Commit d61d52a5 authored by William D. Fullmer's avatar William D. Fullmer
Browse files

add to gallery: advert and spouted bed

parent f22ff07a
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Changes for docs/webroot/gallery.html: 75 added lines, 9 removed lines.
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@@ -7,7 +7,7 @@
<html lang="en">
  <head>
    <meta charset="UTF-8">
    <title>MFiX-Exa: Gallery</title>
    <title>MFIX-Exa: Gallery</title>
    <link rel="icon" href="web_icon.ico" type="image/x-icon">
    <meta http-equiv="content-type" content="text/html; charset=utf-8" />
    <meta name="description" content="" />
@@ -62,6 +62,72 @@
END TEMPLATE-->


        <header class="major">
          <h2>Spouted Bed</h2>
          <p>Eruption! The moment of spout breakthrough</p>
        </header>
        <div class="row 50% uniform">
          <div class="8u 12u(small)">
            Often used for drying and mixing, spouted beds are fluidized by high-
            speed gas jets to drive particle mixing. At right, MFIX-Exa is used to
            simulate a spouted bed experiment recently studied at 
            <a href="https://doi.org/10.1016/j.partic.2017.02.008">NETL</a>. 
            The bed consists of 2.2M HDPE particles which are fluidized by 
            single-celled jet. The jet velocity is ramped linearly from zero, 
            exceeding 100m/s at breakthrough. The simulation was carried out on
            NETL's Joule2 HPC using 1600 CPUs. The animation was  
            The animation was rendered with 
            <a href="https://www.blender.org">Blender</a>.
            <p><p>

            Animation courtesy of Justin Weber &amp; William D. Fullmer,
            <a href="https://mfix.netl.doe.gov">NETL</a>, Morgantown WV.

            </p>
          </div>
          <div class="4u$ 12u(small)">
            <center>
              <iframe src="https://www.youtube.com/embed/imOd_9aib1g" 
               width="250" height="310" allowfullscreen="true" frameborder="0" 
               allow="accelerometer; autoplay; clipboard-write; encrypted-media; gyroscope; picture-in-picture"></iframe>
            </center>
          </div>
        </div>
        <p>


        <header class="major">
          <h2>Shameless Self-Promotion</h2>
          <p>Soft-sphere molecular dynamics simulation with heavily designed initial conditions</p>
        </header>
        <div class="row 50% uniform">
          <div class="4u 12u(small)">
            <center>
              <iframe src="https://widgets.figshare.com/articles/12971144/embed?show_title=0"
               width="250" height="310" allowfullscreen="true" frameborder="0"></iframe>
            </center>
          </div>
          <div class="8u$ 12u(small)">
            A fun MFIX-Exa simulation that shows the evolution of 100k elastic 
            particles in a fully periodic domain. Most of the domain is initially 
            static, except for a collection of particles which are given a thermal 
            (Maxwellian) speed in specific regions. Shock waves of momentum and 
            concentration emanate from the thermal regions as the granular gas 
            evolves to a homogeneous state. Animation shows particles colored by 
            velocity magnitude rendered by 
             <a href="https://ovito.org">Ovito</a>
            and played back in reverse.
            <p><p>

            Animation courtesy William D. Fullmer,
            <a href="https://mfix.netl.doe.gov">NETL</a>, Morgantown WV.

            </p>
          </div>
        </div>
        <p>


        <header class="major">
          <h2>Dilute Riser Flow</h2>
          <p>Falling clusters in the near-wall region</p>
@@ -79,7 +145,7 @@ END TEMPLATE-->
            climbs slowly on the left. We note that the domain is too short, as the streamer
            has interacted with its periodic image. Future work will simulate the full 18 m
            length of the riser.
            Simulation by MFiX-Exa develop (git hash ef171c9d) using 24 GPUs on NETL's Joule2 HPC.
            Simulation by MFIX-Exa develop (git hash ef171c9d) using 24 GPUs on NETL's Joule2 HPC.
            The animation rendered with <a href="https://www.blender.org">Blender</a>.
            <p><p>

@@ -117,7 +183,7 @@ END TEMPLATE-->
            erupt a the surface. <a href="https://ovito.org">Ovito</a> animation shows particles in
            the center 10 mm thick slice of the 190 mm diameter bed, colored by their vertical
            velocity ranging from -0.3 m/s (black) to 1.0 m/s (white).
            Simulation models 260K particles with MFiX-Exa 19.08 using 32 CPU cores.
            Simulation models 260K particles with MFIX-Exa 19.08 using 32 CPU cores.
            <p><p>

            Animation courtesy William D. Fullmer,
@@ -141,7 +207,7 @@ END TEMPLATE-->
            which reaches a (statistical) equilibrium between coarsening via finger merging and
            refinement via bubble splitting. Black and white <a href="https://ovito.org">ovito</a>
            animation shows particle location.
            Simulation performed with MFiX-Exa 19.08 238 16 CPU cores.
            Simulation performed with MFIX-Exa 19.08 238 16 CPU cores.
            <p><p>

            Animation courtesy of William D. Fullmer,
@@ -176,7 +242,7 @@ END TEMPLATE-->
            <a href="https://doi.org/10.1016/j.powtec.2018.06.049">left-right alternating single
            bubble pattern</a> can be achieved. The animation, rendered in
            <a href="https://www.blender.org">Blender</a>, shows time 10s to 15s played back at
            1/4x speed. Simulation considers 166k particles run with MFiX Exa 19.08 using 32 CPU
            1/4x speed. Simulation considers 166k particles run with MFIX-Exa 19.08 using 32 CPU
            cores.
            <p><p>

@@ -202,7 +268,7 @@ END TEMPLATE-->
            <a href="https://arxiv.org/abs/1809.04173">onset of clustering</a> causing the
            originally homogeneous state to develop spatial inhomogeneities. Animation shows
            particle velocity magnitude ranging from 0.0116 m/s (white) to 0 (black). Simulation run
            with MFiX Exa 19.08 using 16 CPU cores.
            with MFIX-Exa 19.08 using 16 CPU cores.
            <p><p>

            Animation courtesy of William D. Fullmer,
@@ -286,15 +352,15 @@ AMReX examples-->
    <footer id="footer">
      <div class="container">
  <section class="ack">
    MFiX-Exa is developed at
    MFIX-Exa is developed at
          <a href="http://www.lbl.gov/"> LBNL </a>, and
          <a href="https://www.netl.gov/"> NETL </a>
          as part of the MFiX-Exa Project in DOE's Exascale Computing Project.
          as part of the MFIX-Exa Project in DOE's Exascale Computing Project.
  </section>
  <div class="row">
    <div class="8u 12u$(medium)">
      <ul class="copyright">
        <li>&copy; MFiX-Exa development team. All rights reserved.</li>
        <li>&copy; MFIX-Exa development team. All rights reserved.</li>
        <li>Design: <a href="http://templated.co">TEMPLATED</a></li>
      </ul>
    </div>