Parameter values for this entry

Model:  std  

Primary parameters at reference temperature (20 deg. C)
symbol value units description
T_A 9000 KArrhenius temperature
p_Am 1061.82 J/d.cm^2{p_Am}, spec assimilation flux
F_m 6.5 l/d.cm^2{F_m}, max spec searching rate
kap_X 0.8 -digestion efficiency of food to reserve
kap_P 0.1 -faecation efficiency of food to faeces
v 0.034465 cm/denergy conductance
kap 0.81702 -allocation fraction to soma
kap_R 0.95 -reproduction efficiency
p_M 609.989 J/d.cm^3[p_M], vol-spec somatic maint
p_T 0 J/d.cm^2{p_T}, surf-spec somatic maint
k_J 0.025061 1/dmaturity maint rate coefficient
E_G 7298.26 J/cm^3[E_G], spec cost for structure
E_Hb 783.2 Jmaturity at birth
E_Hp 12940 Jmaturity at puberty
h_a 5.097e-13 1/d^2Weibull aging acceleration
s_G 0.01 -Gompertz stress coefficient
Parameters specific for this entry at reference temperature (20 deg. C)
symbol value units description
E_Hx 5683 Jmaturity at fledging
f 1 -scaled functional response for 0-var data
f_00 2.2521 -scaled functional response for tW data at 00 d
f_04 2.1902 -scaled functional response for tW data at 04 d
f_08 1.7332 -scaled functional response for tW data at 08 d
f_12 0.81976 -scaled functional response for tW data at 12 d
f_16 1.1618 -scaled functional response for tW data at 16 d
f_p00 2.1177 -scaled functional response for tW data at 00 d, parasitized
f_p04 2.0764 -scaled functional response for tW data at 04 d, parasitized
f_p08 1.5595 -scaled functional response for tW data at 08 d, parasitized
t_R 320 dtime since birth at first brood
Temperature parameters
symbol value units description
T_A 9000 KArrhenius temperature
T_ref 293.15 KReference temperature
Chemical parameters
Food Structure Reserve Faeces
Chemical potentials (J/C-mol) 525000 500000 550000480000
Specific density for dry weight (g/cm^3) 0.28 0.28 0.280.28
Food Structure Reserve Faeces
Chemical indices for organicsCarbon 1 111
Hydrogen 1.8 1.81.81.8
Oxygen 0.5 0.50.50.5
Nitrogen 0.15 0.150.150.15
CO2 H2OO2 N-waste
Chemical indices for mineralsCarbon 1 001
Hydrogen 0 200.8
Oxygen 2 120.6
Nitrogen 0 000.8