Our Works
Our Working Process
QLOGIC is the intelligent core of our autonomous sand management capabilities. It provides autonomous control logic for optimizing sand cyclone efficiency by seamlessly integrating edge computing, real-time sand monitoring, and automated dump technologies. By utilizing continuous data from acoustic and ultrasonic sensors, QLOGIC dynamically determines the precise, optimal moment to initiate a sand dump cycle. This intelligent approach replaces outdated, time-based manual dumping, effectively mitigating sand slugging while significantly reducing equipment wear and tear.
QLOGIC is a high frequency, autonomous sand management system that integrates edge computing with real-time sand and flow monitoring to ensure optimum sand cyclone efficiency.
High-efficiency cyclonic hardware and ruggedized automation that physically remove personnel from hazardous red zones.
QLOGIC is the intelligent core of our autonomous sand management capabilities. By integrating edge computing with continuous, real-time data from acoustic and ultrasonic sensors, the solutions dynamically calculate and initiate the exact optimal sand dump cycle. This logic-based approach eliminates outdated, time-based manual dumping and effectively mitigating sand slugging, it also drastically reduces equipment wear and tear and lowering site emissions through precise, automated control.
QSAND replaces reactive guesswork with absolute certainty by delivering continuous, inline measurement of sand production. Utilizing advanced ultrasonic spectroscopy and proprietary software analytics, it provides high-frequency sand rate data without the need for phase separation or human intervention. This real-time visibility empowers operators to confidently optimize choke settings and flowback rates, successfully minimizing proppant production while ensuring effective well cleanup. Beyond flowback, it supports advanced reservoir diagnostics and early fracture interference detection, preventing downstream equipment damage and informing future frac designs.
QFLOW transforms well testing by delivering full-range, continuous multiphase flow measurement without the need for phase separation. Engineered as a compact inline meter with no moving parts, it replaces bulky, conventional test separators, drastically shrinking the pad footprint and reducing both CAPEX and OPEX. By providing highly accurate, real-time rates for oil, water, and gas, QFLOW eliminates flaring and empowers operators to make rapid, data-driven production decisions safely and efficiently.
QINSIGHT serves as your end-to-end production optimization command center. It bridges the gap between raw wellsite metrics and decisive action through real-time data acquisition and AI-based edge computing. By autonomously processing fluid characterization and advanced reservoir analytics, QINSIGHT continuously monitors well health and translates fragmented field data into automated production management. This allows operators to maximize ultimate recovery, optimize lift systems, and manage their assets by exception rather than estimation.
Leverages embedded edge computing to process data locally and execute control decisions instantly.
Reduces reliance on centralized systems, enabling faster response times and improved operational reliability.
Operates using real-time conditions and predefined logic rather than fixed timers or schedules.
Ensures actions are triggered only when needed, improving efficiency and system responsiveness.
Monitors sand rates without disrupting flow or requiring invasive installation methods.
Provides continuous visibility at critical points to track sand movement through the system.
Combines live sand and flow measurements to optimize cyclone performance dynamically.
Helps prevent sand bypass and carryover that can damage downstream equipment.
Captures rapid changes in flow and sand production to detect and respond to slugging events.
Maintains stable operation by adjusting control actions in near real time.
Minimizes abrasive damage by controlling sand levels and preventing excessive exposure.
Extends the lifespan of valves, cyclones, and downstream production equipment.
Optimizes dump cycles based on actual conditions, reducing unnecessary releases.
Supports lower emissions and improved environmental compliance.
Leverages embedded edge computing to process data locally and execute control decisions instantly.
Reduces reliance on centralized systems, enabling faster response times and improved operational reliability.
Operates using real-time conditions and predefined logic rather than fixed timers or schedules.
Ensures actions are triggered only when needed, improving efficiency and system responsiveness.
Monitors sand rates without disrupting flow or requiring invasive installation methods.
Provides continuous visibility at critical points to track sand movement through the system.
Combines live sand and flow measurements to optimize cyclone performance dynamically.
Helps prevent sand bypass and carryover that can damage downstream equipment.
Captures rapid changes in flow and sand production to detect and respond to slugging events.
Maintains stable operation by adjusting control actions in near real time.
Minimizes abrasive damage by controlling sand levels and preventing excessive exposure.
Extends the lifespan of valves, cyclones, and downstream production equipment.
Optimizes dump cycles based on actual conditions, reducing unnecessary releases.
Supports lower emissions and improved environmental compliance.

We offer real-time sand measurement, multiphase flow metering, and autonomous flowback technology for unconventional oil and gas operations.