207 lines
5.4 KiB
Go
207 lines
5.4 KiB
Go
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package basic
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import (
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"math"
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. "b612.me/astro/tools"
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)
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// Pos
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const (
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JUPITER_S_PERIOD = 1 / ((1 / 365.256363004) - (1 / 4332.59))
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jupiterEventSearchN = 16
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jupiterPhaseCoarseTolerance = 30.0 / 86400.0
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)
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func jupiterSunLongitudeDelta(jde, degree float64, filter bool) float64 {
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sub := Limit360(Limit360(JupiterApparentLo(jde)-HSunApparentLo(jde)) - degree)
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if filter {
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if sub > 180 {
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sub -= 360
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}
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if sub < -180 {
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sub += 360
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}
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}
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return sub
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}
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func jupiterSunLongitudeDeltaN(jde, degree float64, filter bool, n int) float64 {
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sub := Limit360(Limit360(JupiterApparentLoN(jde, n)-HSunApparentLoN(jde, n)) - degree)
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if filter {
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if sub > 180 {
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sub -= 360
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}
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if sub < -180 {
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sub += 360
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}
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}
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return sub
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}
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func jupiterConjunctionFull(jde, degree float64, next uint8) float64 {
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//0=last 1=next
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daysPerDegree := JUPITER_S_PERIOD / 360
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currentDelta := jupiterSunLongitudeDelta(jde, degree, false)
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if next == 0 {
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jde -= (360 - currentDelta) * daysPerDegree
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} else {
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jde += daysPerDegree * currentDelta
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}
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estimateJD := jde
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for {
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prevJD := estimateJD
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longitudeDelta := jupiterSunLongitudeDelta(prevJD, degree, true)
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longitudeSlope := (jupiterSunLongitudeDelta(prevJD+0.000005, degree, true) - jupiterSunLongitudeDelta(prevJD-0.000005, degree, true)) / 0.00001
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estimateJD = prevJD - longitudeDelta/longitudeSlope
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if math.Abs(estimateJD-prevJD) <= 0.00001 {
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break
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}
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}
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return TD2UT(estimateJD, false)
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}
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func jupiterConjunction(jde, degree float64, next uint8) float64 {
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//0=last 1=next
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daysPerDegree := JUPITER_S_PERIOD / 360
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currentDelta := jupiterSunLongitudeDelta(jde, degree, false)
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if next == 0 {
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jde -= (360 - currentDelta) * daysPerDegree
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} else {
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jde += daysPerDegree * currentDelta
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}
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estimateJD := jde
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for {
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prevJD := estimateJD
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longitudeDelta := jupiterSunLongitudeDeltaN(prevJD, degree, true, jupiterEventSearchN)
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longitudeSlope := (jupiterSunLongitudeDeltaN(prevJD+0.000005, degree, true, jupiterEventSearchN) - jupiterSunLongitudeDeltaN(prevJD-0.000005, degree, true, jupiterEventSearchN)) / 0.00001
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estimateJD = prevJD - longitudeDelta/longitudeSlope
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if math.Abs(estimateJD-prevJD) <= jupiterPhaseCoarseTolerance {
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break
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}
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}
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for {
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prevJD := estimateJD
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longitudeDelta := jupiterSunLongitudeDelta(prevJD, degree, true)
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longitudeSlope := (jupiterSunLongitudeDelta(prevJD+0.000005, degree, true) - jupiterSunLongitudeDelta(prevJD-0.000005, degree, true)) / 0.00001
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estimateJD = prevJD - longitudeDelta/longitudeSlope
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if math.Abs(estimateJD-prevJD) <= 0.00001 {
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break
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}
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}
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return TD2UT(estimateJD, false)
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}
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func LastJupiterConjunction(jde float64) float64 {
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return jupiterConjunction(jde, 0, 0)
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}
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func NextJupiterConjunction(jde float64) float64 {
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return jupiterConjunction(jde, 0, 1)
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}
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func LastJupiterOpposition(jde float64) float64 {
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return jupiterConjunction(jde, 180, 0)
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}
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func NextJupiterOpposition(jde float64) float64 {
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return jupiterConjunction(jde, 180, 1)
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}
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func NextJupiterEasternQuadrature(jde float64) float64 {
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return jupiterConjunction(jde, 90, 1)
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}
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func LastJupiterEasternQuadrature(jde float64) float64 {
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return jupiterConjunction(jde, 90, 0)
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}
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func NextJupiterWesternQuadrature(jde float64) float64 {
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return jupiterConjunction(jde, 270, 1)
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}
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func LastJupiterWesternQuadrature(jde float64) float64 {
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return jupiterConjunction(jde, 270, 0)
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}
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func jupiterRetrograde(jde float64, searchBeforeOpposition bool) float64 {
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//0=last 1=next
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raRate := func(jde float64, delta float64) float64 {
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sub := JupiterApparentRa(jde+delta) - JupiterApparentRa(jde-delta)
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if sub > 180 {
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sub -= 360
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}
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if sub < -180 {
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sub += 360
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}
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return sub / (2 * delta)
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}
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jde = jupiterConjunctionFull(jde, 180, 1)
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if searchBeforeOpposition {
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jde -= 60
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} else {
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jde += 60
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}
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for {
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currentRate := raRate(jde, 1.0/86400.0)
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if math.Abs(currentRate) > 0.55 {
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jde += 2
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continue
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}
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break
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}
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estimateJD := jde
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for {
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prevJD := estimateJD
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rateValue := raRate(prevJD, 2.0/86400.0)
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rateSlope := (raRate(prevJD+15.0/86400.0, 2.0/86400.0) - raRate(prevJD-15.0/86400.0, 2.0/86400.0)) / (30.0 / 86400.0)
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estimateJD = prevJD - rateValue/rateSlope
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if math.Abs(estimateJD-prevJD) <= 30.0/86400.0 {
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break
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}
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}
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bestJD := eventZeroRefine(estimateJD, 15.0/86400.0, 0.5/86400.0, func(jd float64) float64 {
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return raRate(jd, 0.5/86400.0)
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})
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return TD2UT(bestJD, false)
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}
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func NextJupiterRetrogradeToPrograde(jde float64) float64 {
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date := jupiterRetrograde(jde, false)
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if date < jde {
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oppositionJD := jupiterConjunctionFull(jde, 180, 1)
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return jupiterRetrograde(oppositionJD+10, false)
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}
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return date
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}
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func LastJupiterRetrogradeToPrograde(jde float64) float64 {
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jde = jupiterConjunctionFull(jde, 180, 0) - 10
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date := jupiterRetrograde(jde, false)
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if date > jde {
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oppositionJD := jupiterConjunctionFull(jde, 180, 0)
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return jupiterRetrograde(oppositionJD-10, false)
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}
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return date
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}
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func NextJupiterProgradeToRetrograde(jde float64) float64 {
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date := jupiterRetrograde(jde, true)
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if date < jde {
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oppositionJD := jupiterConjunctionFull(jde, 180, 1)
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return jupiterRetrograde(oppositionJD+10, true)
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}
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return date
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}
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func LastJupiterProgradeToRetrograde(jde float64) float64 {
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jde = jupiterConjunctionFull(jde, 180, 0) - 10
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date := jupiterRetrograde(jde, true)
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if date > jde {
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oppositionJD := jupiterConjunctionFull(jde, 180, 0)
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return jupiterRetrograde(oppositionJD-10, true)
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}
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return date
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}
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