体(19)、发电机(20)、控制面板(22)和管道(24),双止回阀(2)设置在进水口(3)处,法兰盘(4)固接在所述管道(24)上,排空阀(7)设置在所述密闭箱体(19)底部,污水分别经第一杂物分离器(8)和第二杂物分离器(14)进入所述第一调速泵(9)、所述第二调速泵(13),所述第一杂物分离器(8)和所述第二杂物分离器(14)上引出的所述管道(24)经止回阀(15)连接臭氧消毒室(16),经活性炭吸附室(17)引出的所述管道(24)末端设置有出水口(18),该泵站采用PLC控制调节泵的流量,分离污水中的杂物,防止堵塞水泵,节省人力无需人为清理泵站,可自动杀菌消毒,环保无污染,故适于推广。

Description

一种智能发电机提升泵站 技术领域
本发明涉及提升泵站,尤其涉及一种用于污水排放处理的一种智能发电机提升泵站,属于污水处理设备。
背景技术
随着我国经济的不断发展,城市化进展不断加快,大量的生活生产产生的污水不能得到有效的处理排放,严重的影响了居民生活环境。现如今,人们的环保意识越来越强,加强城市污水处理,保护城市生活环境,实现城市的可持续发展成为人们的共识。以往在污水处理中,人们往往采用集水坑结合排污泵的方式处理生活或者工业废水,这种处理方式不仅问题频发,需要人员定时清理,对周围环境更会产生严重的负担,不能满足人们污水处理的需要。
发明内容
本发明的主要目的在于克服现有技术存在的上述缺点,而提供一种智能提升泵站,采用整体密封结构,无臭无污染,通过变频调节泵的转速控制提升泵站的流量,且配置有减噪层降低设备运行噪音,设置有水位控制和水位测量冗余识别,智能化控制操作简单,故适于推广。
本发明的目的是由以下技术方案实现的:
一种智能发电机提升泵站,其特征在于:包括第一杂物分离器、第一调速泵、第二调速泵、第二杂物分离器、密闭箱体、发电机、控制面板和管道,双止回阀设置在进水口处,法兰盘固接在所述管道上,排空阀设置在所述密闭箱体底部,远传压力表经螺栓固接在所述管道上,污水分别经第一杂物分离器和第二杂物分离器进入所述第一调速泵、所述第二调速泵,所述第一杂物分离器和所述第二杂物分离器上引出的所述管道经止回阀连接臭氧消毒室,所述臭氧 消毒室经所述管道连接活性炭吸附室,经所述活性炭吸附室引出的所述管道末端设置有出水口,所述发电机与所述密闭箱体螺栓连接,远传电磁流量计、电磁阀和所述发电机、第一调速泵、第二调速泵分别经导线连接所述控制面板,所述控制面板设置在所述密闭箱体上端,检修口设置在所述密闭箱体左端。
进一步地,位于所述密闭箱体内层的所述超疏水层采用纳米疏水材料制成。
进一步地,两个远传液位计分别经导线连接所述控制面板。
进一步地,隔音层设置在所述密闭箱体内部。
进一步地,所述臭氧消毒室、活性炭吸附室分别设置在所述出水口处的所述管道上。
进一步地,所述远传电磁流量计设置在所述进水口处。
与现有技术相比,本发明一种智能发电机提升泵站具有以下有益效果:
(1)本发明设计的智能发电机提升泵站采用PLC控制调节泵的流量,分离污水中的杂物,防止堵塞水泵,节省人力无需人为清理泵站。
(2)本发明设计进水口采用远传电磁流量计,了解进水口的流量就可确定水泵调速定速方式,改善了控制效果。
(3)本发明设计第一调速泵、第二调速泵分别采用变频调速的方式,调节泵的转速,采用调速与定速组合方式,可调节水的流量范围大。
(4)本发明设计有两套远传液位计,假如其中之一水位计出现问题,控制***将瘫痪,因此设计了水位检测冗余与识别功能,通过对比两套水位计提供给控制***一个判断,选择真实、安全水位的条件,从而大大改善生产***的安全稳定性。
(5)本发明设计有杂物分离器可分离杂物和污水,避免水泵叶轮接触杂物,避免水泵堵塞。
(6)本发明设计当箱体内部的污水达到一定高度时,控制器控制电磁阀关闭,管道压力增大,排空阀和溢流阀打开,溢流阀内流出的污水冲洗箱体内部的超疏水层,可自清洁清洁箱体内部。
(7)本发明设计箱体采用整体密闭式,不会污染环境,除臭,安装省力。
(8)本发明设计臭氧接触室和活性炭吸附室,为污水消毒杀菌,使污水达标排放。
附图说明:
图1为本发明结构示意图。
1-远传电磁流量计,2-双止回阀,3-进水口,4-法兰盘,5-隔音层,6-超疏水层,7-排空阀,8-第一杂物分离器,9-第一调速泵,10-远传压力表,11-电磁阀,12-溢流阀,13-第二调速泵,14-第二杂物分离器,15-止回阀,16-臭氧消毒室,17-活性炭吸附室,18-出水口,19-密闭箱体,20-发电机,21-检修口,22-控制面板,23-远传液位计,24-管道。
具体实施方式
下面结合附图和实施例对本发明作进一步说明,本发明的实施方式包括但不限于下列实施例。
为了实现上述目的,本发明采用的技术方案如下:
如图1所示,本发明其特征在于:包括第一杂物分离器8、第一调速泵9、第二调速泵13、第二杂物分离器14、密闭箱体19、发电机20、控制面板22和管道24,双止回阀2设置在进水口3处,法兰盘4固接在管道24上,排空阀7设置在密闭箱体19底部,远传压力表10经螺栓固接在管道24上,污水分别经第一杂物分离器8和第二杂物分离器14进入第一调速泵9、第二调速泵13,第一杂物分离器8和第二杂物分离器14上引出的管道24经止回阀15连接臭氧消 毒室16,臭氧消毒室16经管道24连接活性炭吸附室17,经活性炭吸附室17引出的管道24末端设置有出水口18,发电机20与密闭箱体19螺栓连接,远传电磁流量计1、电磁阀11和发电机20、第一调速泵9、第二调速泵13分别经导线连接控制面板22,控制面板22设置在密闭箱体19上端,检修口21设置在密闭箱体19左端,位于密闭箱体19内层的超疏水层6采用纳米疏水材料,两个远传液位计23分别经导线连接控制面板22,隔音层5设置在密闭箱体19内部,臭氧消毒室16、活性炭吸附室17分别设置在出水口18处的管道24上,远传电磁流量计1设置在进水口3处。
以上所述,仅是本发明的较佳实施例而已,并非对本发明作任何形式上的限制,凡是依据本发明的技术实质对以上实施例所作的任何简单修改、等同变化与修饰,均仍属于本发明技术方案的范围内。

