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Professor Cho Jin-gyun Receives Minister of Land, Infrastructure and Transport Commendation at '2026 Mechanical Equipment Day' 이미지
Professor Cho Jin-gyun Receives Minister of Land, Infrastructure and Transport Commendation at '2026 Mechanical Equipment Day'
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  • - Actively conducting research centering on building services and data center cooling and energy fields- Contributing to advancement of mechanical equipment and fostering professional talent□ Hanbat National University (President Oh Yong-jun) Professor Cho Jin-gyun of the Department of Building Systems Engineering received a Minister of Land, Infrastructure and Transport Commendation in recognition of his contributions to the development of the mechanical equipment industry at the '2026 Mechanical Equipment Day' ceremony held at Seoul Dragon City on the 23rd.○ 'Mechanical Equipment Day' is an event organized to raise awareness of the importance of the mechanical equipment industry and to discover and encourage individuals of merit who have contributed to industrial development and strengthening national competitiveness.□ Hanbat National University Professor Cho Jin-gyun has contributed to the advancement of domestic mechanical equipment technology and the fostering of professional talent by actively carrying out research and educational activities centering on building services and data center cooling and energy fields.○ In particular, taking high efficiency cooling and energy saving technology for rapidly growing AI data centers as his major research field, he is conducting diverse research ranging from air cooling to next generation cooling technologies such as direct liquid cooling (DLC) and immersion cooling.○ In addition, he has made efforts to link industrial fields with academic research through studies aimed at improving data center energy efficiency and optimizing mechanical equipment systems.○ Furthermore, as an educator in the mechanical equipment field, he is making efforts to ensure that university research achievements lead to technological development in actual industry by fostering professional talent equipped with both practical competency and research competitiveness required in industrial fields, as well as through industry academic cooperation and national research and development projects.□ Meanwhile, about 500 people, including officials from the government, industry, academia, and research institutes, attended the event on this day, where the role and importance of the mechanical equipment industry as core infrastructure for advanced industries such as AI, semiconductors, and data centers were emphasized through an occasion to share achievements of the mechanical equipment industry and explore future development directions.
  • 등록일2026-07-24 14:08:53
Creative Convergence Undergraduate Student Cho Yoon-seo Wins Outstanding Paper Award at 2026 KSAS Aerospace Electronics Symposium 이미지
Creative Convergence Undergraduate Student Cho Yoon-seo Wins Outstanding Paper Award at 2026 KSAS Aerospace Electronics Symposium
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  • - Proving undergraduate research capabilities through satellite electrical system protection technology for space AI data centers- Proposing practical analog circuit design technology applicable to actual satellite systems□ Hanbat National University (President Oh Yong-jun) announced that Cho Yoon-seo, a 4th-year student in the Department of Creative Convergence, won the Outstanding Paper Award at the '2026 Korean Society for Aeronautical and Space Sciences Aerospace Electronics Symposium' on the 2nd.○ Student Cho Yoon-seo presented a research paper titled 'FPGA Independent Latching Current Limiter for Multichannel Circuit Protection of Space AI Data Centers', which carries great significance as a 4th year undergraduate student received an outstanding paper award at a specialized academic conference in aerospace electronics.○ In particular, it draws attention as a case where an undergraduate student conducted research considering actual satellite system applications in the high difficulty space avionics fieldsuch as satellite electronic systems, space AI data centers, and analog circuit design technology for fault managementand had the results recognized by an academic society.□ The award winning paper addresses circuit protection technology to respond to overcurrent, short circuit, and abnormal load conditions that can occur in multichannel electrical systems of space AI data center satellites.○ Because space AI data centers must perform high performance-computation and large-capacity data processing in orbit, technology to stably operate multiple power channels and quickly protect circuits when failures occur is essential.□ The technology proposed by student Cho Yoon-seo is based on a latching current limiting structurea device capable of maintaining circuit status even when power is cut offwithout relying on Field Programmable Gate Arrays (FPGA), which are semiconductor devices whose internal circuits can be reconfigured in the field.○ In previously developed Korean satellites, there have been cases where FPGA control circuits were applied to implement multichannel load protection and current limiting functions, and this method has been utilized as a highly reliable structure securing satellite operational heritage.