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The objective of each optimization case study is to maximize the ethylene oxide production rate.
Efficiency of key components such as expanders and pumps are analyzed and used for ORC parametric optimization case study.
An optimization case study has been conducted to improve the efficiency of the nuclear power plant with the proposed algorithm.
This is exemplified by an optimization case study of an ethylene oxide reactor (air-based process variant) which is provided as supplementary material.
On a dynamic optimization case study, we show that nonlinear programs (NLPs) with over 800,000 variables can be solved in less than 67 CPU minutes.
Overall, the experimental time/cost saving in the performed impact optimization case study was over 50% using the Taguchi L9 orthogonal array.
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A brief summary of various techniques and optimization tools that have recently been applied to desalination to optimize the design and/or operation, and some of the findings of various optimization case studies are discussed.
The methodology is illustrated through two optimization case studies.
Four different optimization case studies of the selected thermal devices are presented.
The experiments considered two simulation-based optimization case studies involving groundwater flow and contaminant transport.
We illustrate these algorithms with small examples and discuss RM-based optimization case studies that demonstrate their performance and effectiveness.
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