fluiidd provides a non-intrusive process scanner that uses AI-powered sensors to detect internal pipeline anomalies in real-time. The system identifies physical obstructions and flow issues like cavitation and dry runs, enabling proactive maintenance and optimizing energy efficiency for industrial operations.
Funding
Funding not disclosed
Founders
Product
Problem
Industrial pipelines are susceptible to internal anomalies such as foreign bodies, fouling, and blockages, which can lead to costly operational halts and reduced energy efficiency. Existing methods for detecting these issues are often expensive or lack the precision required for continuous monitoring.
Solution
fluiidd offers a process scanner that provides real-time visualization and anticipation of defects within industrial pipelines. The technology employs advanced sensors and AI-driven analysis to detect a range of obstacles, including cavitation, dry runs, and water hammer, in addition to physical blockages. This enables proactive identification of potential failures, thereby preventing unplanned downtime and optimizing energy consumption. The system is designed for straightforward installation and offers comprehensive monitoring capabilities to enhance operational reliability and reduce maintenance costs.
Target Audience
The primary target audience includes operators in the nuclear, water, food, and semiconductor industries, as well as manufacturers of industrial pumps and critical process equipment.
Features
- Non-intrusive process scanner utilizing proprietary sensor technology for internal pipeline anomaly detection.
- AI-powered flow classification and alert system to identify risky patterns such as cavitation and dry runs.
- Real-time detection of physical obstructions including foreign bodies, fouling, blockages, and air bubbles.
- High-pressure and high-temperature flow measurement capabilities, validated for extreme conditions (e.g., 330 bar, 600°C).
- Predictive analytics for equipment fault identification and preventive maintenance.
- Energy efficiency optimization through precise fluid analysis and diagnostic tools.
- Integration with industrial systems for continuous monitoring and data logging.