○ However, FPGAs can account for a high proportion of component unit costs and design complexity during the development of satellite onboard units, which can become a cost burden factor in the development process of multichannel power distribution units.○ Taking note of this point, this study is characterized by implementing latching cutoff and load protection functions previously provided by FPGA current limiting circuits on an analog circuit foundation, thereby securing the same level of protection performance without an FPGA.○ In particular, compared to FPGA current limiting circuits applied to previously developed domestic satellites that have operational heritage, it is evaluated as practical technology that can simultaneously achieve unit cost reduction, design simplification, and reliability assurance in actual satellite electrical system development by reducing the use of expensive FPGAs while securing multichannel circuit protection and fault response capabilities.○ Student Cho Yoon-seo said, "It is very meaningful that the research I conducted as a member of the Satellite Electronics and Energy Systems Laboratory since the winter break of my sophomore year received high praise," adding, "I want to continue researching satellite electronic systems and circuit design technology that can contribute to actual satellite systems in the future."□ Professor Park Jeong-eon, who advised student Cho Yoon-seo, stated, "Even as an undergraduate, student Cho Yoon-seo has high curiosity and research passion for satellite electronics, to the extent of defining problems of actual satellite systems from early research stages and proposing practical circuit protection technology to solve them," adding, "As majors in related fields are rare, there is great potential to grow into an outstanding talent in satellite electronic systems and circuit design."○ He further added, "This achievement is an example showing the results of education fostering problem solving convergence engineering talent pursued by the Department of Creative Convergence in the next generation space systems field where electrical, electronics, space, and semiconductor technologies converge."
  • 등록일2026-07-06 14:03:43
Department of Industrial Design Wins Grand Prize, Excellence Award, and Advisor Award at ‘2026 Spring Student Design Academic Presentation Competition (DSUS)’ 이미지
Department of Industrial Design Wins Grand Prize, Excellence Award, and Advisor Award at ‘2026 Spring Student Design Academic Presentation Competition (DSUS)’
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  • Photo Caption: (From left) Hanbat National University Department of Industrial Design students Kim Tae-young, Song Hyun-soo and Professor Kim Seung-minPhoto Caption: Key images of 'A Study on Smart Storage System Design for Improving Case Cart-Based Surgical Logistics Operation' proposed by Hanbat National University Department of Industrial Design student Kim Tae-young and Professor Kim Seung-min- Proving design practical competency and teaching method achievements through achievements of both students and faculty□ Hanbat National University (President Oh Yong-jun) announced on the 23rd that students and faculty from the Department of Industrial Design won the Grand Prize (Kim Tae-young), Excellence Award (Song Hyun-soo) and Advisor Award (Professor Kim Seung-min) at the '2026 Spring Student Design Academic Presentation Competition (DSUS)' hosted by the Korean Society of Design Sciences which boasts the highest authority in South Korea.○ In this 2026 Spring Student Design Academic Presentation Competition (DSUS), the winning papers were selected by combining the on-site presentation scores at the student academic presentation competition among 44 papers that passed a strict first screening.○ As a result, the university secured the Grand Prize for 'A Study on Smart Storage System Design for Improving Case Cart-Based Surgical Logistics Operation (Kim Tae-young, Kim Seung-min)' and the Excellence Award for 'A Study on Drone Control Interface UX/UI Design for Interaction Among Controllers, Rescuers, and Rescuees in Mountain Rescue Environments (Song Hyun-soo, Kim Seung-min).'○ Student Kim Tae-young shared his ambition, saying, Along with the joy of achieving a good result, this award was a meaningful experience that made me feel once again the possibility that design can help improve complex problems in medical fields in a safer and more efficient direction, and added, Based on this experience, I want to continue design and research that can add meaningful value to people and society in the future.○ Professor Kim Seung-min said, This award is a result achieved through long and meticulous preparation from research design to the demonstration process design paper writing and presentation and added, It is an achievement that proves the excellent capabilities of students in the Department of Industrial Design at Hanbat National University. I hope that this will serve as a stimulus for Hanbat National University students with such excellent talents to compete with world-class experts and grow even bigger.□ Meanwhile, the Department of Industrial Design at Hanbat National University announced that it will continue systematic and in-depth practical education and research in the future and take the lead in making an aesthetic and user-friendly world by actively communicating and sharing in the form of academic presentations and contests.
