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Urgent Libya Oil & Gas Hiring 2026: 19+ Technical Positions Open!



Libya-Oil-Gas-Recruitment-Expansion-Opportunities


The global energy landscape is witnessing a dynamic resurgence, with North Africa re-emerging as a pivotal hub for crude oil production, natural gas exploration, and large-scale infrastructure restoration. At the heart of this recovery is Libya, home to Africa’s largest proven crude oil reserves. As national and international oil companies (NOCs and IOCs) aggressively step up field development, workover programs, and exploration endeavors across major hydrocarbon basins like the Sirte, Ghadames, and Murzuq basins, the demand for highly skilled, field-proven engineering and technical talent has reached an unprecedented high.

To support this ambitious operational ramp-up, major service providers and energy enterprises are expanding their workforce across all operational divisions. If you are an experienced oil and gas professional seeking high-impact international career moves, competitive compensation packages, and exposure to major onshore and offshore assets, this expansion drive presents an exceptional career milestone.

The global energy matrix is undergoing a pivotal transformation, and at the core of North Africa’s operational resurgence is Libya, home to Africa’s largest proven crude oil reserves and vast, under-explored natural gas basins. Navigating the modern energy sector requires an acute understanding of how reservoir characterization, high-pressure extraction, drilling optimization, and long-term asset integrity intersect to maintain high-yield production. As major exploration and production (E&P) conglomerates, national oil companies, and elite international service providers aggressively scale up operations across the Sirte, Ghadames, Murzuq, and Pelagian basins, the regional demand for highly skilled technical talent has reached a historic zenith. Professionals specializing in Libya oil and gas careers, upstream engineering jobs Libya, and offshore drilling recruitment 2026 are currently presented with a transformative career landscape defined by rapid technology integration, complex field interventions, and exceptional financial incentives. To fully appreciate the magnitude of this industrial expansion, one must examine the intricate mechanical, geological, and operational components that drive daily operations across Libya’s onshore oilfields and offshore marine platforms. Upstream engineering forms the bedrock of this entire ecosystem, serving as the bridge between subsurface geophysical interpretation and surface processing infrastructure. When field operators initiate new drilling programs or undertake comprehensive workover campaigns to rehabilitate mature, depleted reservoirs, every phase—from initial spudding to final well tie-in—demands absolute technical precision. Drilling operations, particularly in challenging high-pressure, high-temperature (HPHT) and deepwater offshore blocks, rely heavily on advanced directional drilling, Measurement While Drilling (MWD), and Logging While Drilling (LWD) technologies. Directional drillers, utilizing continuous Rotary Steerable Systems (RSS) and specialized downhole positive displacement motors, navigate narrow pay-zone windows to maximize reservoir contact, while MWD and LWD specialists transmit real-time telemetry, gamma ray profiles, resistivity metrics, and formation density dynamics to surface computers. This continuous stream of downhole telemetry ensures that the drill bit stays strictly within the target hydrocarbon-bearing formation, avoiding unwanted water zones or reactive shale beds that could lead to borehole collapse or differential sticking. Simultaneously, the integrity of the wellbore depends entirely on the expertise of mud engineers and drilling fluids specialists who design, mix, and maintain sophisticated water-based, oil-based, and synthetic-based fluid systems. These specialized drilling muds perform multi-functional roles essential to operational safety: controlling hydrostatic pressure to prevent catastrophic formation fluid influxes (kicks), carrying rock cuttings thousands of feet back to the surface, cooling and lubricating the rotating drill bit, and establishing a protective, low-permeability filter cake along the borehole wall to prevent fluid loss into porous rock matrices. Complementing fluid mechanics is the critical function of mud logging systems, where field geologists continuously extract cuttings from shale shakers, run chromatographic gas analyses ($C_1$ through $C_5$), and monitor real-time rate of penetration (ROP) trends to provide early warnings of gas kicks, overpressured formations, or stratigraphic shifts. Once a well reaches its total depth (TD), the operational focus transitions seamlessly to casing, cementing, and well completion procedures designed to establish long-term structural integrity and zonal isolation. Tubular Running Services (TRS) crews utilize high-torque automated casing running tools and computerized torque-turn monitoring systems to run heavy casing strings into the ground without damaging delicate premium threaded connections, ensuring that the structural conduit can withstand immense tensile, burst, and collapse pressures. Following casing installation, well cementing specialists mix and pump high-performance API slurry formulations incorporating specialized retarders, accelerators, fluid-loss additives, and lightweight microspheres under high pressure through cementing manifolds. Achieving a flawless primary cement job is paramount; it creates a continuous hydraulic seal between the outer casing wall and the formation rock, preventing cross-flow between subsurface aquifers and oil-bearing intervals, while