[HEADER] VERSION=10 [VIRTUALKM] USE_LOAD=1 [COMPOUND_DEFAULT] INDEX=0 ; SLICKS SOFT [FRONT] NAME=Slicks Soft SHORT_NAME=S WIDTH=0.245 RADIUS=0.325 ; tyre radius in meters RIM_RADIUS=0.2667 ; rim radius in meters (use 1 inch more than nominal) ANGULAR_INERTIA=1.70 ; angular inertia of front rim+tyre+brake disc together DAMP=500 ; Damping rate of front tyre in N sec/m (values usualy from 200 to 1400) RATE=266163 ; Spring rate of front tyres in Nm DY0=1.4557 DY1=-0.050 DX0=1.4401 DX1=-0.049 WEAR_CURVE=slicksDTM90s_front.lut ; file with lookup table to call SPEED_SENSITIVITY=0.003401 ; speed sensitivity value RELAXATION_LENGTH=0.07478 ROLLING_RESISTANCE_0=12 ; rolling resistance constant component ROLLING_RESISTANCE_1=0.000723 ; rolling resistance velocity (squared) component ROLLING_RESISTANCE_SLIP=5512 ; rolling reistance slip angle component FLEX=0.000607 ; tire profile flex. the bigger the number the bigger the flex, the bigger the added slipangle with load. CAMBER_GAIN=0.132 ; Camber gain value as slipangle multiplayer. default 1 DCAMBER_0=1.3 DCAMBER_1=-15 ; D dependency on camber. D=D*(1.0 - (camberRAD*DCAMBER_0 + camberRAD^2 * DCAMBER_1)) , camberRAD=absolute value of camber in radians FRICTION_LIMIT_ANGLE=7.91 ; Slip angle peak. XMU=0.27 PRESSURE_STATIC=23 ; STATIC (COLD) PRESSURE PRESSURE_SPRING_GAIN=9398 ; INCREASE IN N/m per psi (from 26psi reference) PRESSURE_FLEX_GAIN=0.5 ; INCREASE IN FLEX per psi PRESSURE_RR_GAIN=0.55 ; INCREASE IN RR RESISTENCE per psi PRESSURE_D_GAIN=0.004 ;loss of tyre footprint with pressure rise. PRESSURE_IDEAL=30 ;Ideal pressure for grip FZ0=3200 LS_EXPY=0.7641 LS_EXPX=0.7809 DY_REF=1.45 DX_REF=1.44 FLEX_GAIN=0.0302 FALLOFF_LEVEL=0.85 FALLOFF_SPEED=2 CX_MULT=1.04 RADIUS_ANGULAR_K=0.044 ; Radius grows of MILLIMITERS!! Formula -> RADIUS_ANGULAR_K * angularVelocity in rad/s BRAKE_DX_MOD=0.05 [REAR] NAME=Slicks Soft SHORT_NAME=S WIDTH=0.305 RADIUS=0.334 RIM_RADIUS=0.2667 ; rim radius in meters (use 1 inch more than nominal) ANGULAR_INERTIA=1.65 ; angular inertia of front rim+tyre+brake disc together DAMP=500 ; Damping rate of front tyre in N sec/m (values usualy from 200 to 1400) RATE=266163 ; Spring rate of front tyres in Nm DY0=1.4057 DY1=-0.050 DX0=1.3901 DX1=-0.049 WEAR_CURVE=slicksDTM90s_rear.lut ; file with lookup table to call SPEED_SENSITIVITY=0.003401 ; speed sensitivity value RELAXATION_LENGTH=0.07478 ROLLING_RESISTANCE_0=12 ; rolling resistance constant component ROLLING_RESISTANCE_1=0.000723 ; rolling resistance velocity (squared) component ROLLING_RESISTANCE_SLIP=5512 ; rolling reistance slip angle component FLEX=0.000607 ; tire profile flex. the bigger the number the bigger the flex, the bigger the added slipangle with load. CAMBER_GAIN=0.132 ; Camber gain value as slipangle multiplayer. default 1 DCAMBER_0=1.3 DCAMBER_1=-15 ; D dependency on camber. D=D*(1.0 - (camberRAD*DCAMBER_0 + camberRAD^2 * DCAMBER_1)) , camberRAD=absolute value of camber in radians FRICTION_LIMIT_ANGLE=7.91 ; Slip angle peak. XMU=0.27 PRESSURE_STATIC=23 ; STATIC (COLD) PRESSURE PRESSURE_SPRING_GAIN=9398 ; INCREASE IN N/m per psi (from 26psi reference) PRESSURE_FLEX_GAIN=0.5 ; INCREASE IN FLEX per psi PRESSURE_RR_GAIN=0.55 ; INCREASE IN RR RESISTENCE per psi PRESSURE_D_GAIN=0.004 ;loss of tyre footprint with pressure rise. PRESSURE_IDEAL=32 ;Ideal pressure for grip FZ0=4050 LS_EXPY=0.7641 