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1,989 results for “fires”

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edi44/100

SBC LTER: Land: Hydrology: Santa Barbara County Flood Control District - Precipitation at Stanwood Fire Station (StanwoodFS228)

Precipitation was collected by the Santa Barbara County Flood Control District at Stanwood Fire Station (StanwoodFS228) in the Santa Barbara coastal area. Data are reported hourly, and times reflect the end of the each 1-hour interval. For more information, see https://www.countyofsb.org/pwd/hydrology.sbc

openCC (other)Sep 2019View details →
edi44/100

SBC LTER: Land: Hydrology: Santa Barbara County Flood Control District - Precipitation at Goleta Fire Station (GoletaFireStation440)

Precipitation was collected by the Santa Barbara County Flood Control District at Goleta Fire Station (GoletaFireStation440) in the Santa Barbara coastal area. Data are reported hourly, and times reflect the end of the each 1-hour interval. For more information, see https://www.countyofsb.org/pwd/hydrology.sbc

openCC (other)Sep 2019View details →
edi44/100

SBC LTER: Land: Hydrology: Santa Barbara County Flood Control District - Precipitation at Buellton Fire Station (BuelltonFS233)

Precipitation was collected by the Santa Barbara County Flood Control District at Buellton Fire Station (BuelltonFS233) in the Santa Barbara coastal area. Data are reported hourly, and times reflect the end of the each 1-hour interval. For more information, see https://www.countyofsb.org/pwd/hydrology.sbc

openCC (other)Sep 2019View details →
edi44/100

Gap Fire Perimeter (Santa Barbara County, CA), July 9, 2008 - From Geospatial Multi-Agency Coordination Group (GeoMAC)

The Gap Fire burned from 2008-07-01 to 2008-07-28, Lizard's Mouth area of Los Padres National Forest, Santa Barbara County. Approximately 9544 acres were burned (information per http://cdfdata.fire.ca.gov). This dataset contains a KML polygon showing the extent of the fire on 2008-07-09, and was acquired by request from the Geospatial Multi-Agency Coordination Group (GeoMAC, http://www.geomac.gov). These data are based upon input from incident intelligence sources, Global Positioning System (GPS) data, and infrared (IR) imagery. See methods for more information.

openCC (other)Jul 2019View details →
zenodo40/100

Canadian Fire Weather System - WRF/NOA

<p>The <strong>Canadian FWI System </strong>(Van Wagner, 1987) is a sub-system of the Canadian Fire Danger Rating System (Stocks et al., 1989), comprised of <strong>five components</strong> that consider the effects of fuel moisture and wind on fire behavior. The first three components, called <strong>fuel moisture codes</strong>, are numeric ratings of <strong>(1) </strong>the moisture content of surface litter and other fine fuels (fine fuel moisture code; <strong>FFMC</strong>), <strong>(2)</strong> the average moisture content of loosely compacted organic material (duff moisture code; <strong>DMC</strong>), and <strong>(3)</strong> the average moisture content of deep layers of organic material (drought code; <strong>DC</strong>). The remaining two components are related to <strong>fire behavior and spread</strong>: <strong>(1)</strong> the initial spread index (<strong>ISI</strong>), which represents the rate of spread, and <strong>(2) </strong>the build-up index (<strong>BUI</strong>), which represents the potential fuel&nbsp;availability. The above five parameters are finally combined for computing the <strong>fire weather index</strong> (hereafter referred to as the <strong>FWI</strong>), which represents the intensity of a spreading fire per unit length of fire front and is used as an indicator of fire danger.&nbsp;</p> <p>Computation of the Canadian Fire Weather System components&nbsp;was carried out using <strong>12 UTC meteorological data</strong> extracted from <strong>high-resolution (~12 km)&nbsp;WRF simulations</strong>, focussing on the <strong>Euro-Mediterranean region</strong>. These data include the 24 h accumulated precipitation (mm), 2 m air temperature (<sup>o</sup>C) and relative humidity (%), and 10 m wind speed (km h<sup>-1</sup>). It should be noted that normally, FWI is computed using meteorological data at 12 local time. The use of the 12 UTC data in our study is dictated by the fact that the Euro-Mediterranean encompasses different time zones&nbsp;(e.g. Bedia et al., 2012, 2018; Herrera et al., 2013).</p> <p>Details:&nbsp;</p> <ul> <li>File format: netcdf4</li> <li>Coordinate system: World Geodetic System 1984 (also known as WGS 1984, EPSG:4326)</li> <li>Longitude range: [-9.91, +36.4]</li> <li>Latitude range: [+32.1, +48.93]</li> <li>Temporal resolution: 1 day (at 12 UTC)</li> <li>Spatial resolution: 0.12&nbsp;degrees (~12 Km)</li> <li>Spatial coverage: Euro-Mediterranean</li> <li>Time span: May 1 to September 30, for the years 1987-2016</li> <li>Stream: Regional climate simulations (driven by the WRF model)</li> </ul>

