Example 14.7 from College Physics, 14.6 Convection
Most houses are not airtight: air goes in and out around doors and windows, through cracks and crevices, following wiring to switches and outlets, and so on. The air in a typical house is completely replaced in less than an hour. Suppose that a moderately-sized house has inside dimensions high, and that all air is replaced in 30.0 min. Calculate the heat transfer per unit time in watts needed to warm the incoming cold air by , thus replacing the heat transferred by convection alone.
Work it out on paper first. Then open the solution one step at a time, and stop as soon as you can finish on your own.
Heat is used to raise the temperature of air so that . The rate of heat transfer is then , where is the time for air turnover. We are given that is , but we must still find values for the mass of air and its specific heat before we can calculate . The specific heat of air is a weighted average of the specific heats of nitrogen and oxygen, which gives from Table 14.4 (note that the specific heat at constant pressure must be used for this process).
This rate of heat transfer is equal to the power consumed by about forty-six 100-W light bulbs. Newly constructed homes are designed for a turnover time of 2 hours or more, rather than 30 minutes for the house of this example. Weather stripping, caulking, and improved window seals are commonly employed. More extreme measures are sometimes taken in very cold (or hot) climates to achieve a tight standard of more than 6 hours for one air turnover. Still longer turnover times are unhealthy, because a minimum amount of fresh air is necessary to supply oxygen for breathing and to dilute household pollutants. The term used for the process by which outside air leaks into the house from cracks around windows, doors, and the foundation is called “air infiltration.”
How did it go?