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Engineering, 09.11.2019 03:31 ZacharyGallagher

The human circulatory system consists of a complex branching pipe network ranging in diameter from
the aorta (largest) to the capillaries (smallest). the average diameter and the number of these vessels are
shown in the table. does the average blood velocity increase, decrease, or remain constant as it travels
from the aorta to the capillaries?

vesselaverage diameter [mm]number
aorta25.01
arteries4.0159
arterioles0.061.4*10^7
capillaries0.0122.9*10^9
this is an excercise that requires application of conservation of mass.

all the "m" are mass flow rate, p is density, n is number of vessels, a is area

m [kg/s]=m_aorta=m_arteries=n*p*v_avg *a_vessel

v(volume flow rate) [m^3/s]=m/p=v_avg*a

blood can be considered incompressible; that is, the density does not change as the blood moves from large vessesl to small vessels. assume the density of blood is equal to 1060 kg/m^3.

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