opencc-by-4.0Mar 2020View details →
zenodo40/100

Fight or flight? Behaviour and experiences of laypersons in the face of an incipient fire

<p>This dataset contains raw data collected in an experimental study by the University of Muenster, Germany, in cooperation with the German Fire Protection Association and the State Fire Service Institute NRW, Germany. The study is part of a larger research project and examined the behavior of laypersons when confronted with an incipient fire.</p> <p>Within minutes, an incipient fire can develop into a life-threatening full fire. Consequently, it should be fought as early as possible. But are laypersons capable of doing this? In such a situation, how do they behave and feel? These questions are addressed in the current study. Persons without any professional firefighting training (N=64) were confronted in two experimental runs with a real incipient fire in the form of a burning pillow.</p> <p>The study was approved by the ethics committee of the Department 7 of the University of M&uuml;nster (ID 2018-16-MT) and pre-registered with AsPredicted.org under the number 20436 (https://aspredicted.org/8py33.pdf). The study was supported by the German Federal Ministry of Education and Research (funding code FKZ 13N14208).</p> <p>In addition to the raw data, the codebook as well as the R- analysis script is included here for better comprehensibility. The raw data contains only the information of persons who were included in the analysis and have agreed to it. Some demographic information was deleted to ensure anonymity.</p>

opencc-by-nc-4.0Apr 2020View details →
zenodo40/100

Alya Eulerian LES results fire extinction nozzle low mass flow rate (paraview files)

