Section 5.3: 2D/3V Multi-species flow in MIKRA.Section 5.2: 2D/3V Single-species flow in Micro In-Plane Knudsen Radiometric Actuator (MIKRA).Section 4.13: 3D/3V Single-species Lid-driven cavity flow.Section 4.12: 2D/3V Single-species flow in short micro-channels.Section 4.11: 2D/3V Single-species flow around a micro-electronic chip.Section 4.10: 1D/3V Single-species Sod shock tube problem.Section 4.9: 1D/3V Single-species Couette flow for a range of Knudsen numbers.Section 4.8: 1D/3V Single-species spatial and temporal accuracy test for a range of Knudsen numbers.Section 4.7: 1D/3V Multi-species mass-diffusion.Section 4.6: 1D/3V Multi-species self-diffusion.Section 4.5: 1D/3V Multi-species normal shock.Section 4.4: 1D/3V Multi-species oscillatory Couette flow.Section 4.3: 1D/3V Multi-species Fourier heat transfer.Section 4.2: 1D/3V Multi-species Couette flow.Section 4.1: 1D/3V Multi-species Krook-Wu solution.The sub-section data is contained in the corresponding sub-folders. Each section number is assigned a folder. The research data contained in this repository is arranged by section number as per PhD thesis. The public release of research data ensures accountability. The work done under NSF projects are done by the people for the people. The incremental papers neither push the field forward nor add to our understanding of the reality.
Tecplot 360 purdue license code#
Moreover, public release of research data and code prevents researchers from writing incremental papers.
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No component of the proposal prohibits public release of research data. The project is open, and technologically not-sensitive. The work was supported by NSF CDS&E grant #1854829. This is a public repository contaning the research data generated by me during my PhD.