Professor Peter Gosling
| A multiscale uncertainty propagation method for dynamic analysis of laminated FRP composite plates with hybrid random and interval uncertainties | 2023 |
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Dr Eric Masoero Professor Peter Gosling
| Topology optimization using the discrete element method. Part 1: Methodology, validation, and geometric nonlinearity | 2022 |
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Dr Eric Masoero Professor Peter Gosling
| Topology optimization using the discrete element method. Part 2: Material nonlinearity | 2022 |
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Dr Connor O'Shaughnessy Dr Eric Masoero Dr Sadegh Nadimi Professor Peter Gosling
| Topology Optimization with the Discrete Element Method | 2022 |
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Dr Liam Fleming Professor Peter Gosling Professor Chris Oates
| A Data-Centric Approach to Generative Modelling for 3D-Printed Steel | 2021 |
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Dr Amir Mofidi Professor Peter Gosling
| Reliability-based assessment of bond strength models for near-surface mounted FRP bars and strips to concrete | 2021 |
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Professor Peter Gosling
| Robust design optimization of variable angle tow composite plates for maximum buckling load in the presence of uncertainties | 2019 |
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Professor Peter Gosling
| Thermal buckling optimization of variable angle tow fibre composite plates with gap/overlap free design | 2019 |
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Professor Ben Bridgens Dr Mark Powell Professor Graham Farmer Professor Claire Walsh Dr Mohammad Royapoor et al. | Creative upcycling: reconnecting people, materials and place through making | 2018 |
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Professor Peter Gosling
| Influence of stochastic variations in manufacturing defects on the mechanical performance of textile composites | 2018 |
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Professor Peter Gosling
| Towards an understanding of variations in the buckling of tailored variable angle tow composite plates | 2018 |
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Dr Xiaoyi Zhou Professor Peter Gosling
| Stochastic multi-scale finite element based reliability analysis for laminated composite structures | 2017 |
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Dr Xuwen An Professor Peter Gosling Dr Xiaoyi Zhou
| Analytical structural reliability analysis of a suspended cable | 2016 |
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Dr Xiaoyi Zhou Professor Peter Gosling
| Exploiting the benefits of multi-scale analysis in reliability analysis for composite structures | 2016 |
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Dr Giada Colasante Professor Peter Gosling
| Including shear in a neural network constitutive model for architectural textiles | 2016 |
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Dr Xiaoyi Zhou Professor Peter Gosling
| Multi-scale finite element based durability and reliability analysis of laminated fibre reinforced composites for civil engineering applications | 2016 |
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Dr Xiaoyi Zhou Professor Peter Gosling
| Multi-scale finite element based time-dependent reliability analysis for laminated fibre reinforced composite | 2016 |
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Dr Xiaoyi Zhou Professor Peter Gosling
| Perturbation-based stochastic multi-scale computational homogenisation method for woven textile composites | 2016 |
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Dr Xiaoyi Zhou Professor Peter Gosling
| Perturbation-based stochastic multi-scale computational homogenization method for the determination of the effective properties of composite materials with random properties | 2016 |
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Dr Xuwen An Professor Peter Gosling Dr Xiaoyi Zhou
| Improved Failure Mode Identification and Reliability Estimates for Electricity Transmission Towers | 2015 |
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Dr Xiaoyi Zhou Professor Peter Gosling
| Probabilistic structural analysis of composite structure using stochastic multi-scale finite element method | 2015 |
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Dr Xiaoyi Zhou Professor Peter Gosling
| Reliability analysis of laminated fibre reinfroced composites using stochastic multi-scale finite element method | 2015 |
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Dr Xiaoyi Zhou Professor Peter Gosling
| Stochastic multi-scale finite element analysis for laminated composite plates | 2015 |
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Professor Peter Gosling Faimun Faimun
| A high-fidelity first-order reliability analysis for shear deformable laminated composite plates | 2014 |
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Professor Peter Gosling Nicola Bartle Professor Ben Bridgens
| Aleatoric & epistemic uncertainty in the analysis of tensile structures | 2014 |
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Alex Colman Professor Ben Bridgens Professor Peter Gosling
| Shear behaviour of architectural fabrics subjected to biaxial tensile loads | 2014 |
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Christopher Iliffe Professor Ben Bridgens Professor Peter Gosling
| A Predictive Model for the Design of Functional Textiles | 2013 |
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Christopher Iliffe Professor Ben Bridgens Professor Peter Gosling