<p>The present data complements the&nbsp;Deliverable 5.2. Toolchain V2 to couple CFD and multiple&nbsp;droplet and continuous droplet models.It includes a paraview file (*pvd)&nbsp;for the&nbsp;continuous droplet model (Eulerian-Eulerian) with&nbsp;an inlet mass flow rate of &nbsp;0.05 kg/s.&nbsp;</p> <p>The unstructured mesh employed to simulate the injector system is composed by 81.6&nbsp;million tetrahedrons that include the internal ow in the nozzle and the discharged atmosphere. Three levels of refinement are considered to characterize the internal ow and&nbsp;the near eld after the expansion, the jet penetration up to 15D (being D=2mm, the&nbsp;diameter of the nozzle) and the surrounding air with mesh resolution of 0.1, 0.3 and 1.5&nbsp;mm respectively.&nbsp;A conservative level set is used in combination a a second order low dissipation finite element scheme and the LES model Vreman.&nbsp;</p> <p>Considered variables are:&nbsp;</p> <p>&nbsp; &nbsp; &nbsp;&nbsp;&lt;PDataArray type=&quot;Float64&quot; Name=&quot;AVD32_average&quot;/&gt; : average&nbsp;particle size distribution</p> <p>&nbsp; &nbsp; &nbsp; &lt;PDataArray type=&quot;Float64&quot; Name=&quot;AVDEN_average&quot;/&gt; : average density</p> <p>&nbsp; &nbsp; &nbsp; &lt;PDataArray type=&quot;Float64&quot; Name=&quot;AVL&nbsp; _average&quot;/&gt; : average liquid fraction</p> <p>&nbsp; &nbsp; &nbsp; &lt;PDataArray type=&quot;Float64&quot; Name=&quot;AVL2 _average&quot;/&gt;: average square liquid fraction&nbsp;</p> <p>&nbsp; &nbsp; &nbsp; &lt;PDataArray type=&quot;Float64&quot; Name=&quot;AVS&nbsp; _average&quot;/&gt;:&nbsp;average surface density</p> <p>&nbsp; &nbsp; &nbsp; &lt;PDataArray type=&quot;Float64&quot; Name=&quot;AVS0 _average&quot;/&gt;:&nbsp;average surface density 0</p> <p>&nbsp; &nbsp; &nbsp; &lt;PDataArray type=&quot;Float64&quot; Name=&quot;CON01_average&quot;/&gt;: not relevant (instantaneous values)</p> <p>&nbsp; &nbsp; &nbsp; &lt;PDataArray type=&quot;Float64&quot; Name=&quot;CON02_average&quot;/&gt;: not relevant (instantaneous values)</p> <p>&nbsp; &nbsp; &nbsp; &lt;PDataArray type=&quot;Float64&quot; Name=&quot;CON03_average&quot;/&gt;: not relevant (instantaneous values)</p> <p>&nbsp; &nbsp; &nbsp; &lt;PDataArray type=&quot;Float64&quot; Name=&quot;CON04_average&quot;/&gt;: not relevant (instantaneous values)</p> <p>&nbsp; &nbsp; &nbsp; &lt;PDataArray type=&quot;Float64&quot; Name=&quot;D32&nbsp; _average&quot;/&gt;: not relevant (instantaneous values)</p> <p>&nbsp; &nbsp; &nbsp; &lt;PDataArray type=&quot;Float64&quot; Name=&quot;DENSI_average&quot;/&gt;: not relevant (instantaneous values)</p> <p>&nbsp; &nbsp; &nbsp; &lt;PDataArray type=&quot;Float64&quot; Name=&quot;PRESS_average&quot;/&gt;: not relevant (instantaneous values)</p> <p>&nbsp; &nbsp; &nbsp; &lt;PDataArray type=&quot;Float64&quot; Name=&quot;SIGM0_average&quot;/&gt;: not relevant (instantaneous values)</p> <p>&nbsp; &nbsp; &nbsp; &lt;PDataArray type=&quot;Float64&quot; Name=&quot;SIGMA_average&quot;/&gt;: not relevant (instantaneous values)</p> <p>&nbsp; &nbsp; &nbsp; &lt;PDataArray type=&quot;Float64&quot; Name=&quot;TURBU_average&quot;/&gt;: not relevant (instantaneous values)</p> <p>&nbsp; &nbsp; &nbsp; &lt;PDataArray type=&quot;Float64&quot; Name=&quot;VELOC_average&quot; NumberOfComponents=&quot;3&quot;/&gt;: average velocity</p> <p>&nbsp; &nbsp; &nbsp; &lt;PDataArray type=&quot;Float64&quot; Name=&quot;VISCO_average&quot;/&gt;: not relevant (instantaneous values)</p>

opencc-by-4.0Apr 2020View details →
zenodo40/100

Figure 67 in Review of the Spirobolida on Madagascar, with descriptions of twelve new genera, including three genera of 'fire millipedes' (Diplopoda)

Figure 67. Schematic drawing of the littoral forest fragment S9 at Sainte Luce, with indications where six genera of Spirobolida were collected.

opencc-by-4.0Sep 2009View details →
zenodo40/100

Figure 65 in Review of the Spirobolida on Madagascar, with descriptions of twelve new genera, including three genera of 'fire millipedes' (Diplopoda)

Figure 65. Hylekobolus marojejy sp. n., male holotype. A anterior gonopod, anterior view B right posterior gonopod, anterior view C anterior gonopod, posterior view D right posterior gonopod, posterior view. Apo = apodeme; Cx = coxite; St = sternite; T = telopodite. Not to same scale.

opencc-by-4.0Sep 2009View details →
zenodo40/100

Figure 64 in Review of the Spirobolida on Madagascar, with descriptions of twelve new genera, including three genera of 'fire millipedes' (Diplopoda)

