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The invention relates to deep seawater parameter monitoring, in particular to a deep sea integrated submersible measuring system. It consists of anchor weight, ADP, power supply, CADP, floating box, dive ball, upper cable, instrument frame, releaser and lower cable. ADP, power supply and CADP are placed and placed in the lower and middle of the instrument frame. The upper part of the CADP is mounted upwards on the upper part of the instrument frame; the measuring probe of the ADP is mounted downwards on the lower part of the instrument frame, and the instrument frame is connected to the floating box by the upper cable, and the submerged ball is placed in the floating box. In the middle of the instrument frame, a release device connected to the anchor weight is provided. The invention is capable of monitoring a deep sea submersible measuring system with a depth of more than 200 meters, which can accurately and reliably monitor the wave height, wave direction and wave period of the water surface and the shallow layer, and can monitor the entire three-dimensional depth at the depth. Hierarchical profile flow rate, flow direction and other hydrological parameters. The invention has the advantages of simple structure, easy to put and recycle, convenient installation, high system security, large monitoring sea area, accurate and reliable data, less investment, more data, and high economic benefit.
Long-term, continuous, and fixed-point observation of the water environment, especially the hydrological parameters of the deep-sea marine environment, is a huge and arduous and complex project. It has always been the focus of the marine community, especially the access to information in extreme conditions, which scientists have been eagerly awaiting. The design and installation of offshore oil platforms are closely related to the hydrological and meteorological environmental conditions in the sea area, especially the hydrological (waves, currents, etc.) elements of the deep seas and the three-dimensional current profile data of the sea areas. At present, the most cost-effective acoustic Doppler current profiler has a depth of 180 meters, and the price of the acoustic Doppler current profiler above its depth is very expensive, while the wave and flow integrated measurement equipment has a higher depth of deployment. Strict requirements, ideal depth of 10-40 meters. It is not applicable to the comprehensive measurement of current profiles and waves in waters with a depth of more than 200 meters.
“A Deep Sea Latitude Measurement System†was authorized by the national invention patent
The “A Deep Sea Latency Measurement System†completed by the researcher of the Institute of Oceanography of the Chinese Academy of Sciences, Gong Dejun, was recently authorized by the National Invention Patent (Patent No.: ZL 200410050214.6).