Product

Near Shore and Riverbed Profiling System

A cost-effective system for measuring near-shore, riverbed and underwater bottom profiles using hydrostatic pressure-based measurement technology.
The EMCON Near Shore and Riverbed Profiling System is designed as a simple and cost-effective solution for measuring bottom, near-shore and river-bed profiles. The system uses a hydrostatic pressure-based measurement principle to measure the depth of the water column. Specialized electronics remove fast fluctuations caused by waves, boat movement and other water disturbances. The system continuously records depth data and provides the measured profile as depth versus time. The recorded data can be downloaded directly to a computer in Microsoft Excel or CSV format. The system can be used for surveying near coastal lines, wave breaker areas, rivers, lakes and other water bodies.

Overview

The EMCON Near Shore and Riverbed Profiling System is a simple and
cost-effective system designed to measure bottom, near-shore and
river-bed profiles.

It provides an alternative solution for applications where an echo
sounder cannot be used, while providing accurate contour information
of the bottom and a clear picture of the bed profile.

The system uses hydrostatic pressure-based measurement technology
to determine the depth of the water column.

Key Features

  • Near shore and riverbed profiling
  • Hydrostatic pressure-based measurement
  • Simple and cost-effective system
  • Accurate bottom contour measurement
  • Measurement range of 0 to 10 meters
  • Accuracy of 0.5% of full scale
  • Specialized electronics for removing fast fluctuations
  • Continuous data recording
  • Data recorded every 2 seconds
  • Microsoft Excel/CSV data download
  • Suitable for coastal, river, lake and other water-body surveys

Measurement Principle

The Near Shore and Riverbed Profiling System uses a hydrostatic
pressure-based measurement principle.

A hydrostatic pressure sensor measures the depth of the water column.
Specialized electronics are used to remove fast fluctuations caused
by waves, boat movement and other water movements.

Measurement Range

The system has a measurement range of 0 to 10 meters.

The hydrostatic pressure sensor measures the depth of the water
column while the profiler is moved across the area being surveyed.

Measurement Accuracy

The system provides an accuracy of 0.5% of full scale (FS).

Near Shore Profiling

The Near Shore Profiler is designed to measure the bottom profile in
near-shore areas where an echo sounder cannot be used.

The profiler is carried from a boat or dingy to the point where the
mapping of the ocean floor is to begin. It is then lowered towards
the ocean floor and connected to a rope extending towards the beach.

The profiler records the depth continuously while it is pulled
towards the shore.

How Near Shore Profiling Works

The profiler is equipped with hooks at both ends of its body. An 8 mm
plastic rope can be attached to the hook near the underwater connector.

The profiler is taken to the required starting point and the
recording is started using the key provided with the system.

The profiler is then dropped towards the ocean floor and pulled
towards the shore at a uniform speed as far as possible.

The profiler continuously records data every 2 seconds. The recorded
data consists of time versus depth information.

Data Recording

The profiler continuously records measurement data every 2 seconds
during the profiling operation.

The recorded data is presented as depth versus time, which provides
the profile of the ocean floor or river bed.

Data Download

After the profiling operation is completed, the recorded data can be
downloaded directly to a computer.

The data is available in Microsoft Excel/CSV format for further
analysis and processing.

River Bed Profiling

The River Bed Profiler is designed to measure the cross-sectional
profile of a river bed.

The profiler is placed at the bottom of the river and is dragged from
one side of the river bank to the other using ropes.

The profiler records changes in the river-bed profile by taking the
water level as the reference.

River Bed Survey Operation

The profiler can be connected to ropes at both sides of the river.
Surveyors can hold the ropes at either bank of the river.

The profiler can be pulled from one bank to the other according to
the convenience of the user.

The rope arrangement also allows the profiler to be pulled back in
the opposite direction if it becomes stuck on underwater materials.

Water Level Reference

During river-bed profiling, the profiler records changes in the
river-bed profile by taking the water level as the reference.

Changes in water level caused by disturbances such as boat movement
and waves are measured and subtracted to obtain the actual river-bed
profile data.

Applications

  • Near coastal line surveying
  • Shore profiling
  • Wave breaker area surveying
  • River-bed profiling
  • River cross-section surveying
  • Lake surveying
  • Other water-body surveys
  • Ocean-floor profiling

Environmental Disturbance Compensation

The system uses specialized electronics to remove fast fluctuations
caused by waves and other water movements.

Disturbances caused by boat movement and waves can also be measured
and subtracted during river-bed profiling to obtain the actual bed
profile data.

Profiler Construction

The body of the profiler is made from high-density plastic.

The profiler includes a pressure port for the hydrostatic pressure
sensor, key holes for operation, underwater connectors and hooks for
towing and reverse pulling.

Profiler Components

  • Profiler Body: High-density plastic
  • Pressure Port: Measures hydrostatic pressure
  • Key Hole: Used with the supplied keys during operation
  • Underwater Connectors: Two connectors for different applications
  • Hooks: Two hooks provided at both ends of the profiler
  • Towing Hook: Used to tow the profiler
  • Reverse Pulling Hook: Used to pull the profiler back when stuck underwater

Profiler Keys

Two keys are provided with the profiler for different operating
functions.

  • KEY-1: Used to switch OFF the profiler after use and help prevent excessive battery drain.
  • KEY-2: Used to start recording of the profiler.

Continuous Profiling

The profiler continuously records depth data while it is being moved
across the survey area.

For near-shore profiling, the profiler records data while it is
pulled from the offshore starting point towards the shore.

For river-bed profiling, the profiler records the river-bed
cross-section while it is dragged from one river bank to the other.

Data Format

The collected data can be downloaded to a computer in Microsoft Excel
or CSV format.

The data is presented as depth versus time and can be used to
represent the profile of the ocean floor or river bed.

Items Supplied

  • Near Shore/Riverbed Profiling System with internal rechargeable Lithium battery – 1 unit
  • Data downloading system with Lithium rechargeable battery charger – 1 unit

Sample Data

The extracted sample data provides a graphical presentation of the
profile, with time on the X axis and the sea-floor profile on the
Y axis with reference to mean sea level.

The sample data is presented for every 8 minutes.

Cost-Effective Profiling

The Near Shore and Riverbed Profiling System provides a simple and
cost-effective approach to measuring bottom and near-shore or
river-bed profiles in applications where an echo sounder cannot be
used.

A simple and cost-effective near-shore and riverbed profiling system using hydrostatic pressure-based measurement technology, with a 0 to 10 meter measurement range, 0.5% FS accuracy and continuous data recording with Microsoft Excel/CSV output.

Technical Specifications

Measurement Principle
Hydrostatic pressure based
Measurement Range
0 to 10 meters
Accuracy
0.5% of FS
Data Recording Interval
Every 2 seconds
Data Format
Microsoft Excel/CSV
Profiler Body
High-density plastic
Underwater Connectors
2 nos. for different applications
Profiler Hooks
Two hooks provided at both ends
Power
Internal rechargeable Lithium battery
Towing
Towing hook and reverse pulling hook
Sample Data Interval
Every 8 minutes
Case Studies

Engineering in action.

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10 Stations
2 Parameters
Coastal Study

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