structural casing support protects the string from tectonic shear forces. After cementing, well completion engineers take center stage to install single or dual-string production tubing, landing nipples, sliding sleeves, and hydraulically or mechanically set production packers. In friable or unconsolidated sandstone reservoirs common across North Africa, completion teams deploy sophisticated sand control systems—such as stand-alone wire-wrapped screens, gravel packing assemblies, and expandable sand screens—to prevent abrasive formation sand from entering the production stream and eroding surface chokes, valves, and flowlines. Where initial reservoir pressure is insufficient to lift crude oil to the surface, artificial lift engineers design and commission custom solutions, including high-capacity Electric Submersible Pumps (ESP), Progressive Cavity Pumps (PCP), sucker rod beam pumps, and continuous or intermittent gas lift systems. Operating these artificial lift mechanisms in high-gas-ratio or sand-laden wells requires meticulous monitoring of variable speed drives (VSD), downhole pressure-temperature sensors, and electrical frequency responses to prevent pump cavitation, gas locking, or electrical burnouts. Beyond initial construction and production setup, live-well intervention disciplines—namely slickline, electric wireline, coiled tubing, and hydraulic workover (HWO)—are indispensable for sustaining field deliverability across Libya’s vast hydrocarbon infrastructure. Slickline specialists execute rapid mechanical downhole interventions under full wellhead pressure, deploying slickline units, lubricators, and pressure control stacks to set and pull subsurface safety valves (SSSVs), change out gas lift valves, run gauge rings, and clear mechanical obstructions using specialized fishing tools. Electric wireline logging and perforating engineers handle high-voltage armor-clad cables to conduct open-hole and cased-hole wireline runs, including high-resolution Cement Bond Logs (CBL-VDL), pulse-neutron corrosion mapping, production logging tool (PLT) runs, and high-shot-density perforating runs that detonate shaped charges downhole to establish clean fluid conduits between the formation and the wellbore casing. When heavy-duty physical interventions or fluid circulation routines are required under live-well conditions, coiled tubing (CT) units and hydraulic workover (HWO) snubbing units step into the breach. Coiled tubing engineers push continuous steel tubing thousands of feet horizontally into live wells to perform deep sand cleanouts, scale milling, selective matrix acidizing, and high-volume nitrogen jetting to unload heavy completion fluids and kick-start natural well flow. Hydraulic workover units, equipped with multi-cylinder hydraulic jack assemblies and heavy slip bowls, allow snubbing crews to push or pull jointed drill pipe and production tubing under pressure without killing the well, delivering exceptional operational efficiency and cost savings compared to mobilizing conventional workover rigs. In tandem with downhole mechanics, well testing and reservoir stimulation teams perform crucial diagnostics and flow enhancement routines; surface well testing operators manage temporary multi-phase test separators, high-pressure choke manifolds, indirect line heaters, and zero-flaring measurement packages to record oil, gas, and water flow rates, collect high-purity PVT fluid samples, and evaluate reservoir permeability, skin damage, and initial pressure drawdown curves. When formation skin damage restricts natural flow, stimulation and hydraulic fracturing teams pump high-pressure matrix acid treatments—utilizing custom blends of hydrochloric and hydrofluoric acids—or execute proppant-laden hydraulic fracturing treatments to carve open high-conductivity fracture networks deep within tight formation rocks. Simultaneously, surface facilities, pipeline networks, and process plants require continuous engineering oversight to transport raw wellhead fluids safely from remote desert manifolds to coastal export terminals. Pipeline integrity engineers apply advanced cathodic protection systems, run intelligent inline inspection (ILI) pigs to detect internal or external pipe corrosion, and oversee hydrotesting routines, while facility process engineers optimize three-phase oil-water-gas separators, electrostatic desalters, triethylene glycol (TEG) gas dehydration units, and high-horsepower centrifugal gas compressors. Underpinning this entire, highly complex technical array are rigorous cross-disciplinary support structures: health, safety, and environment (HSE) supervisors enforce strict Permit-to-Work (PTW) protocols, job safety analyses (JSA), hydrogen sulfide ($H_2S$) containment safety, and environmental protection frameworks; project management teams coordinate massive Engineering, Procurement, Construction, and Commissioning (EPCC) deliverables; mechanical and electrical maintenance technicians overhaul massive gas turbines, high-voltage switchgear, and SCADA control networks; and geophysicists analyze 2D/3D seismic reflection surveys alongside petrophysicists to model structural fault networks and pinpoint untapped hydrocarbon prospects. Ultimately, the sweeping operational modernization taking place across Libya’s onshore desert assets and offshore Mediterranean platforms represents one of the most dynamic frontiers in global energy development today. For technical specialists, field engineers, and operational leaders aiming to elevate their professional standing, securing a role within this expanding industrial engine offers an unparalleled opportunity to master advanced oilfield practices, drive large-scale infrastructure restoration, and achieve substantial career growth on the international stage.

