Shakedown assessment is an important task in determining the load-bearing capacity of structures and evaluating their safety. The traditional shakedown analyses, which are based on the upper or lower bound shakedown theorem to establish the mathematical programming formulation and solve an optimisation problem, are difficult to apply in engineering practice owing to limitations of the computing scale and computational efficiency. In this study, a numerical shakedown analysis using the recently developed stress compensation method (SCM) is performed for a torispherical head with a piping nozzle, which is a typical structural component of pressure vessel equipment. The loads applied to the structural component include an internal pressure, ax...
The Linear Matching Method is used to create the shakedown limit and limit load interaction curves o...
In this study, the limit load, shakedown and ratchet limit of a defective pipeline subjected to cons...
In this study, the limit load, shakedown and ratchet limit of a defective pipeline subjected to cons...
Shakedown assessment is an important task in determining the load-bearing capacity of structures and...
The determination of shakedown load or shakedown domain is an important task in structural design an...
According to the extended Melan's static theorem, theoretical and numerical aspects of the stress co...
There are many power plant components operating at elevated temperatures, subjected to the combined ...
For industrial components such as pressure vessels and piping systems, it is important to determine ...
For pressure equipment in the industrial field, the shakedown design methods presented in the ASME a...
The shakedown behavior of a thin cylinder subject to constant pressure and cyclic thermal loading is...
A recently developed method for three dimensional shakedown & limit analyses is evaluated in the pre...
The use of the Design by Analysis concept is a trend in modern pressure vessel and piping calculatio...
Based upon the kinematic theorem of Koiter, the Linear Matching Method (LMM) procedure has been prov...
This paper evaluates the limit load, shakedown limit and ratchet limit of the oblique nozzle based o...
ABSTRACT Based upon the kinematic theorem of Koiter, the Linear Matching Method (LMM) procedure has ...
The Linear Matching Method is used to create the shakedown limit and limit load interaction curves o...
In this study, the limit load, shakedown and ratchet limit of a defective pipeline subjected to cons...
In this study, the limit load, shakedown and ratchet limit of a defective pipeline subjected to cons...
Shakedown assessment is an important task in determining the load-bearing capacity of structures and...
The determination of shakedown load or shakedown domain is an important task in structural design an...
According to the extended Melan's static theorem, theoretical and numerical aspects of the stress co...
There are many power plant components operating at elevated temperatures, subjected to the combined ...
For industrial components such as pressure vessels and piping systems, it is important to determine ...
For pressure equipment in the industrial field, the shakedown design methods presented in the ASME a...
The shakedown behavior of a thin cylinder subject to constant pressure and cyclic thermal loading is...
A recently developed method for three dimensional shakedown & limit analyses is evaluated in the pre...
The use of the Design by Analysis concept is a trend in modern pressure vessel and piping calculatio...
Based upon the kinematic theorem of Koiter, the Linear Matching Method (LMM) procedure has been prov...
This paper evaluates the limit load, shakedown limit and ratchet limit of the oblique nozzle based o...
ABSTRACT Based upon the kinematic theorem of Koiter, the Linear Matching Method (LMM) procedure has ...
The Linear Matching Method is used to create the shakedown limit and limit load interaction curves o...
In this study, the limit load, shakedown and ratchet limit of a defective pipeline subjected to cons...
In this study, the limit load, shakedown and ratchet limit of a defective pipeline subjected to cons...