Munekazu Ohno

About Munekazu Ohno

Munekazu Ohno, With an exceptional h-index of 39 and a recent h-index of 30 (since 2020), a distinguished researcher at Hokkaido University, specializes in the field of computational materials science, solidification, phase-field-method, metallurgy.

His recent articles reflect a diverse array of research interests and contributions to the field:

Computing the permeability of tilted columnar dendrites with phase-field and lattice Boltzmann methods

Morphological diversity in directionally-solidified microstructures with varying anisotropy of solid-liquid interfacial free energy

Dependence of Eutectic Fraction on Inclination Angle of Columnar Dendrite Structures in Al-3 mass% Cu Alloy Analyzed by Phase-field Simulation

Synthetic first-principles studies from phase equilibria to microstructural formation in the Fe-Pt phase

Development of a data assimilation system for the investigation of the dendrite solidification process by integrating in situ X-ray imaging and phase-field simulation

Atomistic simulation model on a diffusive timescale based on the extension of the cluster-activation method to continuous space

Controlling thermal noise in phase-field simulation for nucleation during isothermal solidification of a pure metal

Time evolution of interface shape distribution of equiaxed dendrite: A phase-field study

Munekazu Ohno Information

University

Position

___

Citations(all)

5030

Citations(since 2020)

2955

Cited By

3356

hIndex(all)

39

hIndex(since 2020)

30

i10Index(all)

102

i10Index(since 2020)

79

Email

University Profile Page

Google Scholar

Munekazu Ohno Skills & Research Interests

computational materials science

solidification

phase-field-method

metallurgy

Top articles of Munekazu Ohno

Computing the permeability of tilted columnar dendrites with phase-field and lattice Boltzmann methods

International Journal of Thermofluids

2024/4/2

Morphological diversity in directionally-solidified microstructures with varying anisotropy of solid-liquid interfacial free energy

Journal of Materials Research and Technology

2024/4/16

Dependence of Eutectic Fraction on Inclination Angle of Columnar Dendrite Structures in Al-3 mass% Cu Alloy Analyzed by Phase-field Simulation

ISIJ International

2023/7/15

Synthetic first-principles studies from phase equilibria to microstructural formation in the Fe-Pt phase

Physical Review B

2023/5/25

Development of a data assimilation system for the investigation of the dendrite solidification process by integrating in situ X-ray imaging and phase-field simulation

IOP Conference Series: Materials Science and Engineering

2023/5/1

Atomistic simulation model on a diffusive timescale based on the extension of the cluster-activation method to continuous space

Physical Review E

2023/4/27

Munekazu Ohno
Munekazu Ohno

H-Index: 26

Controlling thermal noise in phase-field simulation for nucleation during isothermal solidification of a pure metal

Modelling and Simulation in Materials Science and Engineering

2023/1/18

Munekazu Ohno
Munekazu Ohno

H-Index: 26

Time evolution of interface shape distribution of equiaxed dendrite: A phase-field study

IOP Conference Series: Materials Science and Engineering

2023

Preliminary system for data assimilation to infer material parameters from directional solidification experiments: twin experimental study using phase-field method

IOP Conference Series: Materials Science and Engineering

2023

High-precision solidification simulation by estimating heat transfer coefficients through data assimilation

IOP Conference Series: Materials Science and Engineering

2023

Data assimilation for dendritic solidification with melt convection: phase-field lattice Boltzmann study

IOP Conference Series: Materials Science and Engineering

2023

Data assimilation with phase-field lattice Boltzmann method for dendrite growth with liquid flow and solid motion

Computational Materials Science

2022/12/1

Validating a mean-field theory via large-scale phase-field simulations for abnormal grain growth induced by nonuniform grain boundary properties

Journal of Materials Science

2022/9

Application of Heat Transfer Coefficient Estimation Using Data Assimilation and a 1-D Solidification Model to 3-D Solidification Simulation

ISIJ international

2022/8/15

Munekazu Ohno
Munekazu Ohno

H-Index: 26

Inverse analysis of anisotropy of solid-liquid interfacial free energy based on machine learning

Computational Materials Science

2022/5/1

Time invariance of three-dimensional morphology of equiaxed dendrite: A phase-field study

Computational materials science

2022/3/1

Phase-field study on an array of tilted columnar dendrites during the directional solidification of a binary alloy

Computational Materials Science

2022/2/15

Thermodynamic assessment of Mg–Al–Mn phase equilibria, focusing on Mg-rich alloys

International Journal of Materials Research

2022/2/1

Munekazu Ohno
Munekazu Ohno

H-Index: 26

Rainer Schmid-Fetzer
Rainer Schmid-Fetzer

H-Index: 31

Novel estimation method for anisotropic grain boundary properties based on Bayesian data assimilation and phase-field simulation

Materials & Design

2021/11/15

Bayesian data assimilation of temperature dependence of solid–liquid interfacial properties of nickel

Nanomaterials

2021/9/6

Munekazu Ohno
Munekazu Ohno

H-Index: 26

Tomohiro Takaki
Tomohiro Takaki

H-Index: 28

See List of Professors in Munekazu Ohno University(Hokkaido University)

Co-Authors

academic-engine