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99 results for “Surf”

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zenodo44/100

U.S. Surf-camera Database

<p>This csv file provides the approximate street address, latitude/longitude (WGS 84), and sponsor type of 327 (and growing) surf-cameras in the United States with viewable imagery. The provided web link (in the &#39;Related Identifiers&#39; section at the right of this page)&nbsp;links to an interactive web-map of these data, where individuals surf-cams can be queried and are linked to their imagery-source web location.</p>

opencc-by-4.0Jul 2020View details →
zenodo44/100

Dataset for wave-by-wave particle tracking in the surf zone

<p>This dataset comprises 49 trajectories with 3D positions of buoyant tracers reconstructed from stereo camera imaging using two cameras and a standard triangulation process. The data is extracted from stereo image frames of the sea surface, captured at a rate of 30 frames per second. These images were collected between 15:13:00 and 17:18:59 UTC on September 7, 2019, near the island of Sylt, Germany.</p> <div>An appropriate coordinate system was used to better represent the tracer position time series for the analysis of tracers position, velocity and acceleration.&nbsp;</div> <div>Details about the coordinate system are provided in the associated manuscript and supporting information as well as in&nbsp;</div> <div><a title="https://agupubs.onlinelibrary.wiley.com/doi/full/10.1029/2021GL095722" href="https://agupubs.onlinelibrary.wiley.com/doi/full/10.1029/2021GL095722" target="_blank" rel="noopener noreferrer">https://agupubs.onlinelibrary.wiley.com/doi/full/10.1029/2021GL095722</a></div> <div>&nbsp;</div> <div>The dataset is organized into four columns: the frame time [&micro;s]; the X coordinate [m], defining the horizontal position with the origin at the base of Pole 2 (see above referenced paper)&nbsp;and oriented shoreward; the Y coordinate [m], denoting the transverse position perpendicular to the direction of wave propagation ;&nbsp;</div> <div>and the Z coordinate [m], specifying the vertical position with the axis oriented upward.</div> <p>These coordinates were obtained using a triangulation algorithm and adjusted using a coordinate system transformation to yield a precise, physically meaningful representation of the trajectories. The data is provided in .mat (MATLAB) format</p>

opencc-by-4.0Nov 2024View details →
zenodo44/100

Supporting Movies from: Seismo-acoustic observations of crashing ocean waves: Investigating surf monitoring at Coal Oil Point Reserve, Santa Barbara, California

<div> <div> <div> <p>This repository includes supplementary movies from the manuscript titled, "Seismo-acoustic&nbsp;observations of crashing ocean waves: Investigating&nbsp;surf monitoring at Coal Oil Point Reserve, Santa&nbsp;Barbara, California," submitted to the Journal of Geophysical Research: Solid Earth.</p> <p>&nbsp;</p> <p>Movies S1 and S2. These two movies taken during array deployment 4 on October 20, 2023 show the NW tip of Coal Oil Point at the left of the field of view and Sands Beach northwest of that toward the right. Frames have the same figure layout as Figure 4 of the main text.</p> <p>Movie S3. Same as Movies S1 and S2 but with the NW tip of Coal Oil Point at the right of the field of view and Devereux Beach southeast of that toward the left.</p> </div> </div> </div>

opencc-by-4.0Jun 2024View details →
zenodo44/100

Particle paths in the surf zone in Sylt

<p>Buoyant particle paths measured&nbsp;in the surf zone in Sylt,&nbsp;obtained from a long-range stereo imaging system. A pair of 5MP digital cameras (Victorem 51B163-CX, IO Industries) were fitted with 200mm Canon EF 200 mm f/2.8L lenses, and captured the paths of oranges in the surf zone in Sylt, an island off the German North Sea Coast. The cameras were positioned on the dune overlooking the sea, at a distance of approximately 35 m from one another, and captured a portion of the wavy water surface located about 150 m away from the cameras. The cameras were triggered simultaneously using a PCIe6612 counter/timer combined with a&nbsp;SCB-68A terminal block (National Instruments). A total of 14 lagrangian particle paths are provided, acquired between 17:00 and 17:30 UTC on September 7th, 2019.</p>

opencc-by-4.0May 2021View details →
zenodo40/100

Figure 18 in The biology and functional morphology of the high-energy beach dwelling Paphies elongata (Bivalvia: Mactroidea: Mesodesmatidae). Convergence with the surf clams (Donax: Tellinoidea: Donacidae)

