Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
207
datasets available to search
ShareScore release 0.9.0
Dataset results
207 results for “tanks”
FLOATECH WP3 experimental dataset : wave-tank hybrid testing of a 10 MW turbine based on a spar platform (ECN)
<p>This dataset presents the experimental measurements made in the Hydrodynamic and Ocean Engineering wave tank of Ecole Centrale de Nantes, in France, with the model of a 10 MW turbine supported by a spar platform at a scale 1:40. </p> <p>The tests were performed using a real-time hybrid testing method (or software-in-the-loop) called SoftWind presented and published in Ocean Engineering (the paper is available at this <a title="Paper SoftWind" href="https://doi.org/10.1016/j.oceaneng.2024.118390">link</a>). </p> <p> </p> <p><strong>Presentation of the experimental model:</strong></p> <p>The model is presented in details in the provided Excel file "FLOATECH_C3_Project data and model description.xlsx". </p> <p> </p> <p><strong>In the dataset:</strong></p> <p>The measurement files of the tests are gathered in folders by "series", and each test file has a test number. The series and the test conditions of each run are detailed in the provided Excel file "FLOATECH_C3_Database_Matrix.xlsx". </p> <p>Decay tests, pull-out tests and hammer tests were performed and are given in the dataset. </p> <p> </p> <p><strong>Real-time simulation models</strong></p> <p>The numerical models used in the real-time OpenFAST simulations are also provided in the compressed file "RT Simulations files.zip". </p> <p> </p> <p><strong>Data used in the published paper:</strong></p> <p>Some of the tests were used in the paper (see <a title="Paper SoftWind" href="https://doi.org/10.1016/j.oceaneng.2024.118390">link</a>). The corresponding test numbers are given in the table below. </p> <table> <tbody> <tr> <td><strong>Load cases</strong></td> <td><strong>Hs (m)</strong></td> <td><strong>Tp (s)</strong></td> <td><strong>Uhub (m/s)</strong></td> <td><strong>TI (%)</strong></td> <td><strong>Wave dir. (°)</strong></td> <td><strong>Wind dir(°)</strong></td> <td><strong>TestNum 1C</strong></td> <td><strong>TestNum 3C</strong></td> <td><strong>TestNum 5C</strong></td> </tr> <tr> <td>1.2</td> <td>7</td> <td>12</td> <td>14</td> <td>13.8</td> <td>0</td> <td>0</td> <td>269</td> <td>268</td> <td>270</td> </tr> <tr> <td>2.1</td> <td>7</td> <td>12</td> <td>14</td> <td>13.8</td> <td>0</td> <td>25</td> <td>275</td> <td>307</td> <td>281</td> </tr> </tbody> </table> <p> </p> <p> </p>
Old Mandu (बूढ़ी मांडू), Dhār district, Madhya Pradesh. General view of the main tank with remains of ghāṭ
<p>Old Mandu (बूढ़ी मांडू), Dhār district, Madhya Pradesh. General view of the main tank with remains of ghāṭ. Photo 2010.</p>
Old Mandu (बूढ़ी मांडू), Dhār district, Madhya Pradesh. View of the main tank and ghāṭ, with associated ruin.
<p>Old Mandu (बूढ़ी मांडू), Dhār district, Madhya Pradesh. View of the main tank and ghāṭ, with associated ruin opposite. Photo 2010.</p>
Bhagdei (जामगढ़-भगदेई, Raisen district), Madhya Pradesh. Tank to the west of Śiva temple
<p>Bhagdei (भगदेई, Raisen district), Madhya Pradesh. Tank to the west of Śiva temple, located approximately at 23°6'30"N 78°15'16"E. Photograph: October, 2008.</p>
Bhagdei (जामगढ़-भगदेई, Raisen district), Madhya Pradesh. Column in tank.
<p>Bhagdei (भगदेई, Raisen district), Madhya Pradesh. Column in tank for measuring water levels, from the west, circa 12th century. Located at 23°6'29"N 78°15'18"E. Photograph October, 2008</p>
Data set for the physical, chemical and biochemical modelling of the primary sedimentation tanks at the WWTP of Eindhoven
<p>These files contain data about measurement campaigns on the primary sedimentation tanks of the WWTP of Eindhoven (The Netherlands) in 2013 and 2014 and the routinely collected data for 2011 till 2013.</p> <p>The data was processed in the PhD of Youri Amerlinck, entitled "Model refinements in view of wastewater treatment plant optimization: improving the balance in sub-model detail."</p> <p>http://www.biomath.ugent.be/biomath/publications/download/amerlinckyouri_phd.pdf</p> <p><br> WWTP of Eindhoven PST Routine Measurements 2011_2013.csv<br> January 5, 2011 - June 14, 2013: <br> Routine analysis for BOD5, COD, TKN, TP, PO4, TSS</p> <p>WWTP of Eindhoven PST Reduced Capacity 2013.csv<br> June 24, 2013 - July 23, 2013 - September 9, 2013<br> Evaluation of reducing the capacity of the PST (including dosing of chemicals) for CODT, CODS, TP, PO4 ,TSS </p> <p>WWTP of Eindhoven PST measurement campaign full ASM 20140506.csv<br> May 6, 2014: <br> Full ASM fractionation BOD5, CODT, CODS, TSS, VSS TP, PO4 ,TN, NH4, NO3, pH</p> <p>WWTP of Eindhoven PST measurement campaign full ASM and Cations 20140902.csv<br> September 2, 2014:<br> Full ASM fractionation (repetition) and cation analysis (BOD10, CODT, CODS, TSS, VSS, TP, PO4 ,TN, NH4, NO3, pH - Ca, Mg, Na, K, Fe)</p>
Aukana, Sri Lanka. Water tank near inscription.
