Aeration involves moving air through either a solid or fluid medium bed and is used for various purposes. Depending on specific
material being aerated, our fans are utilized for moisture control in
applications such as grain bin storage, and also provide oxygen and control
moisturetemperature in composting applications. Due to varying environmental
conditions, fans used in aeration systems often require special construction
such as fiberglass, alloys and specialty coatings.
Through decomposition, landfills produce syngas, a combination of methane carbon monoxide, and other
hazardous gases. To avoid dangerously high levels of these gases, forced draft
fans are used to drive fresh air into the landfill mass. Induced draft fans are
also used for pulling noxious gases out of the landfill for safe disposal or for
collecting them as a fuel source. The fans used in these applications often
require special materials or coatings along with spark resistant construction.
Depending on your specific needs, Twin City Fan will work with you to select the
proper air moving equipment.
High volume, low concentration or non-condensable gases refers to gases that are in concentrations below their
explosion limit. These gases are drawn through an induced draft fan and then
processed with a RTO (regenerative thermal oxidizer) or incinerator that
ultimately burns the gases for safe disposal. HVLC gases are often corrosive and
at elevated temperatures, that is why we provide a number of fans that are
corrosion resistant. In addition, we offer leak-tight construction to avoid
emitting these toxic, flammable gases into the environment. In the case that
these gases are above their explosion limit, Buffalo Blower supplies a full line
of non-sparking fans that allow for the safe movement of hazardous gases. Based
on your specific requirements, our fans can be constructed with aluminum and
monel materials.
In a manufacturing environment, vacuum systems are used to move and transport waste material. Sawdust, metal shavings, and other waste
is easily transported away from work areas to a specified collection point for
simplified clean up and removal. Vacuum systems are also used to provide suction
for the manipulation of components, various materials and forming processes.
These systems usually consist of long runs of relatively small diameter pipe or
ducting. This results in the need for high pressure low flow
fans.
Boilers are used in a variety of industries for producing heat and energy. Many boiler applications will burn fuel readily available on site, such
a byproduct from the given process. An example of this is Bagasse, which is a
fibrous matter that remains after sugarcane is processed to extract their
juices. The bagasse is a biofuel used for many boiler applications. Fans in
boiler applications are forced draft, induced draft, over fire air and
combustion air.
For additional information please refer to http:buffaloblowerindex.
Oleg Tchetchel
Fan and Blower Design Specialist
Buffalo Blower Co.
http:www.buffaloblowerahuindex
http:buffaloblowerfansindex Why do new multi layer balls used on tour spin less than the old tour balls off the driver
but spin the same as the old wound balls off the wedge? Ryan Dees, Gainesville,
Fla.
During the collision between the driver and the ball (which lasts for less than half a millisecond, 200 times faster than you can blink your eye),
there's an average force of 1,500 pounds being applied to the ball. This violent
collision compresses the ball to about two-thirds of its diameter. The cover
thickness is less than 3 percent of the size of the ball but doesn't much
influence the outcome of this collision.
Two-piece balls, which have been on the market for many years, will spin less and go a little farther off the
driver than the soft, wound balata balls that were used on tour until five years
ago. The hard-core two-piece ball will spin about the same as the wound ball off
the wedge only if it has an extremely soft and relatively thick cover. But such
a cover reduces the ball's distance off the driver. The trick is to get a ball
to spin less than a wound ball off the driver but the same as a wound ball off
the wedge. A multi layer ball will do this because it has a soft core (for speed
off the driver face) surrounded by a hard mantle and a thin soft cover. The
mantle reduces spin off the driver, and the cover, too thin to influence driver
launch conditions, is soft enough to significantly influence the spin off the
wedge. The collision between the wedge and the soft cover, less violent and more
oblique than with a driver, generates more spin. Thus, designers combined new
materials with a better understanding of the synergy between ball and club to
create a more efficient multi layer ball.
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