Question: 2. Krogh tissue cylinder , . - , . - (glucose consumption rate), R0=0.01mol/sec/cm3 - Krogh tissue cylinder radius, rT=40m - Glucose concentration at inlet,

 2. Krogh tissue cylinder , . - , . - (glucose

2. Krogh tissue cylinder , . - , . - (glucose consumption rate), R0=0.01mol/sec/cm3 - Krogh tissue cylinder radius, rT=40m - Glucose concentration at inlet, C0=5mol/cm3 - Permeability coefficient for glucose across capillary wall, Pm=5.76105cm/sec - Film mass transfer coefficient for blood side, km=0.033cm/sec - Diffusivity of glucose in water, DT=0.91105cm2/sec (1) Overall mass transfer coefficient K0 . (2) C(z) , z x . (3) C(z)rtm , z x . (4) r=rT C(rT,z) , z x . (5) (2) (4) , diffusion limited flow limited . 2. Krogh tissue cylinder , . - , . - (glucose consumption rate), R0=0.01mol/sec/cm3 - Krogh tissue cylinder radius, rT=40m - Glucose concentration at inlet, C0=5mol/cm3 - Permeability coefficient for glucose across capillary wall, Pm=5.76105cm/sec - Film mass transfer coefficient for blood side, km=0.033cm/sec - Diffusivity of glucose in water, DT=0.91105cm2/sec (1) Overall mass transfer coefficient K0 . (2) C(z) , z x . (3) C(z)rtm , z x . (4) r=rT C(rT,z) , z x . (5) (2) (4) , diffusion limited flow limited

Step by Step Solution

There are 3 Steps involved in it

1 Expert Approved Answer
Step: 1 Unlock blur-text-image
Question Has Been Solved by an Expert!

Get step-by-step solutions from verified subject matter experts

Step: 2 Unlock
Step: 3 Unlock

Students Have Also Explored These Related Chemical Engineering Questions!