Figure 18. The anatomy of Paphies elongata (a and b) compared with that of Donax hanleyanus (c and d), both drawn to the same relative scale (for actual scales see the earlier illustrations). (a) and (c) are views of the apertures of the inhalant siphons; (b) and (d) are the internal organs of the mantle cavity showing the visceral mass and foot, the musculature, the orientation of the ctenidia and labial palps and the simplified intestine. (c) is re-drawn after Luzzatto and Penchaszadeh (2001, fig. 1); (d) is a compendium of re-drawn figures from Narchi (1978). (See previous illustrations for interpretations of structure).

opencc-by-4.0Jul 2016View details →
zenodo40/100

Figure 15 in The biology and functional morphology of the high-energy beach dwelling Paphies elongata (Bivalvia: Mactroidea: Mesodesmatidae). Convergence with the surf clams (Donax: Tellinoidea: Donacidae)

Figure 15. Paphies elongata. The course of the intestine in the visceral mass as seen from the right side. AA(1), anterior adductor muscle(1); AN, anus; APR, anterior pedal retractor muscle; CSS, crystalline style sac; DD, digestive diverticulae; DEF, dorsal extension of the foot; EMG, expanded region of the mid gut; F, foot; G, gonad; H, heart; HF, heel of the foot; HG, hind gut; M, mouth; MG, mid gut; PA, posterior adductor muscle; PPR, posterior pedal retractor muscle; R, rectum.

opencc-by-4.0Jul 2016View details →
zenodo40/100

Figure 11. Paphies elongata. A in The biology and functional morphology of the high-energy beach dwelling Paphies elongata (Bivalvia: Mactroidea: Mesodesmatidae). Convergence with the surf clams (Donax: Tellinoidea: Donacidae)

Figure 11. Paphies elongata. A more detailed illustration of the anterior adductor muscle complex. AA(1), anterior adductor muscle (1); AA(2), anterior adductor muscle (2); APEM, anterior pedal elevator muscles; APP, anterior pedal protractor muscle; APR, anterior pedal retractor muscle scar; VM, visceral mass.

opencc-by-4.0Jul 2016View details →
zenodo40/100

Figure 9 in The biology and functional morphology of the high-energy beach dwelling Paphies elongata (Bivalvia: Mactroidea: Mesodesmatidae). Convergence with the surf clams (Donax: Tellinoidea: Donacidae)

Figure 9. Paphies elongata. (a) the organs of the mantle cavity as seen from the left side after removal of the left shell valve and mantle lobe. (b) A diagrammatic transverse section through the left ctenidium showing the ciliary currents. AA(1), anterior adductor muscle(1); APR, anterior pedal retractor muscle; CA, ctenidial axis; DEF, dorsal extension of the foot; ES, exhalant siphon; FMM, fused mantle margin; HF, heel of the foot; ID, inner demibranch; IS, inhalant siphon; F, foot; OD, outer demibranch; OLP, outer labial palp; PA, posterior adductor muscle; PPR, posterior pedal retractor muscle; PR, prodissoconch; SAE, supra-axial extension of the outer demibranch; VMFG, ventral margin food groove of the inner demibranch.

opencc-by-4.0Jul 2016View details →
zenodo40/100

Figure 5. Paphies elongata. A in The biology and functional morphology of the high-energy beach dwelling Paphies elongata (Bivalvia: Mactroidea: Mesodesmatidae). Convergence with the surf clams (Donax: Tellinoidea: Donacidae)

Figure 5. Paphies elongata. A more detailed view of the hinge plate of the right valve showing the structure of the ligament. ACT, anterior cardinal tooth; ALT, anterior lateral tooth; AOLL, anterior outer ligament layer; ILL, inner ligament layer; P, periostracum; PCT, posterior cardinal tooth; PLT?, possible posterior lateral tooth; POLL, posterior outer ligament layer; PR, prodissoconch; RE, resilifer; S, socket.

opencc-by-4.0Jul 2016View details →
zenodo40/100

Figure 4 in The biology and functional morphology of the high-energy beach dwelling Paphies elongata (Bivalvia: Mactroidea: Mesodesmatidae). Convergence with the surf clams (Donax: Tellinoidea: Donacidae)

Figure 4. Paphies elongata. Internal views of (a) the left and (b) the right hinge plates. ACT, anterior cardinal tooth; ALT, anterior lateral tooth; L, ligament; PCT, posterior cardinal tooth; PLT?, possible posterior lateral tooth; S, socket.

