CN204612975U - A kind of multiple spot water quality sampling device of wireless remote control - Google Patents
A kind of multiple spot water quality sampling device of wireless remote control Download PDFInfo
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Abstract
Description
技术领域 technical field
本实用新型属于环保技术领域,具体涉及一种水质取样装置,特别涉及一种无线遥控的多点水质取样装置。 The utility model belongs to the technical field of environmental protection, in particular to a water quality sampling device, in particular to a wireless remote control multi-point water quality sampling device.
背景技术 Background technique
现在随着工业和农业的大肆发展,排入河流中的污水也日益增多,水污染问题愈发的严重,水质取样装置是一种用于对制定水域进行取样的器械,通过将水域中的水抽出存储之后,带回来进行研究,现有的取样工具需要借助于桥梁或者是船只来实现,在一定程度上增加了人力和物力的耗费,不能够节省程序和时间,抽取的过程也比较复杂,给工作人员带来不便,另外对于所采水样是指定深度的水样,对于不同深度的水样采集不够充足,这样对于水样的采集检测的准确性有一定的影响。 Now with the vigorous development of industry and agriculture, the amount of sewage discharged into rivers is also increasing, and the problem of water pollution is becoming more and more serious. The water quality sampling device is a device used to sample designated water areas. After extracting and storing, bring it back for research. The existing sampling tools need to be realized by means of bridges or ships, which increases the consumption of manpower and material resources to a certain extent, cannot save procedures and time, and the extraction process is also relatively complicated. It brings inconvenience to the staff. In addition, for the collected water samples are water samples of a specified depth, the collection of water samples of different depths is not sufficient, which has a certain impact on the accuracy of the collection and detection of water samples.
发明内容 Contents of the invention
本实用新型的目的是为了克服现有技术的不足,而提供一种收集方便、检测准确的无线遥控的多点水质取样装置。 The purpose of the utility model is to overcome the deficiencies of the prior art, and provide a wireless remote control multi-point water quality sampling device with convenient collection and accurate detection.
本实用新型的目的是这样实现的:一种无线遥控的多点水质取样装置,它包括取样装置及遥控取样装置的遥控器,所述的遥控器前侧面中上部设置有显示屏,所述的遥控器前侧面下部设置有操控按钮,所述的遥控器顶端靠右位置设置有发射器,所述的发射器无线连接有接收信号的天线,所述的天线穿过取样装置上侧面板连接有接收器,所述的接收器上设置有GPS定位模块,所述的接收器连接有控制器,所述的控制器输入端连接有蓄电池,所述的控制器输出端连接有马达,所述的取样装置内左部设置有取水管,所述的取水管由八根长度不同的水管组合而成,所述的水管上端出水口内设置有微型水泵,所述的微型水泵连接控制器,所述的水管下端进水口处设置有单向阀,所述的取水管出水口下方设置有蓄水杯。 The purpose of this utility model is achieved in the following way: a wireless remote control multi-point water quality sampling device, which includes a sampling device and a remote controller of the remote control sampling device, a display screen is arranged on the middle and upper part of the front side of the remote control, and the The lower part of the front side of the remote controller is provided with a control button, and the top right of the remote controller is provided with a transmitter, and the transmitter is wirelessly connected to an antenna for receiving signals, and the antenna passes through the upper side panel of the sampling device and is connected to a A receiver, the receiver is provided with a GPS positioning module, the receiver is connected to a controller, the input end of the controller is connected to a storage battery, the output end of the controller is connected to a motor, and the The left part of the sampling device is provided with a water intake pipe. The water intake pipe is composed of eight water pipes with different lengths. A micro-water pump is arranged in the water outlet at the upper end of the water pipe. The micro-water pump is connected to the controller. A one-way valve is arranged at the water inlet at the lower end of the water pipe, and a water storage cup is arranged below the water outlet of the water intake pipe.
所述的取样装置为船型结构。 The sampling device is a ship-shaped structure.
所述的天线上设置有指示灯。 The antenna is provided with an indicator light.