Claims (6)

  1. 一种智能发电机提升泵站,其特征在于:包括第一杂物分离器(8)、第一调速泵(9)、第二调速泵(13)、第二杂物分离器(14)、密闭箱体(19)、发电机(20)、控制面板(22)和管道(24),双止回阀(2)设置在进水口(3)处,法兰盘(4)固接在所述管道(24)上,排空阀(7)设置在所述密闭箱体(19)底部,远传压力表(10)经螺栓固接在所述管道(24)上,污水分别经第一杂物分离器(8)和第二杂物分离器(14)进入所述第一调速泵(9)、所述第二调速泵(13),所述第一杂物分离器(8)和所述第二杂物分离器(14)上引出的所述管道(24)经止回阀(15)连接臭氧消毒室(16),所述臭氧消毒室(16)经所述管道(24)连接活性炭吸附室(17),经所述活性炭吸附室(17)引出的所述管道(24)末端设置有出水口(18),所述发电机(20)与所述密闭箱体(19)螺栓连接,远传电磁流量计(1)、电磁阀(11)和所述发电机(20)、第一调速泵(9)、第二调速泵(13)分别经导线连接所述控制面板(22),所述控制面板(22)设置在所述密闭箱体(19)上端,检修口(21)设置在所述密闭箱体(19)的左端。
  2. 根据权利要求1所述的智能发电机提升泵站,其特征在于:位于所述密闭箱体(19)内层的超疏水层(6)采用纳米疏水材料制成。
  3. 根据权利要求1所述的智能发电机提升泵站,其特征在于:两个远传液位计(23)分别经导线连接所述控制面板(22)。
  4. 根据权利要求2所述的智能发电机提升泵站,其特征在于:隔音层(5)设置在所述密闭箱体(19)内部。
  5. 根据权利要求1所述的智能发电机提升泵站,其特征在于:所述臭氧消毒室(16)、活性炭吸附室(17)分别设置在所述出水口(18)处的所述管道(24)上。
  6. 根据权利要求1所述的智能发电机提升泵站,其特征在于:所述远传电磁流量计(1)设置在所述进水口(3)处。
PCT/CN2016/108483 2016-12-05 2016-12-05 一种智能发电机提升泵站 WO2018102940A1 (zh)

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CN109056991A (zh) * 2018-09-30 2018-12-21 天津华电北宸分布式能源有限公司 一种污水提升装置
CN109853670A (zh) * 2018-12-24 2019-06-07 江苏鼎达电气科技有限公司 一种水利环保集成泵站
CN110219362A (zh) * 2019-07-04 2019-09-10 福建省禄源环保科技有限公司 一种一体化泵站
CN112900606A (zh) * 2021-02-07 2021-06-04 洁禹通河北环保设备有限公司 带绞碎功能的新型污水提升装置
CN113982055A (zh) * 2021-09-28 2022-01-28 中节能国祯环保科技股份有限公司 一种泵站清淤装置及方法

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Publication number Priority date Publication date Assignee Title
CN109056991A (zh) * 2018-09-30 2018-12-21 天津华电北宸分布式能源有限公司 一种污水提升装置
CN109853670A (zh) * 2018-12-24 2019-06-07 江苏鼎达电气科技有限公司 一种水利环保集成泵站
CN110219362A (zh) * 2019-07-04 2019-09-10 福建省禄源环保科技有限公司 一种一体化泵站
CN112900606A (zh) * 2021-02-07 2021-06-04 洁禹通河北环保设备有限公司 带绞碎功能的新型污水提升装置
CN113982055A (zh) * 2021-09-28 2022-01-28 中节能国祯环保科技股份有限公司 一种泵站清淤装置及方法
CN113982055B (zh) * 2021-09-28 2022-10-28 中节能国祯环保科技股份有限公司 一种泵站清淤装置及方法

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