opencc-by-4.0Jul 2016View details →
zenodo40/100

Figure 3 in The biology and functional morphology of the high-energy beach dwelling Paphies elongata (Bivalvia: Mactroidea: Mesodesmatidae). Convergence with the surf clams (Donax: Tellinoidea: Donacidae)

Figure 3. Paphies elongata. An internal view of the right shell valve showing the hinge plate and the muscle scars. The black dot indicates the position of the only naticid drill hole found in any of the empty valves collected. AA(1), anterior adductor muscle scar(1); AA(2), anterior adductor muscle scar (2); APP, anterior pedal protractor muscle scar; APR, anterior pedal retractor muscle scar; PA, posterior adductor muscle scar; PG, pedal gape sinus scar; PL, pallial line scar; PPR, posterior pedal retractor muscle scar; PS, pallial sinus; U, umbo.

opencc-by-4.0Jul 2016View details →
zenodo40/100

Figure 13 in The biology and functional morphology of the high-energy beach dwelling Paphies elongata (Bivalvia: Mactroidea: Mesodesmatidae). Convergence with the surf clams (Donax: Tellinoidea: Donacidae)

Figure 13. Paphies elongata. The ciliary currents of the left mantle lobe. AA(1), anterior adductor muscle(1); AA(2), anterior adductor muscle(2); APR, anterior pedal retractor muscle; PA, posterior adductor muscle; PGS, pedal gape sinus scar; PL, pallial line; PPR, posterior pedal retractor muscle; PR, prodissoconch; PS, pallial sinus.

opencc-by-4.0Jul 2016View details →
zenodo40/100

Figure 1. Paphies elongata. A in The biology and functional morphology of the high-energy beach dwelling Paphies elongata (Bivalvia: Mactroidea: Mesodesmatidae). Convergence with the surf clams (Donax: Tellinoidea: Donacidae)

Figure 1. Paphies elongata. A living individual in its life position in the sediment. Closed arrow represents the inhalant stream, open arrows the exhalant.

opencc-by-4.0Jul 2016View details →
zenodo40/100

SURF Machine Metric Dataset [2019-12-29, 2020-08-07]

<p>An addition to our earlier <a href="https://zenodo.org/record/3878143">uploaded dataset.</a></p> <p>This dataset contains an update of Prometheus: it now contains 327 metrics and spans more than 7 months. Note that the rack and node names have changed with respect to the previous dataset and invalid values are now set to NaN to better indicate what is an invalid value and what is a true zero value.</p>

opencc-by-4.0Jan 2021View details →
zenodo40/100

SURF: Replication Package for: "What Would Users Change in My App? Summarizing App Reviews for Recommending Software Changes"

<p>Description of the content of folder &quot;SURF_replication_package&quot;: 1) &quot;Experiment I&quot; contains: a) the folder &quot;summaries&quot; which contains all the html summaries generated through SURF and browsed by study participants involved in the Experiment I. b) the folder &quot;XMLreviews&quot; which contains, for each of the apps involved in the Experiment I, the corresponding XML file containing all the collected reviews for that app. These xml files have been used as input files for the SURF tool for generating the summaries contained in the &quot;summaries&quot; folder c) &quot;Experiment_I_results.xlsx&quot; which contains all the answers to our survey collected from the Experiment I participants.</p> <p>2) &quot;Experiment II&quot; contains: a) the folder &quot;summaries&quot; which contains the two html summaries generated through SURF and browsed by study participants in the Experiment II. b) the folder &quot;XMLreviews&quot; which contains, for each of the two apps involved in the Experiment II, the corresponding XML file containing all the collected reviews for that app. These xml files have been used as input of the SURF tool for generating the summaries contained in the &quot;summaries&quot; folder. c) &quot;Experiment_II_results.xlsx&quot; which contains all the user feedbacks extracted/validated by survey participants in the two sub-experiments. d) &quot;Experiment_II_survey_answers.xlsx&quot; which contains all the answers to our survey collected in the Experiment II participants.</p> <p>3) &quot;Survey.pdf&quot; which contains the pdf version of the survey performed by the participants</p> <p>4) &quot;SURF_tool.zip&quot; contains: a) &quot;SURF.jar&quot;, which contains the class files of a prototypical implementation of SURF b) &quot;README.txt&quot; which contains the instructions to run the SURF tool c) the &quot;lib&quot; folder, which contains all the java libraries needed for running SURF.</p>