Below is an exhaustive breakdown of the technical disciplines currently undergoing rapid hiring, detailing the core responsibilities, operational expectations, and key qualifications required for each specialized domain.

Technical Disciplines & Career Opportunities

1. Slickline Operations Specialist

Slickline operations form the backbone of routine downhole intervention, well maintenance, and mechanical integrity management. In Libya's complex reservoir environments, slickline specialists execute critical mechanical tasks without killing the well, minimizing production downtime and maintaining pressure control.

  • Core Responsibilities:

    • Rigging up and rigging down slickline pressure control equipment (lubricators, BOPs, stuffing boxes) strictly adhering to API pressure-rating guidelines.

    • Executing downhole mechanical interventions, including setting and pulling subsurface safety valves (SSSVs), plugs, gas lift valves, and shifting sliding sleeves.

    • Running depth determination logs, gauge rings, swaging operations, and sand bailers to maintain clear wellbore tubulars.

    • Managing fishing operations using specialized mechanical slickline fishing tools to recover parted wires or dropped downhole equipment.

  • Required Expertise & Technical Profile:

    • Deep operational familiarity with standard slickline unit controls, hydraulic power packs, and high-tensile carbon or stainless steel wire.

    • Demonstrated competence in pressure containment up to 10,000–15,000 PSI in high-H2S and high-CO2 environments.

    • Strong background in depth-meter calibration, tension monitoring, and wellhead pressure management.

2. Electric Wireline Logging & Perforating Engineer

Wireline services provide real-time subsurface data acquisition and heavy-duty cased-hole/open-hole intervention capabilities essential for reservoir evaluation and initial well completions.

  • Core Responsibilities:

    • Performing complex open-hole formation evaluations, including triple-combo logging, nuclear magnetic resonance (NMR), and acoustic logging.

    • Executing cased-hole operations: Cement Bond Logging (CBL-VDL), corrosion evaluation, production logging (PLT), and high-shot-density wireline perforating runs.

    • Handling radioactive sources and explosive charges safely, strictly following international radiation safety and explosive handling standards.

    • Interpreting real-time logging data downhole to ensure target zone depth matching before executing perforating runs.

  • Required Expertise & Technical Profile:

    • Degree in Engineering or Applied Physics with field certification from major service providers.

    • Expertise in operating digital wireline winches, telemetry systems, and advanced downhole sensors.

    • Valid certifications in explosive safety and hazardous material handling.

3. Well Cementing Service Specialist

Proper oilfield cementing is vital to hydraulic isolation, structural casing support, and long-term well integrity. Cementing operations in Libyan fields range from primary casing cementing to critical squeeze jobs in depleted reservoirs.

  • Core Responsibilities:

    • Designing, testing, and executing primary, secondary, and remediation cementing jobs using automated continuous mixing units.

    • Calculating precise slurry volumes, displacement fluids, retarder/accelerator additive ratios, and hydrostatic head dynamics.

