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ACCT AINV ALLH AQUA ARTH ARTS AUDV AVAT BIOH BIOL BIOT BLAR BLCN BLOC BLSV BMED BMSC BOTN BUSN CHEM CHIR CNSL COIS COIT COMM COMT CQUN CREA CULT DGTL DNCE DRMA ECOM ECON EDCU EDEC EDED EDEL EDFE EDHE EDSE EDVT ENAC ENAE ENAG ENAM ENAR ENCO ENEA ENEC ENEE ENEG ENEM ENEP ENEV ENIM ENMG ENML ENMM ENPG ENPO ENRG ENSD ENSE ENTA ENTC ENTE ENTG ENTI ENTM ENTZ ENVH ENVR ESSC EVST FAHE FARM FILM FINC FSEH GENE GEOG GEOH GOVP HIST HLPB HLTH HLTP HMGT HMSC HRMT HUMT IEXC INDG JALC JAPN JAZZ JOUR LAWS LITR LNGC LNGE LOTE MARN MATH MBIO MDWF MEDI MEDS MGMT MMST MNTR MQPR MRKT MUSC NHLT NHPE NURS NUTR OCCT OCHS OLTC ORAL PERF PHRM PHYG PHYS PMSC PODI PPMP PROP PSIO PSYC RAIL RELG SAFE SCIE SKIL SOCL SOWK SPCH SREC STAT SWHS THTR TOUR VART WELF WRIT ZOOLENEM14013 Engineering Plant Design
Course details
This course provides students with opportunities to develop and demonstrate their professional capabilities in the design of mechanical equipment associated with processing plant within the context of the minerals processing and associated heavy industries. Students apply engineering theories, practices, standards and tools to design of equipment and apply their knowledge of strength of materials, tolerances and modes of failure to design. The emphasis is on the design of machine elements as components of larger systems requiring analysis to be reduced to subsystems, assemblies and components, and how the performance of the whole system is affected by the performance of its constituent parts. The design process equipment and drivelines, and describe specific design issues that apply to common process and general engineering components and equipment. Students evaluate and explain their design decisions, selections and design features. Students will be required to apply their existing knowledge of statics, dynamics, vibrations, strength of materials, thermofluids to design tasks, comply with relevant codes of practice and use numerical methods and computer aided design tools where appropriate. They are required to show they can work productively and professionally, both individually and in project teams, to solve problems, and document and communicate their work clearly in a professional manner.
Course at a glance
Career: | Undergraduate |
Credit points: | 6 |
Requisites: | ENEG12001 Materials and Processes and [ ENEM12006 Fluid Mechanics or ENEM12001 Fluid Mechanics] |
Student Contribution Band: | 2 |
EFTSL: | 0.12500 |
Course availability
Term | Campus |
---|---|
2010 Term Two | FLEX |
Course evaluation reports
Course evaluation results may be accessed using the Course Evaluation application in the My.CQU Portal at http://my.cqu.edu.au
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