Answer:
Re=100,000⇒Q=275.25
![(W)/(m^2)](https://img.qammunity.org/2020/formulas/engineering/college/pr3wx4k728850sp1rnsic1ociemtiel6e3.png)
Re=500,000⇒Q=1,757.77
![(W)/(m^2)](https://img.qammunity.org/2020/formulas/engineering/college/pr3wx4k728850sp1rnsic1ociemtiel6e3.png)
Re=1,000,000⇒Q=3060.36
![(W)/(m^2)](https://img.qammunity.org/2020/formulas/engineering/college/pr3wx4k728850sp1rnsic1ociemtiel6e3.png)
Step-by-step explanation:
Given:
For air
=25°C ,V=8 m/s
For surface
=179°C
L=2.75 m ,b=3 m
We know that for flat plate
⇒Laminar flow
⇒Turbulent flow
Take Re=100,000:
So this is case of laminar flow
![Nu=0.664Re^{(1)/(2)}Pr^{(1)/(3)}](https://img.qammunity.org/2020/formulas/engineering/college/o1iiffjystfgv64dqljos9e31kxdkl4n5m.png)
From standard air property table at 25°C
Pr= is 0.71 ,K=26.24
![* 10^(-3)](https://img.qammunity.org/2020/formulas/physics/college/e7euv1ocwo8klnln0hvww9zgpvte1g7edz.png)
So
![Nu=0.664* 100,000^{(1)/(2)}* 0.71^{(1)/(3)}](https://img.qammunity.org/2020/formulas/engineering/college/wbh9x9enq3se4wi941ovq4kytgf8d8ue1y.png)
Nu=187.32 (
)
187.32=
![(h*2.75)/(26.24* 10^(-3))](https://img.qammunity.org/2020/formulas/engineering/college/pe24kcwvhstc881dzjolqzd2kxuuvtmyy8.png)
⇒h=1.78
![(W)/(m^2-K)](https://img.qammunity.org/2020/formulas/engineering/college/6f696snmdvgc2t0a85bu539tt7nt2m2u6x.png)
heat transfer rate =h
![(T_∞-T_s)](https://img.qammunity.org/2020/formulas/engineering/college/zddl40bal4xz9b6qkcybjlp289k64nyjdj.png)
=275.25
![(W)/(m^2)](https://img.qammunity.org/2020/formulas/engineering/college/pr3wx4k728850sp1rnsic1ociemtiel6e3.png)
Take Re=500,000:
So this is case of turbulent flow
![Nu=0.037Re^{(4)/(5)}Pr^{(1)/(3)}](https://img.qammunity.org/2020/formulas/engineering/college/di6lx07h7352t1id00ktajtuudekh071dq.png)
![Nu=0.037* 500,000^{(4)/(5)}* 0.71^{(1)/(3)}](https://img.qammunity.org/2020/formulas/engineering/college/ugmuacfpqh95lvq8mzytbn87fjtglf12n4.png)
Nu=1196.18 ⇒h=11.14
![(W)/(m^2-K)](https://img.qammunity.org/2020/formulas/engineering/college/6f696snmdvgc2t0a85bu539tt7nt2m2u6x.png)
heat transfer rate =h
![(T_∞-T_s)](https://img.qammunity.org/2020/formulas/engineering/college/zddl40bal4xz9b6qkcybjlp289k64nyjdj.png)
=11.14(179-25)
= 1,757.77
![(W)/(m^2)](https://img.qammunity.org/2020/formulas/engineering/college/pr3wx4k728850sp1rnsic1ociemtiel6e3.png)
Take Re=1,000,000:
So this is case of turbulent flow
![Nu=0.037Re^{(4)/(5)}Pr^{(1)/(3)}](https://img.qammunity.org/2020/formulas/engineering/college/di6lx07h7352t1id00ktajtuudekh071dq.png)
![Nu=0.037* 1,000,000^{(4)/(5)}* 0.71^{(1)/(3)}](https://img.qammunity.org/2020/formulas/engineering/college/l5bap7lxi80gk3q4efmim35vizl3njn3y7.png)
Nu=2082.6 ⇒h=19.87
![(W)/(m^2-K)](https://img.qammunity.org/2020/formulas/engineering/college/6f696snmdvgc2t0a85bu539tt7nt2m2u6x.png)
heat transfer rate =h
![(T_∞-T_s)](https://img.qammunity.org/2020/formulas/engineering/college/zddl40bal4xz9b6qkcybjlp289k64nyjdj.png)
=19.87(179-25)
= 3060.36
![(W)/(m^2)](https://img.qammunity.org/2020/formulas/engineering/college/pr3wx4k728850sp1rnsic1ociemtiel6e3.png)