��sr!com.femlab.server.ModelFileHeader�D���%LtagstLcom/femlab/util/FlStringList;Ltypesq~LvrsntLcom/femlab/util/FlVersion;xpwsrcom.femlab.util.FlVersion��%�/B =IbuildImajorLdatetLjava/lang/String;Lextq~Lnameq~Lrcsq~L reactionExtq~L reactionNameq~xpwtq~t#COMSOL Reaction Engineering Lab 3.5tat COMSOL 3.5q~ w[t $Name: $t$Date: 2008/12/03 17:02:19 $xur[Ljava.lang.String;��V��{Gxpt modelinfotxfemtguitg1tfem1tfem1.0uq~ q~t femstructt guistructtdrawtgeomtmeshxsrcom.femlab.api.client.ModelInfo�^���%Ldescrq~LdocURLq~[imaget[Bxpwpppxuq~ t�` COMSOL 3.5 a 0 603 $Name: $ $Date: 2008/12/03 17:02:19 $ 1 geom on on off on on off on 0.1 t HtNavierStokes cartesian {"u","v","p","logk","logd","logw","nxw","nyw"} {"x","y","z"} chns HT {"shlag(2,'u')","shlag(2,'v')","shlag(1,'p')"} 4 2 2 1 2 off _chns Lagp2p1 time Off On None Off ref off {"lm1","lm2","lm3","lm4","lm5","lm6"} ideal 0 0 {1,1,1,1} sym walltype inlet uv uv p p slip noslip noslip ntotstress totstress cont U0in 0 0 0 0 (100*t[1/s])[Pa] 0 {"0","0"} {"0","0"} {"0","0"} 1 0 0 0 0 0 0.005 0.005 10 LTIT open 1 0.01 0.05 dw h/2 100 {} {} {} 0 0 0 1 0 1 velocity 0 {1,2,3,1} 123 123 112 112 112 112 {"0","0","0","-8","-8","0","0","0"} {"0","0","0","-8","-8","0","0","0"} 1 0 default Solid domain rho_htgh mat1_eta(T[1/K])[Pa*s] 1 0 0 {} {} 0 1 1 T 0 0.5 1 gls 0.25 1 sc 0.35 0 1 0.1 0 navierstokes usesELM 0 Lagp2p1 0 Lagp2p1 0 0 0 0 0.25 1 gls 0.5 nonisoT {1} 10 GeneralHeat cartesian {"T","J"} {"x","y","z"} htgh HT {"shlag(1,'J')","shlag(2,'T')"} 4 2 2 off _htgh LagT2J1 time off hemicube 4 256 auto None 0 ref off {"lm7"} ideal 1 0 0 0 273.15 273.15 0 0 none epsilon_htgh*sigma_htgh*T^4 J {} {"1"} 0 1 273.15 1 dw h/2 100 {"400","0","0","400"} 0 8700 385 q0 {1,1,1,1} 2 1 1 {"273.15","0"} {"273.15","0"} 1 default Solid domain 1 0 1 {"mat1_k(T[1/K])[W/(m*K)]","0","0","mat1_k(T[1/K])[W/(m*K)]"} {"400","0","0","400"} mat1_rho((p+pamb)[1/Pa],T[1/K])[kg/m^3] 8700 mat1_Cp(T[1/K])[J/(kg*K)] 385 0 0 mat1_gamma 1 pamb+p 0 gasliquid lowmach full 1 0 0 mat1_eta(T[1/K])[Pa*s] 0 Rs 287 0 C 1 0 0 273.15 273.15 0 0 0 0 u0 v 0 1 0.85 1e5 KaysCrawford 0 Lag2 0 Lag2 usesELM 0 0.5 1 0 gls 0.25 system 1 0.01[K]/helem_htgh {"Sdx_guess_htgh","Sdy_guess_htgh"} {"Sdx_guess_htgh","Sdy_guess_htgh"} dr_guess_htgh {"S0x_guess_htgh","S0y_guess_htgh"} {"S0x_guess_htgh","S0y_guess_htgh"} R0_guess_htgh {"0","0"} {"0","0"} none {"0","0"} {"0","0"} 0 {"0","0"} {"0","0"} {"0","0"} {"0","0"} {1} 5.67e-8 8.31451 {"x","y"} {"ref"} {"shlag(2,'u')","shlag(2,'v')","shlag(1,'p')","shlag(2,'T')"} 4 2 0 2 1 2 on 1
