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  • 1
    Publication Date: 2023-03-10
    Keywords: CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; Elevation of event; Event label; Labrador Sea; Latitude of event; Longitude of event; Pressure, water; Salinity; South Atlantic Ocean; Temperature, water; Walther Herwig III; WH229; WH229_001; WH229_002; WH229_003; WH229_004; WH229_005; WH229_006; WH229_007; WH229_008; WH229_009; WH229_010; WH229_011; WH229_012; WH229_013; WH229_014; WH229_015; WH229_016; WH229_017; WH229_018; WH229_019; WH229_020; WH229_021; WH229_022; WH229_023; WH229_024; WH229_025; WH229_026; WH229_027; WH229_028
    Type: Dataset
    Format: text/tab-separated-values, 4527 data points
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  • 2
    Publication Date: 2023-03-10
    Keywords: CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; Elevation of event; Event label; Greenland Sea; Latitude of event; Longitude of event; Pressure, water; Salinity; South Atlantic Ocean; Temperature, water; Walther Herwig III; WH276; WH276_001; WH276_002; WH276_003; WH276_004; WH276_005; WH276_006; WH276_007; WH276_008; WH276_009; WH276_010; WH276_011; WH276_012; WH276_013; WH276_014; WH276_015; WH276_016; WH276_017; WH276_018; WH276_019; WH276_020; WH276_021; WH276_022; WH276_023; WH276_024; WH276_025; WH276_026; WH276_027; WH276_028; WH276_029; WH276_030; WH276_031; WH276_032; WH276_033; WH276_034; WH276_035; WH276_036; WH276_037; WH276_038; WH276_039; WH276_040; WH276_041; WH276_042; WH276_043; WH276_044
    Type: Dataset
    Format: text/tab-separated-values, 7248 data points
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  • 3
    Publication Date: 2023-03-03
    Keywords: CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; Elevation of event; Event label; Latitude of event; Longitude of event; North Sea; Pressure, water; Salinity; Temperature, water; Walther Herwig III; WH265; WH265_029; WH265_048; WH265_070; WH265_080; WH265_779; WH265_783; WH265_785; WH265_788; WH265_791; WH265_793; WH265_794; WH265_797; WH265_799; WH265_803; WH265_806; WH265_807; WH265_810; WH265_812; WH265_814; WH265_816; WH265_820; WH265_821; WH265_823; WH265_827; WH265_829; WH265_832; WH265_833; WH265_836; WH265_837; WH265_840; WH265_842; WH265_846; WH265_847; WH265_850; WH265_852; WH265_855; WH265_856; WH265_859; WH265_861; WH265_863; WH265_866; WH265_870; WH265_872; WH265_874; WH265_877; WH265_879; WH265_881; WH265_882; WH265_885; WH265_891; WH265_892; WH265_895; WH265_897; WH265_898; WH265_901; WH265_902; WH265_905; WH265_908; WH265_912; WH265_916; WH265_917; WH265_920; WH265_923; WH265_925; WH265_928; WH265_930; WH265_932; WH265_934; WH265_935; WH265_937; WH265_941; WH265_943; WH265_945; WH265_947; WH265_949; WH265_951; WH265_954; WH265_956; WH265_959; WH265_966; WH265_967; WH265_971; WH265_973; WH265_975; WH265_977; WH265_981; WH265_984; WH265_986; WH265_988; WH265_991; WH265_992; WH265_994; WH265_996
    Type: Dataset
    Format: text/tab-separated-values, 2403 data points
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  • 4
    Publication Date: 2023-03-03
    Keywords: CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; Elevation of event; Event label; Latitude of event; Longitude of event; Norwegian Sea; Pressure, water; Salinity; Temperature, water; Walther Herwig III; WH228A; WH228A_001; WH228A_002; WH228A_003; WH228A_004; WH228A_005; WH228A_006; WH228A_007; WH228A_008; WH228A_009; WH228A_010; WH228A_011; WH228A_012; WH228A_013; WH228A_014; WH228A_015; WH228A_016; WH228A_017; WH228A_018; WH228A_019; WH228A_020; WH228A_021; WH228A_022; WH228A_023; WH228A_024; WH228A_025; WH228A_026; WH228A_027; WH228A_028; WH228A_029; WH228A_030; WH228A_031; WH228A_032; WH228A_033; WH228A_034; WH228A_035; WH228A_036; WH228A_037; WH228A_038; WH228A_039; WH228A_040
    Type: Dataset
    Format: text/tab-separated-values, 5862 data points
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  • 5
  • 6
    Publication Date: 2004-01-01
    Description: The echo integration of single-fish echoes shows that characteristically the received-signal energy of single targets is small compared with the echo energy of schooled fish. The measuring error is minimized by the application of an integration threshold. The echo energy, however, is often only slightly larger than the noise and reverberation level making the determination of the optimal integration threshold difficult. During the evaluation of data from the echo-integration surveys on redfish in the Irminger Sea it was observed that the integration value of single fish increased steadily with decreasing integration threshold. There is no way to determine the integration threshold by eye as for schooled fish. The approach taken in all past publications for the estimation of the influence of the integration threshold on the integration result has been based on the computation of an equivalent beam angle. The influence of “environment noise” was not considered. Here a model is presented, which considers both influences on the integration result during the integration of single-fish echoes. It is assumed that the targets are distributed evenly in the observed volume and that in each pulse volume of the beam only one target is present. The starting point of the computations is the equation for signal processing implemented in the EK500. The echo signal power received is converted pixel-by-pixel into the appropriate volume-backscattering coefficients, sv and stored as echograms. These echograms are available for post-processing in the Bergen Integrator BI500. To exclude noise and reverberation from the subsequent processing a threshold was introduced. We assume that the fish echoes are always larger than the noise and reverberation. This is a very common situation and the largest part of the energy of noise and reverberation can be eliminated in this way. When a fish echo is received outside the centre of the beam it is attenuated by the beam pattern of the transducer and may therefore lie below the threshold and could be cut off. This leads to the reduction of the measured values and a measuring error. An opposite error arises when the signal crosses the threshold. In practice the signal received always consists of noise and echo signals and has more power than it should have. The measured value is larger and this is another error of the measurement process per se. The object of this paper is to calculate the influence of the threshold level on the result of measurement and to derive a practicable rule for the determination of the threshold level. The noise is modelled as a constant input power. The computations are carried out with model functions of the transducer beam and the received-echo pulse. General statements can be met by defining a signal-to-noise ratio and a signal-to-threshold ratio. The results of the theoretical investigations are applied on acoustic data obtained during redfish survey WH229 in the Irminger Sea and adjacent waters.
