Future Work Construct Manifold  Providing a user interface of modeling the way devices used to achieve the division of flows from a single source to many.

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Presentation transcript:

Future Work Construct Manifold  Providing a user interface of modeling the way devices used to achieve the division of flows from a single source to many outlets.  The source is usually termed headers and the outlets are usually termed manifolds. What is Manifold Flow Predictor?  Frontend  Drupal run on Apache  MySQL  Linux  Backend  Submitting jobs to HPC system through the resource manager (Portable Batch System), which automates CPU and resource scheduling Portal Structure  Let multiple authenticated users to use the super computing service atomically and securely without interfering others’ ongoing simulation process.  Let the customer retrieve their the information of their previous Manifold Flow projects according to their will. Project Goals Da Cai, Da Zhang ( Alphabetical order ) Figure 1: Sample of Simulation Result  ParaView is an open-source, multi-platform data analysis and visualization application  ParaView users can quickly build visualizations to analyze their data using qualitative and quantitative techniques. The data exploration can be done interactively in 3D or programmatically using ParaView's batch processing capabilities  Launch Paraview within Virtual Network Computing (VNC) session.  Visualize button  Start VNC server  Parse one-time-password, display number, hostname  Initialize VNC session  Launch Paraview with specified data set Figure 2: The First Step Figure 3: The Second Step Single sign-on  Top level web page protected by Ohio Supercomputer Center LDAP authentication  Privilege escalation occurs when Apache launches web application as login user  Different users should submit jobs as their IDs rather than as Apache user Other features  Produce graphs of residual values to allow users to determine whether the model has sufficiently converged  Allow user to specify either pressure or velocity for boundary conditions  Auto-calculate number of simulation steps A special thanks to Dr. David Hudak, Dr. Thomas Bitterman and Patricia Carey for guiding this project. Manifold Flow Predictor Introduction Visualize Manifold Acknowledgements Figure 5: View simulation result with Paraview  Input Manifold Geometry  Initialize a new manifold with unique Manifold name  Upload Walls, Inlets and Outlets files  Select measurement scale, such as mm, cm  Input Fluid Properties  Select fluid type, such as water, air  Fill in Kinematic viscosity and density  Boundary Conditions  Select flow regime, such as laminar, turbulent k-epsilon  Fill in Inlet Magnitude and Normalized outlet pressure Figure 4: The Third Step Significance The extrapolation of results from the laboratory to chemistry and industrial scale requires careful consideration of the design and process conditions. In order to do this, simulating the process in an accurate and visible way is very essential. This MFP provides a friendly user interface to do this simulation and return the simulative result when it is ready.