DNS of isothermal N2 jets at Re_D=5000 and Ma=0.6 shows that supercritical conditions produce different potential-core length, spatial growth rate, and velocity-decay profiles than subcritical perfect-gas conditions.
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Direct numerical simulation of high-pressure mixing in turbulent jets
DNS of isothermal N2 jets at Re_D=5000 and Ma=0.6 shows that supercritical conditions produce different potential-core length, spatial growth rate, and velocity-decay profiles than subcritical perfect-gas conditions.