所述的水管从左至右依次按从短到长的顺序排列,所述的水管下端进水口在取样装置下侧面下方。 The water pipes are arranged from short to long from left to right, and the water inlet at the lower end of the water pipes is below the lower side of the sampling device.
所述的蓄水杯内设置有八个分别与水管对应的水槽。 The water storage cup is provided with eight water tanks respectively corresponding to the water pipes.
本实用新型的有益效果:本实用新型采用遥控器和天线进行无线的遥控操作,这样可以不仅十分的方便,同时减少了人力物力的耗费,接收器能够接收遥控器上操控按钮的指示由控制器进行相应的操作,使取样装置到达指定区域进行取样操作,不同长度的水管能够采集到指定区域中不同高度的水质样本,使水质的检测结果的准确度更高,水管进水口的单向阀能够在取样装置行走的时候阻止水的进入,防止对水质样本的干扰,蓄电池对取样装置进行供电操作,GPS定位模块能够随时定位取样装置的位置,并通过遥控器的显示屏显示出来,总的本实用新型具有使用方便、采集多样、检测准确、结构简单、控制精准的优点。 Beneficial effects of the utility model: the utility model uses a remote controller and an antenna for wireless remote control operation, which is not only very convenient, but also reduces the consumption of manpower and material resources, and the receiver can receive instructions from the control button on the remote controller Carry out corresponding operations to make the sampling device reach the designated area for sampling operation. Water pipes of different lengths can collect water quality samples at different heights in the designated area, so that the accuracy of water quality test results is higher. The one-way valve at the water pipe inlet can When the sampling device is walking, water is prevented from entering to prevent interference to the water quality samples. The battery supplies power to the sampling device. The GPS positioning module can locate the position of the sampling device at any time and display it on the display screen of the remote control. The utility model has the advantages of convenient use, diverse collection, accurate detection, simple structure and precise control.
附图说明 Description of drawings
图1是本实用新型的结构示意图。 Fig. 1 is the structural representation of the utility model.
图2是本实用新型中取水管的后视图。 Fig. 2 is the rear view of the water intake pipe in the utility model.
图3是本实用新型中蓄水杯的俯视图 Fig. 3 is the top view of the water storage cup in the utility model
图中:1、取样装置 2、遥控器 3、显示屏 4、操控按钮 5、发射器 6、天线 7、接收器 8、GPS定位模块 9、控制器 10、蓄电池 11、马达 12、取水管 13、水管 14、微型水泵 15、单向阀 16、蓄水杯。 In the figure: 1. Sampling device 2. Remote control 3. Display screen 4. Control button 5. Transmitter 6. Antenna 7. Receiver 8. GPS positioning module 9. Controller 10. Battery 11. Motor 12. Water intake pipe 13 , water pipe 14, micro water pump 15, one-way valve 16, water storage cup.
具体实施方式 Detailed ways
下面结合附图对本实用新型做进一步的说明。 Below in conjunction with accompanying drawing, the utility model is described further.
