Discretizing continuous manifolds into deterministic C++ architectures.
I am an independent computational researcher and systems engineer. My work explores the synthesis of moving frame kinematics, conservation-law numerical field solvers, and agent-driven engineering workflows.
// Research & Engineering Pillars
Kinematic Curves & Surfaces
Constructing rotation-minimizing frames (RMF), sweep/loft manifolds, and non-singular offset geometry for robust boundary representations.
Continuous Field Simulation
Formulating conservative high-order spatial discretizations, phase-space transport, and conservative numerical methods for continuous physical fields.
Agentic Development Flywheel
Architecting headless agent harnesses, mutation fuzzing for geometric edge cases, and automated regression pipelines for zero-overhead velocity.
// Featured Artifacts & Codebases
Clean-room / MIT LicensedMoving frame kinematics and profile deformation kernel using Double Reflection RMF and Lie-algebraic rotation optimization.
High-resolution finite-volume benchmarks for hyperbolic conservation laws, complete with ParaView pipeline exports and VTK writers.
Advisory & Independent Consulting
I provide technical evaluation, architecture reviews, and computational advisory in discrete geometry, continuous field solvers, and agentic engineering infrastructure.