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STOVE GUIDE - DanSkan

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DAN SKAN-AUTOMATIC<br />

INTELLIGENT COMBUSTION CONTROL<br />

CONTINUOUS CHALLENGE<br />

Inefficient and improperly burning stoves contribute to atmospheric<br />

pollution, including the air that we breathe. Good<br />

combustion – meaning clean combustion, occurs at the<br />

highest burn temperatures and when there is also effective<br />

control of the combustion air.<br />

DAN SKAN designers have worked constantly to improve<br />

combustion techniques and reduce CO, including fine dust<br />

particulates so that all DAN SKAN stoves are tested to, and<br />

surpass, the strictest environmental standards making them<br />

some of the ‘greenest’ stoves in the world. The unique design<br />

of the fire chamber and the automatically controlled flow of the<br />

primary, secondary and tertiary combustion air delivers very<br />

clean and consistent burning ensuring that DAN SKAN stoves<br />

are as environmentally friendly as possible so that they can be<br />

used and relied upon in the future. Our low hydrocarbons and<br />

low fine particulates combined with the highest efficiencies<br />

are the result of nearly four decades of continuous DAN SKAN<br />

research and development work.<br />

INTELLIGENT <strong>STOVE</strong>S<br />

DAN SKAN stoves feature pre-heated post-combustion<br />

tertiary air, a particularly clean and environmentally friendly<br />

improvement to the combustion process. The effects of the<br />

tertiary air can be easily seen high on the flames at the top<br />

of the fire chamber, through the cleaner windows and by the<br />

exceptionally clean fire chamber linings. It is important to<br />

remember that the prerequisite of clean burning remains of<br />

course the use of dry fully seasoned wood with a moisture<br />

content of less than 18%. The elimination of operator errors<br />

through the intelligent and automatic control of the combustion<br />

air also determines a higher level of efficiency.<br />

AUTOMATIC TERTIARY AIR<br />

The DAN SKAN automatic combustion air flow opens when the<br />

fire in the stove is large and closes when the fire burns down<br />

according to the needs of the fire. All of the subtle adjustments<br />

in between are carried out seamlessly – and automatically. Since<br />

the pre-heated tertiary air is fed into the top of fire chamber it is<br />

also used to ‘air wash’ the window to help keep it clean during<br />

combustion.<br />

Should you ever need to, the automatic system can be easily<br />

reset from the original factory setting (about 11 o‘clock – see<br />

diagram) to allow for individual installations and the strength of the<br />

available up-draught. For example, if the stove burns too strongly<br />

because of a strong up-draught then by using the correctly<br />

sized spanner the automatic lever can be moved forward to the<br />

12 or even 1 o‘clock position. This will ensure that the control of<br />

the air flow will automatically open later in the cycle to contribute<br />

to a slower burning process.<br />

Turn clockwise to loosen the lock screw<br />

Turn anti-clockwise to tighten the lock screw<br />

HIGH EFFICIENCY<br />

DAN SKAN‘s automatic supply of combustion air, as well the<br />

additional pre-combustion air delivers the correct amount of<br />

combustion air at exactly the time that the fire needs it – for<br />

example, the bigger a fire is then the more air that is required<br />

to burn efficiently and burn off virtually all of the flue gases.<br />

The intelligent DAN SKAN stove simply regulates itself and<br />

therefore offers three distinct advantages for the user and for<br />

the environment:<br />

1. Extremely low-emission combustion<br />

2. Highest possible efficiency – less fuel used<br />

3. Simplicity of operation that maximises the benefits of<br />

points 1 and 2 above<br />

AUTOMATIC COMBUSTION CONTROL OF CLASSIC LINE <strong>STOVE</strong>S<br />

Fire: Large Small Large Small Large etc<br />

Auto: Open Closed Open Closed Open etc<br />

72

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