16c62a97d5
- 新增时标、ΔT 模型、质心时间与 UT1 支持 - 改进日月食、月掩、行星事件及路径边界计算 - 完善恒星三维自行与动态距离传播 - 扩展 SVG、GeoJSON、KML 输出与底层距离换算工具 - 整理中英文手册、示例资源及回归测试
140 lines
5.0 KiB
Go
140 lines
5.0 KiB
Go
package basic
|
|
|
|
import (
|
|
"math"
|
|
|
|
"b612.me/astro/planet"
|
|
. "b612.me/astro/tools"
|
|
)
|
|
|
|
// SaturnRingParameters 土星环参数 / Saturn ring parameters.
|
|
func SaturnRingParameters(jde float64) (earthLatitude, sunLatitude, positionAngle, deltaU, majorAxis, minorAxis float64) {
|
|
return SaturnRingParametersN(jde, -1)
|
|
}
|
|
|
|
// SaturnRingParametersN 土星环参数(截断版) / truncated Saturn ring parameters.
|
|
func SaturnRingParametersN(jde float64, n int) (earthLatitude, sunLatitude, positionAngle, deltaU, majorAxis, minorAxis float64) {
|
|
inclination, node := saturnRingPlane(jde)
|
|
earthLon, earthLat := SaturnApparentLoBoN(jde, n)
|
|
sunLon, sunLat := saturnRingSunLoBo(jde, n, node)
|
|
|
|
earthLatitude = saturnRingLatitude(inclination, node, earthLon, earthLat)
|
|
sunLatitude = saturnRingLatitude(inclination, node, sunLon, sunLat)
|
|
positionAngle = saturnRingPositionAngle(jde, inclination, node, earthLon, earthLat)
|
|
earthU := saturnRingLongitude(inclination, node, earthLon, earthLat)
|
|
sunU := saturnRingLongitude(inclination, node, sunLon, sunLat)
|
|
deltaU = saturnRingLongitudeDelta(earthU, sunU)
|
|
|
|
earthDistance := EarthSaturnAwayN(jde, n)
|
|
majorAxis = 375.35 / earthDistance
|
|
minorAxis = majorAxis * math.Abs(Sin(earthLatitude))
|
|
return
|
|
}
|
|
|
|
// SaturnRingB 土星环张角 B / Saturn ring opening angle B.
|
|
func SaturnRingB(jde float64) float64 {
|
|
return SaturnRingBN(jde, -1)
|
|
}
|
|
|
|
// SaturnRingBN 土星环张角 B(截断版) / truncated Saturn ring opening angle B.
|
|
func SaturnRingBN(jde float64, n int) float64 {
|
|
earthLatitude, _, _, _, _, _ := SaturnRingParametersN(jde, n)
|
|
return earthLatitude
|
|
}
|
|
|
|
// SaturnRingSunB 土星环太阳侧张角 B' / Sun-side Saturn ring opening angle B'.
|
|
func SaturnRingSunB(jde float64) float64 {
|
|
return SaturnRingSunBN(jde, -1)
|
|
}
|
|
|
|
// SaturnRingSunBN 土星环太阳侧张角 B'(截断版) / truncated Sun-side Saturn ring opening angle B'.
|
|
func SaturnRingSunBN(jde float64, n int) float64 {
|
|
_, sunLatitude, _, _, _, _ := SaturnRingParametersN(jde, n)
|
|
return sunLatitude
|
|
}
|
|
|
|
// SaturnRingPositionAngle 土星环北半短轴位置角 / position angle of Saturn ring northern semiminor axis.
|
|
func SaturnRingPositionAngle(jde float64) float64 {
|
|
return SaturnRingPositionAngleN(jde, -1)
|
|
}
|
|
|
|
// SaturnRingPositionAngleN 土星环北半短轴位置角(截断版) / truncated position angle of Saturn ring northern semiminor axis.
|
|
func SaturnRingPositionAngleN(jde float64, n int) float64 {
|
|
_, _, positionAngle, _, _, _ := SaturnRingParametersN(jde, n)
|
|
return positionAngle
|
|
}
|
|
|
|
// SaturnRingDeltaU 太阳和地球在环面内的土星心黄经差 / difference of Saturnicentric ring longitudes.
