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It consists of three parallel streams: to the left, a layer of fuel at subignition temperature; an intermediate finite thickness layer of oxidizer at the same low temperature; and to the right, a layer of hot combustion products.
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The present paper addresses the ignition problem of a one-dimensional unsteady diffusion layer of fuel and oxidizer, undergoing volumetric expansion.
We show that in order to ignite a self-sustained combustion wave, sufficient heat must be supplied, so that in addition to providing a sufficiently high temperature to form a preheat layer, there is sufficient buoyant flux of oxidizer to allow the combustion wave to become self-sustained.
Due to the injection of oxidizer through discrete tubes, a three-dimensional "injection layer" exists below the exit plane of the oxidizer supply tubes.
The oxidation degree was depending on the type of oxidizer used and has a maximum for NaClO3 and a minimum for the KNO3 oxidizer.
The problem for any potential bomber is the absence of large amounts of oxidizer -- the crucial ingredient for fast burning and explosions.
These flames were produced in a burner with a parallel annular coaxial flow of oxidizer.
The parameters that influence the reaction kinetics and mechanisms include the type of fuel, the fuel-to-oxidizer ratio, the use of excess amount of oxidizer, the ignition temperature, and water content of the precursor mixture.
The fluoropolymer plays the role of oxidizer and the Al nanoparticles plays the role of fuel in the nanoenergetic composition.
Layer upon layer of lobbying.
Layer upon layer of silk and velvet.
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CEO of Professional Science Editing for Scientists @ prosciediting.com