Miscellaneous

Why are chimneys conical?

Why are chimneys conical?

According to the above observations, it can be concluded that a divergent chimney with a conical angle small than α = 3° enhances the air flow velocity inside the chimney and consequently the solar chimney performance.

Why chimneys are made of round section?

It is recommended to build chimneys of circular cross-section of smoke and flue gas ducts, as characterized by lower friction resistance when gas flows. The advantage of ducts of such a cross-section is also higher effectiveness of their periodic cleaning.

What is the difference between chimney and stack?

Explanation: The chimney is the whole thing, the stack is the part that sticks out (above the roof, usually).

What is the purpose of a chimney?

Again, the main purpose of a chimney is to vent the products of combustion from your home. That function is crucial because the products of combustion contain hazardous and noxious gasses. One of the hazardous gasses your chimney needs to remove from your home is carbon monoxide.

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Why the chimney is made tapered shape?

By reducing the cross sectional area of the flow area at the outlet, additional velocity will increase the plume height and result in better dispersion , which avoids downwash effects.

Why are chimneys tapered?

Due to reduction in surface area, this translates to less loading for the base to counteract, and overall reduces the stress. Typical stack design of this construction is to size the top for optimal velocity, and make that the wind design.

Why are smoke stacks tapered?

Since, in the US, ASCE 07-10 and ASME STS-1 utilize a wind gradient, the loads at the top of the stack are significantly larger than the loads at the base. Due to reduction in surface area, this translates to less loading for the base to counteract, and overall reduces the stress.

How do chimney stacks work?

Chimneys operate on the principle that hot air rises above cold air. The movement of hot gases rising from the fire creates a pressure difference between the inside of the flue and the room. The movement of air through the chimney is aided by the fact that air in the house is warmer than the air outside.

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Why chimneys are tapered?

Why are chimneys placed at the top of a roof?

Chimneys are ventilation channels that guide smoke and other gases that are products of combustion out from a fireplace through the roof of a building. Chimneys operate based on the principle that hot air is less dense than cold air, and thus rises.

Why are some chimneys so tall?

A smokestack, stack, or chimney is a tall vertical pipe or channel used by power plants to exhaust combustion gases into the air. This technique is to build the stack very high, because wind speeds are greater at high elevations, and the dispersion of the gases results in less gas remaining in a given area.

Why is there no chimney in the case of a locomotive boiler?

In this type of boiler we use the stack, instead of a chimney because as the name suggests it is a locomotive boiler means it is movable so that we don’t need to fit chimney in it, the flow of air over the stack removed the flue gases due to the pressure difference between the grate and the outside.

What determines the capacity of a chimney?

The capacity of a chimney depends on the potential chimney draft – the pressure difference created by the inside and outside air temperature difference and chimney height – and the chimney area. The pressure difference in the chimney pulls air and fuel gas from the boiler or fireplace through the chimney and out of the building. Chimney Draft.

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How do you calculate the chimney area of a furnace?

Chimney Area. The velocity of air and flue gas in a smaller furnace should not exceed 2 m/s. Design velocities of larger furnaces should not exceed 10 m/s. Required chimney area can be calculated as. A = Q / v (3) where. A = cross-sectional area of chimney (m 2) Q = volume of flue gases at chimney temperature (m 3/s)

What is the temperature inside a 20 m high chimney?

A 20 m high chimney operates with flue gas temperature 200 °C (473 K). The outside temperature is 0 °C (273 K). The density of the outside air is 1.292 kg/m 3.

How does cross-sectional area affect gas nozzle performance?

In fact, the figure indicates that, for subsonic flow ( ), a decreasing cross-sectional area of the nozzle in the direction of the gas flow leads to an increasing flow speed, and decreasing pressure, density, and temperature.