| A predictive model for the design of functional textiles structural membranes 2013 | 2013 |
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Professor Peter Gosling Professor Ben Bridgens Lei Zhang
| Adoption of a reliability approach for membrane structure analysis | 2013 |
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Ini Edem Professor Peter Gosling
| Physically stabilised displacement-based ANS solid-shell element | 2013 |
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Professor Peter Gosling Lei Zhang
| A linear strain, curvature-driven triangular element for the analysis of membrane structures | 2012 |
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Professor Peter Gosling Professor Ben Bridgens Nicola Bartle
| Analysis and design of membrane structures: results of a round robin exercise | 2012 |
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Professor Ben Bridgens Professor Peter Gosling
| Inter-laboratory comparison of biaxial tests for architectural textiles | 2012 |
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Ini Edem Professor Peter Gosling
| One-point quadrature ANS solid-shell element based on a displacement variational formulation Part I – Geometrically linear assessment | 2012 |
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Professor Peter Gosling Lei Zhang
| A High-Fidelity Cable-Analogy Continuum Triangular Element for the Large Strain, Large Deformation, Analysis of Membrane Structures | 2011 |
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Dr Andrew Shaw Professor Peter Gosling
| Removal of shallow shell restriction from Touratier kinematic model | 2011 |
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Dr Andrew Shaw Professor Peter Gosling
| A critical reliability evaluation of fibre reinforced composite materials based on probabilistic micro and macro-mechanical analysis | 2010 |
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Professor Peter Gosling Lei Zhang
| A non-safety factor approach to the design of membrane structures | 2010 |
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Dr Andrew Shaw Professor Peter Gosling
| Comprehensive Laminate Level Sensitivities of the Touratier Kinematic Model for Reliability Analyses and Robust Optimisation of Composite Materials and Structures | 2010 |
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Dr Andrew Shaw Professor Peter Gosling Robert Hiley
| Extension of the Touratier Kinematic Model to Large Strains, Displacements, and Rotations | 2010 |
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Professor Ben Bridgens Professor Peter Gosling
| Interpretation of results from the MSAJ "Testing Method for Elastic Constants of Membrane Materials" | 2010 |
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Dr Colin Davie Professor Peter Gosling
| Investigation into the Form of the Load-Induced Thermal Strain Model | 2010 |
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Professor Jon Mills Professor Peter Gosling Professor Ben Bridgens Robert Grisdale
| Monitoring the testing, construction and as-built condition of membrane structures by close range photogrammetry | 2010 |
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Nicola Bartle Professor Peter Gosling
| Numerical Formulations for the Prediction of Deformation, Strain and Stress of Un-patterned ETFE Cushions | 2010 |
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Professor Peter Gosling Professor Ben Bridgens
| Specification of a round robin exercise for the design of membrane structures | 2010 |
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Professor Ben Bridgens Professor Peter Gosling
| A predictive model for flexible woven composites | 2009 |
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Dr Andrew Shaw Professor Peter Gosling
| Stochastic micromechanical and macromechanical reliability analyses of composite plates | 2009 |
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Robert Hiley Dr Andrew Shaw Dr Ian Roy Professor Peter Gosling
| A flexible non-linear shell formulation using absolute nodal coordinates | 2008 |
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Professor Ben Bridgens Professor Peter Gosling
| A predictive fabric model for membrane structure design | 2008 |
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Dr Andrew Shaw Professor Peter Gosling
| A stochastic micromechanics approach to predict composite material properties | 2008 |
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Dr Andrew Shaw Professor Peter Gosling
| A Stochastic Micromechanics Approach To Predict Composite Material Properties | 2008 |
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Professor Peter Gosling Professor Ben Bridgens
| Material testing & computational mechanics: a new philosophy for architectural fabrics | 2008 |
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Faimun Faimun Professor Peter Gosling
| Optimization of laminated composite plates with reliability constraints | 2008 |
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Dr Andrew Shaw Professor Peter Gosling
| Stochastic Composite Material Property Characterisation for Reliability Modelling | 2008 |
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Professor Jon Mills Professor Peter Gosling
| Videogrammetric monitoring of as-built membrane roof structures | 2008 |
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Arthit Petchsasithon Professor Peter Gosling
| Analytical shape and thickness sensitivities of linear shells | 2007 |
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Dr Andrew Shaw Professor Peter Gosling
| Laminated Plate Modelling: Total Lagrange Formulation with Transverse Shear Strains | 2007 |
