Photo AI

A section through a triple-glazed, high-performance wooden window is shown at A - Leaving Cert Construction Studies - Question 5 - 2013

Question icon

Question 5

A-section-through-a-triple-glazed,-high-performance-wooden-window-is-shown-at-A-Leaving Cert Construction Studies-Question 5-2013.png

A section through a triple-glazed, high-performance wooden window is shown at A. The frame is a thermally broken, insulated frame as shown. Two of the glass panes ha... show full transcript

Worked Solution & Example Answer:A section through a triple-glazed, high-performance wooden window is shown at A - Leaving Cert Construction Studies - Question 5 - 2013

Step 1

the thermally broken wooden frame

96%

114 rated

Answer

To calculate the U-value of the thermally broken wooden frame, we need to determine the thermal resistance (R) of each component and use the formula for U-value:

U=1RtotalU = \frac{1}{R_{total}}

  1. Resistance Calculation:

    • Wood:
      • Thickness (T) = 0.400 m, Conductivity (k) = 0.15 W/m°C
      • Resistance: R=Tk=0.060.15=0.400m2K/WR = \frac{T}{k} = \frac{0.06}{0.15} = 0.400 \, m^2 \, K/W
    • Insulation:
      • Thickness = 0.06 m, Conductivity = 0.021 W/m°C
      • Resistance: R=0.040.021=2.857m2K/WR = \frac{0.04}{0.021} = 2.857 \, m^2 \, K/W
    • External Surface: Resistance = 0.950 m²K/W
    • Internal Surface: Resistance = 1.400 m²K/W
    • Total Resistance: Rtotal=0.400+2.857+0.950+1.400=5.607m2K/WR_{total} = 0.400 + 2.857 + 0.950 + 1.400 = 5.607 \, m^2 \, K/W
  2. U-value Calculation: U=15.6070.178W/m2KU = \frac{1}{5.607} ≈ 0.178 \, W/m^2K

Step 2

the triple glazed argon-filled glazing unit

99%

104 rated

Answer

To find the U-value of the triple-glazed argon-filled unit, we again calculate the R-values for each glass layer and the argon gas:

  1. Resistance Calculation:

    • Glass (single pane): Conductivity = 1.050 W/m°C, Thickness = 0.004 m R=Tk=0.0041.050=0.0038095m2K/WR = \frac{T}{k} = \frac{0.004}{1.050} = 0.0038095 \, m^2 \, K/W
    • Argon Gas: Conductivity = 0.160 W/m°C, Thickness = 0.040 m R=0.0400.160=0.25m2K/WR = \frac{0.040}{0.160} = 0.25 \, m^2 \, K/W
    • External Surface: Resistance = 0.075 m²K/W
    • Internal Surface: Resistance = 0.110 m²K/W
    • Low-e Glass: Conductivity = 3.400 W/m°C
    • Total Resistance: Rtotal=0.0038095+0.25+0.075+0.110+0.29411763.3888m2K/WR_{total} = 0.0038095 + 0.25 + 0.075 + 0.110 + 0.2941176 ≈ 3.3888 \, m^2 \, K/W
  2. U-value Calculation: U=1Rtotal13.38880.294W/m2KU = \frac{1}{R_{total}} ≈ \frac{1}{3.3888} ≈ 0.294 \, W/m^2K

Step 3

U-value of the solid wooden frame

96%

101 rated

Answer

For the traditional single-glazed wooden window frame,:

  1. Resistance Calculation:

    • Wood Frame: Conductivity = 0.150 W/m°C, Assume Thickness = 0.4 m (example thickness) R=Tk=0.40.1502.67m2K/WR = \frac{T}{k} = \frac{0.4}{0.150} ≈ 2.67 \, m^2 \, K/W
  2. U-value Calculation: U=12.670.375W/m2KU = \frac{1}{2.67} ≈ 0.375 \, W/m^2K

Step 4

U-value of the single glazing

98%

120 rated

Answer

For the single glazing, using data:

  1. Resistance Calculation:

    • Single Pane: Conductivity = 1.050 W/m°C, Assume Thickness = 0.004 m R=0.0041.050=0.0038095m2K/WR = \frac{0.004}{1.050} = 0.0038095 \, m^2 \, K/W
    • Total Resistance includes surfaces: Rtotal=0.0038095+0.075+0.110=0.1888m2K/WR_{total} = 0.0038095 + 0.075 + 0.110 = 0.1888 \, m^2 \, K/W
  2. U-value Calculation: U=10.18885.29W/m2KU = \frac{1}{0.1888} ≈ 5.29 \, W/m^2K

Step 5

discuss the performance of both windows under thermal properties

97%

117 rated

Answer

The thermally broken wooden frame has a better thermal performance due to its lower U-value compared to the traditional solid wooden frame. The use of insulation between the two wooden layers in the thermally broken version significantly reduces heat loss.

The triple-glazed unit offers further reduction of heat transfer as it combines low-e glass and argon filling, leading to very efficient insulation properties. This drastically cuts down on heating costs, with estimates suggesting it can halve heat loss compared to traditional glazings.

Step 6

discuss the performance of both windows under environmental considerations

97%

121 rated

Answer

From an environmental standpoint, the thermally broken frame, with its rigid insulation, helps reduce energy consumption, leading to lower CO2 emissions. Utilization of sustainably sourced materials can also lessen environmental impact.

In contrast, traditional single-glazed windows are less efficient and result in higher energy usage, leading to more waste and environmental degradation. The introduction of the triple-glazed unit improves energy efficiency substantially, enabling reduced reliance on fossil fuels over time.

Step 7

design detailing of a window

96%

114 rated

Answer

The design of a window fixed in a 350 mm concrete block wall with an insulated cavity should incorporate a few key elements:

  1. Window Frame: Ensure a good fit within the cavity to prevent thermal bridging.
  2. Insulation: Detail the insulation snugly against the wall, specifying a high-density material to minimize heat loss.
  3. Sealing: Use proper seals around the window frame to eliminate air leakage.

Sketch: A rough sketch showing insulation around the window, with notes for minimum thermal bridging, would clarify placement and materials.

Join the Leaving Cert students using SimpleStudy...

97% of Students

Report Improved Results

98% of Students

Recommend to friends

100,000+

Students Supported

1 Million+

Questions answered

;