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229 results for “Gauge”
Gauge data repository for "Comprehensive evaluation and comparison of ten precipitation products in terms of accuracy and stability over a typical mountain basin, Southwest China"
<h4>1. Title: </h4> <p>Gauge data repository for "Comprehensive evaluation and comparison of ten precipitation products in terms of accuracy and stability over a typical mountain basin, Southwest China".</p> <h4>2. Corresponding author: </h4> <p>Xingbi Lei (leixingbi@st.gxu.edu.cn, leixingbi@foxmail.com).</p> <h4>3. Institution: </h4> <p>Key Laboratory of Disaster Prevention and Structural Safety of the Ministry of Education, Nanning 530000, China;</p> <p>College of Architecture and Civil Engineering, Guangxi University, Nanning 530000, China; </p> <p>Guangxi Provincial Engineering Research Center of Water Security and Intelligent Control for Karst Region, Guangxi University, Nanning 530000, China; </p> <p>Guangxi Key Laboratory of Disaster Prevention and Engineering Safety, Guangxi University, Nanning 530000, China; </p> <p>State Key Laboratory of Hydrology-Water Resources and Hydraulic Engineering, Nanjing Hydraulic Research Institute, Nanjing 200029, China; </p> <p>Guangxi Water & Power Design Institute Co., Ltd., Nanning 530023, China. </p> <h4>4. Description:</h4> <p>This repository contains gauge data for the research article "Comprehensive evaluation and comparison of ten precipitation products in terms of accuracy and stability over a typical mountain basin, Southwest China", which is currently under review for the journal "Atmospheric Research".</p> <p>The gauge data used in this study is the daily measurements (2003/01/01-2018/12/31) of 12 stations in the Chengbi River Basin (Southwest China). The data source was the Chengbi River Reservoir Bureau. The data has been quality controlled by the Bureau in accordance with "MWR, PRC,2015. Specification for precipitation observations: SL 21-2015". Please see the journal article for more detailed information.</p> <h4>5. Citation:</h4> <p>When using this dataset, please cite "Mo, C. et al., 2024. Comprehensive evaluation and comparison of ten precipitation products in terms of accuracy and stability over a typical mountain basin, Southwest China. Atmospheric Research, 297: 107116.10.1016/j.atmosres.2023.107116". </p> <p> </p>
An adaptive segment anything model for water level measurement with staff gauge images: staff gauge images and in-situ water levels
<p><span>We installed a commercial time-lapse camera on an urban lake in South China to collect the staff gauge images with a interval of 15 minutes. The data samples spanned from May 27th, 0:00 am, to July 6th, 11:00 am, 2023 (UTC+8), including a total of 2691 images. All the collected images were manually read to derive the stages as ground truth. The image and water level data is stored in this dataset.</span></p> <p> </p>
Supplementary files to article "Intra- and interexaminer measurement variability analysis of an orthodontic gauge device to determine incisor occlusal surface angles in the horse"
<p>Supplementary files to article "Intra- and interexaminer measurement variability analysis of an orthodontic gauge device to determine incisor occlusal plane angles in the horse" submitted to Veterinary Sciences - Veterinary Surgery (Section) - Current Research in Equine Dentistry (Special Issue); submitted 31st May 2022</p>
Precipitation of totalizer gauges in the Limmern area owned by Meteodat, status 2017-11-16