general
SI {"0","0","0","0"} 1121 {1} 1234 1121 1121 {"0","0","0","273.15"} {"0","0","0","0"} {"gls_chns+shock_capt_chns","0","0","dVol_htgh*(-k_htgh*TSx_htgh*test(TSx_htgh)-k_htgh*TSy_htgh*test(TSy_htgh)-rho_htgh*C_htgh*(u_htgh*TSx_htgh+v_htgh*TSy_htgh)*test(T))-T*d(rho_htgh,T)*d(pA_htgh,t)*test(T)/rho_htgh-test(nojac(rho_htgh*C_htgh*u_htgh)*Tx+nojac(rho_htgh*C_htgh*v_htgh)*Ty-nojac(kmean_htgh)*Txx-nojac(kmean_htgh)*Tyy)*taue_htgh*res_htgh"} {"0","0","0","dVol_htgh*rho_htgh*C_htgh*Tt*test(T)"} {"0","0","0","0"} {"0","0","0","0"} 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{"-d(-rho_chns*(u*ux+v*uy),u)","-d(-rho_chns*(u*vx+v*vy),u)","-d(-rho_chns*divU_chns-d(rho_chns,x)*u-d(rho_chns,y)*v-d(rho_chns,t),u)","0","-d(-rho_chns*(u*ux+v*uy),v)","-d(-rho_chns*(u*vx+v*vy),v)","-d(-rho_chns*divU_chns-d(rho_chns,x)*u-d(rho_chns,y)*v-d(rho_chns,t),v)","0","-d(-rho_chns*(u*ux+v*uy),p)","-d(-rho_chns*(u*vx+v*vy),p)","-d(-rho_chns*divU_chns-d(rho_chns,x)*u-d(rho_chns,y)*v-d(rho_chns,t),p)","0","-d(-rho_chns*(u*ux+v*uy),T)","-d(-rho_chns*(u*vx+v*vy),T)","-d(-rho_chns*divU_chns-d(rho_chns,x)*u-d(rho_chns,y)*v-d(rho_chns,t),T)","0"} {"-rho_chns*(u*ux+v*uy)","-rho_chns*(u*vx+v*vy)","-rho_chns*divU_chns-d(rho_chns,x)*u-d(rho_chns,y)*v-d(rho_chns,t)","0"} {"0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0"} {"rho_chns","0","0","0","0","rho_chns","0","0","0","0","0","0","0","0","0","0"} {"-d(-2*eta_chns*ux+p+(2*eta_chns/3-kappadv_chns)*divU_chns,u)","-d(-eta_chns*(uy+vx),u)"}{"-d(-eta_chns*(vx+uy),u)","-d(-2*eta_chns*vy+p+(2*eta_chns/3-kappadv_chns)*divU_chns,u)"}{"0","0"}{"0","0"}{"-d(-2*eta_chns*ux+p+(2*eta_chns/3-kappadv_chns)*divU_chns,v)","-d(-eta_chns*(uy+vx),v)"}{"-d(-eta_chns*(vx+uy),v)","-d(-2*eta_chns*vy+p+(2*eta_chns/3-kappadv_chns)*divU_chns,v)"}{"0","0"}{"0","0"}{"-d(-2*eta_chns*ux+p+(2*eta_chns/3-kappadv_chns)*divU_chns,p)","-d(-eta_chns*(uy+vx),p)"}{"-d(-eta_chns*(vx+uy),p)","-d(-2*eta_chns*vy+p+(2*eta_chns/3-kappadv_chns)*divU_chns,p)"}{"0","0"}{"0","0"}{"-d(-2*eta_chns*ux+p+(2*eta_chns/3-kappadv_chns)*divU_chns,T)","-d(-eta_chns*(uy+vx),T)"}{"-d(-eta_chns*(vx+uy),T)","-d(-2*eta_chns*vy+p+(2*eta_chns/3-kappadv_chns)*divU_chns,T)"}{"0","0"}{"0","0"} {"-d(-rho_chns*(u*ux+v*uy),ux)","-d(-rho