openmit-licenseFeb 2016View details →
zenodo40/100

Surf zone circulations and orange paths

<p>Spectrums.zip contains two types of files. The .spt file contain the raw data from the BunkerHill buoy outside Sylt. The fourth entry is the relative PSD of the day, and in the main body of the file the coloumns represent: frequency [Hz], PSD [m^2/Hz], Main direction, directional spreading, Skew, Kurt.<br> The .txt files contains the 2D SWAN spectrums used in the paper. For further description look to:&nbsp;https://swanmodel.sourceforge.io/online_doc/swanuse/node50.html.</p> <p>&nbsp;radsAndCircs.txt contain data about the circulations calculated in the surf zone. Each row corresponds to one circulations, and the coloumns correspond to:&nbsp;<br> Number, tide [m], spreadfactor, main direction [degr], x-location [m], y-location [m], <span class="math-tex">\(\sigma [m], \Gamma_{max} [m^2/s]\)</span>. Then 100 radii and then the 100 corresponding circulations.&nbsp;</p> <p>Tracers.zip contain the 6 orange paths described in the paper. They contain lon/lat coordinates for the oranges sampled at 3Hz.&nbsp;</p> <p>BOSZ_outputs contains all the data from all the runs used in the paper. The .bosz files must be opened with the load_BZ_array.py script. Of interest of the paper are the longitudes and latitudes, X.bosz and Y.bosz; averaged U and V velocites, Ubartmp.bosz and Vbartmp.bosz. The files are stored as a MxN array, where each element correspond to the value of the variable on the calcualted grid.&nbsp;&nbsp;<br> The Drifter.txt files contains all the data of the numerical drifters. They are built up as:<br> time, xDrift1, yDrift1, xDrift2, yDrift2, xDrift3, yDrift3, ...</p> <p>For data about the bathymetry we refer to the LKN.SH.&nbsp;</p>

opencc-by-4.0Apr 2023View details →
zenodo36/100

SURF_D_bin_21

<p>Genome extracted by JORG.</p>

opencc-by-4.0Feb 2021View details →
dryad36/100

Data from: The greenscape shapes surfing of resource waves in a large migratory herbivore

The Green Wave Hypothesis posits that herbivore migration manifests in response to waves of spring green-up (i.e. green-wave surfing). Nonetheless, empirical support for the Green Wave Hypothesis is mixed, and a framework for understanding variation in surfing is lacking. In a population of migratory mule deer (Odocoileus hemionus), 31% surfed plant phenology in spring as well as a theoretically perfect surfer, and 98% surfed better than random. Green-wave surfing varied among individuals and was unrelated to age or energetic state. Instead, the greenscape, which we define as the order, rate and duration of green-up along migratory routes, was the primary factor influencing surfing. Our results indicate that migratory routes are more than a link between seasonal ranges, and they provide an important, but often overlooked, foraging habitat. In addition, the spatiotemporal configuration of forage resources that propagate along migratory routes shape animal movement and presumably, energy gains during migration.

opencc-zeroDec 2016View details →
zenodo36/100

Data sets to the paper "Weakening surface hydrogen to enhance permeation in hydrogen selective membranes", E. Billeter and A. Borgschulte, Appl. Surf. Sci. (2024)

<p>Datasets to empirical data displayed in Figs. 1(c), 2(b), 3(a), 4(b), 4(c)</p>

opencc-by-4.0Apr 2024View details →
zenodo36/100

Data supporting "Non-hydrostatic, non-linear processes in the surf zone", by Martins et al., submitted to JGR-Oceans

<pre>This file describes the structure of the sub-surface pressure and surface elevation data used in the paper &quot;Non-hydrostatic, non-linear processes in the surf zone&quot;, submitted by Martins et al. to Journal of Geophysical Research: Oceans. The data set is composed of a single .mat file, which contains all raw timeseries for the 52 bursts used in the paper. Metadata and description of the data structure and variables are provided in the structure directly. This data set is distributed under the Creative Commons Attribution 4.0 International license. </pre> <p>The collection of this data set was funded by the Engineering and Physical Sciences Research Council (EPSRC) grant EP/N019237/1, Waves in Shallow Water, awarded to Chris Blenkinsopp (University of Bath).</p>

opencc-by-4.0Jul 2019View details →

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International Brain Laboratory public data

The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.

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Last verified 2026-04-29Open record