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Adani Group Arm to Produce India’s Longest 91.2-Metre Wind Turbine Blades at Mundra Facility – EQ

Adani Group Arm to Produce India’s Longest 91.2-Metre Wind Turbine Blades at Mundra Facility – EQ

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In Short : An arm of Adani Group will manufacture India’s longest wind turbine blades, measuring 91.2 metres, at its facility in Mundra. The initiative marks a major advancement in domestic wind energy manufacturing, strengthening India’s renewable supply chain, boosting local production capabilities, and supporting larger, more efficient wind power projects nationwide.

In Detail : An arm of the Adani Group has announced plans to manufacture India’s longest wind turbine blades, measuring an impressive 91.2 metres, at its manufacturing facility in Mundra, Gujarat. This development represents a significant step forward in strengthening the country’s renewable energy manufacturing ecosystem and enhancing domestic technological capabilities.

The production of longer blades is a critical advancement in wind energy technology. Larger blades enable turbines to capture more wind energy, significantly increasing electricity generation efficiency, particularly in low-wind-speed regions. This innovation can improve overall project viability and expand the geographical reach of wind installations.

Manufacturing these blades domestically reflects India’s growing expertise in advanced renewable energy engineering. By producing high-capacity components within the country, the initiative reduces reliance on imports and strengthens the resilience of the clean energy supply chain.

The Mundra facility is strategically positioned to support large-scale manufacturing and logistics. With port connectivity and established industrial infrastructure, the location provides advantages in transporting oversized turbine components both domestically and internationally.

This move aligns with India’s broader renewable energy ambitions, which include rapid expansion of wind capacity to meet national climate commitments and long-term energy transition goals. Advanced turbine technology will play a crucial role in achieving higher generation output per installation.

The manufacturing initiative is also expected to create employment opportunities in engineering, fabrication, logistics, and maintenance services. As blade size and turbine complexity increase, the demand for skilled labor and specialized technical expertise will grow correspondingly.

Longer blades require sophisticated material science, precision engineering, and structural integrity testing to ensure durability under extreme wind conditions. The adoption of cutting-edge design and production techniques signals India’s maturing capabilities in renewable energy manufacturing.

By enhancing turbine efficiency, larger blades contribute to reducing the levelized cost of electricity from wind projects. Improved energy capture translates into higher output per turbine, lowering overall project costs and improving returns for developers and investors.

Overall, the decision to manufacture 91.2-metre wind turbine blades in India marks a transformative milestone for the country’s wind energy sector. It underscores the expanding scale of domestic renewable manufacturing and reinforces India’s ambition to become a global hub for clean energy technology production.

Anand Gupta Editor - EQ Int'l Media Network