
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
Learn more
eMaint, a cloud-based Computerized Maintenance Management System (CMMS), is an award-winning software that helps organizations improve their ability to manage their maintenance reliability operations, equipment, and compliance. eMaint is suitable for any size company or enterprise. It integrates all the tools they require into one powerful platform, saving companies valuable time and money. It includes maintenance scheduling, work order management, reports and dashboards as well as predictive maintenance, preventive maintenance and mobile maintenance. It also manages inventory management and asset management.
Learn more
WellArchitect
WellArchitect, created in collaboration with Baker Hughes Company, serves as a sophisticated system for well planning and survey management, designed to facilitate the integrated planning and drilling of directional well paths, regardless of the presence of earth models. This innovative tool is tailored to effectively manage the complexities of sidetracking, multi-lateral well paths, and re-entry drilling, making it indispensable for personnel across all levels within the industry, both at the office and on-site. The system encompasses trajectory calculations, analyses of target erosion due to positional uncertainties, comprehensive reporting, plotting features, and advanced 3D visualizations. Well paths can be compared against various models, including earth and reservoir models, enhancing decision-making capabilities. Additionally, it integrates robust directional drilling software with cutting-edge visualization technologies and optional reservoir geo-data, marking a significant advancement in the drilling sector. Furthermore, it streamlines the entire process from meticulous planning and survey calculations to efficient data management and collision-risk assessments, ensuring a holistic approach to well operations.
Learn more
PVT Solver
Develop more accurate models of your reservoir fluids by utilizing dependable and straightforward PVT software to calculate essential PVT properties. PVT Solver can effectively illustrate the behavior of petroleum reservoir fluids, making it an ideal choice for easy PVT simulation and exporting various fluid properties. You can analyze reservoir fluids through a simple three-step process, which involves using the easiest fluid properties software available for your PVT modeling needs. In Step 1, input the necessary data by identifying the existing separation system and entering the relevant field parameters. Step 2 involves comparing correlations, allowing you to visualize various correlation models for each fluid property. In Step 3, you will calculate properties by selecting a correlation for each property and defining the calculation range. It’s essential to utilize the most recognized fluid correlations in the industry, such as Sutton (2007) for gas pseudo-critical properties and Dranchuk-Abou-Kassem (DAK) (1975) for gas z compressibility or deviation factors. Additionally, Standing (1947) can be employed for bubble point calculations. Ultimately, these steps lead to a more comprehensive understanding of reservoir fluid behavior, enhancing your modeling accuracy.
Learn more