    Print ISSN: 1054-3139
    Electronic ISSN: 1095-9289
    Topics: Biology , Geosciences , Physics
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  • 7
    Publication Date: 2007-04-16
    Description: Rätz, H-J., Bethke, E., Dörner, H., Beare, D., and Gröger, J. 2007. Sustainable management of mixed demersal fisheries in the North Sea through fleet-based management—a proposal from a biological perspective. – ICES Journal of Marine Science, 64: 652–660. Cod, haddock, whiting, saithe, plaice, sole, and Norway lobster are main target species for the mixed demersal fisheries of the North Sea, Skagerrak, and eastern Channel. Management by total allowable catch has not been able to constrain exploitation of individual species, so the potential for a fleet-specific effort management system to reach the management objectives established for the stocks is simulated. Relative fleet-specific effort factors are estimated based on the sum of partial fishing mortalities of the species caught, weighted by the stocks at risk of reduced reproductive capacity. The strategy promotes the use of selective gear and levies non-selective gear. The factors were applied in medium-term simulations of the annual decision process in accordance with existing and proposed multi-annual management plans (including for cod recovery). Strict effort reduction would be required for fleets targeting cod, plaice, or sole (specifically large- and medium-mesh trawler fleets, beam trawlers, and gillnetters) for ∼5 years, reducing the exploitation rates on all stocks substantially. Cod and plaice are predicted to recover by 2010 and cod catches to exceed recent levels continually, with the more selective longliners and some other gear types profiting most. Management objectives for cod dominate annual effort adjustments, resulting in substantial underexploitation of other stocks. However, even a 10% bias caused by non-compliance would largely halt cod recovery and the restoration of other stocks.
    Print ISSN: 1054-3139
    Electronic ISSN: 1095-9289
    Topics: Biology , Geosciences , Physics
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  • 8
  • 9
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    In:  eckhard.bethke@vti.bund.de | http://aquaticcommons.org/id/eprint/4280 | 1240 | 2012-11-10 19:37:30 | 4280 | Bundesforschungsanstalt für Fischerei
    Publication Date: 2021-07-01
    Description: Komplexe Meßgeräte müssen vor der ersten Benutzung und bei zeitlichen Änderungen der Geräteparameter geeicht oder kalibriert werden. Voraussetzung dafür ist, daß geeignete Einstellmäglichkeiten vorhanden sind. Eichen und Kalibrieren sind technisch gesehen die gleichen Tätigkeiten. Das Eichen ist jedoch amtlichen Stellen vorbehalten und wird auch entsprechend zertifiziert, während das Kalibrieren von jedermann durchgeführt werden kann.
    Description: Johann Heinrich von Thünen-Institut, Federal Research Institute for Rural Areas, Forestry and Fisheries began publishing the Informationen aus der Fischereiforschung = Information on Fishery research in 2010
    Keywords: Engineering ; calibration ; sound propagation ; echo integration devices
    Repository Name: AquaDocs
    Type: article , FALSE
    Format: application/pdf
    Format: application/pdf
    Format: 102-107
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  • 10
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    In:  eckhard.bethke@vti.bund.de | http://aquaticcommons.org/id/eprint/4311 | 1240 | 2012-11-10 20:03:04 | 4311 | Bundesforschungsanstalt für Fischerei
    Publication Date: 2021-07-01
    Description: Bei den hydroakustischen Untersuchungen der in der westlichen Ostsee pelagisch lebenden Fischarten, Hering und Sprott, traten in der Vergangenheit große Unterschiede zwischen den Tag- und Nachtmeßwerten auf. Während der 327. Reise des FFK "Solea" wurden in einem Teil der ReiseUntersuchungen durchgeführt, die diesen Sachverhalt näher beleuchten. Es wurde gefunden daß, die Unterschiede in den Integratorwerten, speziell in diesem Gebiet, im wesentlichen durch die vertikale Migration der Fische im Tagesverlauf hervorgerufen werden. Während des Tages halten sie sich in der Nähe des Bodens auf und sind damit technisch bedingt zu einem großen Teil einer hydroakustischen Erfassung nicht zugänglich, wogegen die Nachtmessungcn reproduzierbare Werte ergeben. Aus diesem Grund sind die hydroakustischen Aufnahmen in der westlichen Ostsee wegen der größeren zu erwartenden Meßgenauigkeit nachts durchzuführen.
    Description: Johann Heinrich von Thünen-Institut, Federal Research Institute for Rural Areas, Forestry and Fisheries began publishing the Informationen aus der Fischereiforschung = Information on Fishery research in 2010
    Keywords: Fisheries ; Engineering ; hydroacoustic survey ; Baltic Sea ; fish behaviour ; day-night
    Repository Name: AquaDocs
    Type: article , FALSE
    Format: application/pdf
    Format: application/pdf
    Format: 66-72
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