<p>Precipitation [mm] of totalizer gauges in the Limmern area (Switzerland) owned by Meteodat, for the hydrological year, measured mostly in half-year resolution.<br> This dataset includes the following stations:</p> <ul> <li>3094 Obersand 713500/188440 [8.92652°E/46.83742°N] 1940masl 1964-2016</li> <li>3095 Fridolinshütten 715240/186470 [8.94883°E/46.81940°N] 2110masl 1964-2016</li> <li>3099 Muttenkopf 720155/190400 [9.01426°E/46.85388°N] 2425masl 1945-2016</li> <li>3104 Mittler Guetbächi 719850/194810 [9.01142°E/46.89359°N] 1580masl 1964-2016</li> <li>3135 Tierälpli 708160/190240 [8.85696°E/46.85450°N] 2350masl 1964-2016</li> </ul> <p>Funded currently or in the past by</p> <ul> <li>Meteodat GmbH</li> <li>Kraftwerke Linth-Limmern AG (AXPO and Kt. Glarus)</li> </ul> <p> </p> <p>See also http://www.meteodat.ch/totalisatoren.html</p> <p> </p>
Precipitation of totalizer gauges in the Maggia/Blenio catchments owned by OFIMA/OFIBLE, status 2017-11-16
<p>Precipitation [mm] of totalizer gauges in the Maggia/Blenio catchments (Switzerland) owned by OFIMA/OFIBLE, for the hydrological year.<br> This dataset includes the following stations:</p> <ul> <li>9303 Alpe Froda 688230/145060 [8.58699°E/46.45106°N] 1745masl 1965-2016</li> <li>9297 Cavagnoli-Diga 682219/145480 [8.50884°E/46.45561°N] 2332masl 1966-2016</li> <li>9296 Robiei 682540/143984 [8.51275°E/46.44211°N] 1903masl 1965-2016</li> <li>9383 Palagnedra Paese 691890/112150 [8.62813°E/46.15456°N] 650masl 1965-2016</li> <li>9063 Pian Segno 707190/154630 [8.83593°E/46.53437°N] 1680masl 1965-2016</li> <li>9064 Alpe Predasca 711900/156920 [8.89787°E/46.55420°N] 1760masl 1965-2016</li> <li>9066 Camadra di Dentro 714740/162190 [8.93621°E/46.60112°N] 1903masl 1965-2016</li> <li>9067 Luzzone-Garsotto 718958/159071 [8.99044°E/46.57233°N] 1627masl 1965-2016</li> <li>9068 Passo Muaz 716859/156610 [8.96244°E/46.55056°N] 1698masl 1965-2016</li> </ul> <p>Funded currently or in the past by</p> <ul> <li>Officine Idroelettriche della Maggia SA (OFIMA)</li> <li>Officine Idroelettriche di Blenio SA (OFIBLE)</li> </ul> <p> </p> <p>See also http://www.meteodat.ch/totalisatoren.html</p> <p> </p>
Precipitation of totalizer gauges in Wägital catchment, status 2017-11-16
<p>Precipitation [mm] of totalizer gauges in Wägital catchment, Switzerland, for the hydrological year, measured in half-year resolution.<br> This dataset includes the following stations:</p> <ul> <li>3336 Seeende 711950/213950 [8.91249°E/47.06711°N] 910masl 1926-2016</li> <li>3338 Blattli/Oberhof 713200/216460 [8.92957°E/47.08947°N] 933masl 1926-2016</li> <li>3339 Rohr 710775/217400 [8.89787°E/47.09833°N] 1190masl 1926-2016</li> <li>3352 Unter Alten 708300/218830 [8.86562°E/47.11160°N] 1295masl 1926-2016</li> <li>3382 Rötstock 713150/220175 [8.92984°E/47.12289°N] 1170masl 1926-2016</li> </ul> <p>Funded currently or in the past by</p> <ul> <li>Federal Office of Meteorology and Climatology MeteoSwiss in the context of GCOS Switzerland</li> <li>Meteodat GmbH</li> <li>Institute of Geography, University of Zurich</li> <li>WSL Institute for Snow and Avalanche Research SLF</li> <li>Institute of Geography, ETH Zurich (IAC ETH Zurich)</li> <li>AG Kraftwerk Wägital (AXPO and EWZ)</li> </ul> <p> </p> <p>See also http://www.meteodat.ch/totalisatoren.html</p> <p> </p>
Meson spectroscopy from spectral densities in lattice gauge theories---data release
<p>This is the data release relative to the paper "Meson spectroscopy from spectral densities in lattice gauge theories" (arXiv:2405.01388). It contains the data that can be analysed through the analysis code in doi:10.5281/zenodo.11048300.</p>
