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Read MoreThe global hydro turbine market was valued at over USD 62.8 billion in 2025 and is projected to register a compound annual growth rate of approximately 4.4% from 2026 to 2035. The market covers Francis, Kaplan, Pelton, and bulb turbines used in conventional hydropower plants, alongside reversible pump turbines used in pumped storage hydropower facilities, sold to utilities and government-backed power authorities. Pumped storage hydropower has emerged as a particularly active growth category within the broader market, with more than 200 GW of global pumped storage capacity currently installed and over 60 GW of additional capacity expected by 2030, reflecting growing demand for large-scale, grid-balancing energy storage as renewable generation expands.
The market is expected to grow steadily through the forecast period, owing to continued pumped storage project development across Asia-Pacific, sustained modernization and refurbishment demand from aging hydropower fleets in Europe and North America, and growing government support for hydropower as a grid-stabilizing complement to variable wind and solar generation. India alone maintains approximately 51 GW of installed hydropower capacity and continues to expand pumped storage development to balance its growing renewable generation mix, while several European utilities continue large-scale turbine modernization programs at hydropower stations originally commissioned decades ago.
What is the size and growth rate of the global hydro turbine market?
The market was valued at over USD 62.8 billion in 2025 and is projected to grow at approximately a 4.4% compound annual growth rate from 2026 to 2035, supported by pumped storage expansion and aging fleet modernization.
How much pumped storage hydropower capacity is currently installed globally, and how much more is expected by 2030?
More than 200 GW of pumped storage capacity is currently installed worldwide, with over 60 GW of additional capacity expected by 2030, according to figures referenced by ANDRITZ Hydropower.
What advantage does variable speed pump turbine technology offer for grid flexibility specifically?
Variable speed pump turbines, such as units supplied by GE Vernova for India’s Tehri Pumped Storage Hydropower Plant, allow faster transitions between turbine and pump operation, improving grid flexibility as more renewable generation is integrated.
How active has order activity been for major hydro turbine suppliers recently?
Manufacturers including ANDRITZ have continued securing a steady stream of new pumped storage and conventional hydropower orders across India, South Korea, Türkiye, and other markets throughout 2025 and into 2026.
Why does fleet modernization continue to represent a significant share of overall hydro turbine demand?
Many hydropower stations across Europe and North America were originally commissioned decades ago, supporting sustained refurbishment and turbine replacement demand from suppliers including Voith, which recently completed turbine modernization work at a New Zealand hydropower station originally built in the 1950s.
What technical standards apply to hydro turbine design, safety, and performance testing globally?
Design and performance testing requirements are shaped in part by standards coordinated through the International Electrotechnical Commission, applicable across conventional and pumped storage turbine categories.
Notable key players include ANDRITZ, Voith, GE Vernova, Toshiba Energy Systems, Harbin Electric, Dongfang Electric, and Bharat Heavy Electricals Limited.
Recent Developments
The hydro turbine market continues to grow at a more measured pace than newer renewable categories, reflecting the long project development timelines and high capital costs characteristic of large-scale hydropower infrastructure. Within that steady overall trajectory, pumped storage stands out as a genuinely fast-growing sub-segment, increasingly valued for its ability to balance grid demand as wind and solar generation expand. Continued modernization investment in decades-old fleets across Europe and North America provides a parallel, more stable demand stream alongside new pumped storage construction in India, China, and South Korea. Overall, the market is expected to grow due to expanding pumped storage capacity, sustained fleet modernization needs, and growing government recognition of hydropower’s grid-stabilizing role.
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