
At the beginning, Werover developed innovative technologies to ensure the safety of human life and accessibility underwater. As the demand for renewable energy grew, we started to offer predictive and preventive maintenance recommendations for renewable energy. The increasing demand for renewable energy assets globally has highlighted the need for effective maintenance and repair of these assets. Early detection of damages is crucial to prevent them from becoming larger problems. As Werover, we aim to extend the lifespan of energy assets through our developed technologies that provide health monitoring and early detection of issues. Our goal is to promote sustainability in energy assets through the use of our software, which has been developed for both hydroelectric power plants and wind energy. We have divided our technologies into two categories: Searover, A line of ROVs specifically designed for the detection of cracks and sedimentation in Hydropower plants through the use of 3D mapping technologies. Windrover, a real-time health monitoring system that uses advanced machine learning algorithms to analyze vibration and acoustic data, enabling the early detection of defects in wind turbine blades. MAKE RENEWABLE SUSTAINABLE

At the beginning, Werover developed innovative technologies to ensure the safety of human life and accessibility underwater. As the demand for renewable energy grew, we started to offer predictive and preventive maintenance recommendations for renewable energy. The increasing demand for renewable energy assets globally has highlighted the need for effective maintenance and repair of these assets. Early detection of damages is crucial to prevent them from becoming larger problems. As Werover, we aim to extend the lifespan of energy assets through our developed technologies that provide health monitoring and early detection of issues. Our goal is to promote sustainability in energy assets through the use of our software, which has been developed for both hydroelectric power plants and wind energy. We have divided our technologies into two categories: Searover, A line of ROVs specifically designed for the detection of cracks and sedimentation in Hydropower plants through the use of 3D mapping technologies. Windrover, a real-time health monitoring system that uses advanced machine learning algorithms to analyze vibration and acoustic data, enabling the early detection of defects in wind turbine blades. MAKE RENEWABLE SUSTAINABLE
Headquarters: London, United Kingdom
Product focus: AI-driven predictive maintenance and real-time health monitoring for wind turbine blades
Founders: Zeynep Balca Yılmaz and Kazım Çağlar Erat
Recent funding: Seed round announced May 28, 2025 (reported $1.7M)
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Predictive maintenance and condition monitoring for renewable-energy infrastructure (wind turbines and hydropower).
2018
Software Development
$1.7M
Round reported with multiple investors (9 listed)
Mechanical Engineer – Product, Field & Project Management
Products developed at Werover operate in hard-to-access, harsh and low-tolerance environments such as wind turbines, hydroelectric power plants, pressure tunnels, and underwater systems.
This role is not limited to mechanical design.
We are looking for an engineer who takes ownership of what they design, ensures it works in real field conditions, and follows the product through engineering, operations, suppliers, costs, and delivery.
In this role, mechanical design is approached together with environmental conditions, loads, mounting methods, maintenance needs, manufacturing realities, and cost constraints.
The Mechanical Engineer will be responsible for:
For hydro / tunnel / underwater projects, additionally:
Project Management, Planning & Operational Ownership
This role carries responsibility not only for engineering quality, but also for timely delivery and cost control.
Within this scope, the engineer will:
Required Qualifications
Preferred Experience
Working Style
This role combines office, workshop, and field work.