Highlights
Task:
Instruction:
In this assignment, you need to calculate the energy requirements of your dream house. In your house, there should have at least two bedrooms, one lounge, one kitchen, one laundry and one bathroom in your house. One example of a house is provided in Figure 1.
Your tasks:
1. Make a sketch of your house. You may use CAD software or hand sketching. If you use hand sketching, it does not necessary to be scaled drawing. However, the dimensions should be mentioned in the sketch. Mention the size of the rooms in the report. (4 marks)
2. Calculate the total heat gain for your building. (5 marks)
3. How many light bulbs will you use in the house? (1 mark)
4. If you get the electrical energy from bituminous coal, how much CO2 emissions were there in summer? (3 marks)
5. What are the options available to reduce the heat gain? What percentage of heat gain can be
reduced for each of the options? You need to show at least three options. (5 marks)
6. If you adopt all the options, what percentage of heat gain can be reduced? (2 marks)
7. Provide Justifications for each of your suggestions. For example, how the proposed solution reduces heat gain or heat loss? Present the detail calculation where appropriate. Provide reference for each of your suggested measures or action. (5 marks)
Notes:
• You need to add the fourth digit (from left) of your student id divided by 10 with any room dimension.
• All the windows have Aluminium frame clear single glazing and have Holland blinds with no external shading. In all windows, there are large gaps between the window frame and the wall.
• All external walls are 105 mm brickwork with 10 mm plasterboard with no insulation
• The roof is uninsulated with 35°.
• The flooring of the house is suspended slab with enclosed subfloor, mostly carpet coverings with no insulation.
• Consider 2.8 m ceiling height.
• Consider windows dimensions according to Table 1.
Table 1. Windows schedule
Position Height (mm) Width (mm)
Toilet 900 600
Kitchen 900 1800
Lounge 2100 5100
Other 1500 1800
• Useful Equations and Coefficients:
? CLTD (Cooling load temperature difference) values for north: 6.0 K, south: 4.0 K, east: 11.0 K, west:11.0 K and roof: 23.0 K.
qw = Aw × Uw × (CLTD) for each exterior wall in W
qD = AD × UD × (CLTD) for each door in W
qG = AG × UG × (CLTD) for each window in W
qR = AR × UR × (CLTD) for roof in W
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