<p>Aukana (near Kekirawa) Sri Lanka. Water tank near inscription, as documented in 02/2012. Located at <strong> </strong>8°0'41"N 80°30'46"E.</p>
D3.3. Experimental Wave-Tank Validation Database
<p>This database is a deliverable of the FLOATECH project, funded under the European Union's Horizon 2020 research and innovation program under grant agreement No 101007142.</p><p>The aim of the accompanying document is to describe the experimental testing campaign C2 at the LHEEA wave-tank facility. The campaign took place between May and June 2023. The objective of the campaign is to test several FOWT control strategy, including a feed forward wave-based control, using the software-in-the-loop SOFTWIND system. The accompanying report on the E.U. portal describes the database created from these experiments and aimed to be shared for model validation. </p>
Deliverable 2.1 Aero-hydro-elastic model definition - SOFTWIND 10 MW FOWT (wave-tank SIL version)
<p>For the detailed validation and verification of the capabilities of QBladeOcean in work package 2 of FLOATECH, a detailed definition of the models is needed. This database presents the QBladeOcean model of the DTU 10MW Reference Wind Turbine mounted on the SOFTWIND floater.</p> <p>Update V2.0.0: <br>Structure files are modified according to the requirements of the QBladeCE version</p> <p>Update V3.0.0:<br>- Added controller from SOFTWIND experiments (Modified from DTU 10MW to have oO star controller parameters)<br>- Modified mooring line length<br>- Shifted platform COG slightly towards centerline<br>- Modified blade definition to AD14 blade def.<br>- Included STATICBUOYANCY flag</p> <p>Update V3.1.0:<br>- Included ADVANCEDBUOYANCY flag<br>- Corrected excitation file (.3), previously: incorrect assignment of wave headings and excitation force coefficients<br>- Addition of mean drift file (.8)<br>- Corrected error in added mass matrix entry [4,2] (sway-roll coupling)</p> <p>Update V3.2.0:<br>- DELTA_DIR_DIFF 1-->20<br>- STATICBUOYANCY --> true</p> <p>Update V3.3.0:<br>- updated Substructure .txt file to format compatible with new QBlade version 2.0.6.4+<br>- extrapolation stretching activated<br>- depth dependent drag coefficient of 0.6 until z = -4m<br>- adjusted "DAMP_[-]" paremeter in the "MOORELEMENTS" table of ths Substructure .dat file to be zero due to numerical instabilities</p>
Network Data on Key Brussels Think Tanks
<p>This is anoynmized network on ties between experts and prominent Brussels think tanks dealing with economic policy, including gender, profession, nationality, PhD, and educational training. Data collated by Ramona Coman, Université libre de Bruxelles, for the ENLIGHTEN project (H2020 #649456).</p>
Signalgun Signature measured in Water and Air (Tank Experiment)
<ul> <li>the experiments are performed in and above a water tank</li> <li>signatures of a Stalker R1 2.5'' gun fired at different elevations above the water surface are measured</li> <li>the Stalker R1 2.5'' gun has a caliber of 0.38 in (9 mm) and is fired with blank bullets</li> <li>signatures are measured in water and air with B&K 8105 hydrophones</li> <li>the signal recording is triggered with a hydrophone that is directly attached to the Stalker R1 2.5'' gun (it indicates when the gun is fired) - the measured signals are aligned to the main peak of the trigger signal</li> <li>recordings are averaged/stacked measurements of 4 shots with the Stalker R1 2.5'' gun at each source elevation "zs"</li> <li>the filename indicates the source type ("signalgun_"), where the signal is measured ("water_" or "air_") and the source elevation above the water surface ("zs_cm.txt")</li> <li>more information can be found in the referenced publication and the sketch of the experimental set up</li> </ul>
S15 Watergun Signature measured in Water and Air (Tank Experiment)
<ul> <li>the experiments are performed in a water tank (see photo)</li> <li>signatures of an S15 watergun fired at different water depths are measured</li> <li>S15 watergun has one cylindrical gun port and is fired at 130 bar</li> <li>signatures are measured in water and air with B&K 8105 hydrophones</li> <li>signatures in air are measured at normal incidence, directly above the source (yr = 0 cm, no "yr" in filename) and at different horizontal offsets from the source (varying "yr" as indicated in the filename)</li> <li>channel 3 is the trigger channel and indicates when the S15 watergun is fired</li> <li>recordings are averaged/stacked measurements of 3 shots with the S15 watergun at each source depth "zs"</li> <li>the filename indicates the source type ("watergun_S15_"), where the signal is measured ("water_" or "air_") and the source depth in water ("zs_cm.txt"), and the horizontal offset ("yr") for the specific experiments</li> <li>more information can be found in the referenced publication and the sketch of the experimental set up</li> </ul>
Collection of narratives gathered by academia, governments, and think-tanks.
