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Consistency is the key - the combination of process technology and automation technology

Abstract: Consistency is the key - the information on the mutual combination of process technology and automation technology is provided by excellent flowmeter and flowmeter manufacturers and quotation manufacturers. At present, the integration of technical data from process equipment design to process data has received extensive attention. What is the attitude of technology-leading software companies? The special correspondent of PROCESS German version made some understanding. In today's process industry equipment manufacturing. More flowmeter manufacturers select models and price quotations. You are welcome to inquire. The following is the key to consistency - the combination of process technology and automation technology. At present, the integration of technical data from process equipment design to process data has received extensive attention. What is the attitude of technology-leading software companies? The special correspondent of PROCESS German version made some understanding. In today's process industry equipment manufacturing, it is not just a simple scale-up of the R&D results in the technology center. On the contrary, the technology of the process equipment is required to ensure that the equipment operates reliably at the optimal operating point, such as optimal operation under partial load production conditions when the market demand is small. And to do this can only rely on a high degree of automation. For designers of process equipment, this means a high level of data consistency, ie data consistency for automation and process control systems for processes. An example of a designer determining a pipe grade is a perfect example of combining automation and process technology. When designing the pipeline, the designer needs to know the specifications and dimensions of the field equipment, and these data are frequently changing data, and they are data that will change in all directions. This requires a fully integrated system to automatically correct, such as when the R1234 pipe is changed from DN40 to DN50, the diameter size F1234 should also be changed accordingly. To achieve this automatic correction, Dr. Thomas Tauchnitz (of Sanofi-Aventis, Germany) sees two basic approaches: Avoid using different interfaces when designers use different tools or modules to access the same database. Use standardized interfaces to exchange data between different design tools. An example of using the first method is the Comos system developed and produced by Siemens: it is based on a relational database, has an object-oriented abstraction layer, and can access different modules. This system covers a large part of process control technology and process technology throughout the life cycle of process equipment. NovartisPharma has been using the Comos system since 2004. The pharmaceutical company has realized the use of this tool both within the scope of process technology and within the design of electrical, detection, control and regulation technology. The second method is to use the so-called Namur data package, and use the Namur technical standard data package to replace the development of special interfaces from various CAE systems to various process management systems to read and write CAE system and PLS data. The interface of this kind of data packet also has the function of two-way communication. There are other solutions (same database/data platform) in the first approach of mechatronics engineering: for example Cadison by ItanfFactory is a tool with a central database. Eplan is also a powerful tool for sensor and automation component engineering (mechatronics engineering) data in machine tool and plant manufacturing. It can put the basic engineering design in P&Process control data from ID components is used continuously and consistently for all subsequent project phases. Using this enterprise's own platform, it is possible to provide the same underlying data and functionality for all applications. This P of the base platform&The ID module ensures the consistency of documents and data of machine tools and equipment across fields in process control technology. It can be said that the data in the engineering project is seamlessly transferred to the fluid engineering project and the electrical engineering project. If there is a conflict between the diameter of the pipe and the interface diameter of the related equipment as mentioned above, the tool software will give an error prompt. Aucotec is also looking for connecting tools between automation and electrical technology according to other principles. For example, electric motors designed in Aucotec's ECAE (Electronic Computer Aided Engineering) can also appear in a 3D-CAD mechanical drawing. Based on its database, Aucotec's EB Engineering Technology Fundamentals database contains the content of all projects, and can also acquire and link data like 3D-CAD systems. In this way, the tool straddles the boundaries between machine manufacturing, process control technology, cable harness design and energy supply. SmartPlant3D is a data-centric, rule-led software solution launched by Intergraph, which provides all the functions required for the specification design of process equipment and its operation throughout its life cycle. Aveva's Plant provides integrated engineering management, information management solutions and engineering design applications for the process and energy industries, combining open and flexible total life cycle management. Utilizing the new Everything3D (E3D) enables Aveva to achieve slender work processes in engineering design, process equipment planning and design and structural design. This also greatly improves the development speed of process projects and reduces risks. For special PLT solutions with extensive integration, you can find your needs at Rösberg Engineering.

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