We are connecting the next #wind farm to the grid. We are currently planning the #grid connection and the #substation for another wind farm in the Altmark district of Salzwedel. The connection will be made to a 110 kV line. HCE is responsible for the #electrical and #structural design. We are currently in the approval planning phase and are in the process of undertaking the #environmental analysis and #soil investigation. The electrical planning is so far advanced that the essential components, such as the transformer, have been ordered. The realisation phase will begin in the autumn of 2025. Our #EPC -M division is booming. We plan and implement #energy projects from the grid connection to the feed-in of the first kilowatt hour and beyond.
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HV project planning stages, off grid system design and upgrade #UTILITY #RURALAFRICA #COMPLETEPACKAGE #OFFGRID #ALTERNATIVE
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There is a lot of talk in energy forums today about how to achieve greater energy storage, but one fundamental aspect is still left out: maintenance, as well as the emphasis on the design and anchoring of PV parks. As I always say, without good maintenance, there is no good energy storage. The same goes for anchor designs and installations: if there is no proper planning when setting up a PV farm, efficient energy storage will not be possible. Empirical evidence supports this. Here in LATAM, with Chemitek Solar products, we have managed to offer an excellent maintenance service in photovoltaic parks, ensuring optimal performance and prolonging the life of the facilities. In addition, at Global Terra SAS, we focus on guaranteeing rigorous control in the design of the photovoltaic parks, with the aim of preventing accidents and ensuring a solid and efficient infrastructure from the beginning. #controldepolvo #dustcontrol #polvo #acopio #materiales #MedioAmbiente #agua #cañones #minadedatos #mentorsenior #mentorbusinessnow #autoliderazgo #mineríainteligente #inversión #coal #spain #negocios #valorpyme #digital #emprendedores #emprendedor #arquitectura #hechoencolombia #gaming #lidership #liderazgoempresarial #management #soluciones #operación #trainning #innovando #elbit #aicox #vcr #8x8 #ejército #transiciónenergética #lanuevaenergía #startups #bogotá #latinoamérica #columnadeopinión #recomendado #mimejorenergía #calidrainfraestructura #molcasa #honduras #panamá #colombia #tecnología #field #sustainableenergy #cleanenergy #renewables #solarpanels #gosolar #greenenergy #solarenergy #solarpower #energy #robotics #safety #solarenergy #solar #power #solarpower #cleanenergy #solarpanelcleaning #solarsystems #cleaningservice #chemitek #photovoltaic #pv #solarenergy #solarcleaning #clean #solarfarm #solarpower #commercialsolar #cleaningmachine #solarpowered #solarpowerplant #panels #solarpv #energíasolar #chemitek #colombia #panelessolares #SolarSolutions #ChemiTeksolar #SolarEnergy #PVcleaning #CleanEnergy #SolarMaintenance #solarpower #solarpv #chemiteksolar #solarmaintenance #chemitek #colomia #fotovoltaico #solarpanelcleaning #solarcleaning #solarpanels #photovoltaic #solarmaintenance #cuttingedge #innovation #robotics #energiaslimpias #agrovoltaic #transiciónenergéticajusta #crecimiento #solarpv #solarpowered #solarinstallation #solarpanels #solarpanel #solarcleaning #solarenergy #negocios #energíasrenovables #energia #energiasolar #fotovoltaica #autoconsumo #ingenieria #solar #sostenibilidadambiental #sostenibilidad #sostenible #sostenibles #Negocios #Inclusivos #Oportunidades #LATAM #ICEX #IMPACT+ #Sostenibilidad #Inversión #Impacto #Internacionalización #Exportaciones #Innovación #ODS #RSE #RSC #conexiones #inteligenciaeconomica #economia #españa #españacolombia #embajadaespaña #relacionespersonales #networking #transformacionorganica #decisionesestrategicas #Multilateral #CambioClimatico #Clima
Xiamen Grengy Solar Mounting Structure/Brackets/Racking Factory,Solar Hook, Schrägdach Dachhaken, Freiland,Flandach Solar-Montagesystem. Estructuras FV
