Renew Acad

Stagii de practică & Cursuri Eoliene, Fotovoltaice și Stocarea Energiei Electrice

Cea mai mare Retea de Centre de Pregatire pentru Surse Regenerabile din Sud Estul Europei

Cursuri Turbine Eoliene

Curs de instalare si mentenanta turbine eoliene

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Cursuri Parcuri Fotovoltaice

Cursuri instalare si mentenanta panouri fotovoltaice

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Cursuri Stocare Energie Electrică

Cursuri instalare si mentenanta sisteme de stocare energie electrica regenerabila

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Recalificare gratuită

Cursuri și stagii de practică cofinanțate de Uniunea Europeană

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About us

Despre RenewAcad

RenewAcad este un centru de pregatire certificat national si international pentru a oferi cursuri de pregatire, de calificare si re-calificare in domeniul surselor regenerabile de energie, in preponderent cursuri pentru industria eoliana si fotovoltaica.

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16+

ani de experiență

10.000

tehnicieni pregătiți

97

cursuri profesionale

8

premii de excelență

100+

proiecte implementate

cursuri

La ce cursuri RenewAcad te poți înscrie?

Industry-leading certification pathways designed to meet the rigorous demands of the global energy sector.

Vezi curriculum

Energie solara

Training certificat GWO pentru tehnicieni turbine onshore si offshore. Training certificat GWO pentru tehnicieni turbine onshore si offshore.

16 Cursuri

Sistem de stocare a energiei

Training certificat GWO pentru tehnicieni turbine onshore si offshore.

28 Cursuri

Safety First

Training certificat GWO pentru tehnicieni turbine onshore si offshore.

32 Cursuri

Energie Eoliana

Training certificat GWO pentru tehnicieni turbine onshore si offshore.

53 Cursuri

Cursuri Turbine Eoliene

CHIM

Crane & Hoist Inspection & Maintenance

Duration: 16 hours Validity: Unlimited The Crane & Hoist Inspection & Maintenance (CHIM) module enables participants to perform inspections, preventive maintenance, and functional tests on cranes and hoists used in wind turbine environments, in accordance with GWO V2 (2025) and manufacturer requirements. The module combines classroom learning with extensive hands-on practical exercises to ensure safe and compliant maintenance practices.Participants will learn how to:– Understand legal requirements, standards, and manufacturer manuals related to lifting equipment inspection;– Perform pre-use, periodic, and annual inspections of cranes and hoists according to procedures;– Identify, classify, and record mechanical, structural, or electrical defects such as wear, deformation, or corrosion;– Perform functional tests, including limit switch checks, braking systems, and control unit verification;– Conduct preventive maintenance: lubrication, tightening, and cleaning of key components;– Apply lockout/tagout (LOTO) and other safety measures before maintenance activities;– Complete inspection checklists and maintenance reports in accordance with GWO and internal standards;– Recommend corrective actions and ensure defective equipment is removed from service until repaired.Objective:Upon completion, participants will be able to safely inspect, maintain, and verify cranes and hoists in wind turbine environments, ensuring compliance with GWO standards, manufacturer documentation, and site-specific safety requirements.

16 [h]

€550*

+TVA

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Cursuri Parcuri Fotovoltaice

3D Design of a PV Plant with Helioscope and SmartDesign 2.0

-

6h

€1000*

+TVA

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Cursuri Parcuri Fotovoltaice

PVSyst Introduction - PV Plant design and production estimation(indisponibil)