实施例1 Example 1
如图1-3所示,一种无线遥控的多点水质取样装置,它包括取样装置1及遥控取样装置1的遥控器2,所述的遥控器2前侧面中上部设置有显示屏3,所述的遥控器2前侧面下部设置有操控按钮4,所述的遥控器2顶端靠右位置设置有发射器5,所述的发射器5无线连接有接收信号的天线6,所述的天线6穿过取样装置1上侧面板连接有接收器7,所述的接收器7上设置有GPS定位模块8,所述的接收器7连接有控制器9,所述的控制器9输入端连接有蓄电池10,所述的控制器9输出端连接有马达11,所述的取样装置1内左部设置有取水管12,所述的取水管12由八根长度不同的水管13组合而成,所述的水管13上端出水口内设置有微型水泵14,所述的微型水泵14连接控制器9,所述的水管13下端进水口处设置有单向阀15,所述的取水管12出水口下方设置有蓄水杯16。 As shown in Figure 1-3, a wireless remote control multi-point water quality sampling device, it includes a sampling device 1 and a remote control 2 of the remote control sampling device 1, a display screen 3 is provided on the middle and upper part of the front side of the remote control 2, The lower part of the front side of the remote controller 2 is provided with a control button 4, and the top right of the remote controller 2 is provided with a transmitter 5, and the transmitter 5 is wirelessly connected to an antenna 6 for receiving signals. 6. A receiver 7 is connected through the upper side panel of the sampling device 1. The receiver 7 is provided with a GPS positioning module 8. The receiver 7 is connected to a controller 9. The input terminal of the controller 9 is connected to There is a storage battery 10, the output end of the controller 9 is connected with a motor 11, the left part of the sampling device 1 is provided with a water intake pipe 12, and the water intake pipe 12 is composed of eight water pipes 13 with different lengths. The water outlet at the upper end of the water pipe 13 is provided with a micro-water pump 14, the micro-water pump 14 is connected to the controller 9, the water inlet at the lower end of the water pipe 13 is provided with a one-way valve 15, and the water intake pipe 12 is below the water outlet. A water storage cup 16 is provided.
本实用新型在使用时:操作遥控器上的操控按钮,天线接收信号传输至控制器,由蓄电池提供电量,控制器控制马达动作驱动取样装置至指定区域之后,驱动微型水泵动作抽水取样,减少了人力物力的耗费,十分方便,长度的不同的水管将指定区域内不同深度的水质收集起来,后期检测的结果就能更加的准确,水管进水口的单向阀能够在取样装置行走的时候阻止水的进入,防止对于水质样本的干扰,GPS定位模块能够随时定位取样装置的位置,并通过遥控器的显示屏显示出来,总的本实用新型具有使用方便、检测准确、结构简单、控制精准的优点。 When the utility model is in use: operate the control button on the remote controller, the antenna receives the signal and transmits it to the controller, the battery provides power, the controller controls the motor to drive the sampling device to the designated area, and then drives the micro pump to pump water and sample, reducing the The consumption of manpower and material resources is very convenient. Water pipes of different lengths collect water quality at different depths in the designated area, and the results of later detection can be more accurate. The one-way valve at the water pipe inlet can stop the water when the sampling device is walking. to prevent the interference of water quality samples, the GPS positioning module can locate the position of the sampling device at any time, and display it through the display screen of the remote control. In general, the utility model has the advantages of convenient use, accurate detection, simple structure and precise control .
实施例2 Example 2
如图1-3所示,一种无线遥控的多点水质取样装置,它包括取样装置1及遥控取样装置1的遥控器2,所述的遥控器2前侧面中上部设置有显示屏3,所述的遥控器2前侧面下部设置有操控按钮4,所述的遥控器2顶端靠右位置设置有发射器5,所述的发射器5无线连接有接收信号的天线6,所述的天线6穿过取样装置1上侧面板连接有接收器7,所述的接收器7上设置有GPS定位模块8,所述的接收器7连接有控制器9,所述的控制器9输入端连接有蓄电池10,所述的控制器9输出端连接有马达11,所述的取样装置1内左部设置有取水管12,所述的取水管12由八根长度不同的水管13组合而成,所述的水管13上端出水口内设置有微型水泵14,所述的微型水泵14连接控制器9,所述的水管13下端进水口处设置有单向阀15,所述的取水管12出水口下方设置有蓄水杯16。 As shown in Figure 1-3, a wireless remote control multi-point water quality sampling device, it includes a sampling device 1 and a remote control 2 of the remote control sampling device 1, a display screen 3 is provided on the middle and upper part of the front side of the remote control 2, The lower part of the front side of the remote controller 2 is provided with a control button 4, and the top right of the remote controller 2 is provided with a transmitter 5, and the transmitter 5 is wirelessly connected to an antenna 6 for receiving signals. 6. A receiver 7 is connected through the upper side panel of the sampling device 1. The receiver 7 is provided with a GPS positioning module 8. The receiver 7 is connected to a controller 9. The input terminal of the controller 9 is connected to There is a storage battery 10, the output end of the controller 9 is connected with a motor 11, the left part of the sampling device 1 is provided with a water intake pipe 12, and the water intake pipe 12 is composed of eight water pipes 13 with different lengths. The water outlet at the upper end of the water pipe 13 is provided with a micro-water pump 14, the micro-water pump 14 is connected to the controller 9, the water inlet at the lower end of the water pipe 13 is provided with a one-way valve 15, and the water intake pipe 12 is below the water outlet. A water storage cup 16 is provided.
