Next Article in Journal
Applications of Graphene-Based Materials in Sensors
Previous Article in Journal
Changes in Muscle Contractile Properties after Cold- or Warm-Water Immersion Using Tensiomyography: A Cross-Over Randomised Trial
 
 
Font Type:
Arial Georgia Verdana
Font Size:
Aa Aa Aa
Line Spacing:
Column Width:
Background:
Article

Design of a Multipoint Cost-Effective Optical Instrument for Continuous In-Situ Monitoring of Turbidity and Sediment

1
MEMS-UMinho, University of Minho, Campus de Azurém, 4800-058 Guimarães, Portugal
2
Institute of Earth Sciences, University of Minho Pole, Campus de Gualtar, 4710–057 Braga, Portugal
3
Centre of Molecular and Environmental Biology (CBMA), University of Minho, 4710–057 Braga, Portugal
*
Author to whom correspondence should be addressed.
Sensors 2020, 20(11), 3194; https://doi.org/10.3390/s20113194
Submission received: 29 April 2020 / Revised: 25 May 2020 / Accepted: 3 June 2020 / Published: 4 June 2020
(This article belongs to the Section Physical Sensors)

Abstract

A cost-effective optical instrument for continuous in-situ monitoring applications is presented. With a production cost in raw materials of 38 €, a power consumption of 300 A in sleep mode and 100 mA in active mode (5 ms reading), and a capacity to monitor turbidity and sedimentary displacement at eight different depths in the water column, the sensor was developed for sediment monitoring in coastal areas. Due to the extent and dynamics of the processes involved in these areas, observations require a wide spatial and temporal resolution. Each of the eight monitoring nodes uses one infrared backscatter channel, to estimate turbidity and sediment concentration, and one ultraviolet with one infrared transmitted light channels to distinguish organic/inorganic composition of the suspended material load. An in-lab calibration was conducted, using formazine to correlate turbidity with the electronic outputs of the instrument. An analysis of the influence of external light sources and correction techniques were performed. Moreover, an in-lab experiment was conducted to study the behaviour of the sensor-to-sediment transport, wash load and sediment accumulation. The device was deployed, with a water level sensor, in an estuarine area with high sediment dynamics. The monitoring data were analysed, showing the potential of the device to continuously monitor turbidity, sediment processes, and distinguish between organic and inorganic matter, at the different depths in the water column.
Keywords: turbidity sensor; turbidity; sediment processes; suspended sediment; optical sensor; oceanography turbidity sensor; turbidity; sediment processes; suspended sediment; optical sensor; oceanography

Share and Cite

MDPI and ACS Style

Matos, T.; Faria, C.L.; Martins, M.S.; Henriques, R.; Gomes, P.A.; Goncalves, L.M. Design of a Multipoint Cost-Effective Optical Instrument for Continuous In-Situ Monitoring of Turbidity and Sediment. Sensors 2020, 20, 3194. https://doi.org/10.3390/s20113194

AMA Style

Matos T, Faria CL, Martins MS, Henriques R, Gomes PA, Goncalves LM. Design of a Multipoint Cost-Effective Optical Instrument for Continuous In-Situ Monitoring of Turbidity and Sediment. Sensors. 2020; 20(11):3194. https://doi.org/10.3390/s20113194

Chicago/Turabian Style

Matos, T., C. L. Faria, M. S. Martins, Renato Henriques, P. A. Gomes, and L. M. Goncalves. 2020. "Design of a Multipoint Cost-Effective Optical Instrument for Continuous In-Situ Monitoring of Turbidity and Sediment" Sensors 20, no. 11: 3194. https://doi.org/10.3390/s20113194

APA Style

Matos, T., Faria, C. L., Martins, M. S., Henriques, R., Gomes, P. A., & Goncalves, L. M. (2020). Design of a Multipoint Cost-Effective Optical Instrument for Continuous In-Situ Monitoring of Turbidity and Sediment. Sensors, 20(11), 3194. https://doi.org/10.3390/s20113194

Note that from the first issue of 2016, this journal uses article numbers instead of page numbers. See further details here.

Article Metrics

Back to TopTop