Answer:
The heat flux between the surface of the pond and the surrounding air is 60 W/
Step-by-step explanation:
Heat flux is the rate at which heat energy moves across a surface, it is the heat transferred per unit area of the surface. This can be calculated using the expression in equation 1;
q = Q/A ...............................1
since we are working with the convectional heat transfer coefficient equation 1 become;
q = h (
) ........................2
where q is the heat flux;
Q is the heat energy that will be transferred;
h is the convectional heat coefficient = 20 W/
.K;
is the surface temperature =
C 23°C + 273.15 = 296.15 K;
is the surrounding temperature =
C = 20°C + 273.15 = 293.15 K;
The values are substituted into equation 2;
q = 20 W/
.K ( 296.15 K - 293.15 K)
q = 20 W/
.K ( 3 K)
q = 60 W/
![m^(2)](https://img.qammunity.org/2021/formulas/chemistry/middle-school/jelmjz7kot3sm80pidpl7v5ncxu8balssm.png)
Therefore the heat flux between the surface of the pond and the surrounding air is 60 W/
![m^(2)](https://img.qammunity.org/2021/formulas/chemistry/middle-school/jelmjz7kot3sm80pidpl7v5ncxu8balssm.png)