所述的取样装置1为船型结构。 The sampling device 1 is a boat-shaped structure.
所述的天线6上设置有指示灯。 The antenna 6 is provided with an indicator light.
所述的水管13从左至右依次按从短到长的顺序排列,所述的水管13下端进水口在取样装置1下侧面下方。 The water pipes 13 are arranged in order from short to long from left to right, and the water inlet at the lower end of the water pipes 13 is below the lower side of the sampling device 1 .
所述的蓄水杯16内设置有八个分别与水管13对应的水槽。 Eight water tanks corresponding to the water pipes 13 are arranged in the water storage cup 16 .
本实用新型在使用时:操作遥控器上的操控按钮,天线接收信号传输至控制器,由蓄电池提供电量,控制器控制马达动作驱动取样装置至指定区域之后,驱动微型水泵动作抽水取样,减少了人力物力的耗费,十分方便,取样装置的船型结构能够在水中行走时更加的平稳,长度的不同的水管将指定区域内不同深度的水质收集起来,相对应的水槽能够将不同长度的水管收集起来的水质样本进行分离,以便后期的检测,按照从短到长的顺序排列,能够很轻易的知道水槽中的样本是什么位置的水质样本,让后期检测的结果就能更加的准确,水管进水口的单向阀能够在取样装置行走的时候阻止水的进入,防止对于水质样本的干扰,GPS定位模块能够随时定位取样装置的位置,并通过遥控器的显示屏显示出来,总的本实用新型具有使用方便、采集多样、检测准确、结构简单、控制精准的优点。 When the utility model is in use: operate the control button on the remote controller, the antenna receives the signal and transmits it to the controller, the battery provides power, the controller controls the motor to drive the sampling device to the designated area, and then drives the micro pump to pump water and sample, reducing the The consumption of manpower and material resources is very convenient. The boat-shaped structure of the sampling device can be more stable when walking in the water. Water pipes of different lengths collect water at different depths in the designated area, and the corresponding water tanks can collect water pipes of different lengths. Separation of water quality samples for later detection, arranged in order from short to long, can easily know where the water quality samples are located in the tank, so that the results of later detection can be more accurate, the water pipe inlet The one-way valve can prevent the water from entering when the sampling device is walking, and prevent the interference to the water quality sample. The GPS positioning module can locate the position of the sampling device at any time, and display it through the display screen of the remote control. In general, the utility model has the advantages of It has the advantages of convenient use, diverse collection, accurate detection, simple structure and precise control.