Estimating energy production and losses of a photovoltaic power plant up to 1 MWp using PVSyst.   Module 1 - Basic Elements   -Latitude, longitude, and sun movement throughout seasons. -Definition, impact, and calculation of tilt and azimuth angles.   Module 2 - Preliminary Design and Excel Calculations   -Typical project lifecycle, evaluation of electricity bills, use of solar radiation maps and Google maps, and estimation of plant capacity. -Using Excel to calculate number of modules and inverters, selection of modules and inverters, and sizing of strings. -Preliminary requirements for site visits, studying obstacles and electrical diagrams, creating rough sketches of the site and single-line diagrams, unforeseen scenarios.   Module 3 - Understanding Energy Losses in PVSyst / Case Study CEF 50 kWp   -Overview of PVSyst characteristics and functionalities. -Creating a new site, steps involved in using the software, and generating a report. -Definition, calculation, and application of all losses, understanding the loss diagram (Sankey diagram).    Module 4 - 3D Shading Scene Design in PVSyst / Case Study CEF 1 MWp   -Creating a 3D shading scene, minimizing shading losses, visualizing shade animations throughout a day and analysis, report generation, and understanding shading effects.   Module 5 - Sub-Array Design in PVSyst / Case Study CEF 200 kWp   -Defining sub-arrays, designing a detailed sub-array system, and analyzing the report.   Module 6 - Carport Design and Sales Proposal / Case Study CEF 400 kWp   -Creating a carport project in PVSyst, detailed project with losses, 3D modeling and shade analysis, report generation and analysis. -Content of a sales proposal using a PVSyst report within a sales proposal, along with a template.   Module 7 - Additional Functions of PVSyst   -Adding new modules and inverters, exporting and importing projects, compatibility with other software, adding custom logos, and more.

8h

€1000*

+TVA

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Cursuri Turbine Eoliene

ES-R

CoHE Electrical Safety, Refresher

Aims and Objectives of the CoHE Electrical Safety Module The aim of GWO’s CoHE Electrical Safety training module is to enable the participants to support and care for themselves and others while working with, and in the vicinity of, electricity in the wind industry and to perform assigned electrical work tasks safely and efficiently. Upon successful completion of GWO’s CoHE Electrical Safety Module, the participants will be able to perform electrical work safely within the wind industry using electrical PPE, precautionary techniques, and electrical safety safe working practices to reduce the associated risks to the electrical hazards. Overall learning objectives for the CoHE Electrical Safety Module, the participants will have the ability to: 1) Take responsibility for their own and others safety while working with, and in the vicinity of, electricity in the wind industry (Ability, intermediate level) 2) Take responsibility for correctly completing a simple permit to work from beginning to end as the person responsible for establishing a safe work condition (Ability, intermediate level)

4 [h]

€585*

+TVA

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Cursuri Parcuri Fotovoltaice

Professional Competence Assessment Centre

The competency assessment for the 720-hour Qualification course in photovoltaic (PV) system installation involves the process of verifying and certifying the knowledge, skills, and abilities required in this field. The course focuses on the installation, maintenance, and repair of photovoltaic systems, ensuring compliance with current standards and regulations. Assessment Criteria: Technical Knowledge: Demonstrating knowledge of electricity, solar energy, and the operation of photovoltaic systems, including their components (panels, inverters, etc.). Practical Skills: Verifying the ability to correctly and safely install photovoltaic panels and other system components. Problem-Solving Skills: The ability to identify and troubleshoot system faults in photovoltaic systems. Knowledge of Regulations: Adherence to applicable legal standards and regulations concerning the installation of photovoltaic systems.

22h

€400*

+TVA

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Cursuri Turbine Eoliene

PFS

CoHE Pressure Fluid Safety

Aims and Objectives of the CoHE Pressure Fluid Safety Module The aim of GWO’s CoHE Pressure Fluid Safety training module is to enable the participants to support and care for themselves and others while working with and in the vicinity of pressure fluids in the wind industry and to perform assigned tasks safely and efficiently. Upon successful completion of GWO’s CoHE Pressure Fluid Safety Module, the participants will be able to reduce the associated risks to and work safely with pressure fluid tasks in the wind industry by being able to select the correct and required PPE for working with hydraulic fluids and fluids under pressure, using safe work practices and establishing a safe work condition when working with and in the vicinity of pressure fluids in the wind industry. Overall learning objectives for the CoHE Pressure Fluid Safety Module, the participants can: ·         Take responsibility for their own and others safety while working with and in the vicinity of pressure fluids in the wind industry (Ability, intermediate level) ·         Take responsibility for correctly completing a simple permit to work from beginning to end as the person responsible for establishing a safe work condition (Ability, intermediate level)

8 [h]

