Assoc Prof. Dr. Youpeng Zhang | Welding Processes Awards | Best Scholar Award

Assoc Prof. Dr. Youpeng Zhang | Welding Processes Awards | Best Scholar Award

Assoc Prof. Dr.Youpeng Zhang, Fudan Univeristy, China

Dr. Zhang Yongping is an accomplished academic and professional in the field of nuclear engineering, specializing in reactor physics and safety analysis. Holding a Doctoral Degree from the Reactor Physics department at the Royal Institute of Technology (KTH), with a thesis focused on the transmutation of Am in sodium fast reactors and accelerator-driven systems, Dr. Zhang’s expertise is highly sought after in the realm of advanced nuclear reactor designs.

With a solid educational foundation, including a Master’s Degree in Sustainable Energy Engineering also from KTH and a Bachelor’s Degree in Thermal Power and Engineering from Shandong University, Dr. Zhang has continuously expanded his knowledge and skills throughout his career.

Having held significant positions at esteemed institutions such as Fudan University, where he currently serves as an Associate Professor, Dr. Zhang has been deeply involved in safety analysis projects concerning advanced fast reactor designs, including the CFR-600 and CiADS.

 

Professional Profiles:

 

 

SCOPUS

 

 

📚 Academic Background:

  • In 2005, Dr. Zhang completed his Bachelor’s Degree in Thermal Power and Engineering from Shandong University.
  • His quest for knowledge led him to the Royal Institute of Technology (KTH) in Sweden, where he earned his Master’s Degree in Sustainable Energy Engineering in 2007.
  • Demonstrating exceptional academic prowess, he pursued his Doctoral Degree in Reactor Physics at KTH, culminating in a groundbreaking thesis titled “Transmutation of Am in sodium fast reactors and accelerator-driven systems” in 2012.

👨‍🔬 Professional Journey:

  • Dr. Zhang’s professional journey commenced in 2004 when he served as a System Upgrading Analyzer at the Minghu Thermal Power Plant in Jinan, China, demonstrating his early commitment to enhancing system efficiency.
  • From 2006 to 2012, he honed his skills as a Safety Analysis Officer at RELCON (Scandpower) AB in Stockholm, Sweden, where he contributed to assessing the safety status of the Ringhals 2 reactor.
  • His passion for research led him to join the Reactor Physics department at KTH as a Doctoral Student in 2007. During this tenure, he delved into safety analysis of sodium-cooled Gen-IV reactors and contributed significantly to various projects financially sponsored by organizations like Svensk Kärnbränslehantering (SKB) and the European Commission (EC).
  • In pursuit of broader horizons, Dr. Zhang embarked on a Postdoc Fellowship at the Paul Scherrer Institut in Switzerland from 2012 to 2015, where he engaged in projects supported by the European Commission (EC) and the International Atomic Energy Agency (IAEA), focusing on neutronic calculations and safety analysis of fast reactor designs.
  • Since 2016, Dr. Zhang has been serving as an Associate Professor at Fudan University, where he continues to enrich the academic landscape with his expertise in safety analysis of advanced fast reactor designs.

🌟 Contributions and Achievements:

  • Dr. Zhang’s contributions to the field of nuclear engineering are invaluable, evident in his extensive research, publications, and teaching experiences.
  • His expertise in safety analysis has been instrumental in ensuring the viability and sustainability of advanced reactor designs, including CFR-600 and CiADS.
  • Throughout his career, Dr. Zhang has been committed to pushing the boundaries of knowledge and fostering innovation in the field of nuclear engineering.

Dr. Zhang Yanping epitomizes dedication, excellence, and passion in the pursuit of scientific advancement. His unwavering commitment to safety and sustainability continues to inspire and shape the future of nuclear engineering. 🚀🔬

Publication Top Notes:

Analysis of the stress field in the reactor vessel of the China Initiative Accelerator Driven System during postulated ULOF and UTOP transients

Reliability analysis of core power optimization control using Kalman filter for accelerator driven system based on reconfigurable computing

CFD analysis of a CiADS fuel assembly during the steam generator tube rupture accident based on the LBEsteamEulerFoam

The development of training platform for CiADS using cave automatic virtual environment

The cutting path planning of main components in China initiative accelerator driven subcritical system based on the quantum evolutionary algorithm

Finite element analysis of the main reactor vessel in the China Initiative Accelerator Driven System

Study on the effects from spacer wires on coolant flow within a CiADS fuel assembly

The optimization study of core power control based on meta-heuristic algorithm for China initiative accelerator driven subcritical system

The gamma dose rate analysis method for the maintenance of China initiative accelerator driven subcritical system based on the voxelized algorithm

Academic Pioneer in Welding Technology Award

Introduction of Academic Pioneer in Welding Technology Award

Embark on a journey of academic innovation in the dynamic field of welding technology with the “Academic Pioneer in Welding Technology Award.” This distinguished accolade pays homage to individuals who have demonstrated pioneering leadership and groundbreaking contributions to the academic realm of welding technology.

