“𝘏𝘢𝘯𝘥𝘭𝘪𝘯𝘨 𝘣𝘰𝘵𝘩 𝘌&𝘐 𝘢𝘯𝘥 𝘖𝘛, 𝘪𝘴 𝘢 𝘥𝘪𝘴𝘵𝘪𝘯𝘤𝘵𝘪𝘷𝘦 𝘢𝘱𝘱𝘳𝘰𝘢𝘤𝘩 𝘥𝘳𝘪𝘷𝘦𝘯 𝘣𝘺 𝘢 𝘤𝘰𝘮𝘮𝘪𝘵𝘮𝘦𝘯𝘵 𝘵𝘰 𝘴𝘢𝘧𝘦𝘵𝘺 𝘢𝘯𝘥 𝘦𝘧𝘧𝘪𝘤𝘪𝘦𝘯𝘤𝘺” 💡 In our latest case with Evonik Antwerp we talked about how Simon De la Marche’s unique combination of skills did not only optimise operational efficiency but also reinforced safety measures and embraced a culture of continuous improvement. 📈 A fitting example of this combined approach and its benefits, was the update of a system measuring gas emissions: 𝐏𝐫𝐨𝐛𝐥𝐞𝐦: Previously, the process of measuring gas emissions relied on constants, leading to significant discrepancies during outliers like exceptionally hot summers. 𝐒𝐨𝐥𝐮𝐭𝐢𝐨𝐧: Reprogramming the temperature and pressure sensors to perform a time-based comparison optimized this process. It ensured that the right amount of gas is taken in based on a mathematical formula, accounting for variables like sunlight on the pipeline. Curious about the benefits of combining E&I engineering with expertise in DCS programming? 👇 Or just reach out; we’re always happy to help you out. #DCS #EandI #smartfactory #evonik #engineering
IWA Specialist Group on Instrumentation, Control and Automation (ICA)’s Post
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Accurate instrumentation and control measurements are essential for optimizing processes, ensuring safety, maintaining quality, and complying with regulatory requirements across various industrial sectors. Here at DwyerOmega, we challenge ourselves every day to design, manufacture, and support the latest and best in technology solutions to make your process and project successful. If you are interested in increasing efficiency, accuracy/precision, cost reduction, improved safety, real-time monitoring and control, scalability, resource management, improved quality control, enhanced flexibility, and integration and coordination.... then DwyerOmega is the right place to start. Come see how the DwyerOmega team can offer you the right products for the right applications. Taking the guess work out of the world of automation is our business. Now is the time to see how DwyerOmega is Improving the world, one measurement at a time. #DwyerOmega #instrumentation #controls #sensors #pressuresensor #flowsensor #levelsensor #loadcell #temperaturesensor #measurement #automation #MRO #industrial #WWTP #WTP #manufacturing #sustainability #efficiency #maintainance #DwyerInstruments #OmegaEngineering #TeamACI #Miljoco #WeissInstruments #UFM
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🎓 Final Year Project: Study, Design, and Implementation of a Proportional-Integral Automatic Regulator (PI) 🎓 I am excited to share with you the result of several months of hard work and collaboration with my partner, Engineer Najim EL AMRI. Together, we successfully completed our final year project on a fascinating and crucial topic for industrial automation. 🔍 Project Topic: Study, design, and implementation of a proportional-integral automatic regulator (PI). 📈 Project Objectives: Understand the fundamental principles of proportional and integral regulators. Design a PI regulator capable of precisely maintaining a process variable at a desired value. Implement a functional prototype of this regulator. Test and Validate the regulator under various conditions to ensure its performance and reliability. 🔧 Key Project Stages: Research and Analysis: Study the theoretical principles of PI regulators and analyze the needs of the control system. Design: Develop the regulation schematics and select suitable components. Implementation: Assemble the regulator and program the control logic. Testing and Optimization: Establish test scenarios to verify and enhance the regulator's performance. 🌟 Results: Accuracy and Stability: Our PI regulator demonstrated excellent capability in maintaining system stability with remarkable accuracy. Flexibility: The regulator can be easily adjusted to meet different types of industrial processes. Innovation: Integration of additional features to improve energy efficiency and user-friendliness. 🤝 Acknowledgements: I would like to thank our supervisor and everyone who supported us throughout this project. A special thanks to my partner Najim EL AMRI for his collaboration and technical expertise. 🚀 Next Step: We are excited to pursue our careers in engineering and contribute to innovative and impactful projects. 📢 Interested in our work? Feel free to contact us for more details about our project or for any future collaboration opportunities. #Engineering #Automation #Regulation #FinalYearProject #Innovation #IndustrialElectronics #RenewableEnergy #Technology #LinkedIn
