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This graphical method is useful to the designer in the early stages of the design of shell structures when dimensioning.
Results of this investigation can be applied for optimum design of shell and tube heat exchangers in micro scale.
The formulae presented in the paper may help in the design of shell structures in the shape of barrel.
This study explores the thermal design of shell and tube heat exchangers by using Improved Intelligent Tuned Harmony Search I-ITHSS) algorithm.
In this paper a mixed integer non-linear programming (MINLP) model is proposed for the design of shell and tube heat exchangers.
Basic features of a simulation tool developed to enable tailor made design of shell and tube modules for vapor permeation are demonstrated.
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The state-of-the-art of available knowledge about the stability design of steel shell structures is discussed.
Mathematical programming can be used for the optimal design of shell-and-tube heat exchangers (STHEs).
This chapter presents detailed computational methods for the analysis and design of shell-and-tube heat exchangers.
Flow-Induced Vibration (FIV) is the most critical dynamic issue in the design of shell-and-tube heat exchangers.
Based on Chinese code GB151 for the design of shell-and-tube heat exchangers, the tubesheets are usually very heavy.
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