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Arthit Petchsasithon Professor Peter Gosling
| Significance of geometric non-linearity on integrated thickness and shape optimal shell solutions | 2007 |
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Arthit Petchsasithon Professor Peter Gosling
| The significance of geometric non-linearity on integrated thickness and shape optimal solutions | 2006 |
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Arthit Petchsasithon Professor Peter Gosling
| A locking-free hexahedral element for the geometrically non-linear analysis of arbitrary shells | 2005 |
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Professor Ben Bridgens Professor Peter Gosling
| A predictive fabric model for membrane structure design | 2005 |
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Arthit Petchsasithon Professor Peter Gosling
| Coupled morphology optimisation of geometrically nonlinear shells | 2005 |
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Arthit Petchsasithon Professor Peter Gosling
| Coupled morphology optimisation of geometrically non-linear shells | 2005 |
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Dr Ian Roy Professor Peter Gosling
| A Total Lagrangian thin shell formulation with sensitivity determination | 2004 |
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Dr Ian Roy Professor Peter Gosling
| An elasto-plastic Lagrangian thin shell formulation | 2004 |
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Arthit Petchsasithon Professor Peter Gosling
| Analytical sensitivities for the coupled morphology optimization of linear shells | 2004 |
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Professor Ben Bridgens Professor Peter Gosling
| Direct stress-strain representation for coated woven fabrics | 2004 |
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Professor Peter Gosling
| Experimental Study of a bonded Plastic Fiber Reinforced Polymer Connector Assembly | 2004 |
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Professor Peter Gosling
| Experimental study of a bonded plastic fiber reinforced polymer connector assembly | 2004 |
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Professor Ben Bridgens Professor Peter Gosling
| Membrane material behaviour: concepts, practice and developments | 2004 |
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Professor Peter Gosling Dr Ian Roy
| Shape sensitivities of an elasto-plastic Total Lagrangian shell for large displacements | 2004 |
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Professor Ben Bridgens Professor Peter Gosling
| Tensile fabric structures: concepts, practice & developments | 2004 |
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Professor Peter Gosling
| Wind loading pressure coefficients on a conic shaped fabric roof – experimental methods | 2004 |
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Professor Ben Bridgens Professor Peter Gosling
| Biaxial fabric testing to determine in-situ material properties | 2003 |
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Professor Peter Gosling
| Nonstandard Tensile Coupon for Fiber-Reinforced Plastics | 2003 |
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Professor Peter Gosling
| Towards meeting VLTA challenges for evacuation slides and slide-rafts | 2003 |
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Professor Peter Gosling
| Wind Tunnel Pressure Measurements on Conic Shaped Membrane Roof Arrangements | 2003 |
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Professor Peter Gosling
| A versatile cutting pattern methodology for woven fabrics | 2002 |
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Dr Ian Roy Professor Peter Gosling
| EPITOMIZ - a co-ordinate based shell approach | 2002 |
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Professor Ben Bridgens Professor Peter Gosling
| NURBS representation of coated woven fabric behaviour | 2002 |
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Professor Peter Gosling Dr Lienfeng Liu
| Total Lagrangian perspectives on analytical sensitivities for flexible beams | 2002 |
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Professor Peter Gosling Dr Ian Roy
| Towards a Large Deformation Total Lagrangian Shell Formulation | 2002 |
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Professor Peter Gosling
| A bendable finite element for the analysis of flexible cable structures | 2001 |
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Professor Peter Gosling Dr Lienfeng Liu
| Analytical thickness sensitivities for elasto-plastic bending | 2001 |
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Professor Peter Gosling Dr Lienfeng Liu
| Large deformation/strain shape sensitivities for uni-axis bending | 2001 |
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Professor Peter Gosling
| Sensitivity strategies for the thickness optimisation of elastic inextensible beams | 2001 |
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Professor Peter Gosling
| Structural research on the penstocks for Three Gorges | 2000 |
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Professor Peter Gosling
| A discrete energy formulation for the definition of optimal tension structures | 1998 |
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Professor Peter Gosling
| Optimal structural membranes - I. Formulation of a curved quadrilateral element for surface definition | 1996 |
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Professor Peter Gosling
| Optimal structural membranes - II. Form-finding of prestressed membranes using a curved quadrilateral finite element for surface definition | 1996 |
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