Презентация Energy and power, solar astronomy. (Lecture 4) онлайн
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Презентации » Астрономия » Energy and power, solar astronomy. (Lecture 4)
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- Тип файла:ppt / pptx (powerpoint)
- Всего слайдов:54 слайда
- Для класса:1,2,3,4,5,6,7,8,9,10,11
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Слайды и текст к этой презентации:
№7 слайд
Содержание слайда: Power vs. Energy
Thus, power is the rate of the energy use.
Energy is what you pay for repeatedly, as much as you use the energy, the kWh-s – variable, operational cost.
Power is the capacity to use the energy
You pay for the capacity usually upfront, fixed or installation cost.
E.g. if you decide to buy an air conditioner, you need to solve a power sizing problem. You pay the fixed amount. Later you usually use only a fraction of the total capacity.
№12 слайд
Содержание слайда: The Sun
Sun has a capacity of 3.86×1026 W
3.86×108 EJ/s
Earth gets only two-billionth part of it.
127,400,000 km² - Earth cross-section
1.740 1017 W = 0.174 EJ/s
Armenian annual energy consumption:
0.1752 Quads
Solar Constant =1366 W/sq.m.
Average Insolation = ¼ of solar const.
= 342 W/sq.m.
№34 слайд
Содержание слайда: This actually corresponds to a surprisingly low rate of energy production in the Sun's core—about 0.3 µW/cm³ (microwatts per cubic cm), or about 6 µW/kg of matter.
This actually corresponds to a surprisingly low rate of energy production in the Sun's core—about 0.3 µW/cm³ (microwatts per cubic cm), or about 6 µW/kg of matter.
For comparison, the human body produces heat at approximately the rate 1.2 W/kg, roughly a million times greater per unit mass.
№37 слайд
Содержание слайда: 1.5 The future of energy resources
Solar Constant = 1366 W/sq.m.
Sahara’s surface area = 9,000,000 sq.km.
If we use 10% of Sahara with 12.5% efficiency, we will get 1000 Exajoules/year!
This is twice as much as current world consumption.
I can see the future «Ocean Solar Power Plants», that produce Hydrogen!
However, population grows exponentially!
№39 слайд
Содержание слайда: Earth's rotation
Earth's rotation tilts about 23.5 degrees on its pole-to-pole axis, relative to the plane of Earth's solar system orbit around our sun.
As the Earth orbits the sun, this creates the 47-degree peak solar altitude angle difference, and the hemisphere-specific difference between summer and winter.
№44 слайд
Содержание слайда: Solar radiation bouncing atmosphere
the theoretical daily-average insolation at the top of the atmosphere, where θ is the polar angle of the Earth's orbit, and θ = 0 at the vernal equinox, and θ = 90° at the summer solstice; φ is the latitude of the Earth. The calculation assumed conditions appropriate for 2000 A.D.: a solar constant of S0 = 1367 W m−2, obliquity of ε = 23.4398°, longitude of perihelion of ϖ = 282.895°, eccentricity e = 0.016704. Contour labels (green) are in units of W m−2
№46 слайд
Содержание слайда: Airmass
In astronomy, airmass is the optical path length through Earth's atmosphere for light from a celestial source.
As it passes through the atmosphere, light is attenuated by scattering and absorption; the more atmosphere through which it passes, the greater the attenuation.
Consequently, celestial bodies at the horizon appear less bright than when at the zenith.
№49 слайд
Содержание слайда: Airmass
“Airmass” normally indicates relative airmass, the path length relative to that at the zenith at sea level, so by definition, the sea-level airmass when the sun is at the zenith is 1.
Airmass increases as the angle between the source and the zenith increases, reaching a value of approximately 38 at the horizon.
Airmass can be less than one at an elevation greater than sea level.
№50 слайд
Содержание слайда: Airmass
Atmosphere height = 8.5 ÷ 11 km.
Earth's mean radius is 6371 km.
Airmass abbreviation: AM##.
E.g. at angle of approximately 60 degrees over horizon we have AM2, = 62% of solar constant.
The solar panels are often rated at AM1.5
The maximum airmass at horizon is:
AM35.5 ÷ AM39
At sea level, AM1 attenuates @ 27%.
At AM10 we have 23X attenuation
At AM20 we have >10000X attenuation
№54 слайд
Содержание слайда: Notion of the Cost per peak watt installed
“Peak Watt” = 1000W = 1kW
Is the power produced at normal incidence of solar radiation @ 1000W/m2.
$/Wp - Easy way to compare various solar conversion devices.
Mostly useful for electric power generation devices, such as for: Hydro; PV; Wind, Solar Thermal Electric, etc.
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