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What is SIL Assessment/ Determination and IEC 61511 Requirements? The Safety Integrity Level (SIL) is a measure used in functional safety standards to determine the required degree of risk reduction for a safety function or system. It is determined through a risk assessment process that evaluates the likelihood and consequences of potential hazards. The SIL study refers to the process of assessing and assigning an appropriate SIL level to safety-related systems and components. This is an important step in the design and implementation of functional safety systems, such as those found in industrial automation, transportation, and other high-risk applications. The key aspects of an SIL study include: 1. Hazard and Risk Analysis: Identifying potential hazards and assessing the associated risks to determine the required risk reduction. 2. SIL Assignment: Selecting the appropriate SIL level (1 to 4, with 4 being the highest) based on the required risk reduction. 3. System Design and Architecture: Designing the safety system to meet the specified SIL requirements through the selection of appropriate safety components, redundancy, and diagnostic coverage. 4. Verification and Validation: Testing and validating the safety system to ensure it meets the assigned SIL level. The SIL study is an essential part of the functional safety lifecycle and is typically conducted by a team of experts, including process engineers, safety engineers, and control system specialists. It helps ensure that safety-critical systems are designed, implemented, and maintained to the appropriate level of risk reduction. Let me know if you need any further details or have additional questions about the SIL study and functional safety in industrial automation. WIKA Group Woodward Poland AUMA Group Hazops Process Engineering Yokogawa KROHNE Siemens Hitachi Energy #hazop #instrument #sil_study #control_system Rotork Pepperl+Fuchs Group Vaisala
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Siemens #processinstrumentation experts are in the HOUSE conducting training sessions for our Golden, CO Process Technology, Inc. team. Among the highlights of this training ► #Siemens cutting-edge Non-Intrusive Clamp-on Ultrasonic Flow Meters. Here's why they're generating buzz: ► Non-contacting Gas and liquid flow measurement ► Wide Range of Applications: Suitable for various fluid types and pipe sizes, making them versatile for different industries. ► High Accuracy: Provides precise flow measurements, ensuring optimal process control. ► Advanced Diagnostics: Offers insights into both the measurement and the process, helping you troubleshoot and optimize your operations. ► Low Cost of Ownership: Easy installation with the ability to clamp onto existing piping without the need for modifications or downtime. #siemenspi #UltrasonicFlowMeters #FlowMeasurement #AdvancedDiagnostics #SiemensIndustry
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𝐓𝐡𝐞 𝐑𝐨𝐥𝐞 𝐨𝐟 𝐓𝐫𝐚𝐧𝐬𝐦𝐢𝐭𝐭𝐞𝐫𝐬 𝐢𝐧 𝐄𝐟𝐟𝐢𝐜𝐢𝐞𝐧𝐭 𝐈𝐧𝐝𝐮𝐬𝐭𝐫𝐢𝐚𝐥 𝐎𝐩𝐞𝐫𝐚𝐭𝐢𝐨𝐧𝐬🔧 Transmitters are essential in instrumentation and automation, converting physical measurements into standardized signals for control systems. This enables operators to enhance efficiency, safety, and reliability. In this blog post, we'll discuss the function of transmitters, their types, the process variables they measure, and their industrial applications. https://lnkd.in/dXyxq9aG #Transmitters #IndustrialAutomation #ProcessInstrumentation #ArshonTechnology #ElectronicDesign
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