Table 2. MPI and Base Pressure Reduction with air-sea interaction, Case C.
Air raised from sea level to the 10 kPa level.
T1=T2= SST - 1.

Air PropertiesBase       U2 =U2b+5%T2=T2b+1K

SST (C)28.028.029.0
P1 (kPa)101.0101.0101.0
T1 (C)27.027.028.0
T1 (K)300.15300.15301.15
U1 (%)808080
r1 (g kg-1)18.1818.1819.31
m1=h1 (J kg-1)734857348577422
s1 (J K-1kg-1)256.7256.7269.9

P2 (kPa) (MPI)93.2291.2190.29
T2 (K)300.15300.15301.15
U2 (%)90.095.090
r2 (g kg-1)22.2224.0024.41
m2=h2 (J kg-1)838078833090446
s2 (J K-1kg-1)315.2336.9346.9

P3 (kPa)10.010.010.0
T3 (K)201.69206.48208.59
r3 (g kg-1)22.2224.0024.41
z3 (m)166001660016600
h3 (J kg-1)-82488-78252-76206
m3=h3+gz3(1+r)838078833090446
s3 (J K-1kg-1)315.2336.9346.9

Work (J kg-1)
Dh23 =h2-h3166295166582 166652
D gz23=gz(1+r)166295166582166652
w23000
wx707489979909
Dwxbase1923 2835

Velocity (m s-1)
vx118.9134.1140.8
Dvxbase12.818.4

Surface Pressure Reduction (kPa)
DP12 (HI)7.789.7910.71
DP2 base2.012.93

Sensitivity
DP2/DT2 = 2.93 kPa K-1 versus 3.3 kPa K-1 in Holland (1997) Table 5
DP2/DU2 = 0.40 kPa %-1 versus 0.48 kPa %-1 in Holland (1997) Table 5
Dwx/DT2 = 2835 J kg-1 K-1
Dwx/DU2 = 385 J kg-1 %-1