Figure 64. Hylekobolus andasibensis sp. n., male holotype. A anterior gonopod, anterior view B right posterior gonopod, anterior view C anterior gonopod, posterior view D right posterior gonopod, posterior view. Apo = apodeme; Cx = coxite; St = sternite; T = telopodite. Not to same scale.

opencc-by-4.0Sep 2009View details →
zenodo40/100

Figure 60 in Review of the Spirobolida on Madagascar, with descriptions of twelve new genera, including three genera of 'fire millipedes' (Diplopoda)

Figure 60. Hylekobolus montanus sp. n., male holotype. A head, lateral view B legs 1–7, ventral view C telson D anterior gonopod, anterior view E left posterior gonopod, anterior view F anterior gonopod, posterior view G left posterior gonopod, posterior view. Apo = apodeme; av = anal valves; Co = collum; Cx = coxite; Gn = gnathochilarium; L = ledges; Md = mandible; Pre = preanal ring; St = sternite; T = telopodite. Scale bars = 1 mm.

opencc-by-4.0Sep 2009View details →
zenodo40/100

Figure 59 in Review of the Spirobolida on Madagascar, with descriptions of twelve new genera, including three genera of 'fire millipedes' (Diplopoda)

Figure 59. Hylekobolus goodmani sp. n., male holotype. A head, lateral view B legs 1–7, ventral view C telson D anterior gonopod, anterior view E left posterior gonopod, anterior view F anterior gonopod, posterior view G left posterior gonopod, posterior view. Apo = apodeme; av = anal valves; Co = collum; Cx = coxite; Gn = gnathochilarium; Md = mandible; Pre = preanal ring; St = sternite; sub = subanal scale; T = telopodite. Scale bars = 1 mm.

opencc-by-4.0Sep 2009View details →
zenodo40/100

Figure 55 in Review of the Spirobolida on Madagascar, with descriptions of twelve new genera, including three genera of 'fire millipedes' (Diplopoda)

Figure 55. Hylekobolus brachiosauroides sp. n., A–H male paratype, I–K female paratype, L–O male holotype. A head, lateral view B legs 1–7 and gonopods, ventral view C telson D antennal groove E gnathochilarium, ventral view F gnathochilarium, mentum G gnathochilarium, stipites H, I right midbody legs Į right vulva, posterior view K right vulva, lateral view L anterior gonopod, anterior view M right posterior gonopod, anterior view N anterior gonopod, posterior view O right posterior gonopod, posterior view. Apo = apodeme; av = anal valves; Co = collum; Cx = coxite; Go = gonopods; h = head; IL = incisura lateralis; L = ledges; Md = mandible; Me = mentum; O = operculum; Pre = preanal ring; pv = posterior valve; St = sternite; St-Cx = sterno-coxite; ST = stipites; T = telopodite. Scale bars = 1 mm.

opencc-by-4.0Sep 2009View details →
zenodo40/100

Figure 62 in Review of the Spirobolida on Madagascar, with descriptions of twelve new genera, including three genera of 'fire millipedes' (Diplopoda)

Figure 62. Hylekobolus analavelona sp. n., male holotype. A head, lateral view B legs 1–7, ventral view C telson D anterior gonopod, anterior view E left posterior gonopod, anterior view F anterior gonopod, posterior view G left posterior gonopod, posterior view. Apo = apodeme; av = anal valves; Co = collum; Cx = coxite; Gn = gnathochilarium; Md = mandible; Pre = preanal ring; St = sternite; sub = subanal scale; T = telopodite. Scale bars = 1 mm.

opencc-by-4.0Sep 2009View details →
zenodo40/100

Figure 66 in Review of the Spirobolida on Madagascar, with descriptions of twelve new genera, including three genera of 'fire millipedes' (Diplopoda)

Figure 66. Hylekobolus anjanaharibe sp. n., male holotype. A anterior gonopod, anterior view B right posterior gonopod, anterior view C anterior gonopod, posterior view D right posterior gonopod, posterior view. Apo = apodeme; Cx = coxite; St = sternite; T = telopodite. Not to same scale.

