A solution to the problem of stresses in a pressure vessel with an ellipsoidal head has long been sought by pressure vessel designers. To meet this need the codes described in this report were written The codes are based on a finite-difference approximation to the LoveMeissner equations which are the basis of the bending theory of thin shells. (auth
Pressure vessel cylinders find wide applications in thermal and nuclear power plants, process and ch...
The pressure vessel in general, is a closed container with a diameter greater than 150 mm that can w...
A theoretical analysis was carried out to determine the distribution of stresses and radial deflecti...
The well-known problem of the elastic analysis of cylindrical pressure vessels with hemispherical, t...
A comparison is presented of ASME code allowable, theoretically calculated, and measured model stres...
A finite-element computer program, MULT-NOZZLE, was developed for the stress analysis of cylindrical...
Due to a recent pressure vessel design error (see chapter 1.2.7) the design methods used for pressur...
This report describes the second part of an IBM 704 Computer Code to determine transient thermal str...
Stress categorization is an essential procedure in Design by Analysis (DBA) pressure vessel design m...
A theoretical elastic stress analysis of a spherical pressure vessel with both integral and pad rein...
This paper aims to Finite Element Analysis for the Pressure vessel design using ANSYSand ASME Code B...
The principal advances in the design and construction, as well as the static, vibrational, and buckl...
A pressure vessel typically consists of large cylindrical and / or spherical containers with nozzles...
Abstract — Pressure vessels are commonly used for large industrial and commercial applications such ...
Pressure vessels are wildly used in many fields, such as chemical, petroleum, military industries as...
Pressure vessel cylinders find wide applications in thermal and nuclear power plants, process and ch...
The pressure vessel in general, is a closed container with a diameter greater than 150 mm that can w...
A theoretical analysis was carried out to determine the distribution of stresses and radial deflecti...
The well-known problem of the elastic analysis of cylindrical pressure vessels with hemispherical, t...
A comparison is presented of ASME code allowable, theoretically calculated, and measured model stres...
A finite-element computer program, MULT-NOZZLE, was developed for the stress analysis of cylindrical...
Due to a recent pressure vessel design error (see chapter 1.2.7) the design methods used for pressur...
This report describes the second part of an IBM 704 Computer Code to determine transient thermal str...
Stress categorization is an essential procedure in Design by Analysis (DBA) pressure vessel design m...
A theoretical elastic stress analysis of a spherical pressure vessel with both integral and pad rein...
This paper aims to Finite Element Analysis for the Pressure vessel design using ANSYSand ASME Code B...
The principal advances in the design and construction, as well as the static, vibrational, and buckl...
A pressure vessel typically consists of large cylindrical and / or spherical containers with nozzles...
Abstract — Pressure vessels are commonly used for large industrial and commercial applications such ...
Pressure vessels are wildly used in many fields, such as chemical, petroleum, military industries as...
Pressure vessel cylinders find wide applications in thermal and nuclear power plants, process and ch...
The pressure vessel in general, is a closed container with a diameter greater than 150 mm that can w...
A theoretical analysis was carried out to determine the distribution of stresses and radial deflecti...