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Operations & Professional Profile

Building Services professional and Associate Member of the Chartered Association of Building Engineers (ACABE), specialising in Mechanical & Electrical condition surveys, building performance analytics, statutory compliance, and data-driven estate lifecycle strategy.

1. Core Engineering Competencies

Applying quantitative methodologies to survey complex built environments, quantify parasitic energy losses, and deliver defensible capital renewal strategies for estate operators and property managers:

  • M&E Condition Surveys & Dilapidations: Comprehensive asset tagging, degradation state evaluation, CIBSE guide compliance, and risk-indexed replacement planning across public and commercial estates.
  • Energy Economics & Parasitic Loss Audits: Conducting active power dissipation measurements, ferromagnetic vs. solid-state lighting conversions, and empirical lifecycle payback modelling.
  • Statutory Compliance & Regulatory Transitions: Guiding estate transitions through UK RoHS phase-outs, Ecodesign regulations, Part L energy conservation compliance, and fire/building safety mandates.
  • Technical Research & Scientific Documentation: Authoring peer-reviewed engineering preprints and technical reports typeset in Typst with mathematically verified thermodynamic and electrical models.

2. Professional Background & Focus

Building Services & M&E Condition Assessor2023 — PRESENT
Commercial, Healthcare & Public Sector Estates

Executing site-wide mechanical, electrical, and public health asset condition appraisals. Producing multi-year forward maintenance registers (FMR), identifying high-risk legacy plant liabilities, and modelling decarbonisation pathways.

Engineering Author & Independent Researcher2024 — PRESENT
Academic Preprints & Technical Deep Dives

Formulating mathematical proofs, contact mechanics evaluations, and active circuit dissipation analyses spanning tribological lubrication regimes and building energy systems.

3. Engineering Methodology

Every assessment is grounded in empirical field data, peer-reviewed engineering frameworks, and transparent lifecycle calculations—eliminating subjective assumptions in favor of verifiable technical evidence.