Loading docs/webroot/gallery.html +9 −9 Original line number Diff line number Diff line Loading @@ -68,7 +68,7 @@ END TEMPLATE--> <p>Qualitative Benchmarking: Ordered bubbling via periodic fluidization</p> </header> <div class="row 50% uniform"> <div class="4u 12u(small)" style="width: 250px"> <div class="4u 12u(small)"> <center> <iframe src="https://widgets.figshare.com/articles/9905168/embed?show_title=1" width="250" height="350" allowfullscreen="true" frameborder="0"></iframe> Loading Loading @@ -99,15 +99,9 @@ END TEMPLATE--> <p>Qualitative Benchmarking: Dissipation induced clustering instability</p> </header> <div class="row 50% uniform"> <div class="4u 12u(small)" style="width: 250px"> <center> <iframe src="https://widgets.figshare.com/articles/9901757/embed?show_title=1" width="250" height="350" allowfullscreen="true" frameborder="0"></iframe> </center> </div> <div class="8u$ 12u(small)"> <div class="8u 12u(small)"> A homogeneous cooling system (HCS) of size 256 x 256 x 8 particle diameters containing 50k particles (concentration ~5%) with initial thermal Reynolds number of 20, 50k particles (concentration ~5%) with an initial thermal Reynolds number of 20, restitution coefficient of 0.8 and particle-fluid density ratio of 1000. The system is significantly above the critical length scale for the <a href="https://arxiv.org/abs/1809.04173">onset of clustering</a> causing the Loading @@ -122,6 +116,12 @@ END TEMPLATE--> </p> </div> <div class="4u$ 12u(small)"> <center> <iframe src="https://widgets.figshare.com/articles/9901757/embed?show_title=1" width="250" height="350" allowfullscreen="true" frameborder="0"></iframe> </center> </div> </div> <p> Loading Loading
docs/webroot/gallery.html +9 −9 Original line number Diff line number Diff line Loading @@ -68,7 +68,7 @@ END TEMPLATE--> <p>Qualitative Benchmarking: Ordered bubbling via periodic fluidization</p> </header> <div class="row 50% uniform"> <div class="4u 12u(small)" style="width: 250px"> <div class="4u 12u(small)"> <center> <iframe src="https://widgets.figshare.com/articles/9905168/embed?show_title=1" width="250" height="350" allowfullscreen="true" frameborder="0"></iframe> Loading Loading @@ -99,15 +99,9 @@ END TEMPLATE--> <p>Qualitative Benchmarking: Dissipation induced clustering instability</p> </header> <div class="row 50% uniform"> <div class="4u 12u(small)" style="width: 250px"> <center> <iframe src="https://widgets.figshare.com/articles/9901757/embed?show_title=1" width="250" height="350" allowfullscreen="true" frameborder="0"></iframe> </center> </div> <div class="8u$ 12u(small)"> <div class="8u 12u(small)"> A homogeneous cooling system (HCS) of size 256 x 256 x 8 particle diameters containing 50k particles (concentration ~5%) with initial thermal Reynolds number of 20, 50k particles (concentration ~5%) with an initial thermal Reynolds number of 20, restitution coefficient of 0.8 and particle-fluid density ratio of 1000. The system is significantly above the critical length scale for the <a href="https://arxiv.org/abs/1809.04173">onset of clustering</a> causing the Loading @@ -122,6 +116,12 @@ END TEMPLATE--> </p> </div> <div class="4u$ 12u(small)"> <center> <iframe src="https://widgets.figshare.com/articles/9901757/embed?show_title=1" width="250" height="350" allowfullscreen="true" frameborder="0"></iframe> </center> </div> </div> <p> Loading