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That window can send more solar heat in winter season than in summer season. A west-facing window on a summertime's afternoon has an angle of occurrence from near 0 up to 30 with a large effective location of solar radiation. A north-facing window, in summertime, has a high angle of incidence and a low reliable area of solar radiation, so can transfer less heat than a west-facing one.



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However you can quickly and easily enhance the thermal efficiency of your house by replacing your windows. This is one of the most efficient techniques of renovation to attain improved thermal comfort. There are countless types of glass and frames to pick from. Picking the right ones is very important to improving the energy performance of your house.

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Single glazing with clear glass is not very efficient when it comes to heat loss or gain. To enhance efficiency, you can utilize single glazing with a more energy-efficient type of glass such as low emissivity (low-e) glass.

The energy efficiency of IGUs also depends on: the residential or commercial properties of each layer of glass. Different glass types (for example, clear and low-e glass) can be put together in an IGU.

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IGU cavities can be filled with air or a more inert, low-conductivity gas such as argon the width of the cavity. Cavity thickness is usually 6 to 18mm. Broader cavities offer lower (much better) U values, with 12mm typically accepted as the favored space how well the cavity is sealed. Cavities must be dry and well sealed to prevent wetness getting in.

If argon is set up to the cavity in location of air, moisture is reliably left out the level of desiccant (drying representative). The spacer (metal or polymer strip) that separates the glass layers consists of a desiccant to take in any wetness. Inadequate desiccant might trigger moisture to condense on the glass surface in cold conditions, lowering thermal performance.

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IGUs can deliver much better energy efficiency for all climates, particularly in heated and air-conditioned houses. Cross-section detail of single, double and triple-glazing systems Low emissivity glass (commonly understood as low-e glass) reduces heat transfer. Low-e glass may be either high or low transmission: High transmission low-e glass has a finishing that allows daytime from the sun to enter your house to achieve good solar heat gain, however decreases the quantity of the long wavelength infrared heat that can get away back through the window.

Low-e glass has either a pyrolytic finish or a vacuum-deposited thin film metal finish. Pyrolytic coatings are durable and can be used for any glazing; vacuum-deposited finishings are soft and are just utilized within IGUs. Low-e finishes can significantly improve both U worth and SHGC; nevertheless, they should be utilized properly or they will either deteriorate or fail to perform as required.

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Low-e finishings can be utilized in combination with clear, toned or reflective glass. Low-e coatings on glazing can reduce heat transfer where required Picture: Department of Market, Science, Energy and Resources Toned glass has colouring additives included throughout manufacture. It is readily available in various colours, usually bronze, grey, blue and green.