    • Operating high-pressure triplex pumping equipment, bulk handling systems, and liquid additive metering systems on location.

    • Executing critical squeeze cementing operations to shut off unwanted gas or water production zones.

  • Required Expertise & Technical Profile:

    • Profound understanding of API Spec 10 slurry testing protocols, rheology control, fluid loss additives, and compressive strength development.

    • Experience running dual-pot cementing units, recirculating mixers, and computer-controlled batch mixers.

4. Hydraulic Fracturing, Stimulation & Acidizing (Frac / Stimulation / BSP)

With many mature Libyan fields requiring enhanced recovery techniques and new tight formations coming online, well stimulation via matrix acidizing, hydraulic fracturing, and Barefoot Stimulation Packages (BSP) is critical to commercial viability.

  • Core Responsibilities:

    • Managing high-pressure stimulation jobs, including matrix acid treatments, proppant-based hydraulic fracturing, and nitrogen-energized fluids.

    • Operating high-horsepower fracturing pumps, chemical additive units, proppant blenders, and high-pressure treatment manifolds.

    • Evaluating formation compatibility, fluid viscosity, breaker schedules, and proppant transport mechanisms.

    • Executing acid wash and matrix stimulation to eliminate skin damage caused by drilling fluid filtrate in carbonate formations.

  • Required Expertise & Technical Profile:

    • Demonstrated experience in high-rate, high-pressure (HPHT) pumping operations.

    • Comprehensive knowledge of acid-handling safety (HCl, HF combinations), corrosion inhibitors, and environmental containment protocols.

5. Coiled Tubing (CT) Field Operations

Coiled Tubing provides continuous-conduit intervention into live wells under full wellhead pressure, serving as a primary platform for cleanouts, acid placement, nitrogen lifts, and downhole motor work.

  • Core Responsibilities:

    • Operating CT injector heads, reel trailers, power packs, and high-pressure stripper assemblies during live-well operations.

    • Executing downhole sand cleanouts, scale removal, nitrogen jetting for well unload, and milling operations using downhole motors.

    • Monitoring tubing fatigue life, diametral expansion, and real-time ovality metrics using computerized tubing management software.

    • Maintaining multi-barrier well control systems during complex deep-well intervention runs.

  • Required Expertise & Technical Profile:

    • Practical mastery of CT fatigue modeling software, forces-and-stresses calculations, and downhole fluid hydraulics.

    • Valid Well Control Certification (IWCF Level 3 or 4 / IADC WellSharp) tailored to intervention operations.

6. Hydraulic Workover (HWO) & Heavy Well Intervention

Hydraulic Workover (HWO) units offer an efficient, small-footprint alternative to conventional workover rigs, capable of performing heavy pipe snubbing operations under pressure.

  • Core Responsibilities:

    • Rigging up and operating hydraulic jack assemblies, slip bowls, work platforms, and power packs for snubbing heavy drill pipe or tubing strings under live-well conditions.

    • Executing structural workovers, casing repairs, packer retrieval, and deep-well completions without killing the wellbore.

    • Managing force calculations during transitions between pipe-heavy and pipe-light operational regimes.

    • Maintaining stringent pressure containment protocol involving multi-ram BOP stacks and snubbing annulars.

  • Required Expertise & Technical Profile:

    • Hands-on expertise as an HWO/Snubbing operator or supervisor with extensive experience on multi-cylinder hydraulic units.

    • Profound understanding of wellbore mechanics, drag modeling, and emergency disconnect sequences.

7. Well Completion Engineer & Field Technician

The transition from a freshly drilled wellbore to an active production asset relies completely on robust completion engineering designed for optimal flow assurance and long-term structural integrity.

  • Core Responsibilities:

    • Running and setting single/dual-string production packers, sliding sleeves, landing nipples, and subsurface safety valves.

    • Executing sand-control completions, including stand-alone screens, gravel packing, and expandable sand screens in friable sandstones.

    • Assisting in artificial lift completions, including installing downhole Electric Submersible Pump (ESP) assemblies or gas lift mandrels.

    • Conducting pressure testing, fluid displacement to clear brine, and initial well bring-on operations.

  • Required Expertise & Technical Profile:

    • Engineering degree or equivalent practical completion experience with major oilfield OEM equipment (e.g., Baker Hughes, Halliburton, SLB).

