Translate policy on underwater inspection robotics into procedures that hold up under day-to-day pressure.
Underwater Robotics Techniques in Offshore Inspection and Maintenance
An applied course in underwater inspection robotics built around the decisions practitioners actually face.
Course Overview
Deferred maintenance and deferred decisions on underwater inspection robotics both accrue interest. In energy operations the cost of getting this strand of energy and hydrocarbon operations wrong is measured in downtime, and sometimes in lives. Moving this part of energy and hydrocarbon operations from written policy into daily practice is not achieved by a single decision. Sessions alternate between guided analysis of underwater inspection robotics and supervised application. Across sectors, teams that rehearse the wider energy and hydrocarbon operations agenda outperform teams that only plan it. Participants gain a realistic view of what the energy and hydrocarbon operations capability costs and what it returns. The programme is built to be used, and every section of underwater inspection robotics it covers ends in something applicable. The level assumes working familiarity with the operating asset but no prior formal training in this part of energy and hydrocarbon operations. Participants leave with a plan for the wider energy and hydrocarbon operations agenda sized to what their organisation can realistically absorb.
Expected Learning Outcomes
Estimate what underwater inspection robotics costs to run properly, and what is lost when it is not.
Integrate underwater inspection robotics with the wider process safety management system.
Build the competence and certification matrix for staff working on underwater inspection robotics.
Adapt recognised practice on underwater inspection robotics to local constraints without hollowing it out.
Plan the decommissioning or life-extension decision for assets involved in underwater inspection robotics.
Prepare the technical case for capital investment in underwater inspection robotics.
Who Should Attend
Project engineers delivering capital work involving underwater inspection robotics.
Graduate and newly assigned engineers taking responsibility for underwater inspection robotics.
Managers of multi-site operations seeking consistency in underwater inspection robotics.
Facility and plant managers accountable for underwater inspection robotics.
Managers with direct responsibility for underwater inspection robotics within the operating asset.
Operations and production engineers responsible for underwater inspection robotics.
Course Modules
Underwater inspection robotics: contracts, contractors and service delivery
2 sessions · 8 pointsSession 1Fitting underwater inspection robotics into the shutdown plan without extending it
- Define the safe operating envelope for underwater inspection robotics and how deviations are detected.
- Identify the failure modes of underwater inspection robotics with the highest consequence.
- Check that management of change is applied to every modification of underwater inspection robotics.
- Model the economics of underwater inspection robotics at low, base and high price cases.
Session 2What the last incident involving underwater inspection robotics should have taught us
- Define the trigger that would require underwater inspection robotics to be redesigned.
- Rehearse the briefing on underwater inspection robotics that would follow an incident.
- Verify emergency response arrangements cover the scenarios underwater inspection robotics can create.
- Plan the sequence in which improvements to underwater inspection robotics will be introduced.
Underwater inspection robotics: competence, certification and handover
2 sessions · 8 pointsSession 1Keeping underwater inspection robotics alive after the initial push
- Distinguish symptoms from causes when underwater inspection robotics underperforms.
- Confirm the inspection interval for underwater inspection robotics is based on condition, not habit.
- Agree what will be standardised in underwater inspection robotics and what will not.
- Verify isolation points for underwater inspection robotics are proven and documented.
Session 2Building the investment case for underwater inspection robotics that finance will accept
- Agree the indicators that will show whether underwater inspection robotics is improving.
- Estimate the production loss associated with unplanned downtime of underwater inspection robotics.
- Assess the emissions and discharge attributable to underwater inspection robotics.
- Review the instrumentation on underwater inspection robotics for coverage gaps.
Underwater inspection robotics: economics, price exposure and investment case
2 sessions · 8 pointsSession 1Getting other functions to support underwater inspection robotics
- Rank the weaknesses in underwater inspection robotics by consequence rather than by ease of fixing.
- Identify the data already collected that bears on underwater inspection robotics.
- Establish the alarm philosophy applying to underwater inspection robotics and remove nuisance alarms.
- Review incident and near-miss history involving underwater inspection robotics.
Session 2Holding contractors on underwater inspection robotics to the standard you hold yourself
- Confirm handover documentation for underwater inspection robotics is complete and current.
- Decide what will be stopped to create capacity for underwater inspection robotics.
- Arrange the handover of underwater inspection robotics so capability survives staff changes.
- Confirm contractor competence records for anyone working on underwater inspection robotics.
Underwater inspection robotics: integrity, inspection and condition assessment
2 sessions · 8 pointsSession 1Reviewing underwater inspection robotics when nothing has gone wrong
- Write down the assumptions underpinning the approach to underwater inspection robotics.
- Identify critical spares for underwater inspection robotics and confirm lead times.
- Check that records of underwater inspection robotics answer the questions likely to be asked.
- Confirm that lessons from underwater inspection robotics are shared beyond the team that learned them.
Session 2The environmental exposure created by underwater inspection robotics
- Establish who is informed, consulted and accountable in underwater inspection robotics.
- Map the handovers in underwater inspection robotics between functions and secure them.
- Confirm that contractual obligations around underwater inspection robotics are understood.
- Identify where judgement in underwater inspection robotics is legitimate and where it is not.
Choose the package that suits you
Silver Package
At least 3 people
- Workshop or Program Participation
- Airport Transfers
- Customized Badge
- Expert Mentorship (Private Sessions)
- Supervision & Secretarial Services
- Accredited Certificate of Participation
- Complete Training Kit
- Coffee Break
- Closing Ceremony
Gold Package
At least 3 people
- 5-night stay in a 5-star hotel
- Workshop or Program Participation
- Airport Transfers
- Customized Badge
- Expert Mentorship (Private Sessions)
- Supervision & Secretarial Services
- Accredited Certificate of Participation
- Complete Training Kit
- Coffee Break
- Closing Ceremony
Complete your registration
We will contact you within one business day to confirm.