  • 등록일2026-06-23 15:20:33
Department of Industrial and Management Engineering Wins Minister of Agriculture, Food and Rural Affairs Award (Grand Prize) at ‘Livestock Distribution Idea Contest’ 이미지
Department of Industrial and Management Engineering Wins Minister of Agriculture, Food and Rural Affairs Award (Grand Prize) at ‘Livestock Distribution Idea Contest’
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  • - Proposal for predicting pig slaughter volumes based on public livestock data and utilizing supply and demand stabilization policies□ Hanbat National University (President Oh Yong-jun) announced that a team of Industrial and Management Engineering students Kim Byung-yeon, Park Jae-ha, and Lee Na-hye (enrolled in the Bachelor's-Master's integrated program)- won the Minister of Agriculture Food and Rural Affairs Award (Grand Prize) on the 29th. The award was presented at the '2026 College Undergraduate and Graduate Students Livestock Distribution Idea Contest' organized by the Korea Institute for Animal Products Quality Evaluation and the Korean Society for Quality Management, with their project titled, 'Proposal for Predicting Pig Slaughter Volumes Based on Public Livestock Data and Utilizing Supply and Demand Stabilization Policies○ A total of 93 teams participated in this contest, which was conducted through document screening and on-site presentation evaluations by experts from the Korea Institute for Animal Products Quality Evaluation.□ The three students, who participated under the team name GU Lab -named after their advising professor, Kim Tae-gu- from the Department of Industrial and Management Engineering, received high practical value recognition. They presented a service that predicts slaughter volumes considering environment variables such as the pig-raising process, heat waves, infectious diseases, feed prices and long holidays. The system identifies causes of changes and proposes customized information to livestock distribution officials and policy managers in related departments.○ Team member Kim Byung-yeon shared his thoughts, saying, It was impressive that we could xss-create an actually helpful result for real-world operations by applying the theories learned at school. Park Jae-ha expressed, Im especially happy that we received a good evaluation from actual livestock experts.○ In addition, Team member Lee Na-hye revealed her ambition: In the future, I want to xss-create a better service through various improvements such as mid- to long-term forecasting by region.□ Park Soo-jin, President of Korea Institute for Animal Products Quality Evaluation, who stood as the award presenter on this day said, It was truly impressive that many teams presented such high-level results in this contest. I listened with a joyful heart, as many of the ideas were as much novel and practical as those from our in-house idea contests. She concluded by extending her gratitude, saying, Thank you to all the students.
  • 등록일2026-06-02 15:14:36
Mechanical Engineering Undergraduate Student Oh Min-taek Wins Outstanding Poster Award at Korean Radioactive Waste Society Conference 이미지
Mechanical Engineering Undergraduate Student Oh Min-taek Wins Outstanding Poster Award at Korean Radioactive Waste Society Conference
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  • - Securing optimized design technology ensuring structural safety of high level radioactive waste disposal containers□ Hanbat National University(President Oh Yong-jun) announced that undergraduate researcher Oh Min-taek from the Department of Mechanical Engineering(advising professor Jeong Gil-eon) won the 'Outstanding Poster Award' for a study on proving the structural integrity of high-level radioactive waste disposal canisters at the 'Korean Radioactive Waste Society 2026 Spring Academic Conference' on the 28th.○ The Korean Radioactive Waste Society is an academic organization established in 2003 with the aim of technological development in the field of domestic radioactive waste management and disposal knowledge expansion through industry-university-research exchange and application to actual industries It in-depth evaluates papers presented each time selects outstanding research and awards them at the next conference.□ Undergraduate student Oh Min-taek presented a study under the theme of 'FE based Evaluation of Copper Canister Integrity for Deep Geological Disposal' at the '2025 Radioactive Waste Society Autumn Academic Conference' held last November and as a result its excellence was recognized in the field of high-level waste disposal.○ This study focused on securing structural safety while optimizing the thickness of the 'copper canister' which is the final barrier that safely isolates spent nuclear fuel deep underground In particular it enhanced the reliability of the research by strictly applying the ASME American Society of Mechanical Engineers standards which are global safety standards for mechanical equipment.□ The research team precisely analyzed the characteristics of the canister under harsh scenarios including not only the normal disposal pressure 15MPa but also the extreme ice age pressure 50MPa and the non-uniform expansion of the buffer material 7MPa through Finite Element Analysis FEA.○ As a result, it confirmed that the 50mm-thick copper canister currently being reviewed as a domestic and international standard is a very conservative design proposal and presented scientific evidence through data analysis that it can maintain sufficient structural integrity even with a thinner thickness.○ This is expected to become an important indicator to secure economic feasibility by reducing the amount of copper used within the scope of securing structural safety when designing the Korean-style disposal canister in the future.□ Department of Mechanical Engineering advising professor Jeong Gil-eon said This achievement has laid the technological foundation to simultaneously enhance the safety and economic efficiency of high-level radioactive waste permanent disposal facilities and added It is even more valuable as it is a result obtained by an undergraduate student taking the lead in conducting high-difficulty analysis research that complies with international standards.
