adiabatic flame temperature वाक्य
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- :: The answer to the last question is at Adiabatic flame temperature.
- :To actually answer the question, we have the article Adiabatic flame temperature.
- The following figure illustrates that the effects of dissociation tend to lower the adiabatic flame temperature.
- We see that the adiabatic flame temperature of the constant pressure process is lower than that of the constant volume process.
- There are a number of programs available that can calculate the adiabatic flame temperature taking into account dissociation through equilibrium constants ( Stanjan, NASA CEA, AFTP ).
- The adiabatic flame temperature is the temperature that would be achieved by a flame if the process of combustion took place in the absence of heat loss to the surroundings.
- These all have adiabatic flame temperatures of about 2100 o C, so I would bet Vaseline is similar . talk ) 00 : 17, 22 December 2011 ( UTC)
- The combustion products are excited to a very high temperature called the adiabatic flame temperature ( that is, the temperature before any heat has been transferred away from the combustion products ).
- By way of example, the adiabatic flame temperature is an idealization that uses the " adiabatic approximation " so as to provide an upper limit calculation of temperatures produced by combustion of a fuel.
- The adiabatic combustion temperature ( also known as the " adiabatic flame temperature " ) increases for higher heating values and inlet air and fuel temperatures and for stoichiometric air ratios approaching one.
- The "'constant pressure adiabatic flame temperature "'is the temperature that results from a complete combustion process that occurs without any heat transfer or changes in kinetic or potential energy.
- If we make the assumption that combustion goes to completion ( i . e . CO _ 2 and H _ 2O ), we can calculate the adiabatic flame temperature by hand either at stoichiometric conditions or lean of stoichiometry ( excess air ).
- The constant-pressure adiabatic flame temperature of such substances in air is in a relatively narrow range around 1950 �C . This is because, in terms of stoichiometry, the combustion of an organic compound with " n " carbons involves breaking roughly 2 " n"
- The glass industry has been converting to oxy-fuel since the early 1990s because glass furnaces require a temperature of approximately 2800 degrees F, which is not attainable at adiabatic flame temperatures for air-fuel combustion unless heat is regenerated between the flue stream and the incoming air stream.
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