The energy flux associated with solar radiation incident on the outer surface of the earth’s atmosphere has been accurately measured and is known to be 1368 W / m 2 . The diameters of the sun and earth are 1.39 x 10 9 and 1.27 x 10 7 m , respectively, and the distance between the sun and the earth is 1.5 x 10 11 m . (a) What is the emissive power of the sun? (b) Approximating the sun’s surface as black, what is its temperature? (c) At what wavelength is the spectral emissive power of the sun a maximum? (d) Assuming the earth’s surface to be black and the sun to be the only source of energy for the earth, estimate the earth’ s surface temperature.
The energy flux associated with solar radiation incident on the outer surface of the earth’s atmosphere has been accurately measured and is known to be 1368 W / m 2 . The diameters of the sun and earth are 1.39 x 10 9 and 1.27 x 10 7 m , respectively, and the distance between the sun and the earth is 1.5 x 10 11 m . (a) What is the emissive power of the sun? (b) Approximating the sun’s surface as black, what is its temperature? (c) At what wavelength is the spectral emissive power of the sun a maximum? (d) Assuming the earth’s surface to be black and the sun to be the only source of energy for the earth, estimate the earth’ s surface temperature.
Solution Summary: The author explains the emissive power of sun and earth.
The energy flux associated with solar radiation incident on the outer surface of the earth’s atmosphere has been accurately measured and is known to be
1368
W
/
m
2
. The diameters of the sun and earth are
1.39
x
10
9
and
1.27
x
10
7
m
, respectively, and the distance between the sun and the earth is
1.5
x
10
11
m
. (a) What is the emissive power of the sun? (b) Approximating the sun’s surface as black, what is its temperature? (c) At what wavelength is the spectral emissive power of the sun a maximum? (d) Assuming the earth’s surface to be black and the sun to be the only source of energy for the earth, estimate the earth’ s surface temperature.
The energy flux associated with solar radiation incident on the outer surface of the earth's atmosphere has been accurately measured
and is known to be 1368 W/m². The diameters of the sun and earth are 1.39 × 10° and 1.27 × 107 m, respectively, and the distance
between the sun and the earth is 1.5 × 1011 m.
(a) What is the emissive power of the sun?
(b) Approximating the sun's surface as black, what is its temperature?
(c) At what wavelength is the spectral emissive power of the sun a maximum?
(d) Assuming the earth's surface to be black and the sun to be the only source of energy for the earth, estimate the earth's surface
temperature.
2.
(a)
Consider a 25-cm-diameter spherical ball at 700 K suspended in air and assume the emissivity of the ball to be ε=0.95.
Calculate:
(i)
the total emissive power in kW/m2;
(ii)
the total amount of radiation emitted by the ball in 3 minutes.
(b)
The inner and outer surfaces of a 25-cm-thick wall are at 27 oC and 45 oC, respectively. The outer surface of the wall exchanges heat by radiation with surrounding surfaces at 40 oC, and convection with ambient air at 42 oC with convection heat transfer coefficient of 9.0 W/m2 K. Solar radiation incident on the surface is at a rate of 150 W/m2. If the emissivity and the solar absorptivity of the outer surface are 0.75 and 0.85, respectively:
(i)
write the expression of the energy balance at the outer surface;…
A solar pond, 1.5 m deep, is built in Pondicherry (11°56' N). The
horizontal pyranometer placed beside the pond on April 20 at 1.300
following values of global and diffuse radiation are measured by a
Ia=0.210 kW/m²
Calculate the variation of the solar radiation flux as it penetrates
through the pond.
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