  • 등록일2026-05-29 11:08:06
Department of Civil and Environmental Engineering Wins Association President Award Outstanding Paper Award and Tech Dreaming Competition Silver Prize at 2026 Korean Tunne 이미지
Department of Civil and Environmental Engineering Wins Association President Award Outstanding Paper Award and Tech Dreaming Competition Silver Prize at 2026 Korean Tunne
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  • Department of Civil and Environmental Engineering Wins Association President Award Outstanding Paper Award and Tech Dreaming Competition Silver Prize at 2026 Korean Tunnelling and Underground Space Association Conference□ Hanbat National University Department of Civil and Environmental Engineering Professor Kim Do-hyun undergraduate students and Department of Civil Engineering graduate students proved their research excellence by winning the Society President Award and Outstanding Paper Award at the '2026 Korean Tunnelling and Underground Space Association Annual General Meeting and Autumn Conference' held last April.○ The Korean Tunnelling and Underground Space Association is the largest domestic society related to tunnel engineering and underground space development and was established in 1993 to lead the development of research academic and construction technology related to the safe utilization and development of underground spaces.□ At this conference, Professor Kim Do-hyun was awarded the Society President Award in recognition of his contributions to encouraging society activities of early-career tunnel engineers and undergraduate and graduate students of related departments as the Chairman of the 16th YE Young Engineering Committee of the Korean Tunnelling and Underground Space Association and providing various opportunities and venues for taking their first steps in the society.○ In addition, Lee Pu-reun and Cho Yoon-sang in the Master's program and Ko Byung-soo in the Doctoral program advising professor Professor Kim Do-hyun who are enrolled in the graduate school presented 'A Case Analysis Study on the Settling and Cracking Patterns of Underground Structures Due to the Construction of Adjacent Structures' in the Next-Generation Tunnel Engineer session of this conference and were selected as recipients of the Outstanding Paper Award.○ The research conducted a practical study on the interval between structures that becomes denser due to the intensification of population concentration and the interactions occurring between structures as a result and derived conclusions by combining actual construction cases and refined numerical analysis research.□ Lastly, Department of Civil and Environmental Engineering undergraduate students Cho Seung-ah Shin Se-min and Kim Woo-suk advising professor Kim Do-hyun received the Silver Award by receiving an outstanding evaluation among about 20 technical proposals submitted by 10 universities nationwide under the technology structure name 'Underground Circulatory Energy and Data Hub' at the 2025 Tech Dreaming Contest organized by the Korean Tunnelling and Underground Space Association.
  • 등록일2026-05-27 10:34:20
Department of Buliding Systems Engineering Students Won the Best Award at the Architectural Institute of Korea Daejeon‧Sejong‧Chungnam Branch 2026 Academic Competition 이미지
Department of Buliding Systems Engineering Students Won the Best Award at the Architectural Institute of Korea Daejeon‧Sejong‧Chungnam Branch 2026 Academic Competition
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  • - Won the Grand Prize and Excellence Prize in the Environment and Facilities category for video production□ Hanbat National University (President Oh Yong-jun) announced that undergraduate students from the Department of Buliding Systems Engineering won the Grand Prize and Excellence Prize, respectively, in the Environment and Facilities category at the '2026 Competition' hosted by the Architectural Institute of Korea Daejeon‧Sejong‧Chungnam Branch on the 10th.○ This competition was held at Namseoul University, and the theme for the Environment and Facilities category was 'Artificial Intelligence (AI) & Building Environment and Facility Technology for Realizing Zero-Energy Buildings'.□ First, the 'Carbon Log-out' team (students Kim Jun-hyeong and Ryu Je-chang, advised by Professor Park Byung-yong), which won the Grand Prize, produced and presented a video under the theme of 'Carbon Monitoring System'.○ This work proposed a system that monitors carbon emissions within a building in real-time based on IoT technology and naturally induces carbon reduction behaviors through student participation. It received high praise as a practical idea contributing to the realization of zero-energy buildings by combining occupant behavior changes with advanced sensor technology.○ In addition, the 'Deokmyeong-dong.mp3' team (students Kim Gyu-young, Lee Hee-chan, and Park Sang-ha, advised by Professor Im Han-sol) won the Excellence Prize for their project themed 'AI-based Personalized Active Noise Control System Using the Principle of Parametric Speakers'.□ Professor Park Byung-yong stated, "The convergence of zero-energy building realization and artificial intelligence technology is emerging as a core task in the field of building environment and plant engineering. We will support our undergraduate students in the Department of Buliding Systems Engineering to stay attentive to these contemporary trends and practice future-oriented self-development, allowing them to grow into strategic talents."
