Comparison of mechanical disturbance in soft sediments due to tickler-chain SumWing trawl vs. electro-fitted PulseWing trawl

Author:

Depestele Jochen1,Degrendele Koen2,Esmaeili Moosa3,Ivanović Ana3,Kröger Silke4,O’Neill Finbarr G5,Parker Ruth4,Polet Hans1,Roche Marc2,Teal Lorna R6,Vanelslander Bart1,Rijnsdorp Adriaan D6

Affiliation:

1. Fisheries Research Group, Flanders Research Institute for Agriculture, Fisheries and Food (ILVO), Ankerstraat 1, Oostende, Belgium

2. Federal Public Service Economy, Energy – Continental Shelf, North Gate 4B26, Koning Albert II-laan 16, Brussels, Belgium

3. School of Engineering, Fraser Noble Building, University of Aberdeen, Aberdeen, UK

4. Lowestoft Laboratory, Centre for Environment, Fisheries and Aquaculture Science (Cefas), Pakefield Road, Lowestoft, Suffolk, UK

5. National Institute of Aquatic Resources (DTU – AQUA), Technical University of Denmark, Willemoesvej 2, Hirtshals, Denmark

6. Wageningen Marine Research, Wageningen UR, AB IJmuiden, The Netherlands

Abstract

Abstract Tickler-chain SumWing and electrode-fitted PulseWing trawls were compared to assess seabed impacts. Multi-beam echo sounder (MBES) bathymetry confirmed that the SumWing trawl tracks were consistently and uniformly deepened to 1.5 cm depth in contrast to 0.7 cm following PulseWing trawling. MBES backscatter strength analysis showed that SumWing trawls (3.11 dB) flattened seabed roughness significantly more than PulseWing trawls (2.37 dB). Sediment Profile Imagery (SPI) showed that SumWing trawls (mean, SD) homogenised the sediment deeper (3.4 cm, 0.9 cm) and removed more of the oxidised layer than PulseWing trawls (1 cm, 0.8 cm). The reduced PulseWing trawling impacts allowed a faster re-establishment of the oxidised layer and micro-topography. Particle size analysis suggested that SumWing trawls injected finer particles into the deeper sediment layers (∼4 cm depth), while PulseWing trawling only caused coarsening of the top layers (winnowing effect). Total penetration depth (mean, SD) of the SumWing trawls (4.1 cm, 0.9 cm) and PulseWing trawls (1.8 cm, 0.8 cm) was estimated by the depth of the disturbance layer and the layer of mobilized sediment (SumWing = 0.7 cm; PulseWing trawl = 0.8 cm). PulseWing trawls reduced most of the mechanical seabed impacts compared to SumWing trawls for this substrate and area characteristics.

Funder

BENTHIS

European Commission

Publisher

Oxford University Press (OUP)

Subject

Ecology,Aquatic Science,Ecology, Evolution, Behavior and Systematics,Oceanography

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