opencc-by-4.0Sep 2009View details →
zenodo40/100

Figure 56 in Review of the Spirobolida on Madagascar, with descriptions of twelve new genera, including three genera of 'fire millipedes' (Diplopoda)

Figure 56. Hylekobolus rufus sp. n., male holotype. A head, lateral view B legs 1–7, ventral view C telson D anterior gonopod, anterior view E left posterior gonopod, anterior view F anterior gonopod, posterior view G left posterior gonopod, posterior view. Apo = apodeme; av = anal valves; Co = collum; Cx = coxite; Gn = gnathochilarium; L = ledges; Md = mandible; Pre = preanal ring; St = sternite; T = telopodite. Scale bars = 1 mm.

opencc-by-4.0Sep 2009View details →
zenodo40/100

Figure 52 in Review of the Spirobolida on Madagascar, with descriptions of twelve new genera, including three genera of 'fire millipedes' (Diplopoda)

Figure 52. Ostinobolus subterraneus sp. n., male holotype. A head, lateral view B legs 1–7, ventral view C telson D gnathochilarium, ventral view E anterior gonopod, anterior view F right posterior gonopod, anterior view G anterior gonopod, posterior view H right posterior gonopod, posterior view. av = anal valves; Co = collum; Cx = coxite; E = reduced eye; Gn = gnathochilarium; L = ledge; Md = mandible; Pre = preanal ring; St = sternite; T = telopodite. Scale bars = 1 mm.

opencc-by-4.0Sep 2009View details →
zenodo40/100

Figure 48 in Review of the Spirobolida on Madagascar, with descriptions of twelve new genera, including three genera of 'fire millipedes' (Diplopoda)

Figure 48. Ostinobolus rufus sp. n., A, B, D, G–J male holotype; C, E, F male paratype. A head, lateral view B legs 1–7, ventral view C living specimen D telson E gnathochilarium F midbody ring with leg G anterior gonopod, anterior view H anterior gonopod, posterior view I left posterior gonopod, anterior view Į left posterior gonopod, posterior view. Apo = apodeme; av = anal valves; Co = collum; Cx = coxite; Gn = gnathochilarium; L = ledge; Md = mandible; Pre = preanal ring; St = sternite; sub = subanal scale; T = telopodite. Scale bars = 1 mm.

opencc-by-4.0Sep 2009View details →
zenodo40/100

Figure 47 in Review of the Spirobolida on Madagascar, with descriptions of twelve new genera, including three genera of 'fire millipedes' (Diplopoda)

Figure 47. Alluviobolus antanosy sp. n., male holotype. A head, lateral view B legs 1–7, ventral view C telson D anterior gonopod, anterior view E left posterior gonopod, anterior view F anterior gonopod, posterior view G left posterior gonopod, posterior view. Apo = apodeme; av = anal valves; Co = collum; Cx = coxite; IL = incisura lateralis; Md = mandible; Pre = preanal ring; St = sternite; sub = subanal scale; T = telopodite. Scale bars = 1 mm.

opencc-by-4.0Sep 2009View details →
zenodo40/100

Figure 46 in Review of the Spirobolida on Madagascar, with descriptions of twelve new genera, including three genera of 'fire millipedes' (Diplopoda)

Figure 46. Alluviobolus tsimelahy sp. n. specimens from Ebosika, A–G, I–M male, H female. A head, lateral view B legs 1–7, ventral view C telson D gnathochilarium, ventral view E gnathochilarium, mentum F gnathochilarium, dorsal view on endochilarium G, H left midbody legs I anterior gonopod, anterior view Į right posterior gonopod, anterior view K anterior gonopod, posterior view L right posterior gonopod, telopodite, posterior view M right posterior gonopods, coxite and sternite, posterior view. Apo = apodeme; av = anal valves; Co = collum; cp = central pads; Cx = coxite; Endo = endochilarium; Gn = gnathochilarium; L = ledge; Md = mandible; Me = mentum; Pre = preanal ring; St = sternite; ST = stipites; sub = subanal scale; T = telopodite. Scale bars = 1 mm.

opencc-by-4.0Sep 2009View details →

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