This situation won't be the last one. The reason why typhoon blows away solar panels is indeed related to design reasons. The design of solar power plants needs to consider various extreme weather conditions, including typhoons. The installation and fixing method of solar modules is crucial for resisting strong winds. According to relevant design requirements, solar modules should be able to withstand a certain wind load, which is usually verified through mechanical load tests to ensure the stability of solar modules and brackets under specific design wind speeds (such as 36.1m/s, equivalent to level 12). However, when encountering extreme weather conditions that exceed design standards, such as super typhoons, it may cause damage or even detachment of photovoltaic modules and brackets. For example, if center wind speed reaching far exceeding the wind resistance level required by the design of solar power plants, there will be huge damage. In addition, damage to solar power plants may also be caused by construction quality issues. If the construction team is not carried out according to the standard operation or inappropriate materials are used, it may also cause the solar panels to be blown off under strong wind conditions. Therefore, choosing a professional construction team and conducting regular inspections and rectifications are very important. #solarmountingstructure #solarmountingsolution #hanggerbolt #solarmountingsystem #solargroundmount #pvmounting #renewableenergy #greenenergy #grengy #solarmount #PV #Solar #solarpv #solarpower #sustainability #solarsystem #cleanenergy #renewableenergy #solarmounting #solarenergy #solarsystems #pvsolar
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Products and Services for Offshore-Windparks from JACOB GmbH #Offshore substations (OSS) are the nerve centers of offshore wind farms. They collect the electrical energy generated by the wind turbines and convert the electricity for transmission to the onshore converter stations. JACOB GmbH, in cooperation with International Lighting Experts B.V. , offers professional #lighting design, #engineering and #consultancy for safe, reliable and sustainable lighting systems for offshore wind applications. Our services include complete lighting planning, contact with the shipyards and engineering companies, as well as support for the installation companies with questions during installation. It goes without saying that we also support our customers in converting from conventional fluorescent lamps to #LED luminaires.
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𝗡𝗲𝘄 𝗖𝗮𝘀𝗲 𝗦𝘁𝘂𝗱𝘆 𝗥𝗲𝗹𝗲𝗮𝘀𝗲𝗱: Earthing System Design for a Wind Farm Project! Our latest case study showcases how we delivered earthing solutions for a major wind farm, ensuring both safety and long-term reliability. 💡Discover how our team used CDEGS software to design a precise and robust earthing system that meets industry standards and addresses complex challenges. ⚡Find out how our solutions protect against high voltage surges, safeguarding personnel and equipment while ensuring full compliance with safety regulations. 🌍 See how advanced earthing solutions provide long-term reliability, supporting the sustainable future of wind energy. Read the case study here: 👇 #earthingsystems #powersystems #windenergy #DNO #IDNO
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What is the main challenge in the design of floating substations❓ We have been deep-diving into this question and discovered that one of the main challenges lies in calculating fully coupled motions in waves & wind and their impact on structural integrity, the mooring system, and the reliability of onboard electrical equipment 🌊 ⚡️ The solutions are coming together, and we are starting to do basin tests now. Our team is passionately tackling the challenges while pushing the boundaries of innovation to make floating substations a reality ✅ What do you think are the main issues that need to be addressed to realize the future of floating substations and wind farms❓ #renewableenergy #offshorewind #engineering #isclife