FASTSUM Generation 2 Anisotropic Thermal Lattice QCD Gauge Ensembles
<p><strong>FASTSUM Generation 2 Anisotropic Thermal Lattice QCD Gauge Ensembles</strong></p> <p> </p> <p>The FASTSUM collaboration <a href="https://fastsum.gitlab.io/">[1]</a> Generation 2 Ensembles are lattice Quantum Chromodynamics (QCD) gauge-ensembles used extensively to examine thermal (non-zero temperature) properties of QCD using the first principles methods of lattice QCD. These are anisotropic lattices using the `fixed-scale` approach to thermal ensembles wherein the temperature is changed entirely by changing the number of points in the temporal direction.</p> <p> </p> <p>These ensembles are freely available (see below). The only requirements of use are that this Zenodo page, and the two papers detailing the ensembles, <a href="https://doi.org/10.1007/JHEP02(2015)186">Electrical conductivity and charge diffusion in thermal QCD from the lattice</a> and <a href="https://link.aps.org/doi/10.1103/PhysRevD.105.034504">Properties of the QCD thermal transition with Nf=2+1 flavors of Wilson quark</a> are appropriately cited.</p> <p>These ensembles are characterised by</p> <ul> <li>\(N_f = 2 +1 \) flavour <ul> <li>Degenerate up and down quarks, physical strange quark</li> </ul> </li> <li>spatial lattice spacing \(a_s\) <ul> <li>~0.12 fm</li> </ul> </li> <li>temporal lattice spacing \(a_t\) <ul> <li>~0.035 fm</li> </ul> </li> <li>anisotropy \(\nu = a_s / a_t\) <ul> <li>~3.444</li> </ul> </li> <li>Number of spatial sites NS <ul> <li>NS = 24 or 32</li> </ul> </li> <li>Number of Temporal sites <ul> <li>NT in [16, 48]</li> </ul> </li> <li>Temperatures <ul> <li>117 MeV to 352 MeV</li> </ul> </li> <li>Pseudocritical temperature (from renormalised chiral condensate) <ul> <li>181(1) MeV</li> </ul> </li> <li>Pion mass <ul> <li>\(m_\pi \sim 384\) MeV</li> </ul> </li> <li>Pseudoscalar to vector mass ratio <ul> <li>\( M_\pi / M_\rho \sim 0.446\)</li> </ul> </li> </ul> <p> </p> <p>This choice action and bare parameters follows that of the Hadron Spectrum Collaboration <a href="https://doi.org/10.1103/PhysRevD.78.054501">https://doi.org/10.1103/PhysRevD.78.054501</a>, namely a Symanzik improved gauge action and a tadpole improved Wilson-clover fermion action with stout-smeared links. </p> <p>The main parameters in the lattice action are listed below. The bare fermion anisotropy \(\gamma_f\) is obtained by \(\gamma_f = \gamma_g / \nu\). Full details may be found in <a href="https://doi.org/10.1007/JHEP02(2015)186">Electrical conductivity and charge diffusion in thermal QCD from the lattice</a> and <a href="https://link.aps.org/doi/10.1103/PhysRevD.105.034504">Properties of the QCD thermal transition with Nf=2+1 flavors of Wilson quark</a> which are also attached to this Zenodo record.</p> <ul> <li>gauge coupling <ul> <li>\(\beta = 1.5\)</li> </ul> </li> <li>tree-level coefficients <ul> <li>\(c_0 = 5/3,\, c2=-1/12\)</li> </ul> </li> <li>bare gauge, fermion anisotropy <ul> <li>\(\gamma_g = 4.3,\, \gamma_f = 3.399\)</li> </ul> </li> <li>ratio of bare anisotropies <ul> <li>\(\nu = \gamma_g / \gamma_f = 1.265\)</li> </ul> </li> <li>spatial tadpole (without, with smeared links) <ul> <li>\(u_s = 0.733566, \tilde{u}_s = 0.92674\)</li> </ul> </li> <li>temporal tadpole (without, with smeared links) <ul> <li>\(u_\tau =1, \tilde{u}_\tau =1\)</li> </ul> </li> <li>stout smearing for spatial links <ul> <li>isotropic, 2 steps, \(\rho = 0.14\)</li> </ul> </li> <li>bare light quark mass <ul> <li>\(m_0^l = -0.0840\)</li> </ul> </li> <li>bare strange quark mass <ul> <li>\(m^s_0 = -0.0743\)</li> </ul> </li> <li>light quark hopping parameter <ul> <li>\(\kappa_{light} = 0.2780\)</li> </ul> </li> <li>strange quark hopping parameter <ul> <li>\(\kappa_{strange} = 0.2765\)</li> </ul> </li> </ul> <p> </p> <p>The available ensembles are detailed in the below table</p> <table> <tbody> <tr> <td>\(N_\tau\)</td> <td>16</td> <td>20</td> <td>24</td> <td>28</td> <td>32</td> <td>36</td> <td>40</td> <td>48</td> </tr> <tr> <td>\(N_s\)</td> <td>24, 32</td> <td>24</td> <td>24, 32</td> <td>24, 32</td> <td>24, 32</td> <td>24</td> <td>24</td> <td>32</td> </tr> <tr> <td>\(T\) MeV</td> <td>352</td> <td>281</td> <td>235</td> <td>201</td> <td>176</td> <td>156</td> <td>141</td> <td>117</td> </tr> <tr> <td>\(T / T_{c}\)</td> <td>1.900</td> <td>1.520</td> <td>1.267</td> <td>1.086</td> <td>0.950</td> <td>0.844</td> <td>0.760</td> <td>0.633</td> </tr> <tr> <td>\(N_{cfg}\)</td> <td> <p>1009*, 1172**</p> </td> <td>1000</td> <td> <p>1001, 502</p> </td> <td>1100^, 502</td> <td>1000, 501</td> <td>501</td> <td>523^^</td> <td>501</td> </tr> </tbody> </table> <p> </p> <p>* Only 1000 in openQCD format</p> <p>** Only 591 in openQCD format</p> <p>^ Only 1001 in openQCD format</p> <p>^^ Only 502 in openQCD format</p> <p><strong>Sharing & Usage</strong></p> <blockquote> <p>The ensembles are available on Storj, a decentralised cloud storage service. Our storage here is supported by DiRAC <a href="https://dirac.ac.uk/">[2]</a>. The available data may be viewed and downloaded via web browser or in an automated manner using the S3 interface to Storj <a title="https://rclone.org/storj/" href="https://rclone.org/storj/" target="_blank" rel="noopener">[3]</a>.</p> <p>To view the available data, and download via web browser, the HTTP interface may be used: https://link.storjshare.io/julj4eulkfnqnd26v36des6wvy3a/gen2-configs . To download in an automated manner the S3 interface to Storj may be used [3] with the following Access Key: </p> <p>jxejpzv46zrr3rfnoz66n5px2rca</p> <p>and Secret Key</p> <p>j2o44mi2a76zajpvyv5wjd2wgjqgncfagln6nf6jpwbv7o3npj7t6</p> </blockquote> <blockquote> <p> </p> <p>with the gateway</p> <p><a href="https://gateway.storjshare.io" target="_blank" rel="noopener">https://gateway.storjshare.io</a></p> <p> </p> <p>More details are available from (preferably) the generic email address PhysicsByFASTSUM AT gmail DOT com or one of Chris Allton, Ryan Bignell and Jon-Ivar Skullerud.</p> </blockquote> <p> </p> <p>We supply the gaugefields in at least one of ILDG (Chroma) format and openqcd format. Also supplied are log files, and chroma input files. The gaugefields were generated using Chroma and later converted to openqcd.</p> <p> </p> <p>The ensembles are available for all uses. If they are used, this Zenodo page and two papers detailing the ensembles, <a href="https://doi.org/10.1007/JHEP02(2015)186">Electrical conductivity and charge diffusion in thermal QCD from the lattice</a> and <a href="https://link.aps.org/doi/10.1103/PhysRevD.105.034504">Properties of the QCD thermal transition with Nf=2+1 flavors of Wilson quark</a> must be appropriately cited, i.e. with bibtex</p> <pre><code>@article{Aarts:2014nba, author = "Aarts, Gert and Allton, Chris and Amato, Alessandro and Giudice, Pietro and Hands, Simon and Skullerud, Jon-Ivar", title = "{Electrical conductivity and charge diffusion in thermal QCD from the lattice}", eprint = "1412.6411", archivePrefix = "arXiv", primaryClass = "hep-lat", reportNumber = "HIP-2014-34-TH, INT-PUB-14-060, MS-TP-14-40", doi = "10.1007/JHEP02(2015)186", journal = "JHEP", volume = "02", pages = "186", year = "2015" }</code><br><br>and<br><br><code>@article{PhysRevD.105.034504,</code><br><code> title = {Properties of the QCD thermal transition with ${N}_{f}=2+1$ flavors of Wilson quark},</code><br><code> author = {Aarts, G. and Allton, C. and Glesaaen, J. and Hands, S. and J\"ager, B. and Kim, S. and Lombardo, M. P. and Nikolaev, A. A. and Ryan, S. M. and Skullerud, J.