Introduction

Incon was engaged to provide structural assessment and re-assessment services for a rooftop solar installation at Super Centre Tuggerah, New South Wales. The project involved evaluating the capacity of an existing commercial roof structure to support solar infrastructure and associated equipment.

Project
description

The scope of works included targeted structural assessments and verification of multiple components associated with the solar installation, including:

  •  Structural re-assessment of Roof Zones to determine available load capacity
  • Design and verification of inverter station support systems mounted on the roof
  • Assessment of pallet loading conditions for installation and maintenance scenarios
  • Review of existing roof framing, including girts and purlins supporting additional loads
The inverter station support system involved steel framing (Unistrut and cantilever brackets) fixed to the existing roof structure, transferring loads through girts and primary framing elements.


Challenge

The project required careful engineering consideration due to:

  • Existing structure constraints, with limited reserve capacity for additional solar and equipment loads
  • Localised loading from inverter stations, introducing concentrated loads onto roof members
  • Variability across roof zones, requiring targeted reassessment rather than uniform assumptions
  • Temporary and operational loads, including pallet loading during installation and maintenance
  • Serviceability considerations, ensuring additional loads do not adversely impact deflection-sensitive elements
  • Limited availability of original structural documentation, requiring reliance on available data and assumptions


Solution

We delivered a practical and risk-managed engineering solution through:

  • Detailed structural re-assessment of Roof Zones, identifying available capacity and constraints for solar installation
  • Engineering design and verification of inverter support framing systems, ensuring effective load transfer to existing structural elements
  • Assessment of pallet loading scenarios, confirming safe load limits during construction and maintenance activities
  • Verification of girt and purlin capacities, ensuring adequacy under combined dead, imposed, and wind loading conditions
  • Development of fixing strategies (screw connections and bracket systems) to minimise structural impact while maintaining performance
  • Delivery of structural certification and calculation packages, supporting installation and compliance


Key Engineering Highlights


  • Targeted roof zone reassessment for load optimisation
  • Integration of inverter station structural support systems
  • Assessment of temporary pallet loading conditions
  • Design based on existing girt and purlin capacity verification
  • Delivery of certified structural assessment under AS1170 standards


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