  • 등록일2026-04-13 17:44:36
Lee Ye-gyu, a Master's Student in Department of Mechanical Engineering, Wins Best Poster Presentation Award at ‘The Society of Micro and Nano Systems 2026’ 이미지
Lee Ye-gyu, a Master's Student in Department of Mechanical Engineering, Wins Best Poster Presentation Award at ‘The Society of Micro and Nano Systems 2026’
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  • - Recognized for the design of wearable SERS sensors to detect cortisol in sweat using xss-metal nanostructures transferred onto electrospun fibers□ Hanbat National University (President Oh Yong-jun) announced that Lee Ye-gyu, a Master's student in the Department of Mechanical Engineering (Advised by Professor Ha Ji-hwan), won the Best Poster Presentation Award at 'The Society of Micro and Nano Systems 2026 Spring Conference' held at the Jeju International Convention Center (ICC) from the 25th to the 27th.○ The Society of Micro and Nano Systems is a leading academic organization in Korea established for academic advancement and technological innovation in the fields of devices, materials, processes, and systems at the micro and nano scales.○ This Spring Conference was held concurrently with 'The 28th Korean MEMS (Micro Electro Mechanical Systems) Conference', and it plays a pivotal role every year in sharing and disseminating outstanding research achievements and cutting-edge nanotechnology in related fields.□ Graduate student Lee Ye-gyu was recognized for the excellence of his research presented at this conference under the theme of 'xss-metal Nanostructures transferred onto Electrospun Fibers for Wearable SERS-Based Point-of-Care Cortisol Diagnosis'.○ This study proposed a technology that can non-invasively monitor cortisol, a key biomarker indicating stress levels, in real-time in daily life by utilizing a fiber-based sensor.○ The conventional cortisol detection method, ELISA, used blood or urine samples and had limitations in point-of-care testing, such as taking 3 to 5 hours for analysis and requiring reactions to occur externally.○ To address this issue, this study designed a sensing platform capable of detecting cortisol directly from sweat by utilizing Surface-Enhanced Raman Scattering (SERS) and the breathable characteristics of electrospun fibers.□ The research team introduced an electrostatic induction nano-transfer printing technology to develop a process that stably integrates gold (Au) nanostructures onto flexible and highly permeable electrospun thermoplastic polyurethane (TPU) fibers without applying heat or pressure.○ When the proposed sensor comes into contact with sweat, the two xss-layers of nanostructures meet due to the capillary effect, forming a strong electromagnetic hotspot, and precisely measuring the Raman signal that changes according to the cortisol concentration.○ In particular, this platform is designed to enable direct diagnosis from raw sweat samples without any separate microfluidic channels or pumps, and has the advantages of excellent wearability and superior breathability by using flexible fiber materials.□ Advising Professor Ha Ji-hwan of Hanbat National University stated, "This research achievement proposes a solid foundation for real-time in vitro diagnostic healthcare monitoring that can be extended not only to the management of stress-related diseases but also to the detection of various disease-related biomarkers."
