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Published byLorraine Bond Modified over 9 years ago
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First Progress Report: 10/08/13
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Homebrewer wants to build a mash tun Either moving to all-grain brewing for the first time, increasing home brewery capacity, or simply trying to improve on their existing equipment Lots of options: how to build the best mash tun? Want to minimize extraction efficiency: avoid waste/save money OR Want to increase flow uniformity: increase wort quality
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Learn underlying physical theories of fluid flow through grain bed/filter device Flow through porous media: Darcy’s equation Laminar flow through pipes: Navier-Stokes Flow in the interface of grain bed/manifold: Dirichlet? Review articles/books/etc. that address concepts relevant to this topic Look for previous examples of this kind of modeling being performed
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Develop CAD model of mash tun and grain bed Constrain the problem: some assumptions will be made as to the materials/tools available to the average home mash tun builder Further, the grain bed properties will be constant?? Optimize model Other design parameters will be varied 2 different designs will be developed to optimize either extraction efficiency or flow uniformity
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Development of the COMSOL model has been delayed due to confusion over whether the COMSOL software would be available for use at home, as it had been in previous semesters This software is available for use at the RPI Groton site, and this alternative was addressed as a contingency plan in the project proposal. However, this has delayed the expected completion date for model optimization until Oct. 15, vice Oct. 10 as first addressed in the proposal Model development will be completed shortly, with optimization quickly following
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Design prototype in order to validate COMSOL model Build prototype Perform testing Analyze results and compare to COMSOL model predictions Refine model as necessary to match real-world results Iterate as required to achieve reliable model While some of this work is dependent on the results of the model development and optimization, some general planning for the prototype can be done in advance
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Address underlying science Explain intent of various procedural steps and relative success Examine prototype design and testing plan development Review results and compare to expected outcomes Draw conclusions to be used by average homebrewer First Progress Report completed as of 10/07/13, with all official RPI Thesis formatting and all relevant sections included. Some sections of the report have been started.
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