€400*

+TVA

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Cursuri Turbine Eoliene

NTBR

Nacelle, Tower & Basement Rescue

Aims and objectives of Nacelle, Tower & Basement Rescue Module The aim of this module is to enable the participants to perform injured person rescue operations in a WTG nacelle, tower, and basement, by using industry standard rescue equipment, methods, and techniques, exceeding those of GWO work at height. The Nacelle, Tower and Basement Rescue Module shall ensure that the participants are able to: 1.Perform: a. rescue operations using the casualties personal fall protection on the injured b. rescue operations in a WTG nacelle, tower and basement using a handheld lamp c. transportation of an injured person horizontally over the length of the turbine d. transportation of an injured person to a higher platform using rescue up techniques and equipment (both manual and power-driven) 2. Apply clear communication and guidance to other emergency responders (e.g. vessel or ambulance crew) including coordinating the handover of an injured person (Skills, intermediate level) The participants shall: 1. acknowledge the benefits of having a coordinator in a rescue team, and the responsibility that comes with it 2. take part in discussing which advanced rescue preparations and emergency & communication procedures apply in their own organisation 3. commit to demonstrating a pro-active approach and role model behavior  

16 [h]

€320*

+TVA

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Cursuri Parcuri Fotovoltaice

Advanced PVSyst - Utility Projects(indisponibil)

Improving PVSyst knowledge through simulation of grid-connected utility-scale PV systems with case studies up to 20 MWp.   Module 1 - PV Systems with Trackers / Case Study 5 MWp -Defining and constraints of a PV system with trackers, shading analysis in PVSyst, and studying the report.   Module 2 - Optimizations / Case Study 1 MWp -Functionality of optimization tools and unlimited tables, simultaneous simulation for different tilt angles and row distances.   Module 3 - Bifacial PV Modules / Case Study 10 MWp -Designing a PV system with bifacial modules in PVSyst, albedo values, and other aspects. Defining, calculating, and applying all losses, engineering logic behind the rules, understanding the loss diagram (Sankey diagram).   Module 4 - Energy Management in PVSyst   -P50 and P90 reports -Limiting exported power to the grid -Power factor   Module 5 - String Formation of PV Modules   -Creating and designing PVSyst simulations using string formation feature with individual modules   Module 6 - Horizon Diagram / Case Study 2 MWp   -Creating and designing far shading simulations using Horizon Import feature -Proposal content using a PVSyst report within a sales proposal, along with a template   Module 7 - Financial Modeling / Case Study 1 MWp   -Overview of financial modeling, preparing a materials list and cost sheet, introducing usage tariff and export tariff, cash flow diagrams, and report generation.   Module 8 - Interval Data / Case Study 1 MWp   -Defining and extracting interval data along with generating and analyzing reports.   Module 9 - Fillzone Function and Contour Mapping -Using the Fillzone function / Case Study 25 MWp -Simulation with contours and on uneven terrains / Case Study 30 MWp   Module 10 - Recapitulation / Case Study 21 MWp -Summarizing all concepts in a single case study

8h

€1000*

+TVA

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Cursuri Stocare Energie Electrică

Electric Vehicle Technician Part 2

This course is the second step for auto mechanics to expand their internal combustion engine repair skills to electric vehicles. It follows the ASE Level 2 guidelines to become a “high-voltage vehicle technician.” After this course, you should be able to pass the ASE xEV Electrical Safety Standards Version 1.1 Level TWO exam. This exam certifies automobile technicians to work safely on the high-voltage components of electric vehicles, excluding the traction battery. You’ll learn about the personal protective equipment and specialised tools you'll need to work safely on EVs. You'll also learn how to de-energise vehicles and confirm absence of voltage so you can then repair the high-voltage components of the vehicle. This excludes the large propulsion battery, which requires ASE Level 3 certification.

1.5h

€100*

+TVA

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Cursuri Stocare Energie Electrică

Battery storage value chain

This certification provides a rock-solid overview and understanding of the battery value chain, production processes, and end-of-life scenarios. Specifically, participants will explore the battery raw materials, understand how a Li-ion battery is produced, evaluate how to regain value from end-of-life batteries learning about state-of-the-art scenarios related to batteries end-of-life in particular re-use and recycling.

