Inspectivity
Inspectivity allows you to plan, assign, schedule and record inspections of critical assets. Digital inspection reports that are customized and digitally generated provide a uniform approach to inspection with full audit records of all activities. The guided process provides control and integrity to aid in automation assessment and decision-making. You can quickly identify non-compliant assets with all the features you need to manage issues, corrective steps, and history. You can record non-compliances and take and annotate photos. You can also mark-up drawings and leverage RFID and barcode technologies. You can access asset history and information on the move. You can speed up inspections by capturing field data in cloud for desktop collaboration. Find cost savings opportunities and powerful automation using embedded asset intelligence in the inspection platform.
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Intelex
Intelex delivers a unified software system for overseeing Environmental, Health, Safety, and Quality (EHSQ) initiatives. Its expandable platform is crafted to consolidate, oversee, and scrutinize EHS and Quality data comprehensively. The solution works on any device to meet the realities of your workplace.
With Intelex, your organization can:
Elevate your EHSQ program outcomes by supervising workflows for superior performance and command.
Discern patterns and propensities through goal-setting to deepen understanding and improve decision-making in your EHSQ program.
Diminish occurrences and cut down on administrative tasks by efficiently supervising, managing, refining, and extracting insights from your safety data via our intuitive safety software.
Simplify the management and reporting of air, water, and waste emissions, and oversee environmental outputs to fulfill sustainability objectives.
Foster ongoing improvements in quality by seamlessly logging and monitoring all instances of nonconformity within a unified, web-based system. Investigate trends across various departments, sites, or locations.
Intelex can help you manage compliance with international standards and regulations such as: OSHA, WCB, ISO 45001, EPA, ISO
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PeN-LAB SCI
PeN-LAB SCI is a dedicated software suite created by N-LAB Software, tailored specifically for the oil and gas sector to enhance the management of data, log creation, and reporting in mud logging and drilling operations. This platform allows for real-time surveillance and the gathering of high-fidelity data related to drilling, mud, and wellsite geology, accommodating up to 64 analog channels and various acquisition boards via direct driver access. Among its notable features are reservoir simulation, production forecasting, analysis of well performance, drilling optimization, and the interpretation of seismic data. Additionally, it includes tools for compliance management, overseeing equipment and inventory, job costing, coordinating logistics, scheduling maintenance, monitoring projects, allocating resources, and managing work orders, thereby ensuring a comprehensive approach to operational efficiency. Furthermore, PeN-LAB SCI enhances decision-making processes by providing detailed insights into various aspects of drilling and production.
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MiVu
MiVu™ is a comprehensive software solution tailored for microseismic monitoring during hydraulic fracturing, applicable to both downhole and surface geophone arrays. This advanced tool enables users to create both simple and intricate geological models interactively, devise the most effective microseismic monitoring configurations, and process data through customizable workflows. Additionally, it excels in imaging event locations using various techniques and visualizing microseismic occurrences in a three-dimensional space. Users can choose from multiple event location methods, including 3D grid search, 3D migration, and cross double difference, which offer valuable insights into how various geophysical approaches influence event localization. By grasping the strengths and limitations of each method, users can enhance their understanding of event accuracy, ultimately leading to improved decision-making in microseismic monitoring strategies. This in-depth analysis fosters greater confidence in the results generated by the software.
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