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of Scientific Technical Union of Mechanical Engineering "Industry 4.0"

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Author: Oğulcan Söğüt

  • MATHEMATICAL MODELLING OF TECHNOLOGICAL PROCESSES AND SYSTEMS

    CFD and Differential Evolution Optimization of an Air-To-Air Heat Recovery System for an Industrial Dryer

    • Oğulcan Sogut
    • Y.Yağız Simsek
    • M. Baris Yildiz
    • Yusuf Sahinoglu
    • Nesrin Sen
    • Onur Cimen
    • I. Etem Saklakoglu
    Mathematical Modeling, Vol. 9 (2025), Issue 1, pg(s) 30-33
    • Abstract
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    •  Article PDF

    This study details the thermal and fluid dynamic performance analysis and geometric optimization of a compact plate heat exchanger designed for waste heat recovery in industrial drying systems. The objective is to preheat fresh process air (25oC) to a target temperature range of 65–70 oC by recovering heat from high-temperature exhaust air (84 oC inlet, 36,000m3/h flow rate). The methodology integrates fundamental thermodynamic assessment (LMTD and  methods) with Computational Fluid Dynamics (CFD) for detailed flow and temperature mapping. Critically, a Differential Evolution (DE) algorithm was applied to optimize plate geometry, channel size, and profile arrangement, subject to a mass constraint, to maximize heat transfer. Results confirm that the optimized design achieves 18-25% natural gas savings and 27.5% higher efficiency compared to conventional systems. This hybrid approach validates the optimized heat exchanger as a highly sustainable and economically viable solution for industrial thermal management.

  • MACHINES

    Design of a Robotic-Based Multi-Packaging Machine

    • Oğulcan Sogut
    • Y.Yağız Simsek
    • M. Baris Yildiz
    • Yusuf Sahinoglu
    • Nesrin Sen
    • Onur Cimen
    • I. Etem Saklakoglu
    Machines. Technologies. Materials., Vol. 19 (2025), Issue 12, pg(s) 452-455
    • Abstract
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    •  Article PDF

    This study presents the comprehensive design and architectural modeling of a robotic-based multi-packaging machine developed for high-speed and high-precision packaging processes. The system integrates a Delta robot-based pick-and-place unit, advanced servocontrolled horizontal packaging modules, and a modular conveyor design engineered for multi-product stream transfer. This work investigates the core operational challenges, including product flow management, optimized grouping strategies, dynamic conveyor synchronization, coordination of multi-axis servo movements, and the system’s overall operational efficiency. The results indicate that the developed system operates with high stability, achieves superior precision, and significantly enhances production throughput by providing automatic parameter optimization based on product variety, thereby aligning with modern Industry 4.0 requirements.

  • DOMINANT TECHNOLOGIES IN “INDUSTRY 4.0”

    Sustainable Heat Exchanger Design for Natural Gas Savings in Industrial Dryers

    • Oğulcan Söğüt
    • Y.Yağız Şimşek
    • Onur Çimen
    • M.Barış Yildiz
    Industry 4.0, Vol. 9 (2024), Issue 5, pg(s) 178-181
    • Abstract
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    •  Article PDF

    There are many different models and types of heat exchangers depending on the area of use. The type of fluids involved in heat transfer and their temperature play a critical role in selecting the appropriate model. Common heat exchangers include plate exchangers, tube-type exchangers, air-cooled exchangers, and graphite exchangers. In this study, a sustainable and original heat exchanger system was designed to increase energy efficiency and reduce natural gas consumption by utilizing the waste heat from natural gas. The design prioritizes ease of maintenance and cleaning. Detailed engineering analyses were conducted, and critical engineering errors identified in previous heat exchanger designs were resolved. The developed designs were validated through test studies and experiments, leading to the final design after an optimization process.
    As a result of the study, a high-capacity, energy-efficient, and sustainable heat exchanger integrated with modern technology was developed.

  • MACHINES

    Industry 4.0 Approach for Development of Automatic Sanitation Unit

    • Tahsin Topbaşoğlu
    • Berkcan Babuz
    • Oğulcan Söğüt
    • Yasin Yağız Şimşek
    • Onur Cimen
    • İbrahim Etem Saklakoğlu
    Machines. Technologies. Materials., Vol. 17 (2023), Issue 8, pg(s) 305-307
    • Abstract
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    •  Article PDF

    In wet wipe machines, equipment such as tanks, pumps, pipes, and valves that come into contact with the wet wipe solution, conveyor belts, and steel surfaces with which the liquid comes into contact, must be disinfected at regular intervals under hygienic production rules. Disinfection is carried out using hot water, alcohol-based disinfectants, surfactants, detergents, oxidizing agents, or a mixture of all these methods. In current applications, liquids are drained manually from preparation units or tanks, and machine surfaces are cleaned manually. Cleaning and sanitation is done by hand. At the same time, performing some cleaning scenarios is harmful to human health because of hot steam or water, chemical cleaning steam, etc. So, it is impossible to ensure the hygiene level of systems. In this study, safe by design and prevention approaches were used and a system equipped with several measurement sensors was designed to work with different sanitary liquids and their preparation units according to sanitary recipes, producing a report at the end of the cleaning process. There are devices such as pH meters, temperature sensors, pressure sensors, and several water analyzers in the system, and it is decided that cleaning is completed by processing the data from these sensors. This article describes the system developed in compliance with industry 4.0 applications

  • MATHEMATICAL MODELLING OF TECHNOLOGICAL PROCESSES AND SYSTEMS

    Modeling of Cutting Knife Cylinders in Wet Wipe Machines

    • Onur Cimen
    • Tahsin Topbaşoğlu
    • Berkcan Babuz
    • Oğulcan Söğüt
    • Yasin Yağız Şimşek
    • İbrahim Etem Saklakoğlu
    Mathematical Modeling, Vol. 7 (2023), Issue 2, pg(s) 49-51
    • Abstract
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    •  Article PDF

    One of the most critical consumable expenses in the production of wet wipes is the anvil and knife set used in the cutting unit. Blades that lose their cutting ability over time and become unable to perform their task pose a significant challenge. As wet wipes are essential products for maintaining hygiene and directly affect human health, even the slightest disruptions in production conditions are unacceptable. To ensure the quality and consistency of wet wipe production, it is vital to analyze the factors affecting the strenght of cutting blades and implement the necessary precautions. One of the key factors influencing the wear of cutting tools is the mechanical strength of the tool’s carrying unit. This paper explores the importance of cutting tools in wet wipe production, the role of mechanical strength in maintaining their effectiveness and application of mathematical modeling to design.

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