|
|
func SaturnRingDeltaU(jde float64) float64 {
|
|
return SaturnRingDeltaUN(jde, -1)
|
|
}
|
|
|
|
// SaturnRingDeltaUN 太阳和地球在环面内的土星心黄经差(截断版) / truncated Saturnicentric ring longitude difference.
|
|
func SaturnRingDeltaUN(jde float64, n int) float64 {
|
|
_, _, _, deltaU, _, _ := SaturnRingParametersN(jde, n)
|
|
return deltaU
|
|
}
|
|
|
|
// SaturnRingAxis 土星环外缘长短轴,单位角秒 / outer ring axes in arcseconds.
|
|
func SaturnRingAxis(jde float64) (majorAxis, minorAxis float64) {
|
|
return SaturnRingAxisN(jde, -1)
|
|
}
|
|
|
|
// SaturnRingAxisN 土星环外缘长短轴(截断版),单位角秒 / truncated outer ring axes in arcseconds.
|
|
func SaturnRingAxisN(jde float64, n int) (majorAxis, minorAxis float64) {
|
|
_, _, _, _, majorAxis, minorAxis = SaturnRingParametersN(jde, n)
|
|
return
|
|
}
|
|
|
|
func saturnRingPlane(jd float64) (inclination, node float64) {
|
|
t := (jd - 2451545.0) / 36525.0
|
|
inclination = 28.075216 - 0.012998*t + 0.000004*t*t
|
|
node = 169.508470 + 1.394681*t + 0.000412*t*t
|
|
return
|
|
}
|
|
|
|
func saturnRingSunLoBo(jde float64, n int, node float64) (lon, lat float64) {
|
|
lon = planet.WherePlanetN(5, 0, jde, n)
|
|
lat = planet.WherePlanetN(5, 1, jde, n)
|
|
distance := planet.WherePlanetN(5, 2, jde, n)
|
|
lat -= 0.000764 * Cos(lon-node) / distance
|
|
lon -= 0.01759 / distance
|
|
return lon, lat
|
|
}
|
|
|
|
func saturnRingLatitude(inclination, node, lon, lat float64) float64 {
|
|
return ArcSin(Sin(inclination)*Cos(lat)*Sin(lon-node) - Cos(inclination)*Sin(lat))
|
|
}
|
|
|
|
func saturnRingLongitude(inclination, node, lon, lat float64) float64 {
|
|
y := Sin(inclination)*Sin(lat) + Cos(inclination)*Cos(lat)*Sin(lon-node)
|
|
x := Cos(lat) * Cos(lon-node)
|
|
return ArcTan2(y, x)
|
|
}
|
|
|
|
func saturnRingLongitudeDelta(a, b float64) float64 {
|
|
delta := math.Abs(Limit360(a - b))
|
|
if delta > 180 {
|
|
return 360 - delta
|
|
}
|
|
return delta
|
|
}
|
|
|
|
func saturnRingPositionAngle(jde, inclination, node, lon, lat float64) float64 {
|
|
poleLon := node - 90 + Nutation2000Bi(jde)
|
|
poleLat := 90 - inclination
|
|
eps := TrueObliquity(jde)
|
|
poleRa, poleDec := saturnRingEclipticToEquatorial(poleLon, poleLat, eps)
|
|
saturnRa, saturnDec := saturnRingEclipticToEquatorial(lon, lat, eps)
|
|
|
|
y := Cos(poleDec) * Sin(poleRa-saturnRa)
|
|
x := Sin(poleDec)*Cos(saturnDec) - Cos(poleDec)*Sin(saturnDec)*Cos(poleRa-saturnRa)
|
|
return ArcTan2(y, x)
|
|
}
|
|
|
|
func saturnRingEclipticToEquatorial(lon, lat, eps float64) (ra, dec float64) {
|
|
ra = ArcTan2(Sin(lon)*Cos(eps)-Tan(lat)*Sin(eps), Cos(lon))
|
|
dec = ArcSin(Sin(lat)*Cos(eps) + Cos(lat)*Sin(eps)*Sin(lon))
|
|
return
|
|
}
|