_chns*(u*ux+v*uy),uy)"}{"-d(-rho_chns*(u*vx+v*vy),ux)","-d(-rho_chns*(u*vx+v*vy),uy)"}{"-d(-rho_chns*divU_chns-d(rho_chns,x)*u-d(rho_chns,y)*v-d(rho_chns,t),ux)","-d(-rho_chns*divU_chns-d(rho_chns,x)*u-d(rho_chns,y)*v-d(rho_chns,t),uy)"}{"0","0"}{"-d(-rho_chns*(u*ux+v*uy),vx)","-d(-rho_chns*(u*ux+v*uy),vy)"}{"-d(-rho_chns*(u*vx+v*vy),vx)","-d(-rho_chns*(u*vx+v*vy),vy)"}{"-d(-rho_chns*divU_chns-d(rho_chns,x)*u-d(rho_chns,y)*v-d(rho_chns,t),vx)","-d(-rho_chns*divU_chns-d(rho_chns,x)*u-d(rho_chns,y)*v-d(rho_chns,t),vy)"}{"0","0"}{"-d(-rho_chns*(u*ux+v*uy),px)","-d(-rho_chns*(u*ux+v*uy),py)"}{"-d(-rho_chns*(u*vx+v*vy),px)","-d(-rho_chns*(u*vx+v*vy),py)"}{"-d(-rho_chns*divU_chns-d(rho_chns,x)*u-d(rho_chns,y)*v-d(rho_chns,t),px)","-d(-rho_chns*divU_chns-d(rho_chns,x)*u-d(rho_chns,y)*v-d(rho_chns,t),py)"}{"0","0"}{"-d(-rho_chns*(u*ux+v*uy),Tx)","-d(-rho_chns*(u*ux+v*uy),Ty)"}{"-d(-rho_chns*(u*vx+v*vy),Tx)","-d(-rho_chns*(u*vx+v*vy),Ty)"}{"-d(-rho_chns*divU_chns-d(rho_chns,x)*u-d(rho_chns,y)*v-d(rho_chns,t),Tx)","-d(-rho_chns*divU_chns-d(rho_chns,x)*u-d(rho_chns,y)*v-d(rho_chns,t),Ty)"}{"0","0"} {"-2*eta_chns*ux+p+(2*eta_chns/3-kappadv_chns)*divU_chns","-eta_chns*(uy+vx)"}{"-eta_chns*(vx+uy)","-2*eta_chns*vy+p+(2*eta_chns/3-kappadv_chns)*divU_chns"}{"0","0"}{"0","0"} 1 1111 {"u","v","p","T"} sqrt(u^2+v^2) vx-uy ux+vy rho_chns*U_chns*h/eta_chns rho_chns*(ut+u*ux+v*uy)+px-F_x_chns-eta_chns*(2*uxx+uyy+vxy)+(2*eta_chns/3-kappadv_chns)*(uxx+vyx) rho_chns*(vt+u*vx+v*vy)+py-F_y_chns-eta_chns*(vxx+uyx+2*vyy)+(2*eta_chns/3-kappadv_chns)*(uxy+vyy) rho_chns*u rho_chns*v eta_chns rho_chns nojac(1/max(2*rho_chns*sqrt(emetric(u,v)),48*eta_chns/h^2)) 0.5*nojac(if(u^2+v^2 rho_chns*divU_chns+d(rho_chns,x)*u+d(rho_chns,y)*v sqrt(abs(Tx)^2+abs(Ty)^2) kxx_htgh k_htgh rho_htgh*C_htgh rho_htgh*u_htgh*(H_htgh+0.5*(u_htgh^2+v_htgh^2)) rho_htgh*C_htgh*u_htgh -kxx_htgh*TSx_htgh-kxy_htgh*TSy_htgh dflux_x_htgh+cflux_x_htgh rho_htgh*v_htgh*(H_htgh+0.5*(u_htgh^2+v_htgh^2)) rho_htgh*C_htgh*v_htgh -kyx_htgh*TSx_htgh-kyy_htgh*TSy_htgh dflux_y_htgh+cflux_y_htgh sqrt(dflux_x_htgh^2+dflux_y_htgh^2) sqrt(cflux_x_htgh^2+cflux_y_htgh^2) sqrt(tflux_x_htgh^2+tflux_y_htgh^2) (kxx_htgh*beta_x_htgh^2+kxy_htgh*beta_x_htgh*beta_y_htgh+kyx_htgh*beta_y_htgh*beta_x_htgh+kyy_htgh*beta_y_htgh^2)/(beta_x_htgh^2+beta_y_htgh^2+eps) 0.5*h*sqrt(beta_x_htgh^2+beta_y_htgh^2)/(Dm_htgh+eps) qs_htgh*T -kxx_htgh*Txx-kxy_htgh*Txy-kyx_htgh*Tyx-kyy_htgh*Tyy+beta_x_htgh*Tx+beta_y_htgh*Ty+rho_htgh*C_htgh*Tt-T*d(rho_htgh,T)*d(pA_htgh,t)/rho_htgh nojac(1/max(2*C_htgh*rho_htgh*sqrt(emetric(u_htgh,v_htgh))/gamma_htgh,48*kmean_htgh/h^2)) h C_htgh*T/gamma_htgh+pA_htgh/rho_htgh 0 0 x 0 0 y 0 0 detJ_htgh Tx Ty rho_htgh mat1_eta(T[1/K])[Pa*s] 0 0 0 1 1 T 0.5 0.25 sc 0.35 1 0.1 0 Lagp2p1 Lagp2p1 -test(nojac(rho_chns)*(nojac(u)*ux+nojac(v)*uy+px)-nojac(eta_chns)*(2*uxx+uyy+vxy)+nojac(2*eta_chns/3-kappadv_chns)*(uxx+vyx))*taum_chns*res_u_chns-test(nojac(rho_chns)*(nojac(u)*vx+nojac(v)*vy+py)-nojac(eta_chns)*(vxx+uyx+2*vyy)+nojac(2*eta_chns/3-kappadv_chns)*(uxy+vyy))*taum_chns*res_v_chns-test(-nojac(rho_chns*alphap_chns)*(nojac(u)*px+nojac(v)*py))*taue_htgh*res_htgh-test(divU_chns+nojac(rho_chns*betaT_chns)*(nojac(u)*px+nojac(v)*py))*tauc_chns*res_p_chns 0 (d(x,xi1)^2+d(x,xi2)^2)^2+2*(d(y,xi1)*d(x,xi1)+d(y,xi2)*d(x,xi2))^2+(d(y,xi1)^2+d(y,xi2)^2)^2 U_chns -d(rho_chns,T)/rho_chns -d(rho_chns,p)/rho_chns d(x,xi1)^2+d(x,xi2)^2 d(y,xi1)*d(x,xi1)+d(y,xi2)*d(x,xi2) d(y,xi1)^2+d(y,xi2)^2 -nojac(0.5*min(ck_chns*sqrt((tauc_chns*res_p_chns/(nojac(rhoint_g1_chns/vol_g1_chns)*nojac(sqrt(u2int_g1_chns/vol_g1_chns))))^2+(taum_chns*res_u_chns)^2+(taum_chns*res_v_chns)^2+(taue_htgh*nojac(sqrt(u2int_g1_chns/vol_g1_chns))*res_htgh/nojac(Tint_g1_chns/T_vol_g1_chns))^2),U_ref_chns)*min(gijgij_chns^(-0.25),rho_chns*U_ref_chns/(48*eta_chns)))*rho_chns*(g11_chns*(betaT_chns*px*test(px)+alphap_chns*Tx*test(px)+ux*test(ux)+vx*test(vx)-T*alphap_chns*px*test(Tx)/rho_htgh+C_htgh*Tx*test(Tx))+g21_chns*(betaT_chns*py*test(px)+alphap_chns*Ty*test(px)+uy*test(ux)+vy*test(vx)-T*alphap_chns*py*test(Tx)/rho_htgh+C_htgh*Ty*test(Tx))+g21_chns*(betaT_chns*px*test(py)+alphap_chns*Tx*test(py)+ux*test(uy)+vx*test(vy)-T*alphap_chns*px*test(Ty)/rho_htgh+C_htgh*Tx*test(Ty))+g22_chns*(betaT_chns*py*test(py)+alphap_chns*Ty*test(py)+uy*test(uy)+vy*test(vy)-T*alphap_chns*py*test(Ty)/rho_htgh+C_htgh*Ty*test(Ty))) 1 1 mat1_rho((p+pamb)[1/Pa],T[1/K])[kg/m^3] mat1_Cp(T[1/K])[J/(kg*K)] 0 0 mat1_gamma pamb+p 1 0 mat1_eta(T[1/K])[Pa*s] 287 0 1 0 0 273.15 273.15 0 0 0 0 u v 1 0.85 100000 Lag2 Lag2 0 0.5 1 gls 0.25 1 0.01[K]/helem_htgh dr_guess_htgh R0_guess_htgh mat1_k(T[1/K])[W/(m*K)] 0 0 mat1_k(T[1/K])[W/(m*K)] 0 0 0 0 0 Sdx_guess_htgh Sdy_guess_htgh S0x_guess_htgh S0y_guess_htgh 1 1 1 0 0 0 0 1 1 {0} {0} {1} {"0","0","0","0","0"} {"0","0","0","0","0"} {"0","0","0","0","0"} {"0","0","0","0","0"} {"0","0","0","0","0"} {"0","0","0","0","0"} {"-u*nx_chns-v*ny_chns","0","0","0","0"} {"-u","-v","0","0","0"} {"0","0","-p+p0_chns","0","0"} {"test(-u*nx_chns-v*ny_chns)","0","0","0","0"} {"test(-u)","test(-v)","0","0","0"} {"0","0","test(-p+p0_chns)","0","0"} {"0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0"}{"0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0"}{"-d(-nx_chns*p,u)","-d(-ny_chns*p,u)","0","0","0","-d(-nx_chns*p,v)","-d(-ny_chns*p,v)","0","0","0","-d(-nx_chns*p,p)","-d(-ny_chns*p,p)","0","0","0","-d(-nx_chns*p,T)","-d(-ny_chns*p,T)","0","0","0","-d(-nx_chns*p,J)","-d(-ny_chns*p,J)","0","0","0"} {"0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0"} {"0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0"} {"0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0","0"} {"0","0","0","0","0"} {"0","0","0","0","0"} {"-nx_chns*p","-ny_chns*p","0","0","0"} {"0","0","0","0","0"} {"0","0","0","0","0"} {"0","0","0","0","0"} 1234 1234 1234 1 11111 11111 11111 11213 11213 11213 11212 11212 11212 {"","","","","0"} {"","","","","0"} {"","","","","0"} {"","","","",""} {"","","","",""} {"","","","",""} {"u","v","p","T","J"} nx_chns*(2*eta_chns*ux-(2*eta_chns/3-kappadv_chns)*divU_chns)+ny_chns*eta_chns*(uy+vx) -nx_chns*p+nx_chns*(2*eta_chns*ux-(2*eta_chns/3-kappadv_chns)*divU_chns)+ny_chns*eta_chns*(uy+vx) nx_chns*eta_chns*(vx+uy)+ny_chns*(2*eta_chns*vy-(2*eta_chns/3-kappadv_chns)*divU_chns) -ny_chns*p+nx_chns*eta_chns*(vx+uy)+ny_chns*(2*eta_chns*vy-(2*eta_chns/3-kappadv_chns)*divU_chns) nx_htgh*dflux_x_htgh+ny_htgh*dflux_y_htgh rho_htgh*C_htgh*T*(nx_htgh*u_htgh+ny_htgh*v_htgh) ndflux_htgh+ncflux_htgh 1 0 0 0 0 (100*t[1/s])[Pa] 0 1 0 0 0 0 0 0.005 0.005 10 1 0.01 0.05 0.5*h 100 0 0 0 1 0 1 nx ny 0 0 0 0 0 273.15 273.15 0 0 none epsilon_htgh*sigma_htgh*T^4 J 0 1 273.15 1 0.5*h 100 0 0 0 nx ny 400 0 0 400 {0,0,0,0} {0,0,0,0} {1,2,3,1} {"0","0","0","0","0","0"} {"0","0","0","0","0","0"} {"0","0","0","0","0","0"} {"0","0","0","0","0","0"} 1234 1 111111 {"","","","","",""} {"","","","","",""} {"u","v","p","Pinl_chns","T","J"} 0 {0,0,0,0} {0,0,0,0} {1,1,1,1} 10 5.67e-008 8.31451 elcplextr {"1"} {} elcplscalar {"1"} {} {} elcplscalar {"1"} nojac(rho_chns) nojac(1) nojac(max((+(u)^2+(v)^2),(eta_chns/rho_chns/h)^2)) nojac(-1/max(emetric(u,v),(visc_vel_fact_chns*eta_chns/rho_chns)^2*emetric2)) refrefrefref 0 0 0 0 {"1"} {"rhoint_g1_chns","vol_g1_chns","u2int_g1_chns","mdt2_cfl_g1_chns"} {"1","2","3","4"} {"4"} elcplscalar {"1"} nojac(T) nojac(1) refref 0 0 {"1"} {"Tint_g1_chns","T_vol_g1_chns"} {"1","2"} {} tH elconst nojac(sqrt(-mdt2_cfl_g1_chns)) elirradiation {"1"} hemicube 256 4 auto

