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Arttur Kulvik
SVP at Solnet Group, Chairman of the Board at Solnet Green Energy - 3rd fastest growing energy company in Europe
Arttur Kulvik is the Senior Vice President (SVP) at Solnet Group, a prominent solar energy company founded in 2014. He plays a crucial role in the company's strategic direction, particularly in developing utility-scale Smart Solar solutions aimed at corporate customers. Kulvik is also a co-founder of Solnet Group, alongside Kaj Kangasmäki, and has been instrumental in the company's rapid growth and expansion across Europe, particularly in Finland, the Netherlands, and Germany.124
Background and Experience
Kulvik has a diverse professional background that includes significant experience in business development and digital services. Prior to his role at Solnet Group, he served as the Chief Operating Officer (COO) at URHO Digital Services Oy and held the position of Director at URHOtv Oy. Additionally, he has experience in the media sector, having owned Screen Works Helsinki Oy, which specializes in production and post-production services.13
Education
Kulvik holds a Bachelor of Fine Arts in New Media Arts and Theory from Emerson College and completed the International Baccalaureate (I.B.) program at the International School of Brussels.1
Contributions to Solnet Group
Under Kulvik's leadership, Solnet Group has achieved remarkable success, growing organically by an average of 85% annually over its first decade. The company has been recognized for its innovative approach to solar energy, including being the first to offer Solar as a Service in Finland. Kulvik emphasizes a customer-oriented mindset and has been pivotal in promoting digitalization within the solar industry, which enhances operational efficiency and customer service.245
Vision for the Future
Looking ahead, Kulvik envisions continued innovation in solar energy solutions, particularly through advancements in energy storage and smart solar technology. He believes that these developments will play a critical role in creating resilient energy systems capable of adapting to fluctuating demands.4