LS_EXPX=0.7809 DY_REF=1.40 DX_REF=1.39 FLEX_GAIN=0.0302 FALLOFF_LEVEL=0.85 FALLOFF_SPEED=2 CX_MULT=1.04 RADIUS_ANGULAR_K=0.044 ; Radius grows of MILLIMITERS!! Formula -> RADIUS_ANGULAR_K * angularVelocity in rad/s BRAKE_DX_MOD=0.05 [THERMAL_FRONT] SURFACE_TRANSFER=0.0180 PATCH_TRANSFER=0.00027 CORE_TRANSFER=0.0017702 INTERNAL_CORE_TRANSFER=0.00468 FRICTION_K=0.07593 ROLLING_K=0.16 PERFORMANCE_CURVE=tcurve_slicksDTM90s.lut GRAIN_GAMMA=1 ; Gamma for the curve grain vs slip. higher number makes grain more influenced by slip GRAIN_GAIN=0.5 ; Gain for graining. How much gain raises with slip and temperature difference- 100 value = slipangle*(1+grain%) BLISTER_GAMMA=1 ; Gamma for the curve blistering vs slip. higher number makes blistering more influenced by slip BLISTER_GAIN=0.5 ; Gain for blistering. How much blistering raises with slip and temperature difference. think blistering more as heat cycles. 100 value = 20% less grip COOL_FACTOR=1.80 SURFACE_ROLLING_K=0.6241 [THERMAL_REAR] SURFACE_TRANSFER=0.0180 PATCH_TRANSFER=0.00027 CORE_TRANSFER=0.0017702 INTERNAL_CORE_TRANSFER=0.00468 FRICTION_K=0.06893 ROLLING_K=0.16 PERFORMANCE_CURVE=tcurve_slicksDTM90s.lut GRAIN_GAMMA=1 ; Gamma for the curve grain vs slip. higher number makes grain more influenced by slip GRAIN_GAIN=0.5 ; Gain for graining. How much gain raises with slip and temperature difference- 100 value = slipangle*(1+grain%) BLISTER_GAMMA=1 ; Gamma for the curve blistering vs slip. higher number makes blistering more influenced by slip BLISTER_GAIN=0.5 ; Gain for blistering. How much blistering raises with slip and temperature difference. think blistering more as heat cycles. 100 value = 20% less grip COOL_FACTOR=2.10 SURFACE_ROLLING_K=0.6241 ; SLICKS HARD [FRONT_1] NAME=Slicks Hard SHORT_NAME=H WIDTH=0.245 RADIUS=0.325 ; tyre radius in meters RIM_RADIUS=0.2667 ; rim radius in meters (use 1 inch more than nominal) ANGULAR_INERTIA=1.70 ; angular inertia of front rim+tyre+brake disc together DAMP=500 ; Damping rate of front tyre in N sec/m (values usualy from 200 to 1400) RATE=296163 ; Spring rate of front tyres in Nm DY0=1.4057 DY1=-0.050 DX0=1.3901 DX1=-0.049 WEAR_CURVE=slicksDTM90h_front.lut ; file with lookup table to call SPEED_SENSITIVITY=0.003401 ; speed sensitivity value RELAXATION_LENGTH=0.07478 ROLLING_RESISTANCE_0=12 ; rolling resistance constant component ROLLING_RESISTANCE_1=0.000723 ; rolling resistance velocity (squared) component ROLLING_RESISTANCE_SLIP=5512 ; rolling reistance slip angle component FLEX=0.000607 ; tire profile flex. the bigger the number the bigger the flex, the bigger the added slipangle with load. CAMBER_GAIN=0.132 ; Camber gain value as slipangle multiplayer. default 1 DCAMBER_0=1.3 DCAMBER_1=-15 ; D dependency on camber. D=D*(1.0 - (camberRAD*DCAMBER_0 + camberRAD^2 * DCAMBER_1)) , camberRAD=absolute value of camber in radians FRICTION_LIMIT_ANGLE=7.91 ; Slip angle peak. XMU=0.27 PRESSURE_STATIC=23 ; STATIC (COLD) PRESSURE PRESSURE_SPRING_GAIN=9398 ; INCREASE IN N/m per psi (from 26psi reference) PRESSURE_FLEX_GAIN=0.5 ; INCREASE IN FLEX per psi PRESSURE_RR_GAIN=0.55 ; INCREASE IN RR RESISTENCE per psi PRESSURE_D_GAIN=0.004 ;loss of tyre footprint with pressure rise. PRESSURE_IDEAL=30 ;Ideal pressure for grip FZ0=3200 LS_EXPY=0.7641 LS_EXPX=0.7809 DY_REF=1.36 DX_REF=1.35 FLEX_GAIN=0.0302 FALLOFF_LEVEL=0.85 FALLOFF_SPEED=2 CX_MULT=1.04 