It calculates the value of the Math.cos(incidence angle) for a surface at a
SolarAzimuth 'g' (gamma,rad) from the south, tilted an angle 'b' (beta,rad)
towards the Equator from the horizontal, for an hour angle 'w' (omega,rad),
a local latitude 'l' (phi,rad) and for the declination 'd' (delta,rad).
It calculates the value of the Math.cos(SolarZenith)=Math.sin(SolarAlt)
from the hour angle 'w' (rad), the declination 'd' (rad)
and the local latitude 'l' (rad).
Calculates the extraterrestrial daily irradiation over a surface oriented at
an SolarAzimuth 'g'(gamma,rad) from the south, tilted an angle 'b' (beta,rad)
towards the Equator from the horizontal, for a latitude 'l' (phi,rad) and
for the day number 'jday' of the year.
Calculates the extraterrestrial daily irradiation over a surface oriented at
an SolarAzimuth 'g'(gamma,rad) from the south, tilted an angle 'b' (beta,rad)
towards the Equator from the horizontal, for a latitude 'l' (phi,rad) and
for the day number 'jday' of the year.
Calculates the extraterrestrial hourly irradiation of a surface oriented at
an SolarAzimuth 'g' (gamma,rad) from the south, tilted an angle 'b' (beta,rad)
towards the Equator from the horizontal, for a latitude 'l' (phi,rad) and for
the day number 'j' of the year.
Calculates the extraterrestrial hourly irradiation of a surface oriented at
an SolarAzimuth 'g' (gamma,rad) from the south, tilted an angle 'b' (beta,rad)
towards the Equator from the horizontal, for a latitude 'l' (phi,rad) and for
the day number 'j' of the year.
It calculates the instantaneous extraterrestrial irradiance of a surface oriented at
an SolarAzimuth 'g' (gamma,rad) from the south, tilted an angle 'b' (beta,rad)
towards the Equator from the horizontal, for an hour angle 'w' (omega,rad),
a latitude 'l' (phi,rad) and for the day number 'j' of the year.
Calculates the extraterrestrial monthly average daily (emad) radiation for
a particular hour 'w' (omega,rad) over a surface oriented at an SolarAzimuth 'g'
(gamma,rad) from the south, tilted an angle 'b' (beta,rad) towards the Equator
from the horizontal, for a latitude 'l' (phi,rad) and for the month number 'm'
of the year.
Calculates the extraterrestrial monthly average hourly (mah) radiation for
a particular hour 'w' (omega,rad) over a surface oriented at an SolarAzimuth 'g'
(gamma,rad) from the south, tilted an angle 'b' (beta,rad) towards the Equator
from the horizontal, for a latitude 'l' (phi,rad) and for the month number 'm'
of the year.
Calcula el consumo de energía para refrigerar fluidos de equipos frigoríficos
(torres de condensación y ventiladores) en función del coeficiente del vidrio.
Calcula el consumo de energía para refrigerar fluidos de equipos frigoríficos
(torres de condensación y ventiladores) en función de la relación envolvente/área.
Calcula el consumo de energía para refrigerar fluidos de equipos frigoríficos
(torres de condensación y ventiladores) en función de la orientación de las fachadas.
Calcula el consumo de energía para refrigerar fluidos de equipos frigoríficos
(torres de condensación y ventiladores) en función del porcentaje de vidrio.
Calculates the diffuse and beam radiation on a horizontal surface
using the Boes correlation, at an midhour 'w', for the day 'j',
for a point at latitude 'l' and a given global radiation values 'Ihg'.
Calculates the diffuse and beam radiation on a horizontal surface
using the Erbs correlation, at an midhour 'w', for the day 'j',
for a point at latitude 'l' and a given global radiation values 'Ihg'.
Calculates the diffuse and beam radiation on a horizontal surface
using the first Macagnan correlation for Madrid, at an midhour 'w',
for the day 'j', for a point at latitude 'l' and a given global
radiation value 'Ihg'.
Calculates the diffuse and beam radiation on a horizontal surface
using the second Macagnan correlation for Madrid, at an midhour 'w',
for the day 'j', for a point at latitude 'l' and a given global
radiation value 'Ihg'.
Calculates the diffuse and beam radiation on a horizontal surface
using the Orgill & Hollands correlation, at an midhour 'w', for the day 'j',
for a point at latitude 'l' and a given global radiation values 'Ihg'.
Calculates the diffuse and beam radiation on a horizontal surface
using the first reduced Reindl correlation, at an midhour 'w',
for the day 'j', for a point at latitude 'l' and a given global
radiation value 'Ihg'.
Calculates the diffuse and beam radiation on a horizontal surface
using the second reduced Reindl correlation, at an midhour 'w',
for the day 'j', for a point at latitude 'l' and a given global
radiation value 'Ihg'.
Calculates the ratio of the monthly average daily irradiation on an
inclined surface to that to an horizontal surface in the absence of
the earth's atmosphere.
Calculates the ratio of the monthly average hourly irradiation on an
inclined surface to that to an horizontal surface in the absence of
the earth's atmosphere.
It calculates the value of the Math.sin(SolarAlt)=Math.cos(SolarZenith)
from the hour angle 'w' (rad), the declination 'd' (rad)
and the local latitude 'l' (rad).
Calcula el angulo en el que el sol empieza a incidir en una superficie
con angulos 'b' (beta,rad) sobre la horizontal y 'g' (gamma,rad) desde
el sur, a partir de la declinacion 'd' (delta,rad) y de la latitud 'l'
(phi,rad).
Calcula el angulo en el que el sol terMath.mina de incidir en una superficie
con angulos 'b' (beta,rad) sobre la horizontal y 'g' (gamma,rad) desde
el sur, a partir de la declinacion 'd' (delta,rad) y de la latitud 'l'
(phi,rad).