GSET Battery Thermal Conductivity Research

Kevin's Governor's School research project on anisotropic thermal conductivity in lithium-ion polymer batteries, later published in the 2024 IEEE MIT Undergraduate Research Technology Conference proceedings.

What it is

The project measured anisotropic thermal conductivity in lithium-ion polymer batteries, comparing through-plane and in-plane thermal conductivity. The IEEE abstract reports a custom setup with a Wheatstone Bridge, current source maintenance circuits, and a flexible heater. Results were 1.57 W/m K through-plane and 24.88 W/m K in-plane, showing that the layered through-plane structure significantly reduces thermal conductivity. Source: raw/articles/ieee-gset-battery-thermal-conductivity-2026-06-25.md

The GitHub repo stores Python/Matplotlib environments for the GSET research and is tagged with LabVIEW, Matplotlib, Python, batteries, data visualization, research, and thermal conductivity. Source: raw/github/kevin-repos-2026-06-25.json

Research significance

The paper's applied point is battery safety and thermal management. Lithium-ion cells can face thermal runaway risk if thermal behavior is not managed correctly. The measured anisotropy implies that cooling/heating strategies should prioritize the in-plane dimension where thermal conductivity is highest. Source: raw/articles/ieee-gset-battery-thermal-conductivity-2026-06-25.md

Why it matters in Kevin's profile

This is the best proof of physical-science research range in Kevin's project portfolio. It is not an agent or web project; it shows experimental design, instrumentation, data analysis, and publication through IEEE URTC. It should sit next to HD Transcribe and CoTCodec when summarizing research breadth. Source: raw/articles/ieee-gset-battery-thermal-conductivity-2026-06-25.md; raw/github/kevin-repos-2026-06-25.json


Timeline