Nicos A. Kalapodis

About Nicos A. Kalapodis

Nicos A. Kalapodis, With an exceptional h-index of 7 and a recent h-index of 7 (since 2020), a distinguished researcher at University of Greenwich, specializes in the field of Design of Steel Structures, Structural Dynamics, Structural Mechanics, Earthquake Engineering.

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

On the seismic behaviour of monolithic lunar arches subjected to moonquakes

Assessment of seismic inelastic displacement profiles of steel MRFs by means of modal behavior factors

Seismic design of plane steel MRFS, EBFS and BRBFS by improved direct displacement-based design method

Optimal arch forms under in‐plane seismic loading in different gravitational environments

Structural efficiency of varying-thickness regolith-based lunar arches against inertial loading

Integration of peak seismic floor velocities and accelerations into the performance-based design of steel structures

Seismic Design of Steel Frames by Improved Direct Displacement-Based Design Method

First Yield Inter-storey Drift Ratios of Composite (Steel/concrete) and Steel Frames for the Purposes of the Direct Displacement Based Design Method

Nicos A. Kalapodis Information

University

Position

___

Citations(all)

141

Citations(since 2020)

139

Cited By

22

hIndex(all)

7

hIndex(since 2020)

7

i10Index(all)

5

i10Index(since 2020)

5

Email

University Profile Page

Google Scholar

Nicos A. Kalapodis Skills & Research Interests

Design of Steel Structures

Structural Dynamics

Structural Mechanics

Earthquake Engineering

Top articles of Nicos A. Kalapodis

On the seismic behaviour of monolithic lunar arches subjected to moonquakes

Earthquake Engineering & Structural Dynamics

2023/1

Assessment of seismic inelastic displacement profiles of steel MRFs by means of modal behavior factors

Soil Dynamics and Earthquake Engineering

2023/12/1

Seismic design of plane steel MRFS, EBFS and BRBFS by improved direct displacement-based design method

Soil Dynamics and Earthquake Engineering

2022/2/1

Optimal arch forms under in‐plane seismic loading in different gravitational environments

Earthquake Engineering & Structural Dynamics

2022/5

Structural efficiency of varying-thickness regolith-based lunar arches against inertial loading

Acta Astronautica

2022/2/1

Integration of peak seismic floor velocities and accelerations into the performance-based design of steel structures

Soil Dynamics and Earthquake Engineering

2022/3/1

Seismic Design of Steel Frames by Improved Direct Displacement-Based Design Method

2022/5/8

First Yield Inter-storey Drift Ratios of Composite (Steel/concrete) and Steel Frames for the Purposes of the Direct Displacement Based Design Method

2022/2/1

Limit-state analysis of parabolic arches subjected to inertial loading in different gravitational fields using a variational formulation

Engineering Structures

2021/2/1

OpenArch: An open-source package for determining the minimum-thickness of arches under seismic loads

SoftwareX

2021/7/1

A review towards the design of extraterrestrial structures: From regolith to human outposts

2020/10/1

Seismic design of plane steel braced frames using equivalent modal damping ratios

Soil Dynamics and Earthquake Engineering

2020/2/1

A comparison of three performance-based seismic design methods for plane steel braced frames

Earthquakes and Structures

2020

See List of Professors in Nicos A. Kalapodis University(University of Greenwich)

Co-Authors

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