13h

€990*

+TVA

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Cursuri Turbine Eoliene

ONL

Onshore Limited Access

Aims and Objectives for the Onshore Limited Access Module The aim of this module is to enable participants, through theoretical and practical training, to use basic personal protective equipment, and behave safely during supervised visits to onshore wind turbine environments. After having successfully completed this WLA Onshore module, the participants will have the ability to act safely and responsibly when using basic personal protective equipment, follow instructions given by supervisors and behave safely during supervised visits to onshore wind turbine environments.

4 [h]

€200*

+TVA

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Cursuri Parcuri Fotovoltaice

Planning and implementation of CEF on the roof

-

6h

€1000*

+TVA

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Cursuri Stocare Energie Electrică

Fundamentals on batteries

This certificate provides fundamental knowledge and state-of-the-art insights into battery technologies. Participants will get an introduction into the importance of batteries as a tool for energy storage, they will explore the main components and parameters that characterise a battery, and will dive deeper into the electrochemical phenomena that lie behind battery operation. Then, they will get a concise view of the different currently available battery technologies. Finally, they will be able to take a peek at emerging technologies that could be game-changers for the battery panorama.

20h

€1190*

+TVA

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Cursuri Stocare Energie Electrică

Energy Systems Transformation

This certificate explores the implications of the evolution of our power system into decentralised, digitalised and secure power exchange platforms which are more sustainable, cost efficient and end-user focused.

11h

€740*

+TVA

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Cursuri Parcuri Fotovoltaice

Solar Technical – Installation (S-TTI)

Duration: 12 hours Validity: 24 months  The Solar Technical Installation (S-TTI) module enables participants to safely plan, prepare, and perform the installation of photovoltaic (PV) systems in accordance with manufacturer requirements and applicable safety standards. It combines theoretical instruction with extensive practical exercises on mechanical and electrical installation tasks.Participants will learn how to:– Interpret PV installation drawings, specifications, and method statements;– Plan installation activities including logistics, tools, and risk assessment;– Assemble substructures, support frames, and racking systems according to torque and alignment specifications;– Mount PV modules securely, ensuring correct positioning, orientation, and spacing;– Connect DC strings and verify polarity, insulation resistance, and continuity tests;– Route and fix cables correctly using UV-resistant clips and strain relief methods;– Apply grounding, labeling, and documentation according to solar installation standards;– Perform final inspection and quality checks prior to system commissioning.Objective:Upon completion, participants will be able to carry out solar PV installation safely and efficiently, ensuring compliance with GWO, IEC, and manufacturer standards, while contributing to the overall quality and reliability of the solar installation.

12h

€350*

+TVA

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Cursuri Turbine Eoliene

SR:HSIBR

Single Rescuer: Hub, Spinner & Inside Blade Rescue using the TSL equipment

Aims and objectives of the Single Rescuer HSIBR Module The aim of this module is to enable the participants to perform single rescuer advanced rescue operations, in a WTG hub, spinner and inside the blade by using industry standard rescue equipment, methods and techniques, exceeding those of GWO’s Basic Safety Training, Working at Heights Module. Based on the participants HSIBR module qualifications, the single rescuer HSIBR module (SR:HSIBR) shall ensure that participants are able to: 1. Assess and determine single rescuer rescue strategy (relevant rescue method, technique, certified equipment and how to organise the rescue efforts and incident scene) for various rescue scenarios, in a WTG hub, spinner and inside a blade. 2. Apply rescue methods and techniques in performing descending and ascending single rescuer rescue operations, from a WTG hub, spinner and inside a blade using: a rescue stretcher and transfer board; manually operated lowering/raising rescue system for limited distance rescue (rescue device, pulley system or similar); and other rescue equipment relevant to the participant.

8 [h]

€300*

+TVA

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Cursuri Stocare Energie Electrică

Managing Energy Data: Advanced Analytics

This certificate extract insights from the energy big data to boost your business and create value added services. Participants learn how to develop and implement data science projects in energy businesses. Participants also evaluate the implications, challenges, and benefits of implementing data science projects in an energy company; apply lessons learned from real-life business cases in which data science was applied to energy big data; and supervise the development and implementation of a data science project to create new value with the available data.