RADIUS_ANGULAR_K=0.044 ; Radius grows of MILLIMITERS!! Formula -> RADIUS_ANGULAR_K * angularVelocity in rad/s BRAKE_DX_MOD=0.05 [REAR_1] NAME=Slicks Hard SHORT_NAME=H WIDTH=0.305 RADIUS=0.334 RIM_RADIUS=0.2667 ; rim radius in meters (use 1 inch more than nominal) ANGULAR_INERTIA=1.65 ; angular inertia of front rim+tyre+brake disc together DAMP=500 ; Damping rate of front tyre in N sec/m (values usualy from 200 to 1400) RATE=296163 ; Spring rate of front tyres in Nm DY0=1.3657 DY1=-0.050 DX0=1.3501 DX1=-0.049 WEAR_CURVE=slicksDTM90h_rear.lut ; file with lookup table to call SPEED_SENSITIVITY=0.003401 ; speed sensitivity value RELAXATION_LENGTH=0.07478 ROLLING_RESISTANCE_0=12 ; rolling resistance constant component ROLLING_RESISTANCE_1=0.000723 ; rolling resistance velocity (squared) component ROLLING_RESISTANCE_SLIP=5512 ; rolling reistance slip angle component FLEX=0.000607 ; tire profile flex. the bigger the number the bigger the flex, the bigger the added slipangle with load. CAMBER_GAIN=0.132 ; Camber gain value as slipangle multiplayer. default 1 DCAMBER_0=1.3 DCAMBER_1=-15 ; D dependency on camber. D=D*(1.0 - (camberRAD*DCAMBER_0 + camberRAD^2 * DCAMBER_1)) , camberRAD=absolute value of camber in radians FRICTION_LIMIT_ANGLE=7.91 ; Slip angle peak. XMU=0.27 PRESSURE_STATIC=23 ; STATIC (COLD) PRESSURE PRESSURE_SPRING_GAIN=9398 ; INCREASE IN N/m per psi (from 26psi reference) PRESSURE_FLEX_GAIN=0.5 ; INCREASE IN FLEX per psi PRESSURE_RR_GAIN=0.55 ; INCREASE IN RR RESISTENCE per psi PRESSURE_D_GAIN=0.004 ;loss of tyre footprint with pressure rise. PRESSURE_IDEAL=32 ;Ideal pressure for grip FZ0=4050 LS_EXPY=0.7641 LS_EXPX=0.7809 DY_REF=1.36 DX_REF=1.35 FLEX_GAIN=0.0302 FALLOFF_LEVEL=0.85 FALLOFF_SPEED=2 CX_MULT=1.04 RADIUS_ANGULAR_K=0.044 ; Radius grows of MILLIMITERS!! Formula -> RADIUS_ANGULAR_K * angularVelocity in rad/s BRAKE_DX_MOD=0.05 [THERMAL_FRONT_1] SURFACE_TRANSFER=0.0180 PATCH_TRANSFER=0.00027 CORE_TRANSFER=0.0017702 INTERNAL_CORE_TRANSFER=0.00468 FRICTION_K=0.06710 ROLLING_K=0.13 PERFORMANCE_CURVE=tcurve_slicksDTM90h.lut GRAIN_GAMMA=1 ; Gamma for the curve grain vs slip. higher number makes grain more influenced by slip GRAIN_GAIN=0.5 ; Gain for graining. How much gain raises with slip and temperature difference- 100 value = slipangle*(1+grain%) BLISTER_GAMMA=1 ; Gamma for the curve blistering vs slip. higher number makes blistering more influenced by slip BLISTER_GAIN=0.5 ; Gain for blistering. How much blistering raises with slip and temperature difference. think blistering more as heat cycles. 100 value = 20% less grip COOL_FACTOR=1.80 SURFACE_ROLLING_K=0.5941 [THERMAL_REAR_1] SURFACE_TRANSFER=0.0180 PATCH_TRANSFER=0.00027 CORE_TRANSFER=0.0017702 INTERNAL_CORE_TRANSFER=0.00468 FRICTION_K=0.06110 ROLLING_K=0.13 PERFORMANCE_CURVE=tcurve_slicksDTM90h.lut GRAIN_GAMMA=1 ; Gamma for the curve grain vs slip. higher number makes grain more influenced by slip GRAIN_GAIN=0.5 ; Gain for graining. How much gain raises with slip and temperature difference- 100 value = slipangle*(1+grain%) BLISTER_GAMMA=1 ; Gamma for the curve blistering vs slip. higher number makes blistering more influenced by slip BLISTER_GAIN=0.5 ; Gain for blistering. How much blistering raises with slip and temperature difference. think blistering more as heat cycles. 100 value = 20% less grip COOL_FACTOR=2.10 SURFACE_ROLLING_K=0.5941