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Cited By (13)
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| CN105241692A (en) * | 2015-10-31 | 2016-01-13 | 重庆市南川区晨曦化工有限公司 | Sodium sulfide liquid taking device |
| CN105403435A (en) * | 2015-12-31 | 2016-03-16 | 大连理工大学 | Three-dimensional sampling device for simulating transport of river contaminations |
| CN105403437A (en) * | 2015-12-31 | 2016-03-16 | 大连理工大学 | Three-dimensional sampling method for simulating transport of river contaminations |
| CN105446184A (en) * | 2015-12-08 | 2016-03-30 | 苏州市享乐惠信息科技有限公司 | Marine remote controller |
| CN105716907A (en) * | 2016-03-10 | 2016-06-29 | 四川大学 | Multipoint synchronous sampling system for water samples in stratified flow channel model test |
| CN105857529A (en) * | 2016-05-26 | 2016-08-17 | 江苏德林环保技术有限公司 | Remote control water sample sampling boat |
| CN105865847A (en) * | 2016-06-21 | 2016-08-17 | 浙江大学 | Practical small-size multilayer interference-free sampler for layering water |
| CN107014642A (en) * | 2017-06-05 | 2017-08-04 | 江西师范大学 | A kind of water sampling system and method |
| CN108872177A (en) * | 2018-08-06 | 2018-11-23 | 江苏展宏灌排科技有限公司 | A kind of water analysis detection instrument |
| CN109668760A (en) * | 2019-02-20 | 2019-04-23 | 谢杰 | A kind of water-quality sampler that can flexibly shrink |
| CN110006704A (en) * | 2019-05-08 | 2019-07-12 | 义乌奥莉机械科技有限公司 | A kind of water quality of river telemonitoring platform |
| CN111855299A (en) * | 2020-08-24 | 2020-10-30 | 山东交通学院 | A Distributed Multi-point Water Quality Sampling Device with Remote Remote Control |
| CN112461604A (en) * | 2020-12-18 | 2021-03-09 | 上海海事大学 | Different degree of depth water sampling device |
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| CN105241692A (en) * | 2015-10-31 | 2016-01-13 | 重庆市南川区晨曦化工有限公司 | Sodium sulfide liquid taking device |
| CN105446184A (en) * | 2015-12-08 | 2016-03-30 | 苏州市享乐惠信息科技有限公司 | Marine remote controller |
| CN105403437B (en) * | 2015-12-31 | 2017-11-10 | 大连理工大学 | A kind of three-dimensional sampling method intended for the defeated shifting formwork of pollution of river thing |
| CN105403435A (en) * | 2015-12-31 | 2016-03-16 | 大连理工大学 | Three-dimensional sampling device for simulating transport of river contaminations |
| CN105403437A (en) * | 2015-12-31 | 2016-03-16 | 大连理工大学 | Three-dimensional sampling method for simulating transport of river contaminations |
| CN105403435B (en) * | 2015-12-31 | 2017-12-19 | 大连理工大学 | A kind of three-dimensional sampler intended for the defeated shifting formwork of pollution of river thing |
| CN105716907A (en) * | 2016-03-10 | 2016-06-29 | 四川大学 | Multipoint synchronous sampling system for water samples in stratified flow channel model test |
| CN105716907B (en) * | 2016-03-10 | 2018-10-12 | 四川大学 | Stratified flow water trough model tests the Multipoint synchronous sampling system of water sample |
| CN105857529A (en) * | 2016-05-26 | 2016-08-17 | 江苏德林环保技术有限公司 | Remote control water sample sampling boat |
| CN105857529B (en) * | 2016-05-26 | 2018-01-23 | 江苏德林环保技术有限公司 | One kind remote control water sample sampling boat |
| CN105865847A (en) * | 2016-06-21 | 2016-08-17 | 浙江大学 | Practical small-size multilayer interference-free sampler for layering water |
| CN107014642A (en) * | 2017-06-05 | 2017-08-04 | 江西师范大学 | A kind of water sampling system and method |
| CN108872177A (en) * | 2018-08-06 | 2018-11-23 | 江苏展宏灌排科技有限公司 | A kind of water analysis detection instrument |
| CN109668760A (en) * | 2019-02-20 | 2019-04-23 | 谢杰 | A kind of water-quality sampler that can flexibly shrink |
| CN109668760B (en) * | 2019-02-20 | 2022-04-01 | 谢杰 | Water quality sampler capable of being flexibly contracted |
| CN110006704A (en) * | 2019-05-08 | 2019-07-12 | 义乌奥莉机械科技有限公司 | A kind of water quality of river telemonitoring platform |
| CN110006704B (en) * | 2019-05-08 | 2019-11-22 | 陈文娟 | A kind of water quality of river telemonitoring platform |
| CN111855299A (en) * | 2020-08-24 | 2020-10-30 | 山东交通学院 | A Distributed Multi-point Water Quality Sampling Device with Remote Remote Control |
| CN112461604A (en) * | 2020-12-18 | 2021-03-09 | 上海海事大学 | Different degree of depth water sampling device |
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