    • Mastery of metallurgy selection (L80, 13Cr, Duplex) based on reservoir gas composition and fluid aggressiveness.

8. Surface & Subsurface Well Testing

Well testing operations provide the essential hydrodynamic data needed to assess reservoir pressure, flow rates, permeability, and long-term production potential.

  • Core Responsibilities:

    • Operating temporary surface production facilities: test separators, surface test trees, choke manifolds, heater treaters, and oil/gas burners.

    • Collecting high-purity bottomhole fluid samples (PVT sampling) and surface oil/gas samples under stabilized flowing conditions.

    • Managing surface flow metering equipment, oil-water-gas separation, and zero-flaring measurement campaigns.

    • Executing drill stem tests (DST) on exploration and appraisal wells to confirm initial deliverability.

  • Required Expertise & Technical Profile:

    • Extensive experience with high-pressure, high-rate multi-phase test separators and automated data acquisition platforms.

    • Strong background in field laboratory procedures for BS&W, gas chromatography, and water salinity analysis.

9. Mud Engineering / Drilling Fluids Specialist

Drilling fluids are the lifeblood of wellbore construction. The mud engineer maintains fluid rheology, controls downhole pressures, prevents formation damage, and ensures borehole stability.

  • Core Responsibilities:

    • Designing, testing, and maintaining water-based (WBM), oil-based (OBM), and synthetic-based muds (SBM) according to well specs.

    • Conducting daily API fluid testing: density (mud weight), funnel viscosity, plastic viscosity, yield point, fluid loss, and electrical stability.

    • Managing solids control equipment (shale shakers, desilters, desanders, centrifuges) to maximize mud retention and performance.

    • Mitigating downhole fluid challenges such as severe lost circulation, shale swelling, differential sticking, and H2S influx.

  • Required Expertise & Technical Profile:

    • Certified Mud Engineer with formal laboratory and field school accreditation.

    • In-depth familiarity with drilling fluid additives, polymers, barite weighing agents, and environmental compliance parameters.

10. Mud Logging Systems & Data Engineer

Mud logging serves as the early warning system for well control, formation geology, and real-time drill-string performance analytics.

  • Core Responsibilities:

    • Capturing and analyzing drill cuttings at set intervals to determine rock lithology, hydrocarbon shows, and stratigraphic markers.

    • Monitoring total gas, chromatographic gas analysis ($C_1$ to $C_5$), and degasser equipment continuously during penetration.

    • Tracking engineering variables: Rate of Penetration (ROP), Weight on Bit (WOB), Torque, Standpipe Pressure, and Mud Flow Rates.

    • Providing immediate notification to well site supervisors regarding mud pit volume anomalies, gas kick signatures, or formation tops.

  • Required Expertise & Technical Profile:

    • Degree in Geology, Petroleum Engineering, or Earth Sciences.

    • Proficiency with advanced mud logging data acquisition software, gas chromatography calibration, and mud logging sensors.

11. Directional Drilling & MWD/LWD Engineering

Precise well placement in complex geological targets relies on expert directional drillers and Measurement While Drilling / Logging While Drilling specialists.

  • Core Responsibilities:

    • Orienting downhole steerable mud motors and Rotary Steerable Systems (RSS) to drill directional, horizontal, and multilateral well trajectories.

    • Managing MWD telemetry systems (positive pulse, electromagnetic) to transmit real-time inclination, azimuth, and toolface data.

    • Interpreting LWD gamma ray, resistivity, and density-neutron data to geosteer horizontal wells within narrow pay-zone windows.

    • Performing anti-collision calculations and survey management to avoid close-approach hazards with existing wellbores.

  • Required Expertise & Technical Profile:

    • Advanced mastery of directional drilling software (e.g., Compass, Landmark) and steerable motor assembly design.

    • Proven track record in drilling complex long-reach horizontal or high-angle directional wells.

12. Onshore & Offshore Drilling Crew Positions

A high-performing drilling rig requires cohesive, highly disciplined, safety-oriented deck and floor crews to maintain high ROP while preserving operational integrity.

