CN209974383U - 泳池水处理设备的水流监测结构 - Google Patents
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Abstract
本实用新型公开一种泳池水处理设备的水流监测结构,包括设备本体、复合电解组件和水电解组件;设备本体设有容腔,容腔设有进水口和出水口;复合电解组件包括互相连接的复合电极插头和复合电极组;复合电极组包括连接座、固定在连接座的水流检测极片和氯电极组,氯电极组在水流检测极片下方,水流检测极片高于出水口;连接座设有连接于水流检测极片的正极连接端和负极连接端,连接座通过两个连接端向水流检测极片施加电压并检测电压值;氯电极组电性连接于复合电极插头;水电解组件包括互相连接的水电解插头和水电极组。本实用新型在氯电极组上方设置水流检测极片,并实时检测其电压值,通过电压值判断水流流速,实现监测水流,降低监测成本。
Description
技术领域
本实用新型涉及泳池消毒设备领域,特别是指一种泳池水处理设备的水流监测结构。
背景技术
泳池消毒设备是安装在泳池进水口的前端,在水流进入泳池之前对水流进行消毒,以避免水中的有害物质对在泳池中游泳的人造成影响。现有的泳池消毒设备通常是在设备的容腔内设置一个氯电极组,氯电极组在通电后与水中的溶质发生化学反应,以实现消毒的功能。但泳池消毒设备本身无法判断是否有水流的状态,当泳池不再注水,进入泳池消毒设备的水流停止流动,氯电极组若持续处于通电的状态将导致能源浪费,甚至损坏氯电极组。而现有的解决方法是在泳池消毒设备的前端设置一个水流监测装置,以实时监测水流的状态,当水流停止时使泳池消毒设备停止工作。上述的解决方式需要额外配置一个水流监测装置,成本较高。
实用新型内容
本实用新型的目的在于提供一种泳池水处理设备的水流监测结构,使泳池水处理设备本身就能够实时监测水流的状态,实现低成本监测水流,并延长泳池水处理设备的使用寿命。
为了达成上述目的,本实用新型的解决方案是:
一种泳池水处理设备的水流监测结构,包括设备本体、复合电解组件和水电解组件;所述设备本体设有容腔,容腔设有进水口和出水口;所述复合电解组件包括复合电极插头和复合电极组,复合电极组电性连接于复合电极插头;所述复合电极组包括与复合电极插头匹配的连接座、水流检测极片和氯电极组,水流检测极片和氯电极组均固定在连接座上,且氯电极组位于水流检测极片的下方,水流检测极片的高度高于出水口的高度;所述连接座设有正极连接端和负极连接端,正极连接端和负极连接端均连接于水流检测极片,连接座通过正极连接端和负极连接端向水流检测极片施加电压并实时检测电压值;所述氯电极组电性连接于复合电极插头;所述水电解组件包括水电解插头和水电极组,水电极组连接于水电解插头。
所述进水口的高度高于出水口的高度。
所述复合电极插头和水电解插头均电性连接于外部的电控设备。
所述氯电极组包括至少两张钛板,其表面涂有用以产生次氯酸消毒剂的涂层。
所述水电极组包括至少两张钛板,其表面涂有用以电解水产生羟基的涂层。
采用上述结构后,本实用新型在氯电极组的上方设置水流检测极片,并实时检测水流检测极片的电压值,通过电压值即可判断水流流速,使泳池水处理设备本身就能够实时监测水流的状态,实现低成本监测水流,并延长泳池水处理设备的使用寿命。
附图说明
图1为本实用新型具体实施例的立体图;
图2为本实用新型具体实施例的剖视图(一);
图3为本实用新型具体实施例的剖视图(二);
图4为本实用新型复合电极组22的结构示意图;
图5为本实用新型的工作原理图(水流停止时)。
附图标号说明:
设备本体1;容腔10;进水口11;出水口12;复合电解组件2;复合电极插头21;复合电极组22;连接座221;正极连接端2211;负极连接端2212;水流检测极片222;氯电极组223;水电解组件3;水电解插头31;水电极组32;气泡4。
具体实施方式
为了进一步解释本实用新型的技术方案,下面通过具体实施例来对本实用新型进行详细阐述。
参照图1至图4,本实用新型为一种泳池水处理设备的水流监测结构,包括设备本体1、复合电解组件2和水电解组件3。
上述设备本体1设有容腔10,容腔10设有进水口11和出水口12。本实施例中进水口11的高度高于出水口12的高度,以便于水流的流动,防止水流停止时水聚集在容腔10内。
上述复合电解组件2包括复合电极插头21和复合电极组22,复合电极组22电性连接于复合电极插头21,复合电极插头21电性连接于外部的电控设备。上述复合电极组22包括与复合电极插头21匹配的连接座221、水流检测极片222和氯电极组223,水流检测极片222和氯电极组223均固定在连接座221上,且氯电极组223位于水流检测极片222的下方,水流检测极片222的高度高于出水口12的高度。上述氯电极组233包括至少两张钛板,其表面涂有用以产生次氯酸消毒剂的涂层;各钛板之间用支撑架固定,盐水经过氯电极组233,工作时,钛板之间产生次氯酸消毒剂和氢气。上述连接座221设有正极连接端2211和负极连接端2212,正极连接端2211和负极连接端2212均连接于水流检测极片222,连接座221通过正极连接端2211和负极连接端2212向水流检测极片222施加低电压并实时检测电压值,通过检测电压值判定水流检测极片222附近是否有水。上述氯电极组223电性连接于复合电极插头21。
上述水电解组件3包括水电解插头31和水电极组32,水电极组32连接于水电解插头31,水电解插头31电性连接于外部的电控设备。上述水电极组32包括至少两张钛板,其表面涂有用以电解水产生羟基的涂层;各钛板之间用支撑架固定,盐水经过水电极组32,工作时,钛板之间产生羟基,辅助消毒。
参考图3和图5,本实用新型的工作原理为:当产品正常工作时,水流从进水口11进入,从出水口12流出,容腔10内的水处于流动状态,复合电解组件2和水电解组件3通电,氯电极组223在电解时会产生气泡4,气泡4随着水流的流动而流出容腔10。当水流停止时,容腔10内的水不再流动,氯电极在电解时产生的气泡4便会聚集并且上升,把水流检测极片222位置的水排开,当水流检测极片222的位置没有水时,连接座221所检测的电压值将小于预定的阈值,则可判定为流速异常(即水流停止),从而使泳池消毒设备停止工作。
通过上述结构,本实用新型在氯电极组223的上方设置水流检测极片222,并实时检测水流检测极片222的电压值,通过电压值即可判断水流流速,使泳池水处理设备本身就能够实时监测水流的状态,实现低成本监测水流,并延长泳池水处理设备的使用寿命。