{"R1"}
101325[Pa] {0} {0} chns weak Air mat1 Cp(T[1/K])[J/(kg*K)] cs(T[1/K])[m/s] eta(T[1/K])[Pa*s] 1.4 k(T[1/K])[W/(m*K)] nu0(T[1/K])[m^2/s] rho(p[1/Pa],T[1/K])[kg/m^3] 0[S/m] cs(T) inline sqrt(1.4*287*T) {"d(sqrt(1.4*287*T),T)"} rho(p,T) inline p*0.02897/8.314/T {"d(p*0.02897/8.314/T,p)","d(p*0.02897/8.314/T,T)"} Cp(T) piecewise const poly {"0","1.04763657E+03","1","-3.72589265E-01","2","9.45304214E-04","3","-6.02409443E-07","4","1.28589610E-10"} {"200","1600"} eta(T) piecewise const poly {"0","-8.38278000E-07","1","8.35717342E-08","2","-7.69429583E-11","3","4.64372660E-14","4","-1.06585607E-17"} {"200","1600"} nu0(T) piecewise const poly {"0","-5.86912450E-06","1","5.01274491E-08","2","7.50108343E-11","3","1.80336823E-15","4","-2.91688030E-18"} {"200","1600"} k(T) piecewise const poly {"0","-2.27583562E-03","1","1.15480022E-04","2","-7.90252856E-08","3","4.11702505E-11","4","-7.43864331E-15"} {"200","1600"} Resistivity {"alphares","T0","res0"} {"Temperature coefficient","Reference temperature","Resistivity at reference temperature"} SI
uq~ t� off time stationary auto 1.0E-6 25 tol 100 1 off on on 1.0 1.0E-4 10.0 off on 0.0010 25 lumped automatic auto on 1 5 tol 10 1 off const 1.0 once 1.0 1.0E-2 10.0 0.0010 0.01 0 100 0 1 0.1 11 step none tsteps free genalpha 5*dt_cfl_g1_chns off 15 off on on on on on on off on on 0.0010 5 1 0.1 0.5 linear off off maybe bweuler 1 off 6 0 300 0.0 0 lambda 0 step none off 1 off 0.0 0.0 0.0 on auto off nonsym eliminate auto 1000 on none on off off on off currgeom l2 10000000 longest weak on 0 1 2 1 fltpft 2 1.7 0.5 0.5 on off off sensitivity adjoint on cholesky analytic 500 10 1.0e-6 1.0e-6 1.0e-6 1.0e-6 0 off v,T,u,p T,v,u,p on init_expr_currsol_radio Automatic 0 u_init_radio Automatic 0 off off off off pardiso linsolver 0.0 0.1 0.7 nd on off nd on 1.0E-8 on off tol 2 1.0E-6 400.0 100 left right 1 50 1 1.0 3 6 v 5000 512.0 off 2.0 on droptol Pinl_chns gmres 0.02 100 0.8 on on shape regular on 2 2 off Geom1 on on u v p Pinl_chns 1e-3 1 pardiso linsolver 0.0 0.1 0.7 nd on off nd on 1.0E-8 on