Risk Engineering & Assurance
iDRISK risk engineering delivers consequence-focused, defensible assessments that identify critical controls, verify their effectiveness, and provide risk-ranked action plans for high-hazard industrial facilities.

Risk engineering at iDRISK goes beyond generic risk matrices. We apply bowtie methodology, consequence modelling, and systematic control verification to understand how credible hazard scenarios unfold — and what controls genuinely prevent or mitigate them. Our risk engineering practice supports Major Hazard Facilities (MHF), SEPP 33 land use planning submissions, process hazard analyses, and corporate assurance programs.
Critical controls not formally identified, owned, or verified in practice
Risk assessments completed as procedural exercises rather than engineering analysis
MHF safety case documentation failing to demonstrate SFAIRP compliance
SEPP 33 submissions lacking credible consequence and risk quantification
Bow-tie barriers not maintained or tested to demonstrate effectiveness
Major Hazard Facilities in Australia are regulated under state Work Health and Safety Regulations and require a formal Safety Case demonstrating SFAIRP risk management. SEPP 33 in Victoria requires quantitative risk assessment (QRA) for land use planning near hazardous industries.
"iDRISK risk engineers combine formal risk engineering methodology with direct operational experience in high-hazard environments. We know what credible looks like — and what regulators and insurers expect from a rigorous risk assessment."
Commission an independent risk engineering review for your facility.