PositionPrimary Operational DomainKey Focus Area
Toolpusher / Rig Sup.Rig-wide ManagementRig operations, contractor oversight, safety compliance
DrillerRig Floor & ConsoleDrawworks control, iron roughneck, top drive management
Assistant DrillerRig Floor SupervisionMud system monitoring, crew supervision, tubular tally
DerrickmanMud Pumps & Derrick TowerPipe handling in derrick, mud pump maintenance
Floorhands / RoughnecksRig Floor OperationsTubular tripping, power tong handling, rig maintenance
  • Required Expertise & Technical Profile:

    • Valid IWCF / IADC Well Control certification for superintendents, toolpushers, and drillers.

    • Extensive experience on high-horsepower land rigs (1500HP–3000HP) or offshore jack-up assets.

13. Tubular Running Services (TRS) Specialist

Casing and tubing installation represents a major capital investment; TRS personnel ensure that thread integrity and torque values meet manufacturer specifications.

  • Core Responsibilities:

    • Operating power casing tongs, hydraulic power units, computer-controlled torque-turn monitoring systems, and elevator/spider systems.

    • Running premium threaded connections (e.g., VAM, Tenaris, Hydril) with zero thread damage or cross-threading.

    • Conducting pre-job inspection of tubular threads, drift checking, and applying specified thread compound (pipe dope).

    • Maintaining precise torque vs. turns graphical data logs to guarantee API/Premium connection structural makeup.

  • Required Expertise & Technical Profile:

    • Certified operator for automated casing running tools (CRT) and hydraulic power tongs.

    • In-depth familiarity with thread profile handling, torque-turn computer monitoring, and pipe handling equipment safety.

14. Artificial Lift & Production Specialists

To offset natural reservoir pressure decline, artificial lift systems are widely implemented across Libya’s onshore oil fields to maintain target production rates.

  • Core Responsibilities:

    • Sizing, installing, commissioning, and troubleshooting Electric Submersible Pumps (ESP), Progressive Cavity Pumps (PCP), and Sucker Rod Pumps.

    • Optimizing gas lift systems, including configuring surface injection chokes, gas lift valves, and mandrel spacing profiles.

    • Monitoring surface variable speed drives (VSD), downhole sensor parameters, motor temperature, and current frequency trends.

    • Diagnosing downhole pump failures using fluid level acoustic surveys, dynamometer cards, and amp-chart interpretation.

  • Required Expertise & Technical Profile:

    • Engineering diploma/degree with dedicated OEM training on ESP/Gas Lift design and optimization platforms.

    • Demonstrated history of maximizing run life and pump electrical efficiencies in harsh, high-gas-ratio oil wells.

15. Pipeline & Process Facilities Engineering

Transporting crude oil and natural gas from isolated desert production manifolds to coastal export terminals requires robust pipeline systems and central processing facilities (CPF).

  • Core Responsibilities:

    • Overseeing the operation, hydrotesting, pigging (intelligent/cleaning), and maintenance of cross-country oil/gas trunk lines.

    • Managing process units: 3-phase crude separators, electrostatic desalters, gas dehydration units (TEG), and gas compression stations.

    • Executing pipeline integrity management plans, including cathodic protection monitoring and wall-thickness ultrasonic testing.

    • Conducting process debottlenecking, flare system optimization, and relief valve maintenance routines.

  • Required Expertise & Technical Profile:

    • Degree in Mechanical, Chemical, or Process Engineering.

    • Thorough familiarity with ASME B31.4/B31.8 standards, API 510/570 inspection codes, and hazardous area classification routines.

16. Asset Mechanical & Electrical Maintenance

Uninterrupted field operation in remote locations depends entirely on rigorous preventive and predictive maintenance strategies executed across mechanical and electrical assets.

  • Core Responsibilities:

    • Overhauling and servicing heavy rotating equipment: Solar/GE gas turbines, high-capacity centrifugal pumps, and power generators.

    • Maintaining high-voltage and medium-voltage switchgear, power distribution transformers, and motorized valves.

    • Calibrating field instrumentation, safety shutdown systems (ESD), SCADA networks, and programmable logic controllers (PLCs).

    • Executing Vibration Analysis, Thermography, and Lube Oil Sampling programs to predict component wear before failure occurs.