off tol 2 1.0E-3 20.0 100 left right 1 50 1 1.0 3 6 v 5000 512.0 off 2.0 on droptol Pinl_chns gmres 0.02 100 0.8 on on shape regular on 2 2 off Geom1 on on J T 1e-3 1 pardiso linsolver 0.0 0.1 0.7 nd on off nd on 1.0E-8 on off tol 2 1.0E-3 20.0 100 left right 1 50 1 1.0 3 6 v 5000 512.0 off 2.0 on droptol Pinl_chns gmres 0.02 100 0.8 on on shape regular on 2 2 off Geom1 on on 1 iter 0.5 0.8 1 20 10 1.0E-2 1 const off 1.0 1.0E-4 1.0E-2 10.0 once onevery 2 iter 0.5 0.8 1 20 10 1.0E-2 1 const off 1.0 1.0E-4 1.0E-2 10.0 once onevery off off off 1 on pardiso 1 pardiso 1.0E-3 20.0 3 pardiso 1.0E-3 20.0 1 pardiso 1.0E-3 20.0 none genalpha off 0.5 once 5 manual 100 0.8 once 0.8 once Pinl_chns 5*dt_cfl_g1_chns 1 on pardiso 1 pardiso 1.0E-3 20.0 3 pardiso 1.0E-3 20.0 1 pardiso 1.0E-3 20.0 none genalpha off 0.5 once 5 manual 100 0.8 once 0.8 once Pinl_chns 5*dt_cfl_g1_chns 1 on pardiso 1 pardiso 1.0E-3 20.0 3 pardiso 1.0E-3 20.0 1 pardiso 1.0E-3 20.0 none genalpha off 0.5 once 5 manual 100 0.8 once 0.8 once Pinl_chns 5*dt_cfl_g1_chns Geom1 0 off off off 1046247 COMSOL 3.5.0.603 1301475904966 1301475541883 off html on a4 off full on Geom1 subdomain 0 -0.12210024048291984 0.3221002434631521 -0.010000000149011617 0.21000000312924386 -1.0 1.0 0.05 0.05 0.05 -2.0755474761835413 2.0755474761835413 -1.1000000163912773 1.1000000163912773 1.0000000149011612 1.0000000149011612 20.755474761835412 1.0000000149011612 1.0000000149011612 0.0 0.0 1.0 0.0 point headlight on 255 255 255 1.0 1.0 20.755474 directional light 1 on 255 255 255 1.0 -1.0 1.0 directional light 2 on 255 255 255 -1.0 1.0 -1.0 directional light 3 on 255 255 255 -1.0 -1.0 1.0 directional light 4 on 255 255 255 1.0 -1.0 -1.0 on on on on off on on on on on on on off off off off 1.0 1.0 1.0 size cycle off off 0.5 orbit none none off off off off on off off on on on on on on 1.0E-6 intersection 1.0 normal off 2 10.0 on on off on off off on on 5 on 1 0.3 1.3 0.001 1 10 1.0 1.0 on 0 regular {"","","",""} {"","","",""} {"","","",""} {"","","",""} {"","","",""} {"","","",""} {""} {"triaf"} {""} 5 on {"T"} on 7.480014500252707 7.49576197712895 on off degC {"U_chns"} off m/s Rainbow off on on 255,0,0 interp fill off {"U_chns"} on off m/s {"U_chns"} off m/s {"U_chns"} on off m/s Rainbow off on on 255,0,0 20 off off step none off off {"U_chns"} on on off m/s {"U_chns"} off m/s Rainbow off on on 255,0,0 interp off sub {"u","v"} off m/s {"",""} off {"U_chns"} off m/s 15 off 15 off step none step none arrow proportional 255,0,0 on 1 off {"u","v"} m/s off 255,0,0 {"U_chns"} m/s Rainbow off on {"U_chns"} off m/s 20 sub off step none step none 0.001 0.01 0.01 Inf 5000 on off 0.05 20 off 1 0.5 1.3 0.5 none off mass lines khanforce_chns radius,partr,1e-4 4*pi/3*1e-9 {"sign(u-partu)*pi*partr^2*rho_chns*(1.84*(abs(u-partu))^(2/3.45-0.31)*(2*partr*rho_chns/eta_chns)^(-0.31)+0.293*(abs(u-partu))^(2/3.45+0.06)*(2*partr*rho_chns/eta_chns)^0.06)^3.45","sign(v-partv)*pi*partr^2*rho_chns*(1.84*(abs(v-partv))^(2/3.45-0.31)*(2*partr*rho_chns/eta_chns)^(-0.31)+0.293*(abs(v-partv))^(2/3.45+0.06)*(2*partr*rho_chns/eta_chns)^0.06)^3.45",""} {"u","v"} m/s on {"0","0","0"} partstart_explicit 10 off step none {"0","0"} step none step none off 255,0,0 {"U_chns"} m/s Rainbow off on 255,0,0 on 1 once step none stick 0.001 off {""} {""} off on on 0.001 partt off 5 0.001 off {"",""} {"",""} off on on 0.001 {"partu","partv","partw"} partt off 5 off {"U_chns"} off on m/s {"U_chns"} off off m/s on on on 1 {"Geom1"} 0 0 stored step none on on off all on off off on on {"u","v"} m/s {"",""} on 1 0 stored step none moviefile AVI 640 480 10 full 11 off off off {"U_chns"} off m/s 0 0 stored step none off auto 4 on {"U_chns"} off m^2/s 0 0 stored step none off auto 4 on {"U_chns"} off m^3/s 0 0 stored step none {"U_chns"} on on off m/s Rainbow off on on 255,0,0 interp fill off {"U_chns"} on off m/s arc off {"U_chns"} m/s solid cyclecolor none off off 255,0,0 Rainbow off on on 255,0,0 interp fill {"U_chns"} off m/s off {"U_chns"} m/s solid cyclecolor none off off 255,0,0 255,0,0 0 0 stored step none on on on {"lin","lin"} on on 1 0 off {"U_chns"} off m/s arc off {"U_chns"} m/s solid cyclecolor none off off 255,0,0 Rainbow off on on 255,0,0 interp fill 200 {"0","1","0","0"} 5 off off step none {"U_chns"} off m/s off {"U_chns"} m^3/s solid cyclecolor none off off 255,0,0 {"0","0"} step none step none 255,0,0 0 0 stored step none on on on {"lin","lin"} on 0 {"U_chns"} off m/s element 2 {"U_chns"} off off m/s element 2 {"U_chns"} off off m/s 10 off 10 off step none step none element 2 0 0 stored step none on ptd off 2 coorddata off on on 0 0 stored step none step none {"U_chns"} off m/s {"0","0"} {} {} off solid cyclecolor none off off 255,0,0 on on on 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