  • 등록일2026-04-02 15:05:45
Graduate Student Lee Hyo-ju of the Department of Applied Materials Engineering Publishes Paper in International Journal 이미지
Graduate Student Lee Hyo-ju of the Department of Applied Materials Engineering Publishes Paper in International Journal
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  • - A study on the microstructural evolution and mechanical properties of friction stir spot welded pure ta□ Hanbat National University announced that a research paper by Lee Hyo-ju, a graduate student in Professor Cho Hoon-hwis research team from the Department of Advanced Materials Engineering, has been published in 'Materials Science and Engineering A' (IF 7.0, JCR Top 8.8%), a prestigious international journal in the field of materials science.○ Lee Hyo-ju, a doctoral student in the Department of Applied Materials Engineering at the Hanbat National University Graduate School, participated as the lead author of the paper titled Microstructural evolution and mechanical properties of friction stir spot welded pure Ta. This study systematically investigates the feasibility of applying friction stir spot welding to Tantalum (Ta)a xss-metal with an extremely high melting pointwhile elucidating its microstructural evolution and mechanical properties.□ Ta has a very high melting point and is difficult to apply the existing melt bonding process, so the need to develop highly reliable bonding technology has been raised.○ To overcome these limitations, the research team applied friction stir spot welding, a solid-state joining process. They evaluated the impact on joining characteristics by controlling the tool plunge deptha key process variableand conducted a precise analysis of the changes in the microstructure and mechanical properties of the joint.○ In particular, by conducting a comparative analysis between the upper and lower regions of the joint, the study systematically identified structural changes and characteristic differences across these areas. The results confirmed an increase in hardness within the stir zone due to grain refinement, demonstrating that the overall mechanical performance of the joint was significantly enhanced.□ As a pioneering study that demonstrates the feasibility of friction stir spot welding for Tantalum (Ta), this research shows its potential as an alternative process capable of overcoming the limitations of conventional fusion welding.○ This study provides fundamental data essential for the development of joining technologies for high-melting-point xss-metals and the design of structural materials for extreme environments. It confirms the necessity of solid-state joining technology for high-melting-point xss-metals like Ta and presents the potential for microstructural refinement and improved mechanical properties through friction stir spot welding.○ Furthermore, based on these findings, this technology is expected to be widely utilized in various industrial fields, such as aerospace, energy, and extreme environment materials.
  • 등록일2026-03-27 14:08:49
Master's Student Cho Ye-won of the Department of Civil and Environmental Engineering Wins Outstanding Presentation Award at the '2026 KSWE-KSWW Joint Academic Conference' 이미지
Master's Student Cho Ye-won of the Department of Civil and Environmental Engineering Wins Outstanding Presentation Award at the '2026 KSWE-KSWW Joint Academic Conference'
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  • - Comparison of risk mitigation performance for sewer leakage-Induced sinkholes under geocell and geotextile reinforcement conditions□ Hanbat National University announced that Cho Ye-won, a masters student in the Department of Civil and Environmental Engineering(Advisor: Professor Joo Jin-chul), received the Best Presentation Award at the '2026 Joint Conference of the Korean Society on Water Environment (KSWE) and the Korean Society of Water and Wastewater,' held at BEXCO in Busan from the 19th to the 20th.○ The joint conference of the Korean Society on Water Environment (KSWE) and the Korea Water and Wastewater Works Association (KWWA) is a leading academic event in Korea held to promote academic and technological advancements in the water environment and waterworks sectors. It features research presentations across various fields, including water treatment processes, wastewater management, the stability of water and sewage infrastructure, and the development of sustainable water conservation technologies.□ Graduate student Jo Ye-won was recognized for academic excellence in the field of water and sewage infrastructure at the conference. Her research, titled 'Comparison of Sinkhole Risk Reduction Performance Based on Sewer Leakage under Geocell and Geotextile Reinforcement Conditions,' was highly commended for its contribution to the field.○ This study was conducted to propose reinforcement strategies for mitigating the risks of ground cavities and sinkholes caused by sewer pipe leakage. Furthermore, it aimed to comparatively analyze the ground stabilization effects according to various Geocell and Geotextile reinforcement conditions.○ In addition, the study sought to elucidate how differences in reinforcement xss-location. and application methods affect leakage-induced soil loss, cavity development, and ground settlement behavior.□ The research team established experimental groups categorized into unreinforced, bottom-reinforced, and simultaneously top-and-bottom-reinforced conditions. Under simulated sewer leakage conditions, they compared soil loss volume, cavity formation patterns, settlement behavior, and the overall effectiveness of the reinforcements.○ Through this process, the study evaluated the effectiveness of combining the confinement effect of Geocells with the filtration function of Geotextiles in suppressing flow concentration and internal erosion caused by leakages.○ The experimental results demonstrated that the Geocell and Geotextile reinforcement effectively mitigated cavity development and sudden ground collapse by dispersing the leakage flow and inhibiting the loss of soil particles.○ In particular, the simultaneous top-and-bottom reinforcement condition showed the most stable behavior, confirming it as the most effective method for mitigating sinkhole risks in the ground surrounding sewer pipes.□ Professor Ju Jin-chul, the research advisor, stated, "This is a highly practical and innovative research achievement. It demonstrates that the risk of ground cavities and sinkholes caused by sewer pipe leakage can be proactively prevented by installing geosynthetics around the pipes."
  • 등록일2026-03-26 14:04:10