<p>Examples of Russian revisionist narratives. Source: own study based on the collection of narratives gathered by academia, governments, and think-tanks. The examples of narratives have been selected to represent diverse character of narratives and historical events. </p>
Temperature datasets for stock tanks and natural sites at High, Medium, and Low elevations, as part of the LTREB Swordtail project in Hidalgo, Mexico, 2015 - 2025
The core of this project focuses on monitoring the phenotypic and genotypic evolution of experimental and natural hybrid populations of swordtails for ten generations. To get a clear understanding of how evolution shapes genome wide ancestry and the distribution of species-specific alleles at functional loci during early generations of hybridization, it's important to monitor these populations using experimental crosses. Eight replicate 2000 L mesocosm stock tanks were built at high (1514 m), intermediate (980 m), and low (186 m) elevations near the CICHAZ field site were seeded with Xiphophorus birchmanni – X. malinche F1 hybrids. The F1s were generated by crossing X. malinche females with X. birchmanni malesin stock tanks at CICHAZ, a research station in Calnali, Mexico. Tanks at higher elevations experience cooler water temperatures. Our experimental design thereby allows us to characterize how ecological selection shapes genotypic and phenotypic differences in thermal tolerance across hybrid populations exposed to different temperature regimes. The data contained in these files include recorded water temperature (in Celsius), taken every six hours from three stock tanks at low (186 m: STL), medium (980 m: STM), and high (1514 m: STH) elevations, along with three natural river sites. File Natural.csv contains the natural sites and the file Stock Tanks.csv contains the corresponding natural sites. Acuapa (ACUA) is paired with STL, Aguazarca (AGZC) is paired with STM, and Tlatemaco (TLMC) is paired with STH.
Raisen रायसेन (Madhya Pradesh). Carved lintel built into the tank.
<p>Raisen रायसेन (Madhya Pradesh). Carved lintel built into the central tank, probably 8th century.</p>
Madanpur मदनपुर (Lalitpur, UP). Tank known as Madan Sagar.
<p> Madanpur मदनपुर (Lalitpur, UP) Tank known as Madan Sagar.</p>
Old Mandu (बूढ़ी मांडू), Dhār district, Madhya Pradesh. View of the main tank and ghāṭ
<p>Old Mandu (बूढ़ी मांडू), Dhār district, Madhya Pradesh. View of the main tank and ghāṭ. Photo 2010.</p>
Udayagiri, Madhya Pradesh. Drawing of the main tank.
<p>Udayagiri, Madhya Pradesh. Contour drawing of the main tank (JPEG format).</p>
Bhagdei (जामगढ़-भगदेई, Raisen district), Madhya Pradesh. General view of village tank.
<p>Bhagdei (भगदेई, Raisen district), Madhya Pradesh. General view of village tank with dam, ruined temple structure, and column in tank for measuring water levels, from the south-east, built circa 12th century. Column located at 23°6'29"N 78°15'18"E; the dam at 23°6'27"N 78°15'20"E. Photograph October, 2008.</p>
Figs 19a–l in Five New Spathidiids (Ciliophora: Bromeliads Haptoria) from Caribbean Tank
Figs 19a–l. Spathidium wolfi from life (a–h) and after protargol impregnation (i–l). a – right side view of a representative specimen, length 140 µm. The arrowhead marks the anterior contractile vacuole; b – frontal view of oral bulge; c – oral bulge extrusomes, length 10 µm; d – developing extrusomes in the cytoplasm; e – slender shape variant, showing the two contractile vacuoles (arrowheads); f – development of the "Ringgranula" (cp. Fig. 19a); g, h – surface view and optical section, showing the cortical granulation; i, j – ventral and dorsal view of anterior body region of a paratype specimen, showing the isostichad dorsal brush and the cuneate oral bulge; k, l – right and left side view of anterior body region of the holotype specimen (cp. Figs 20a, b). B(1–3) – dorsal brush rows, BA – oral basket, BU – oral bulge, CK – circumoral kinety, E – extrusomes, F – oral bulge fibres, G – cortical granules, L – lipid droplet, MA – macronucleus, RG – "Ringgranula". Scale bars: 15 µm (i–l) and 50 µm (a).
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
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.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.