  • Required Expertise & Technical Profile:

    • Degree or Higher National Diploma (HND) in Mechanical, Electrical, or Mechatronics Engineering.

    • Hands-on maintenance experience within harsh high-ambient-temperature operational settings.

17. Health, Safety, and Environment (HSE) Leadership

Operating in remote oilfields requires unwavering compliance with modern health, safety, and environmental protection guidelines to maintain safe workplaces.

  • Core Responsibilities:

    • Developing, implementing, and auditing job safety analyses (JSA), permits to work (PTW), management of change (MOC), and risk assessments.

    • Managing site emergency response teams (ERT), H2S containment protocols, blowout contingency plans, and fire protection systems.

    • Enforcing environmental compliance, waste management protocols, flaring reductions, and spill response procedures.

    • Conducting safety incident investigations using Root Cause Analysis (RCA) techniques and delivering safety toolbox talks.

  • Required Expertise & Technical Profile:

    • NEBOSH International General Certificate (IGC) or NEBOSH Diploma, OSHA, or NVQ Level 5 in Occupational Health & Safety.

    • Proven experience leading HSE initiatives on high-risk upstream drilling, workover, or processing installations.

18. Project Management & EPC Execution

Large-scale infrastructure upgrades, field development projects, and facilities tie-ins require structured project management to ensure projects stay on schedule, within scope, and on budget.

  • Core Responsibilities:

    • Managing Engineering, Procurement, Construction, and Commissioning (EPCC) deliverables for field development projects.

    • Controlling project schedules, CAPEX budgets, contractor management, and multi-disciplinary engineering interfaces.

    • Applying formal change management procedures to address supply chain adjustments and site variations.

    • Interfacing with national oil corporation representatives, third-party inspection agencies, and local stakeholders.

  • Required Expertise & Technical Profile:

    • Project Management Professional (PMP) certification or equivalent formal chartership (PRINCE2, CENG).

    • Track record of successfully delivering oil & gas facilities, pipeline networks, or rig overhaul projects in North Africa.

19. Geophysics, Seismic Data & Subsurface Geology

Unlocking residual oil reserves and mapping untested structural traps requires cutting-edge geophysical processing and detailed reservoir characterization.

  • Core Responsibilities:

    • Planning, acquiring, and processing 2D/3D seismic reflection surveys across complex desert and marine block concessions.

    • Executing structural and stratigraphic seismic interpretation to construct static geological reservoir models.

    • Integrating core analysis, petrophysical logs, well test results, and seismic attributes to identify undrilled pay zones.

    • Interpreting structural fault networks to optimize well paths and mitigate drilling hazards like lost circulation zones.

  • Required Expertise & Technical Profile:

    • Master’s Degree or Ph.D. in Geology, Geophysics, or Petroleum Geoscience.

    • Advanced mastery of industry-standard subsurface interpretation suites (e.g., Petrel, Kingdom, Landmark OpenWorks).

Why Join the Expansion Drive in Libya?

Working within Libya’s expanding oil and gas infrastructure offers unique professional advantages for energy experts:

  • Accelerated Professional Exposure: Tackle diverse field challenges across long-producing fields and new exploration blocks.

  • Competitive Compensation: Earn attractive international day-rates or rotational packages commensurate with technical expertise and field conditions.

  • Rotational Flexibility: Enjoy structured work rotations (e.g., 28/28 or 35/35, 6/2 weeks) paired with international travel coverage.

  • Impactful Leadership: Play a central role in restoring and modernizing crucial energy infrastructure driving regional economic growth.

Application Guidance & Submission Instructions

If you hold a proven track record, relevant technical certifications, and the drive to contribute to complex field operations across Libya, the recruitment team invites your application.

📧 How to Apply:

Submit your updated, detailed Curriculum Vitae (CV) directly to the central talent acquisition desk:

Direct Application Email: arujbani@getglobalgroup.com

  • Recommended Subject Line Format: [Position Title] – [Years of Experience] – Application for Libya Operations (Example: Senior Slickline Supervisor – 12 Years – Application for Libya Operations)

  • Document Format: Ensure your CV clearly outlines your specific equipment experience, certifications (IWCF, NEBOSH, etc.), and valid passport availability.

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