The topic is about High Pressure Processing of Compressed and Liquefied Natural Gas and must include all the all the calculations from this book (Geankoplis, C.J., Hersel, A.A., Lepek, D.H. (2018) Transport Processes and Separation Process Principles: 5th Edition, Pearson Publishing, ISBN#: 978-0134181028.)
Required Sections of the Assignment Report
●Cover / Title Page (2.5% of Project Grade) The cover page must include your name, the project title, the class number & name, and the date submitted. This section should be one page.
●Table of Contents (2.5% of Project Grade) The section must include the names of every report section from the Cover Page to the References Cited. Roman numerals must be used for the Cover Page and Table of Contents sections. Arabic numbers should start at ‘Page 1’ with the Technical Background section.
●Technical Background (12% of Project Grade) This section must include a brief history of the project topic and emphasize the most current research results from the technical literature. If a topic has not been developed for quite some time, include some historical background literature and also explain the relevance of this project for modern times with applications. If the project topic is currently of high interest in the literature, please be sure to include papers from as many different research groups as possible in this section.
●Design and Modeling of the Flow System (12% of Project Grade) In this section, the assignment should describe, and solve, a carefully thought out mathematical description (or model) of the engineering flow system selected. The assignment should fully explain the importance of all relevant aspects of fluid mechanics with listings of the driving forces (independent variables), process outputs (dependent variables) and system parameters (scalars) on the system investigated. The assignment should include preliminary predictions and results on the mathematical trends predicted by the theoretical process / system model. This section can include the use of computer-based tools (i.e., MS Excel, MATLAB, MATHCAD, MAPLE, Aspen-HYSYS, COMSOL, ANSYS Fluent, PROSIM, etc.) for the visualization of the flow system. The references from which this information is obtained MUST include the ECHE 320(Geankoplis, C.J., Hersel, A.A., Lepek, D.H. (2018) Transport Processes and Separation Process Principles: 5th Edition, Pearson Publishing, ISBN#: 978-0134181028.) Textbook with the page numbers included in the reference citations.
●Process Safety Identification & Example Problem Description (12% of Project Grade) In this section, the report should describe all of the relevant safety aspects for the flow system (i.e., toxicity, high pressures, flammable liquids, biohazards, biomedical, etc.) and include the topics from the Fluid Mechanics textbook that relate to your chosen topic. For each assignment application, the group should compose an example problem using real-world data, equipment & process specifications, and answers that relate to actual case study results for the applications. Each problem should feature a process or system diagram with specified dependent & independent variables and system parameters. The composed problems should relate directly to a course topic or topics with a realistic relationship to the course topic(s). Each problem should require the use of computer-based tools (i.e., MS Excel, MATLAB, MATHCAD, MAPLE, Aspen-HYSYS, COMSOL, ANSYS Fluent, PROSIM, etc.) for the solution. The references from which this information is obtained MUST include the ECHE 320 Textbook with the page numbers included in the reference citation.
●References Cited (12% of Project Grade) Literature references should be in APA format and can be in order of use in the report or in alphabetical order by year published. At least 5-10 References related to the Assignment Topic from professional magazines, books, personal interviews, technical journals, etc. Electronic copies of the printed references (or pages) should be scanned and submitted electronically with the assignment.
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