15h

€990*

+TVA

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Cursuri Turbine Eoliene

FAWR

Fire awareness and fire-fighting, refresher

 Aims and Objectives of the BST Fire Awareness Module The aim of this module is to enable the participants to prevent fires, make appropriate judgements when evaluating a fire, manage evacuation of personnel and ensure all are safely accounted for in the event of an unmanageable fire. If the incident is judged to be safe, the participants should be able to efficiently extinguish an initial fire by using basic handheld firefighting equipment. Overall learning objectives: 1) The participants can act independently to identify fire hazards and prevent fires in a wind turbine environment (Ability, intermediate level) 2) The participants can take responsibility for assessing a fire and, if needed, be able to select the right extinguishing media according to the fire classes (Ability, intermediate level) 3) The participants can take responsibility for the evacuation of personnel and ensure all are safely accounted for in the event of an unmanageable fire (Ability, intermediate level) 4) The participants can act independently in efficiently extinguishing an initial fire by using basic handheld firefighting equipment, if the incident is judged to be safe (Ability, intermediate level). 

4 [h]

€140*

+TVA

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Cursuri Stocare Energie Electrică

Understanding energy storage: the battery revolution

This certificate introduces the most promising battery storage technologies and how they can affect the future of the transportation and power sectors.

5h

€330*

+TVA

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Cursuri Stocare Energie Electrică

Cybersecurity in the Energy Sector

This certificate aims to equip organisations with knowledge and skills to evaluate IT risks and typical vulnerabilities in the context of energy systems. Methods to avoid attacks, amongst other things exploiting human factor related risks, are described and learners will get to know approaches for dealing with security /privacy issues when designing energy data systems (Security /Privacy-by-Design). Imparting an overview of the European legal frameworks and a deeper look into country-specific regulation that have to be considered while building smart grid business models.

7h

€460*

+TVA

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Cursuri Turbine Eoliene

BaSC

CoHE Basic Safety

ENG: Aims and Objectives for the CoHE Basic Safety Module The aim of this module is to enable participants, through theoretical and practical training, to act safely while working in the vicinity of hazardous energies in the wind industry and be able to perform assigned tasks safely. After having successfully complete this CoHE Basic Safety module, the participants will have the ability to: 1) Solve the challenge of how to act safely while working in the vicinity of hazardous energies in the wind industry and will on their own initiative seek guidance when needed (Ability, basic level)

4 [h]

€350*

+TVA

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Cursuri Parcuri Fotovoltaice

Off-grid and hybrid PV plant design

-

8h

€1000*

+TVA

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Cursuri Parcuri Fotovoltaice

3D design of a PV plant with SketchUp and Skelion

-

8h

€1000*

+TVA

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Cursuri Stocare Energie Electrică

Battery management connection and control

This certificate will allow participants to dive deep into power conversion systems that connect storage systems to smart grids and consumers, learning how to choose the right type of converter while assessing overall system performance with respect to energy efficiency. It also introduces battery management systems and the critical parametres that we can control, the use of battery testing and operation simulation in order to predict real-world in-service behaviour.

22h

€1290*

+TVA

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Afilieri și parteneriate

We provide government bodies and energy conglomerates with customized training ecosystems, large-scale workforce development, and accreditation consulting.

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Media și articole

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RenewAcad to begin an inclusive skills and employment programme supporting Scatec-DEFIC–EBRD solar PV projects in Dobrun and Sadova

Constanta, 3 March 2026 – RenewAcad announced today that they will begin work on a skills development program under the “Gender and Economic Inclusion Technical Assistance Framework – Access to Skills and Employment”, in partnership with Scatec, Defic and the European Bank for Recons

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RenewAcad and Rezolv Energy have inaugurated the first renewable energy training center in Buzau.

RenewAcad, the largest network of renewable energy training centres in South-Eastern Europe, together with Rezolv Energy, today opened a new training centre in Buzau County, dedicated to preparing specialists for the renewable energy industry. The event also marks the launch of the first groups of t

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RenewAcad supports contractors who build photovoltaic parks in training their employees in line with international GWO standards and has obt

Constan?a, 12 November 2025 – RenewAcad, the largest network of training centers in the field of renewable energy in South-Eastern Europe, announces that it has obtained accreditation for the GWO Solar Safety Training Standard (S-ST), a new international standard dedicated to safety in the lar

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