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Diffstat (limited to '587/CH10/EX10.2/example10_2.sce')
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1 files changed, 24 insertions, 0 deletions
diff --git a/587/CH10/EX10.2/example10_2.sce b/587/CH10/EX10.2/example10_2.sce new file mode 100755 index 000000000..e949f861b --- /dev/null +++ b/587/CH10/EX10.2/example10_2.sce @@ -0,0 +1,24 @@ +clear;
+clc;
+
+//Example10.2[Peak Heat Flux in Nucleate Boiling]
+D=0.01;//[m]
+Tsat=100;//Saturation Temperature[degree Celcius]
+sigma=0.0589;//[N/m]
+//Properties of water at saturation temperature
+rho_l=957.9;//[kg/m^3]
+rho_v=0.6;//[kg/m^3]
+h_fg=2257*10^3;//[J/kg]
+mu_l=0.282*10^(-3);//[kg/m.s]
+Pr_l=1.75;//Prandtl number
+Cp_l=4217;//[J/kg.degree Celcius]
+Csf=0.0130,n=1.0;
+g=9.81;//[m/s^2]
+//Solution:-
+L_=(D/2)*((g*(rho_l-rho_v)/sigma)^(1/2));//dimensionless Parameter
+//For this value of L_ we have
+C_cr=0.12;//Constant
+q_max=C_cr*h_fg*((sigma*g*(rho_v^2)*(rho_l-rho_v))^(1/4));//[W/m^2]
+disp("W/m^2",q_max,"The maximum or critical heat flux is")
+Ts=(((q_max/(mu_l*h_fg*((g*(rho_l-rho_v)/sigma)^(1/2))))^(1/3))*(Csf*h_fg*Pr_l^n)/Cp_l)+Tsat;//[degree Celcius]
+disp("degree Celcius",round(Ts),"The surface temperature is")
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