上述实施例和图式并非限定本实用新型的产品形态和式样,任何所属技术领域的普通技术人员对其所做的适当变化或修饰,皆应视为不脱离本实用新型的专利范畴。
Claims (5)
1.一种泳池水处理设备的水流监测结构,其特征在于:包括设备本体、复合电解组件和水电解组件;所述设备本体设有容腔,容腔设有进水口和出水口;所述复合电解组件包括复合电极插头和复合电极组,复合电极组电性连接于复合电极插头;所述复合电极组包括与复合电极插头匹配的连接座、水流检测极片和氯电极组,水流检测极片和氯电极组均固定在连接座上,且氯电极组位于水流检测极片的下方,水流检测极片的高度高于出水口的高度;所述连接座设有正极连接端和负极连接端,正极连接端和负极连接端均连接于水流检测极片,连接座通过正极连接端和负极连接端向水流检测极片施加电压并实时检测电压值;所述氯电极组电性连接于复合电极插头;所述水电解组件包括水电解插头和水电极组,水电极组连接于水电解插头。
2.如权利要求1所述的一种泳池水处理设备的水流监测结构,其特征在于:所述进水口的高度高于出水口的高度。
3.如权利要求1所述的一种泳池水处理设备的水流监测结构,其特征在于:所述复合电极插头和水电解插头均电性连接于外部的电控设备。
4.如权利要求1所述的一种泳池水处理设备的水流监测结构,其特征在于:所述氯电极组包括至少两张钛板,其表面涂有用以产生次氯酸消毒剂的涂层。
5.如权利要求1所述的一种泳池水处理设备的水流监测结构,其特征在于:所述水电极组包括至少两张钛板,其表面涂有用以电解水产生羟基的涂层。
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EP20791310.4A EP3956267A4 (en) | 2019-04-17 | 2020-04-15 | FLUID FLOW MONITORING DEVICE FOR WATER TREATMENT |
US17/603,569 US20220220013A1 (en) | 2019-04-17 | 2020-04-15 | Fluid flow monitor for water treatment |
PCT/IB2020/053573 WO2020212880A1 (en) | 2019-04-17 | 2020-04-15 | Fluid flow monitor for water treatment |
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WO2020212880A1 (en) * | 2019-04-17 | 2020-10-22 | Intex Industries Xiamen Co. Ltd. | Fluid flow monitor for water treatment |
US11795078B2 (en) | 2017-04-01 | 2023-10-24 | Intex Marketing Ltd. | Water treatment system |
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WO2002090266A1 (fr) * | 2001-04-27 | 2002-11-14 | Sanyo Electric Co., Ltd. | Dispositif de traitement d'eau |
JP2004132592A (ja) * | 2002-10-09 | 2004-04-30 | Denkai Giken:Kk | 電気化学的水処理方法及び水処理システム |
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CN101993135B (zh) * | 2009-08-28 | 2012-05-09 | 明达实业(厦门)有限公司 | 用于游泳池的2合1氯铜/溴铜消毒器 |
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AU2013271507A1 (en) * | 2012-06-08 | 2015-01-15 | Tennant Company | Apparatus and method for generating oxidatively and thermally-enhanced treatment liquids |
CN104326608B (zh) * | 2014-11-19 | 2016-09-07 | 中国船舶重工集团公司第七二五研究所 | 一种多级电化学污水处理方法及装置 |
CN106995229B (zh) * | 2016-01-22 | 2021-04-16 | 南京理工大学 | 一种双管式膜电极电催化反应器 |
CN207525022U (zh) * | 2017-11-16 | 2018-06-22 | 明达实业(厦门)有限公司 | 具有流量调节功能的电解槽 |
CN208440333U (zh) * | 2018-03-27 | 2019-01-29 | 深圳安吉尔饮水产业集团有限公司 | 自由基发生装置及净水设备 |
CN209974383U (zh) * | 2019-04-17 | 2020-01-21 | 明达实业(厦门)有限公司 | 泳池水处理设备的水流监测结构 |
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US11795078B2 (en) | 2017-04-01 | 2023-10-24 | Intex Marketing Ltd. | Water treatment system |
US11807560B2 (en) | 2017-04-01 | 2023-11-07 | Intex Marketing Ltd. | Water treatment system |
WO2020212880A1 (en) * | 2019-04-17 | 2020-10-22 | Intex Industries Xiamen Co. Ltd. | Fluid flow monitor for water treatment |
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