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CompFlow SECTOR BRIEF — ENERGY
COMPFLOW · ODISSEOS 7, 10437 ATHENS · +30 210 5221665 · INFO@COMPFLOW.EU COMPFLOW.EU
SECTOR BRIEF 08 — ENERGY

From wind farm yield to turbomachinery stage detail.

From wind farms to high-fidelity turbomachinery simulations across the energy sector. Yield predictions and efficiency guarantees both rest on flow physics that is expensive to measure and cheap to get wrong.

1 · Sector needs with respect to CFD

Revenue and warranty exposure follow directly from predicted performance, so the sector needs simulation resolving atmospheric inflow, wake losses and stage-level machine behaviour with quantified uncertainty.

REQUIREMENT WHAT IT DEMANDS OF THE SIMULATION
Atmospheric inflow realism Terrain, roughness, stability and shear reproduced so hub-height wind resource is representative of the site rather than idealised.
Wake and array losses Turbine-to-turbine wake interaction, deep-array effects and blockage, including neighbouring farm influence on yield.
Turbomachinery stage accuracy Blade-row interaction, tip leakage, secondary flows and off-design behaviour resolved for compressors, turbines and pumps.
Thermal and combustion coupling Heat transfer, cooling flows and combustion behaviour where efficiency limits are set by material temperature.
Uncertainty quantification Sensitivity of predictions to inflow, model and geometry assumptions — essential when figures back financial guarantees.

2 · Typical representative cases

01 Wind resource over complex terrain

Microscale flow modelling over hills, forests and escarpments to correct mast measurements to turbine positions.

DELIVERABLES: Hub-height speed · Shear / turbulence · Speed-up factors
02 Wake losses and layout optimisation

Array wake interaction across the wind rose to quantify losses and improve turbine positioning and yaw strategy.

DELIVERABLES: Array efficiency · Wake deficit · AEP delta
03 Rotor blade aerodynamics

Blade sectional and full-rotor performance including stall, soiling sensitivity and add-on device gains.

DELIVERABLES: Power curve · Thrust · Loads
04 Compressor and turbine stages

Multi-stage machine performance, surge margin and secondary loss breakdown at design and part-load operation.

DELIVERABLES: Efficiency maps · Surge margin · Loss audit
05 Hydro and pump systems

Draft tubes, intakes, volutes and pump-turbine passages, including cavitation onset and swirl-induced losses.

DELIVERABLES: Head loss · NPSH margin · Cavitation extent
06 Combustion and thermal plant flows

Burner mixing, boiler and heat-exchanger flow distribution, emissions trends and cooling-tower plume behaviour.

DELIVERABLES: Temperature fields · Emission trends

3 · Policy and standards verifiable through CFD

Simulation supports — and in several frameworks explicitly permits — demonstration of compliance. Acceptance criteria and validation evidence are agreed with you and the approving body before the study begins.

FRAMEWORK HOW CFD SUPPORTS VERIFICATION
IEC 61400-1 Wind turbine design requirements. Site-suitability assessment needs turbulence intensity, shear and inflow-angle values at each position — quantities routinely produced by CFD for complex terrain.
IEC 61400-12-1 / -12-4 Power performance measurement. Site calibration and numerical flow-correction of power curves are explicitly supported by flow modelling of the terrain.
ASME PTC 10 / PTC 46 Compressor and plant performance tests. Guarantee testing and correction to reference conditions are supported by machine simulation of the tested operating points.
ISO 5801 Industrial fan performance testing. Installation effects and inlet distortion that penalise measured performance can be diagnosed and corrected before testing.
IED 2010/75/EU Industrial emissions. Combustion and stack dispersion modelling supports permit applications and demonstration of emission and air-quality limits.
WORKING WITH COMPFLOW

A complete outsourcing solution: an engineering description of your problem, the geometry or area to analyse and the operating flow conditions are enough to start. All work is carried out by CompFlow personnel at company premises under strict bidirectional non-disclosure agreements, on in-house computing facilities including a 120-core cluster.

Engagement is project-based (predefined deliverables and deadlines) or yearly (a set number of consultancy hours). Related services: CFD Consulting · Code Development · Flow Measurements · 3D Design & Scan · CFD Training · CFD Support.

Main office: Odisseos 7, 10437 Athens, Greece · +30 210 5221665. Technical base: 16th KM Agrinio–Ioannina National Road, Kypseli, P.O. 30100 · +30 26410 91004. info@compflow.eu