Yuanyao Miao | Technology | Best Researcher Award

Best Researcher Award: Yuanyao Miao

Yuanyao Miao is affiliated with Xi’an University of Architecture and Technology, China, and is engaged in technology-oriented research involving structural dynamics and engineering assessment. His scholarly record includes research on masonry pagodas exposed to combined vibration, inclination, and material effects, connecting computational analysis with practical preservation challenges in structural engineering. [1] [2]

Yuanyao Miao
Affiliation Xi’an University of Architecture and Technology
Country China
Scopus ID 36773518800
Documents 15
Citations 177
h-index 6
Subject Area Technology
Event Technology Scientists Awards

Abstract

Yuanyao Miao is a researcher affiliated with Xi’an University of Architecture and Technology, China, with scholarly activity in technology and structural engineering. His indexed record includes 15 documents, 177 citations, and an h-index of 6. A 2026 publication examines masonry pagodas under coupled train, human, soil, inclination, and material effects. Using measurements, theoretical analysis, and three-dimensional finite element simulation, the study evaluates dynamic response, damage development, and fatigue life. Its findings support technology-based assessment and conservation of historic masonry structures exposed to complex vibration environments, providing evidence of interdisciplinary engineering research and practical relevance to resilient structural preservation. [1] [2]

Keywords

Relevant keywords for this recognition profile include structural dynamics, masonry pagodas, vibration analysis, soil–structure interaction, finite element analysis, fatigue life prediction, structural preservation, engineering technology, heritage conservation, numerical simulation, multi-source vibration, material deterioration, dynamic response, resilient structures, applied engineering, technology research, computational mechanics, infrastructure assessment, historic structures, and scholarly research. [1]

Introduction

Yuanyao Miao is a researcher affiliated with Xi’an University of Architecture and Technology, China, whose indexed work addresses technology-related engineering problems. His publication record includes research on the dynamic behavior and service-life assessment of masonry pagodas under combined environmental and human-induced effects, demonstrating engagement with applied structural technology. [1] [2]

Research Profile

Miao’s Scopus-indexed profile reports 15 documents, 177 citations, and an h-index of 6, indicating a sustained research record with measurable scholarly visibility. His work connects structural dynamics, numerical simulation, vibration analysis, material deterioration, and life prediction, placing his research within an interdisciplinary technology-oriented framework relevant to resilient engineering. [1] [2]

Research Contributions

Miao contributed to research examining masonry pagodas under multi-factor coupled effects, integrating in-situ measurements, theoretical analysis, and numerical simulation. The study considers train-induced vibration, human-induced loading, structural inclination, and material degradation together, offering a comprehensive basis for evaluating dynamic response, damage development, and fatigue life under realistic service conditions. [1]

Publications

Miao is a coauthor of “Dynamic response and life prediction of masonry pagodas under multi-factor effects,” published in the Journal of Vibration and Shock in 2026. The article investigates the Giant Wild Goose Pagoda and reports dynamic behavior, stress, plastic strain, and fatigue life estimates under service conditions. [1]

Research Impact

The reported research provides technical evidence for assessing historic masonry structures exposed to complex vibration environments. Its combination of finite element modeling, soil–structure interaction, multi-source excitation, and fatigue-life analysis can support condition assessment and conservation planning. The study contributes an applied technology perspective to structural preservation and risk-informed maintenance. [1]

Award Suitability

Miao’s documented publication activity, citation record, and focused contribution to structural technology provide a reasonable basis for consideration for the Best Researcher Award. His research demonstrates methodological integration and practical relevance, while the indexed bibliographic record supplies traceable evidence that can support an objective assessment of scholarly achievement. [1] [2]

Conclusion

Yuanyao Miao presents a research profile centered on applied technology, structural dynamics, and preservation-oriented engineering analysis. His documented scholarly metrics and contribution to research on complex vibration effects provide evidence of academic activity and relevance. Based on available indexed information, his work aligns with the award’s recognition purpose. [1] [2]

References

  1. Ma, J., Miao, Y., Ren, R., Lu, W., Liu, R., Qian, C., & Li, D. (2026). Dynamic response and life prediction of masonry pagodas under multi-factor coupled effects. Journal of Vibration and Shock, 45(15), 35–46.
    https://jvs.sjtu.edu.cn/EN/Y2026/V45/I15/35
  2. Elsevier. (n.d.). Scopus author details: Yuanyao Miao, Author ID 36773518800. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=36773518800

Dawood Khan | Information Theory | Best Researcher Award

Dr. Dawood Khan | Information Theory | Best Researcher Award

Lecturer | University of Balochistan | Pakistan

Dr. Dawood Khan is an emerging scholar in mathematical analysis, with a focused research portfolio spanning fractional calculus, convexity theory, superquadratic functions, and fractional integral inequalities. With 24 publications, 111 citations, 6 h-index and collaborations with 30 co-authors, he has contributed to advancing analytical methods used in optimization, dynamical systems, and applied modeling. His recent works, including studies on HH f-divergence, multiplicative calculus, and strongly convex functions, published in reputable journals such as Kuwait Journal of Science (2026) and Boundary Value Problems (2025), demonstrate both methodological rigor and thematic innovation. Dr. Khan’s research enhances the precision of mathematical tools employed in engineering, physics, and computational sciences, offering new perspectives for tackling complex real-world problems. His growing academic influence, reflected through an h-index of 6, underscores a sustained trajectory of scholarly impact and interdisciplinary collaboration, contributing to the global advancement of contemporary mathematical analysis.

Profiles: Scopus | ORCID | Google Scholar

Featured Publications

1. Khan, D., & Butt, S. I. (2024).Superquadraticity and its fractional perspective via center-radius cr-order relation. Chaos, Solitons & Fractals, 182, 114821.
Cited by: 26

2. Khan, D., Butt, S. I., & Seol, Y. (2025).Analysis on multiplicatively-superquadratic functions and related fractional inequalities with applications. Fractals,33(03), 2450129.
Cited by: 22

3. Butt, S. I., & Khan, D. (2025).Integral inequalities of h-superquadratic functions and their fractional perspective with applications. Mathematical Methods in the Applied Sciences, 48(2), 1952–1981.
Cited by: 22

4. Butt, S. I., & Khan, D. (2025).Superquadratic function and its applications in information theory via interval calculus. Chaos, Solitons & Fractals, 190, 115748.
Cited by: 12

5. Khan, D., Butt, S. I., & Seol, Y. (2024).Analysis of superquadratic function and related fractional integral inequalities with applications. Journal of Inequalities and Applications, 2024(1), 137.
Cited by: 12

Dr. Dawood Khan’s work strengthens foundational mathematical frameworks that underpin modern scientific and industrial modeling. His research advances global innovation by improving analytical tools essential for engineering, data science, and computational technologies.