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Technology-neutral systems integration for monitoring, digital transformation, and lifecycle intelligence.

Starmass field team inspecting active infrastructure
Services

Engineering evidence for infrastructure that cannot be left to assumption.

Starmass connects field investigation, structural assessment, environmental review, monitoring, and lifecycle planning across six infrastructure environments.

Heritage

Historic structures require engineering evidence that supports preservation without erasing the identity of the asset. Starmass combines structural assessment, environmental review, monitoring, and digital documentation for sensitive heritage environments.

Industrial

Industrial plants require condition intelligence that respects operating constraints, production continuity, worker safety, and material performance. Starmass evaluates both the symptom and the underlying structural cause.

Energy

Power, oil and gas, wind, solar, and transmission assets operate under dynamic conditions where loss, ground movement, corrosion, and connection integrity can affect safety and continuity.

Service portfolio

Assessment and monitoring shaped around the asset.

Each engagement begins with the operating environment, failure mode, and owner decision. The service scope then combines the disciplines needed to produce reliable, usable evidence.

Historic Jabal Abu Makroo heritage site
01
Service area

Heritage infrastructure

Historic structures require engineering evidence that supports preservation without erasing the identity of the asset. Starmass combines structural assessment, environmental review, monitoring, and digital documentation for sensitive heritage environments.

Structural analysis

Assess structural stability and integrity while creating digital records that can support engineering review and long-term archives.

Footfall analysis

Measure visitor movement and loading so public access can be managed without compromising vulnerable historic structures.

Environmental impact assessment

Review how nearby construction, development, and environmental conditions may affect a heritage asset.

Root-cause analysis

Identify the conditions behind deterioration, decay, movement, or damage before defining a remedial strategy.

Residual-life assessment

Evaluate current condition and remaining service life to support preservation, maintenance, and rehabilitation priorities.

Seismic vulnerability

Assess heritage structures in earthquake-prone areas and define evidence-led measures that improve long-term resilience.

Industrial cement silo monitored by Starmass
02
Service area

Industrial infrastructure

Industrial plants require condition intelligence that respects operating constraints, production continuity, worker safety, and material performance. Starmass evaluates both the symptom and the underlying structural cause.

Noise and vibration

Investigate machinery and structural vibration beyond routine operational checks to identify material and structural causes.

Corrosion damage

Assess the extent of corrosion and establish the evidence required to design a practical mitigation strategy.

Fatigue damage

Identify vulnerable structural sections and support monitoring strategies for existing plants or new facilities from the design stage.

Leak detection

Locate losses in water, oil and gas, and process networks to reduce waste, operating risk, and unaccounted material loss.

Residual-life assessment

Evaluate remaining service life and provide a stronger basis for preventive and proactive maintenance.

Pollution mapping

Map emissions and environmental conditions to support compliance, operational controls, and regulatory reporting.

Energy infrastructure and transmission assets
03
Service area

Energy infrastructure

Power, oil and gas, wind, solar, and transmission assets operate under dynamic conditions where loss, ground movement, corrosion, and connection integrity can affect safety and continuity.

Corrosion management

Combine corrosion prevention, cathodic protection, detection, and monitoring into a coordinated asset strategy.

Subsidence monitoring

Track ground and foundation movement affecting turbines, wind-energy foundations, transmission towers, and related support structures.

Leak detection

Identify loss across energy and process networks where unaccounted leakage has operational, environmental, and economic consequences.

Residual-life assessment

Assess the condition and remaining life of energy assets to inform intervention and maintenance planning.

Bolt-loosening monitoring

Monitor bolted connections exposed to dynamic or moving loads so connection integrity can be maintained over time.

Transportation infrastructure monitored for structural performance
04
Service area

Transportation infrastructure

Bridges, tunnels, rail systems, stations, and transport corridors require continuous awareness of movement, loading, deterioration, and substructure behaviour.

Corrosion monitoring

Track corrosion exposure and deterioration across structural and connection elements in transport assets.

Vibration assessment

Measure vibration from traffic, rail operations, equipment, construction, and surrounding activity.

Structural-failure detection

Monitor changes that may indicate loss of capacity, instability, or emerging structural distress.

Bearing damage

Assess bearing response and deterioration where movement transfer is critical to safe structural behaviour.

Scour monitoring

Track erosion and foundation exposure around bridge and water-crossing substructures.

Post-tension relaxation

Monitor changes in post-tensioned systems and the effect of long-term force loss on structural performance.

Substructure settlement

Measure differential or progressive settlement affecting foundations, track alignment, and structural serviceability.

Municipal water and public infrastructure
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Service area

Municipal infrastructure

Municipal owners need practical evidence across public buildings, water systems, civic structures, and shared environments where safety and service continuity affect large communities.

Dilapidated-structure assessment

Evaluate deteriorated public structures and define the monitoring or intervention required to manage risk.

Water stagnation

Identify water accumulation and drainage conditions that can accelerate deterioration or create public-health concerns.

Damage mitigation

Combine assessment and monitoring to support targeted, evidence-led measures that reduce further damage.

Fire-damage assessment

Evaluate structural and material conditions following fire exposure to inform recovery and safe-use decisions.

Contaminant mapping

Map environmental or material contamination so owners can prioritize containment, remediation, and compliance actions.

Institutional building infrastructure
06
Service area

Institutional infrastructure

Schools, hospitals, public platforms, and other institutional assets need clear evidence of envelope, structural, system, and occupant-related conditions.

Crack assessment

Document and monitor cracking to distinguish cosmetic change from structural or settlement-related behaviour.

Ingress investigation

Identify water or contaminant entry pathways and their effect on materials, structure, and internal environments.

Dampness monitoring

Track persistent moisture conditions that can affect durability, indoor quality, and long-term maintenance costs.

Utility damage

Assess damaged or disrupted utility systems and connect field evidence to repair and continuity planning.

Unequal settlement

Measure differential movement that may affect structural alignment, finishes, services, or safe use.

Public-platform vibration

Assess vibration and movement in high-use public areas where occupant comfort and structural performance both matter.

Service planning

Define the evidence your infrastructure decision needs.

Share the asset, operating concern, and project stage. The Starmass team can help shape an assessment or monitoring scope around the actual decision in front of you.

Tell us what needs attention.

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