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    admin2026-02-04T09:37:29+01:00

    SOLVERA LYNX CASE STUDY

    ENERGY MANAGEMENT SYSTEM IN THE STEEL INDUSTRY

    The company is one of the largest steel producers in Europe. It manufactures a wide range of more than 200 different steel grades, dimensions, and forms – from carbon and alloy structural steels to tool and specialty steels – in the form of rolled and forged products.

    The company decided to implement an energy management project with the following objectives:

    • real-time monitoring and analysis of energy consumption,
    • definition and analysis of key energy performance indicators,
    • implementation of an energy management system,
    • development of benchmarking and savings calculation methodologies,
    • introduction of energy cost allocation and billing,
    • reduction of energy consumption as a result of active energy management.

    KEY FACTS

    RESOURCE CONSUMPTION

    Electricity, natural gas, compressed air, oxygen, heat, water, argon, nitrogen

    MEASUREMENT POINTS

    340× electricity, 78× natural gas, 10× compressed air, 10× oxygen, 9× cooling water, 31× heating, 2× argon, 1× nitrogen, 42× potable water

    CONSUMPTION

    Electricity Consumption

    12 GWh/month

    Primary consumer: Electric Arc Furnace (EAF)

    Natural Gas Consumption

    3 million Nm³ per month

    Main consumers: industrial furnaces

    Heat Consumption

    800 MWh per month

    Main consumer: heating systems

    Technical Gases Consumption

    870,000 kg per month

    • Oxygen: 700,000 kg/month
    • Nitrogen: 150,000 kg/month
    • Argon: 20,000 kg/month

    Compressed Air Consumption

    3 million Sm³ per month

    Main consumers: compressor systems

    Water Consumption

    300,000 m³ per month

    OUR SOLUTIONS AND PROJECT RESULTS: GEMALOGIC

    Core Tools: general overview, real-time data monitoring, historical data analysis, alarms (SMS, email), user-generated reports, geolocation features.

    Energy Efficiency Tools: load profile visualization, specific consumption indicators (KPIs), benchmarking, time-based comparisons, target-based energy monitoring, M&T and CUSUM analysis, energy cost allocation and billing across different suppliers, buildings, metering points, and energy products.

    MacBook Air_Dashboard - product description2
    MacBook Air_GemaLogic

    OUR SOLUTIONS

    Energy Consumption Monitoring
    Electricity, natural gas, compressed air, oxygen, heat, water, argon, nitrogen

    Energy Efficiency Analysis and Forecasting
    Energy performance indicators
    Correlation between energy consumption and production output

    Energy Performance and Target Management
    Target energy consumption volumes and costs
    Deviation alerts for abnormal consumption or cost levels

    CO₂ Emissions Accounting

    PROJECT RESULTS

    Full Transparency of Energy Consumption and Advanced Analytics

    Digitalization of energy data, automated alerts, and rapid response to system deviations.

    Implementation of an Alarm System

    Detection of anomalies and root causes in energy consumption, enabling fast corrective actions.

    Improved Energy Efficiency

    Through real-time monitoring, advanced analytics, benchmarking, and forecasting.

    Advanced Benchmarking

    Key performance indicators (KPIs) and M&T analysis.

    BENEFITS OF PROJECT IMPLEMENTATION

    01

    Implementation of a comprehensive energy management system and supporting measures as a foundation for long-term energy consumption reduction.

    02

    Reduction of electricity consumption through monitoring of energy inputs and outputs and optimization of the distribution network.

    03

    Reduction of water consumption through efficient leak detection and elimination.

    04

    Identification of technical and non-technical losses.

    CONSUMPTION REDUCTION

    0
    %
    electricity
    0
    %
    natural gas
    0
    %
    industrial gases, heat, water, compressed air

    The implementation of the energy management system resulted in a significant reduction in resource consumption across various production processes. Electricity consumption was reduced by 3% through distribution network optimization and improved efficiency of the Electric Arc Furnace (EAF). Natural gas consumption decreased by 5–7% due to furnace optimization and enhanced process flows. In addition, industrial gases, heat, water, and compressed air recorded a combined reduction of 7%, primarily as a result of improved leak detection and continuous system monitoring.

    These reductions not only delivered substantial financial savings but also significantly reduced the company’s environmental footprint.


    KONTAKTIRAJTE NAS

    info@solvera-lynx.com │+386 (0)1 40 12 860

    www.solvera-lynx.com │shop.solvera-lynx.com


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