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ju-liu authored Sep 4, 2023
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<p>My research is funded by the National Natural Science Foundation of China,
Guangdong-Hong Kong-Macau Joint Laboratory for Data-Driven Fluid Mechanics and
Engineering Applications, and the Southern University of Science and
Technology. I am very greatful for their support.</p>
Technology. I am very grateful for their support.</p>

<h2>Research Facilities</h2>
<p>My research group has access to the TianHe-2A cluster, located at the
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</p>

<h2>Current Team Members</h2>
<img class="img-responsive" alt="Group-2022-07-16" src="/img/group_2022_summer.jpeg">
<img class="img-responsive" alt="Group-2022-07-16" src="/img/group_2022_summer.jpeg">
<p> Click <a href="http://https://www.flickr.com/photos/194921644@N05/albums/72177720310934985">here</a> for more pictures.</p>

<p>Sun, Yu (Administrative Associate) Group organization.</p>

<p>Guan, Jiashen (PhD student in MAE, MS@SJTU, Fall 2021 - present) Computational inelasticity and higher-order methods.</p>
Expand All @@ -32,8 +34,6 @@ <h2>Current Team Members</h2>

<p>Sun, Yujie (PhD student in MAE, MS@SUSTech, Fall 2022 - present) Fluid-structure interaction.</p>

<p>Luo, Jia (Research Assistant, MS@HIT, Fall 2022 - present) Topology optimization.</p>

<p>Huang, Jiayi (MS student in MAE, BS@SJTU, Fall 2021 - present) Medical image segmentation and mesh generation.</p>

<p>Lu, Qingshuang (MS student in MAE, BS@SUSTech, Fall 2021 - present) Vascular fluid-structure interaction.</p>
Expand All @@ -42,9 +42,9 @@ <h2>Current Team Members</h2>

<p>Huang, Xuanming (MS student in MAE, BS@Wuhan University, Fall 2022 - present) Fluid-structure interaction</p>

<p>Zhao, Chongran (Undergraduate student in MAE, Fall 2021 - present) Growth and remodeling</p>
<p>Zhao, Chongran (MS student in MAE, BS@SUSTech, Fall 2021 - present) Growth and remodeling</p>

<p>Yue, Xinhai (Undergraduate student in MAE, Fall 2021 - present) Reduced-order modeling</p>
<p>Yue, Xinhai (MS student in MAE, BS@SUSTech, Fall 2021 - present) Reduced-order modeling</p>

<h2>Research Sampling</h2>
<h3>Patient-specific cardiovascular simulations</h3>
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<h3>FDA benchmark</h3>
<p>The US Food and Drug Administration (FDA) introduces a set of benchmark
problems for CFD code validation. The PERIGEE code has been tested at Reynolds
number 500, 3500, and 5000 using a mesh of 28 million linear tetrahedral
elements. The numerical results matches well with the experimental results.
numbers 500, 3500, and 5000 using a mesh of 28 million linear tetrahedral
elements. The numerical results match well with the experimental results.
The following figure shows a snapshot of the flow field at Reynolds number 500
(top), 3500 (middle), and 5000 (bottom).</p>
<img class="img-responsive" alt="Boiling" src="/img/FDA_benchmark.jpg">
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