World's Best Scientists 2026 revealed!

Overview

Zi-Tao Yu is affiliated with Zhejiang University in China and specializes in the field of Engineering. Their research primarily spans Mechanical Engineering, Environmental Engineering, Renewable Energy, Sustainability and the Environment, Control and Systems Engineering, and Civil and Structural Engineering. Their work engages with a range of topics including Building Energy and Comfort Optimization, CO2 Sequestration and Geologic Interactions, Heat Transfer and Optimization, Phase Change Materials Research, Solar Thermal and Photovoltaic Systems, Smart Grid Energy Management, and Building Materials and Conservation.

They have contributed to multiple publications with a strong presence in notable journals such as:

  • Energy Reports
  • International Journal of Heat and Mass Transfer
  • Journal of ZheJiang University (Engineering Science)
  • Applied Energy
  • Journal of Thermal Science

Selected recent papers illustrate the scope and interdisciplinary nature of their research:

  • An experimental investigation and fractal modeling on the effective thermal conductivity of novel autoclaved aerated concrete (AAC)-based composites with silica aerogels (SA), 2020, Applied Thermal Engineering
  • Surface-roughness-boosted critical heat flux enhancement during quenching boiling on wicking surfaces, 2020, International Journal of Heat and Mass Transfer
  • Triple-layer optimization of distributed photovoltaic energy storage capacity for manufacturing enterprises considering carbon emissions and load management, 2024, Applied Energy
  • Investigation of optimized network splitting of large-scale urban centralized heating system operation, 2020, Energy Reports
  • A study on effects of stone-thrower-wales defective carbon nanotubes on glass transition temperature of polymer composites using molecular dynamics simulations, 2020, Computational Materials Science

Zi-Tao Yu collaborates frequently with several researchers, reflecting a consistent network of co-authors across their works. These include:

  • Li-Wu Fan
  • Qingyang Lin
  • Yu-Hao Wu
  • Yue-Fei Wu
  • Ming-Liang Qu

Their extensive engagement with topics related to energy efficiency and advanced materials can be seen in both the broad representation of subfields and the targeted issues addressed in their publications. The recurring themes in their research output indicate a focus on optimizing thermal performance, sustainable energy solutions, and material innovations within engineering frameworks.

Best Publications

  • Effects of various carbon nanofillers on the thermal conductivity and energy storage properties of paraffin-based nanocomposite phase change materials

    Li-Wu Fan;Xin Fang;Xiao Wang;Yi Zeng

  • Increased Thermal Conductivity of Eicosane-Based Composite Phase Change Materials in the Presence of Graphene Nanoplatelets

    Xin Fang;Xin Fang;Li-Wu Fan;Li-Wu Fan;Qing Ding;Qing Ding;Xiao Wang;Xiao Wang

  • Increased thermal conductivity of liquid paraffin-based suspensions in the presence of carbon nano-additives of various sizes and shapes

    Zi-Tao Yu;Xin Fang;Li-Wu Fan;Xiao Wang

  • Thermal energy storage performance of paraffin-based composite phase change materials filled with hexagonal boron nitride nanosheets

    Xin Fang;Xin Fang;Li-Wu Fan;Li-Wu Fan;Qing Ding;Xiao-Li Yao

  • Experimental determination and fractal modeling of the effective thermal conductivity of autoclaved aerated concrete: Effects of moisture content

    Hong-Qing Jin;Xiao-Li Yao;Li-Wu Fan;Xu Xu

  • An experimental investigation of melting of nanoparticle-enhanced phase change materials (NePCMs) in a bottom-heated vertical cylindrical cavity

    Yi Zeng;Li-Wu Fan;Yu-Qi Xiao;Zi-Tao Yu

  • An experimental and numerical investigation of constrained melting heat transfer of a phase change material in a circumferentially finned spherical capsule for thermal energy storage

    Li-Wu Fan;Zi-Qin Zhu;Sheng-Lan Xiao;Min-Jie Liu

  • Effects of melting temperature and the presence of internal fins on the performance of a phase change material (PCM)-based heat sink

    Li-Wu Fan;Yu-Qi Xiao;Yi Zeng;Xin Fang

  • Heat transfer during melting of graphene-based composite phase change materials heated from below

    Li-Wu Fan;Zi-Qin Zhu;Yi Zeng;Qian Lu

  • Numerical investigation of laminar natural convective heat transfer from a horizontal triangular cylinder to its concentric cylindrical enclosure

    Xu Xu;Gonggang Sun;Zitao Yu;Yacai Hu

  • A numerical study of laminar natural convective heat transfer around a horizontal cylinder inside a concentric air-filled triangular enclosure

    Xu Xu;Zitao Yu;Yacai Hu;Liwu Fan

  • Regulated transient pool boiling of water during quenching on nanostructured surfaces with modified wettability from superhydrophilic to superhydrophobic

    Li-Wu Fan;Jia-Qi Li;Dan-Yang Li;Liang Zhang

  • A pore-scale visualized study of melting heat transfer of a paraffin wax saturated in a copper foam: Effects of the pore size

    Hong-Qing Jin;Li-Wu Fan;Min-Jie Liu;Zi-Qin Zhu

  • Transient performance of a PCM-based heat sink with high aspect-ratio carbon nanofillers

    Li-Wu Fan;Li-Wu Fan;Zi-Qin Zhu;Yi Zeng;Yu-Qi Xiao

  • An experimental investigation of a natural circulation heat pipe system applied to a parabolic trough solar collector steam generation system

    Liang Zhang;Wujun Wang;Zitao Yu;Liwu Fan

  • The effect of concentration on transient pool boiling heat transfer of graphene-based aqueous nanofluids

    Li-Wu Fan;Jia-Qi Li;Dan-Yang Li;Liang Zhang

  • A numerical investigation of transient natural convection heat transfer of aqueous nanofluids in a horizontal concentric annulus

    Zi-Tao Yu;Xu Xu;Ya-Cai Hu;Li-Wu Fan

  • Experimental Measurements of Thermal Conductivity of Wood Species in China: Effects of Density, Temperature, and Moisture Content

    Zi-Tao Yu;Xu Xu;Li-Wu Fan;Ya-Cai Hu

  • Transient performance of a thermal energy storage-based heat sink using a liquid metal as the phase change material

    Li-Wu Fan;Yu-Yue Wu;Yu-Qi Xiao;Yi Zeng

  • The prediction of effective thermal conductivities perpendicular to the fibres of wood using a fractal model and an improved transient measurement technique

    Li-Wu Fan;Ya-Cai Hu;Tian Tian;Zi-Tao Yu

Frequent Co-Authors

Li-Wu Fan
Li-Wu Fan Zhejiang University
Kefa Cen
Kefa Cen Zhejiang University
Ching-Ping Wong
Ching-Ping Wong Georgia Institute of Technology
Renwei Mei
Renwei Mei University of Florida
Kyoung-Sik Moon
Kyoung-Sik Moon Georgia Institute of Technology

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