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Assignment - Central Heating System Design
You are to design the central heating system for the house illustrated in Figures 1-4. The house will be heated using a 42 kW boiler with a 20°C difference between the water inlet and outlet. A radiator should be placed in each main room and every bathroom. The report detailing the design should be a maximum of 5 pages, i.e. 5 A4 sides, including references plus one page for the isometric drawing. Please do not include a table of contents or an executive summary. Minimum font size: 12 pt Times New Roman or Arial. Minimum margins: 2.5 cm around the entire document. The design should include the following:
Report Structure - Reports not following the structure below will not be marked! Please present all heat transfer and fluid mechanics calculations separately in the respective sections - if you need to use combined calculations, briefly indicate in each section that the value was determined in another section.
Fluid Flow (4 pages)
Heat Transfer (2 pages)
Attachment:- Assignment Files.rar
I need everything from writter like calculation sand stuff and the excel file .. becasue i want to understand the assignment later on so if I don’t have the full solution I would not be able to, this book shall help the writter ( Coulson and richardson volume 6). Correct pipe material specified. Comparison of potential pipe materials with the choice of material based on a comparison of relevant parameters.
Demonstrates full understanding of the principles of operation. Clear, concise and complete description of the system. Complete identification of all phenomena and analysis of the phenomena interactions occurring. Proficient use of engineering language.Evidence of researching beyond the lecture notes and module reference list. System components, geometry and dimensions can be clearly identified. Complete information. Outstanding/professional level presentation. Complete fluid mechanics model including example calculations. Clearly presented.
Proficient handling of equations, correct solutions and demonstrated ability to generalise the model. Evidence of research beyond the lecture notes and module reference list. Rationale for design is logic, and is clearly and concisely explained. Complete and clearly presented in a systematic way. Consideration for variations in operating conditions and design optimisation. Complete heat transfer model including example calculations. Clearly presented. Proficient handling of equations, correct solutions and demonstrated ability to generalise the model. Evidence of research beyond the lecture notes and module reference list.
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