Eligibility: The Academic Pioneer in Welding Technology Award is open to academics and researchers who have exhibited exceptional leadership in advancing welding technology within the academic sphere. Nominees should possess a notable record of pioneering research and educational initiatives in welding technology.

Age Limits and Qualifications: No age restrictions apply. Nominees should hold a minimum of a doctoral degree in welding technology or a related field. Relevant qualifications and a substantial record of impactful contributions to welding technology academia are highly regarded.

Publications and Requirements: Nominees are expected to have a robust publication record, including peer-reviewed articles, books, or other scholarly works that highlight their pioneering contributions to welding technology. A comprehensive curriculum vitae showcasing relevant qualifications is essential.

Evaluation Criteria: Candidates will be evaluated based on the originality and impact of their contributions to welding technology academia, the effectiveness of their teaching methods, and their overall influence on shaping the field.

Submission Guidelines: Submissions should include a detailed biography, an abstract outlining the nominee’s pioneering contributions to welding technology academia, and supporting files containing relevant publications and documentation. All materials should be submitted in a clear and accessible format.

Recognition: Recipients of the Academic Pioneer in Welding Technology Award will be honored at a prestigious ceremony, receiving a certificate of recognition and acknowledgment for their transformative contributions to welding technology education.

Community Impact: This award not only acknowledges individual excellence but also celebrates the positive impact nominees have had on the broader academic community, fostering a culture of innovation and influencing the next generation of welding technologists.

Biography: A comprehensive biography, highlighting key academic milestones, leadership roles, and the impact of the nominee’s contributions to welding technology academia, is a crucial component of the submission.

Abstract and Supporting Files: An abstract summarizing the nominee’s pioneering contributions to welding technology academia and supporting files containing publications, teaching materials, and other pertinent documentation must be included in the submission.

Outstanding Research Contribution to Welding Science Award

Introduction of Outstanding Research Contribution to Welding Science Award

Embark on a journey of intellectual exploration with the “Outstanding Research Contribution to Welding Science Award.” This prestigious accolade honors individuals who have made exceptional research contributions, advancing the frontiers of knowledge in welding science and shaping the future of the industry.

Eligibility: The Outstanding Research Contribution to Welding Science Award is open to researchers and scientists who have demonstrated exemplary dedication to advancing the field of welding science. Nominees should possess a distinguished record of impactful research contributions and a commitment to pushing the boundaries of scientific understanding in welding.

Age Limits and Qualifications: No age restrictions apply. Nominees should hold a minimum of a doctoral degree in welding science or a related field. Relevant qualifications, along with a substantial record of impactful contributions to welding science, are highly regarded.

Publications and Requirements: Nominees are expected to have a robust publication record, including peer-reviewed articles, conference papers, or other scholarly works that showcase their significant contributions to welding science. A comprehensive curriculum vitae highlighting relevant qualifications is essential.

Evaluation Criteria: Candidates will be evaluated based on the originality and impact of their research contributions to welding science, the significance of their findings, and the potential for long-term advancements in the field.

Submission Guidelines: Submissions should include a detailed biography, an abstract outlining the nominee’s outstanding research contributions, and supporting files containing relevant publications and documentation. All materials should be submitted in a clear and accessible format.

Recognition: Recipients of the Outstanding Research Contribution to Welding Science Award will be celebrated at a prestigious ceremony, receiving a certificate of recognition and acknowledgment for their transformative contributions to welding science.

Community Impact: This award not only acknowledges individual excellence but also celebrates the positive impact nominees have had on the broader welding community, influencing best practices and setting new industry standards.

Biography: A comprehensive biography, highlighting key academic milestones, research endeavors, and the impact of the nominee’s contributions to welding science, is a vital component of the submission.

Abstract and Supporting Files: An abstract summarizing the nominee’s outstanding research contributions and supporting files containing publications, patents, and other pertinent documentation must be included in the submission.