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Marine water quality environment monitoring device

A technology for environmental monitoring and water quality, applied in measurement devices, test water, radio wave measurement systems, etc., can solve the problems of complex environment, affecting the stability of the overall device, and high requirements on the battery life of the monitoring device, achieving a high degree of intelligence, Improve battery life and ensure stability

Inactive Publication Date: 2019-01-11
SHENZHEN LANGCHENG ANALYSIS & TESTING CENT CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] However, especially for marine water quality monitoring, the environment is complex, especially when the wind and waves are strong, it is easy to affect the stability of the overall device, and the ocean water area is extremely wide, which requires high endurance of the monitoring device.

Method used

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  • Marine water quality environment monitoring device
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  • Marine water quality environment monitoring device

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0021] see Figure 1~3 , in an embodiment of the present invention, a marine water quality environment monitoring device includes a floating plate 1, a cylinder body 2, a controller 7 installed in the cylinder body 2, a detection mechanism and a power supply 12, and the opening at one end of the cylinder body 2 is another One end is closed, the opening of the cylinder body 2 is provided with a circle of flange 4, the flange 4 is fixedly connected with the floating plate 1 through several fastening bolts 5, and there is also a seal for sealing between the flange 4 and the floating plate 1 Gasket 6, the closed end of the cylinder body 2 is fixed with a counterweight 3 through threads, here, the main purpose of the design of the counterweight 3 is to ensure the stability of the state of the floating plate 1 and reduce the rollover phenomenon caused by the impact of waves. The barrel 2 is equipped with an electrically connected controller 7, a detection mechanism and a power suppl...

Embodiment 2

[0023] see figure 1 , in the embodiment of the present invention, the detection mechanism includes a pH detector 8, a temperature detector 9, a dissolved oxygen detector 10 and an ammonia nitrogen sensor 11, which are used to obtain the pH, temperature, dissolved oxygen and ammonia nitrogen content data in water, and The probes 16 of the pH detector 8, the temperature detector 9, the dissolved oxygen detector 10 and the ammonia nitrogen sensor 11 all protrude from the cylinder 2. In order to ensure the sealing performance, a seal for sealing is installed between the probe 16 and the cylinder 2. Sealing sleeve 15. Moreover, in order to adapt to the turbulent environment in the sea, foam 14 is installed between the pH detector 8, temperature detector 9, dissolved oxygen detector 10 and ammonia nitrogen sensor 11 to play the role of shock absorption.

Embodiment 3

[0025] see Figure 1~2 , in the embodiment of the present invention, a marine water quality environment monitoring device also includes several pieces of photovoltaic panels 18, the photovoltaic panels 18 are installed in the fixed frame 19, the fixed frame 19 is fixed on the floating plate 1, and the fixed frame 19 and the floating plate 1 are also filled with waterproof glue 20. Since it is inconvenient to charge or replace the power supply 12 in the sea, the power supply 12 can be charged by using the photovoltaic panel 18 to improve the battery life of the monitoring device. The board 18 is electrically connected to the power source 12 , and mechanisms such as a ballast or a voltage stabilizing circuit may be added in the circuit between the two to ensure that the photovoltaic panel 18 can effectively charge the power source 12 .

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Abstract

The invention discloses a marine water quality environment monitoring device, which comprises a floating plate, a cylinder, and a controller, a detecting mechanism and a power source mounted in the cylinder. One end of the cylinder is opened and the other end is closed. The opening of the cylinder is provided with a ring of flanging, which is fixed to the floating plate through a plurality of fastening bolts. A sealing gasket for sealing is also provided between the flanging and the floating plate. The closed end of the cylinder is fixed with a weight through a thread. The cylinder is mountedwith an electrically connected controller, a detection mechanism, and a power source. The controller communicates with the background service terminal through a network module, wherein the network module is a 4G module. The floating plate is also fixed with an antenna which connected to the controller. The invention has the advantages that the stability of the structure in a complex environment inthe sea can be ensured through the design of a T-shaped structure formed by the floating plate and the cylinder, and the weight; the endurance of the device can be greatly improved, and the overall structure becomes simple and compact through a photovoltaic panel.

Description

technical field [0001] The invention relates to a monitoring device, in particular to a marine water quality environment monitoring device. Background technique [0002] Water quality monitoring is an important basic work of water treatment, which has important practical significance for people's life and industrial production, and is related to people's health and the sustainable development of environmental resources. Due to the diversity of water quality monitoring problems, the methods of water quality monitoring are becoming more and more diverse. At present, the buoy-type water quality monitoring device is used in 24-hour uninterrupted water quality monitoring of wide rivers, seas, rivers, lakes or artificial reservoirs, reflecting its advantages of saving labor, real-time, and accuracy. [0003] However, especially for marine water quality monitoring, the environment is complex, especially when the wind and waves are strong, it is easy to affect the stability of the ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01N33/18G01S19/01
CPCG01N33/18G01S19/01
Inventor 刘进刘昌伟常白杨唐文明阎新许振邦陈晓敏
Owner SHENZHEN LANGCHENG ANALYSIS & TESTING CENT CO LTD
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