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Coryton BESS Development Project
Home | Projects | Coryton BESS Development Project
Civil Engineering

Coryton BESS Development Project

Client

Green BESS Development Services

WCS_Coryton BESS Development Project

The Challenge

Since early 2024, Arthian has supported our client, Green BESS Development Services (GBDS), on the substantial works required to facilitate the installation of a new 11-22MW (tbc) Battery Energy Storage System (BESS) adjacent to upper-tier COMAH sites. Our involvement is ongoing and includes a wide range of services relevant to our SPEN framework appointment.

The Solution

The Arthian team delivered a full scope of project work for this client, covering multiple phases from demolition to hazard reviews.


1. Demolition of Storage Tanks

  • Preparation of a Pre-Construction Information (PCI) package for tendering to demolition contractors, including site walkover, reconnaissance, and engineering review of existing site infrastructure.

  • Production of demolition drawings highlighting scope, access, and laydown requirements.

  • Swept path analysis for site access planning.

  • Detailed Demolition Scope of Works, covering:

    • Defined scope and extent of demolition.

    • Proposed construction sequence.

    • Client safety and site protocols.

    • Required documentation and contractor deliverables.

    • Isolation and clean-down requirements.

  • Coordination of site visit with demolition contractor to refine demolition strategy and outline programme.


2. New Workshop Building

RIBA Stage 1 – Preparation & Briefing

  • Develop and refine GBDS’s requirements with stakeholders.

  • Assess availability and capacity of existing utilities (drainage, power, telecoms, water).

  • Deliver a RIBA Stage 1 Briefing Report outlining building function and design intent.

  • Collate existing site data and produce PCI documentation for the new build.

RIBA Stage 2 – Concept Design

  • Architectural concept and layout design based on Stage 1 findings.

  • Development of a temporary workshop scheme.

  • Produce a Basis of Design report for civil and structural elements.

  • Civil and structural scheme design, including:

    • Blast-resistant structural performance.

    • Overhead gantry crane integration.

    • External works (drainage, hardstanding, road tie-ins).

    • Re-use of existing foundations/pile caps where feasible.

  • Generate scheme-level drawings and specifications.

  • Designer’s Risk Assessment (DRA).

  • Geotechnical and geoenvironmental desk studies.

3. Existing Workshop – Demolition & Modifications

RIBA Stage 1 – Preparation & Briefing

  • Site walkover, reconnaissance, and engineering review.

  • Stakeholder engagement to define demolition and modification requirements.

  • Review utilities and identify necessary alterations.

  • RIBA Stage 1 Briefing Report with scope and requirements.

  • PCI documentation preparation.

RIBA Stage 2 – Concept Design

  • Architectural concept layout for modifications.

  • Basis of Design report for civil and structural works.

  • Scheme design for required structural modifications.

  • Define scope for modifications to building services (fire, power, lighting, telecoms, water).

  • Scheme drawings, specifications, and DRA.

  • Supporting geotechnical/geoenvironmental studies.


4. Supplementary Scope of Works

  • Planning support and drawings for GIS Building and enlarged stores.

  • Production of Heads-of-Terms drawings, including lease areas, site/CDM boundaries.

  • Storage optimisation study, with moveable racking assessment.

  • Site inspection to verify storage and dimensions for alterations.

  • Order of Magnitude (OOM) cost estimate for all construction activities (+/- 50%).

Tank Inspections & Clean-Down Preparation

  • Structural inspection of tank access ladders.

  • Dip level measurements of residual volumes.

  • Sampling and testing of materials for cleaning scope.

Drainage Study

  • Review of existing arrangements and constraints.

  • Identification of planning considerations (climate change allowances).

  • Establishment of permeable/impermeable areas and runoff calculations.

  • Outline SuDS treatment strategy and preliminary network design.

  • Feasibility report with conclusions and recommendations.

The Solution

5. Site Surveys & Ground Investigation

  • PAS 128 Topographical and Utilities Survey for BESS site and cable route.

  • Ground Investigation for Cable Route and Coryton Power Station.

  • Principal Designer Role during tender and GI phases.

  • Contractor tendering, selection, and supervision.

Geotechnical Reporting

  • Interpretative Geotechnical Investigation Report (GIR) for new GIS Substation:

    • Ground and groundwater profiling.

    • Soil parameter derivation.

    • Pile recommendations.

    • Exploratory hole plan and cross-sections.

    • Risk assessment.

  • Technical Note on GI and pile testing for New Store Building.

  • Combined Geotechnical & Geo-environmental GIR for 400kV cable route:

    • Ground profiling and waste classification.

    • HDD feasibility and resistivity testing.

    • Cross-sections and exploratory hole plan.

    • Geotechnical risk assessment.


6. Geo-environmental Reporting

  • Phase 2 Generic Quantitative Risk Assessment (GQRA) for GIS Substation, including ground gas risk.

  • Waste Classification Report for Store Building.


7. COMAH Hazard Review for BESS Development

Scope of Consideration

  • HSE consultation zones around COMAH facilities.

  • Thermal radiation and fire event modelling.

  • Overpressure risks from pipelines.

  • Vulnerability assessment of infrastructure.

  • Cost-benefit review of mitigation measures.

Deliverables

  • Review of COMAH risks and hazard impacts.

  • Vulnerability assessment for site operatives.

  • Evacuation vs shelter-in-place strategies.

  • Fire Hazard Appraisal (FHA) for BESS site.

  • Recommendations for mitigation and risk reduction.

  • Final summary report and close-out meeting.

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