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An Experimental Investigation of Turbulence Features Induced by Typical Artificial M-Shaped Unit Reefs

TLDR
In this paper, the authors evaluated the effect of M-shaped unit reefs on the vertical and longitudinal turbulent intensity under different hydraulic conditions and geometries, and datasets were collected by using the Particle Image Velocimetry technique implemented within the experimental facility.
Abstract
Artificial reefs are considered to have the function of repairing and improving the coastal habitat and increasing the fishery production, which are mainly achieved by changing the regional hydrodynamic conditions. The characteristics of flow turbulence structure are an important part of the regional hydrodynamic characteristics. Different methods are used to evaluate the performance of artificial reefs according to their shape and the purpose for which the reef was built. For this study, the M-shaped unit reefs, which are to be put into the area of Liaodong Bay, were selected as the research object and have never been fully investigated before. Experimental tests were conducted to assess the effect of these M-shaped artificial reefs on the vertical and longitudinal turbulent intensity under different hydraulic conditions and geometries, and datasets were collected by using the Particle Image Velocimetry technique implemented within the experimental facility. The distribution and variation characteristics of the turbulence intensity were analyzed, and the main results obtained can confirm that in the artificial reef area, there was an extremely clear turbulent boundary. Furthermore, the area of influence of the longitudinal turbulence was identified to be larger than that of the vertical turbulence, and the position where the maximum turbulence intensity appeared was close to where the maximum velocity was measured. Finally, results demonstrate that low turbulence conditions are typically located in front of the unit reef, the general turbulence area is located within the upwelling zone, and the more intense turbulence area is located between the two M-shaped monocases. These results are extremely important, because they provide the local authorities with specific knowledge about what could be the effect of these M-shaped reefs within the area where they will be implemented, and therefore, specific actions can be taken in consideration with the geometrical setup suggested as an optimal solution within this study.

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Citations
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Journal ArticleDOI

Current and turbulence characteristics of perforated box-type artificial reefs in a constant water depth

TL;DR: In this paper , the internal turbulent flow structure was dominated by the horizontal vortex structure, which displayed certain symmetry in the transverse direction because of symmetrical reef structure, and two pairs of high-vorticity but opposite rotation direction clouds formed behind the openings of reef stoss face, and symmetrical distribution in both vertical and horizontal direction.
Journal ArticleDOI

The Hydrodynamic Characteristics Induced by Multiple Layouts of Typical Artificial M-Type Reefs with Sea Currents Typical of Liaodong Bay, Bohai Sea

TL;DR: In this article, an experimental campaign was carried out in order to simulate the influence that M-Type unit reef groups may have on the local flow field and the Particle Image Velocimetry (PIV) technique has been implemented to provide velocity maps.
Journal ArticleDOI

Review of Structure Types and New Development Prospects of Artificial Reefs in China

TL;DR: Wang et al. as mentioned in this paper provided a scientific reference for the ecological and sustainable development of the large-scale construction of artificial reefs in the ocean and found that the combination of traditional artificial reefs and emerging ocean engineering has a great development potential in practical engineering.
Journal ArticleDOI

Numerical Simulation Study on Environment-Friendly Floating Reef in Offshore Ecological Belt under Wave Action

TL;DR: In this paper, a finite element method and a lumped-mass mooring model were used to analyze the effect of different types of moorings on the performance of artificial floating reefs.
Journal ArticleDOI

Three-dimensional numerical simulation on flow behavior behind trapezoidal artificial reefs

TL;DR: In this article , a series of three-dimensional numerical simulation is performed to investigate the hydrodynamic behaviors around a single and two trapezoidal artificial reefs, and the results show that the attack angle and opening ratio have significant effects on the hydrogynamic behaviors of an artificial reef rather than the incoming flow velocity.
References
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Journal ArticleDOI

Spatial and temporal changes in cumulative human impacts on the world's ocean

TL;DR: This work calculates and map recent change over 5 years in cumulative impacts to marine ecosystems globally from fishing, climate change, and ocean- and land-based stressors and affirm the importance of addressing climate change to maintain and improve the condition of marine ecosystems.
Journal ArticleDOI

Optimal Environmental Window and Pelagic Fish Recruitment Success in Upwelling Areas

TL;DR: It is hypothesize that relations between annual recruitments and upwelling intensity are dome shaped in Ekman-type upwellings and linear for non EkMan-typeUpwelling, where upwelled intensity is not correlated with wind speed.
Journal ArticleDOI

Tomographic PIV: principles and practice

TL;DR: A survey of the major developments in 3D velocity field measurements using the tomographic particle image velocimetry (PIV) technique is given in this article, where the fundamental aspects of the technique are discussed beginning from hardware considerations for volume illumination, imaging systems, their configurations and system calibration.
Journal ArticleDOI

Evidence for a dome-shaped relationship between turbulence and larval fish ingestion rates

TL;DR: An analytical model is developed that shows the overall probability of feeding is a dome-shaped function of turbulent velocity and that the height and location of the maxima depend on turbulence level and the behavioral characteristics of predator and prey.
Journal ArticleDOI

Swimming performance of upstream migrant fishes in open-channel flow: a new approach to predicting passage through velocity barriers

TL;DR: A detailed analysis of sprint swimming ability of six migratory fish species against controlled water velocities, taking into account effects of flow velocity, body length, and temperature generates models of maximum distance traversed.
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