-I. and Wu, L.-K.},</code><br><code> journal = {Phys. Rev. D},</code><br><code> volume = {105},</code><br><code> issue = {3},</code><br><code> pages = {034504},</code><br><code> numpages = {12},</code><br><code> year = {2022},</code><br><code> month = {Feb},</code><br><code> publisher = {American Physical Society},</code><br><code> doi = {10.1103/PhysRevD.105.034504},</code><br><code> url = {https://link.aps.org/doi/10.1103/PhysRevD.105.034504}</code><br><code>}</code><br><br><br></pre> <p> </p> <p><a href="https://fastsum.gitlab.io/">[1] </a>https://fastsum.gitlab.io/</p> <p><a href="https://dirac.ac.uk/">[2]</a> https://dirac.ac.uk/</p> <p><a href="https://rclone.org/storj/">[3]</a> https://rclone.org/storj/</p> <p> </p>
Spectral response of disorder-free localized lattice gauge theories
<p>Raw data for all figures in the manuscript "Spectral response of disorder-free localized lattice gauge theories"</p>
Improved National-Scale Flood Prediction for Gauged and Ungauged Basins using a Spatio-temporal Hierarchical Model
<p>Composite data with NWM 2.0 streamflow, basin PET, drainage area and stoage.</p> <p>SAR data used in this study are downloaded from</p> <p><a href="https://scihub.copernicus.eu/">https://scihub.copernicus.eu/</a></p> <p> </p>
2013-2018 gauge-measured precipitation in Shanghai
<p>The rain gauge observation data selected 181 gauges with a period of 2013-2018 and a temporal resolution of 5 minutes.</p>
27-gauge Vitrectomy Wound Integrity: a Prospective, Randomized Trial Comparing Angled Versus Straight Entry
ClinicalTrials.gov study NCT02836210. IPD Sharing: UNDECIDED. Countries: 1. Publications: 8.
Gauging Outcomes of Total Milk Ingestion on Lipid and gControl
ClinicalTrials.gov study NCT07087184. IPD Sharing: NO. Countries: 1. Publications: 9.
COVID-19 Pandemic Short Interval National Survey Gauging Psychological Distress
ClinicalTrials.gov study NCT04379063. IPD Sharing: NO. Countries: 1. Publications: 1.
A Randomized Controlled Trial on the Effect of Needle Gauge on the Pain and Anxiety Experienced During Arterial Puncture
ClinicalTrials.gov study NCT02320916. IPD Sharing: Not stated. Countries: 1. Publications: 1.
Immediate Anterior Chamber Paracentesis With A 30-Gauge Needle for Acute Primary Angle - Closure
ClinicalTrials.gov study NCT01923454. IPD Sharing: Not stated. Countries: 1. Publications: 2.
Yield Rate for Procurement the Histologic Core With Endoscopic Ultrasound-guided Fine Needle Biopsy With 20-gauge Ultrasound Biopsy Needles for Solid Pancreatic Masses: Pilot Study
ClinicalTrials.gov study NCT03017599. IPD Sharing: NO. Countries: 1. Publications: 2.
Liver Biopsy Using a 19 Gauge Fine Needle Biopsy Needle
ClinicalTrials.gov study NCT03910790. IPD Sharing: NO. Countries: 1. Publications: 16.
MOSE to Improve the Diagnostic Accuracy During EUS-guided FNA Using a 19-gauge Needle for Solid Lesions
ClinicalTrials.gov study NCT03130140. IPD Sharing: UNDECIDED. Countries: 1. Publications: 1.
Is There a Difference in Oocyte Quality? A Comparison of Two Aspiration Needle Gauges
ClinicalTrials.gov study NCT02749773. IPD Sharing: NO. Countries: 1. Publications: 1.
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