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𝗧𝗵𝗲 𝗱𝗲𝘀𝗶𝗴𝗻 𝗼𝗳 𝘄𝗶𝗻𝗱 𝘁𝘂𝗿𝗯𝗶𝗻𝗲 𝗳𝗼𝘂𝗻𝗱𝗮𝘁𝗶𝗼𝗻𝘀 𝗲𝘅𝘁𝗲𝗻𝗱𝘀 𝗯𝗲𝘆𝗼𝗻𝗱 𝘁𝗵𝗲 𝗱𝗿𝗮𝘄𝗶𝗻𝗴 𝘁𝗮𝗯𝗹𝗲 The design of wind turbine foundations is not a static process. Safety and quality are at the heart of Windbase's designs. We implement additional safety measures and alternative reinforcement methods, such as steel fibres, in order to set new standards within the industry. At Windbase, we believe that the design of wind turbine foundations should extend beyond the drawing table. Our involvement during the construction phase ensures the quality of the foundation and allows us to make continuous improvements to our designs. Furthermore, we provide contractors with expert guidance. Read our one-pager for a detailed approach of how we’re creating safer wind turbine foundations designs: https://lnkd.in/eVccBNj7 #SafetyFirst #construction #innovation #WindEnergy #EngineeringExcellence
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A wind power plant of an installed capacity of 200 MW is to be integrated into the network through a transmission substation (switchyard) that is linked to the network through a selected grid substation. The grid substation is at 220 kV level. The 220 kV level is suitable for the 200 MW output power as per the local guidance that restricts the maximum power for a given voltage level. The calculated voltage is about 145 kV, and one needs to go for the next higher voltage level if it does not fall into a standard voltage level, which is 220 kV in this case. Wind power comprises hub (rotor) blades that are 120 degrees in phase shift. These blades are linked to an induction generator and a step-up transformer contained in a nacelle. The hub and the nacelle are mounted on top of a tower that is in the range of 90-110 meters in height. Read more https://lnkd.in/gjp8edfR
The art of the switchyard design: Case study of a 200 MW wind farm | EEP
electrical-engineering-portal.com
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Transmission lines for solar plants are designed to carry electrical energy generated by solar panels to the power grid or a substation. Here are some key considerations of my today's learning. 1. Voltage level : Typically ranges from 34.5 kV to 765 kV. 2. Conductor selection : Aluminum or ACSR (Aluminum Conductor Steel Reinforced) conductors are commonly used. 3. Line length : Can range from a few kilometers to several hundred kilometers. 4. Power capacity : Depends on the solar plant's capacity, typically ranging from 10 MW to 1000 MW. 5. Corridor selection : Carefully chosen to minimize environmental impact and ensure safety. 6. Tower design : Designed to withstand weather conditions and support conductors. 7. Insulator selection : Suitable for outdoor use and designed to withstand voltage stresses. #renewables #greenenergy #transmission #electrical #o&m
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Great to see the delivery of the infrastructure we need to decarbonise.
Ground has officially broken on the construction of the England – Scotland offsea interconnector which marks the start of this electricity superhighway 🎉 The Eastern Green Link 2 (#EGL2) project, developed by National Grid Electricity Transmission (NGET) and Scottish and Southern Electricity Networks (SSEN), involves the construction of the longest HVDC cable in the UK and is the country's largest electricity transmission project. The converter stations for the link will be built by the Bam-Hitachi energy joint venture, which was appointed in March. We're proud to support BAM UK & Ireland, as lead civil and structural designer on the UK’s single-largest electricity transmission project. Construction work on the project started on Thursday, 26 September with the symbolic simultaneous ground-breaking ceremony at either end of the planned cable. Find out more 👉 https://mottm.ac/3ZPbdsJ 📷 Photo credit: National Grid #HVDC #energy #engineering
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Conducting load flow analysis of a 150kW Solar PV Mini Grid. It is important to conduct this study when doing a mini grid design especially to check the voltage profile, load balancing and cable sizing checks. Contact KingsMen Electrical for you power system analysis.
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2moMeanwhile we cover many services in-house with our teams. But nobody can do everything. We would therefore like to thank our partners once again. In this project special thanks to ee technik gmbh , Daniel Schauer and geotechnik heiligenstadt gmbh, Weiz Thomas #teamwork #engineeringthefuture