bug fix:解决非东八区的农历计算不正确的问题
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@ -8,9 +8,9 @@ import (
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)
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/*
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@name: 儒略日计算
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@dec: 计算给定时间的儒略日,1582年改力后为格里高利历,之前为儒略历
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@ 请注意,传入的时间在天文计算中一般为力学时,应当注意和世界时的转化
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@name: 儒略日计算
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@dec: 计算给定时间的儒略日,1582年改力后为格里高利历,之前为儒略历
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@ 请注意,传入的时间在天文计算中一般为力学时,应当注意和世界时的转化
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*/
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func JDECalc(Year, Month int, Day float64) float64 {
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if Month == 1 || Month == 2 {
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@ -29,7 +29,7 @@ func JDECalc(Year, Month int, Day float64) float64 {
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}
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/*
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@name: 获得当前儒略日时间:当地世界时,非格林尼治时间
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@name: 获得当前儒略日时间:当地世界时,非格林尼治时间
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*/
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func GetNowJDE() (NowJDE float64) {
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Time := float64(time.Now().Second())/3600.0/24.0 + float64(time.Now().Minute())/60.0/24.0 + float64(time.Now().Hour())/24.0
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@ -235,8 +235,8 @@ func GetLunar(year, month, day int, tz float64) (lmonth, lday int, leap bool, re
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}
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jieqi := GetOneYearJQ(year) //一年的节气
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moon := GetOneYearMoon(float64(year)) //一年朔月日
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winter1 := jieqi[1] //第一年冬至日
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winter2 := jieqi[25] //第二年冬至日
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winter1 := jieqi[1] - 8.0/24 + tz //第一年冬至日
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winter2 := jieqi[25] - 8.0/24 + tz //第二年冬至日
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for k, v := range moon {
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if tz != 8.0/24 {
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v = v - 8.0/24 + tz
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@ -334,8 +334,8 @@ func GetSolar(year, month, day int, leap bool, tz float64) float64 {
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}
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jieqi := GetOneYearJQ(year) //一年的节气
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moon := GetOneYearMoon(float64(year)) //一年朔月日
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winter1 := jieqi[1] //第一年冬至日
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winter2 := jieqi[25] //第二年冬至日
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winter1 := jieqi[1] - 8.0/24 + tz //第一年冬至日
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winter2 := jieqi[25] - 8.0/24 + tz //第二年冬至日
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for k, v := range moon {
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if tz != 8.0/24 {
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v = v - 8.0/24 + tz
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@ -39,7 +39,7 @@ const (
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// 按现行农历GB/T 33661-2017算法计算,推荐使用年限为[1929-3000]年
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// 古代由于定朔定气误差此处计算会与古时不符
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func Lunar(year, month, day int, timezone float64) (int, int, bool, string) {
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return basic.GetLunar(year, month, day, timezone)
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return basic.GetLunar(year, month, day, timezone/24.0)
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}
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// Solar 农历转公历
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@ -5,7 +5,7 @@ import (
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"testing"
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)
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type LunarSolar struct {
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type lunarSolar struct {
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Lyear int
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Lmonth int
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Lday int
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@ -16,7 +16,7 @@ type LunarSolar struct {
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}
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func Test_ChineseCalendar(t *testing.T) {
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var testData = []LunarSolar{
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var testData = []lunarSolar{
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{Lyear: 2034, Lmonth: 1, Lday: 1, Leap: false, Year: 2034, Month: 2, Day: 19},
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{Lyear: 2033, Lmonth: 12, Lday: 30, Leap: false, Year: 2034, Month: 2, Day: 18},
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{Lyear: 2033, Lmonth: 11, Lday: 27, Leap: true, Year: 2034, Month: 1, Day: 17},
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@ -37,7 +37,7 @@ func Test_ChineseCalendar(t *testing.T) {
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}
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for _, v := range testData {
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var lyear int = v.Year
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lmonth, lday, leap, desp := Lunar(v.Year, v.Month, v.Day)
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lmonth, lday, leap, desp := Lunar(v.Year, v.Month, v.Day, 8.0)
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if lmonth > v.Month {
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lyear--
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}
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@ -46,7 +46,7 @@ func Test_ChineseCalendar(t *testing.T) {
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t.Fatal(v, lyear, lmonth, lday, leap, desp)
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}
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date := Solar(v.Lyear, v.Lmonth, v.Lday, v.Leap)
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date := Solar(v.Lyear, v.Lmonth, v.Lday, v.Leap, 8.0)
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if date.Year() != v.Year || int(date.Month()) != v.Month || date.Day() != v.Day {
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t.Fatal(v, date)
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}
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36
star/star.go
36
star/star.go
@ -20,7 +20,7 @@ func Constellation(ra, dec float64, date time.Time) string {
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return basic.WhichCst(ra, dec, jde)
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}
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//MeanSiderealTime UTC 平恒星时
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// MeanSiderealTime UTC 平恒星时
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func MeanSiderealTime(date time.Time) float64 {
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return basic.MeanSiderealTime(basic.Date2JDE(date.UTC()))
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}
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@ -31,13 +31,14 @@ func ApparentSiderealTime(date time.Time) float64 {
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}
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// RiseTime 星星升起时间
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// date, 世界时(忽略此处时区)
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// ra,Date瞬时赤经
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// dec,Date瞬时赤纬
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// lon,经度,东正西负
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// lat,纬度,北正南负
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// height,高度
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// aero,是否进行大气修正
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//
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// date, 世界时(忽略此处时区)
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// ra,Date瞬时赤经
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// dec,Date瞬时赤纬
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// lon,经度,东正西负
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// lat,纬度,北正南负
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// height,高度
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// aero,是否进行大气修正
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func RiseTime(date time.Time, ra, dec, lon, lat, height float64, aero bool) (time.Time, error) {
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var err error
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if date.Hour() > 12 {
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@ -57,13 +58,14 @@ func RiseTime(date time.Time, ra, dec, lon, lat, height float64, aero bool) (tim
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}
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// DownTime 星星升起时间
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// date, 世界时(忽略此处时区)
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// ra,Date瞬时赤经
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// dec,Date瞬时赤纬
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// lon,经度,东正西负
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// lat,纬度,北正南负
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// height,高度
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// aero,是否进行大气修正
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//
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// date, 世界时(忽略此处时区)
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// ra,Date瞬时赤经
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// dec,Date瞬时赤纬
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// lon,经度,东正西负
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// lat,纬度,北正南负
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// height,高度
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// aero,是否进行大气修正
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func DownTime(date time.Time, ra, dec, lon, lat, height float64, aero bool) (time.Time, error) {
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var err error
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if date.Hour() > 12 {
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@ -106,7 +108,7 @@ func Zenith(date time.Time, ra, dec, lon, lat float64) float64 {
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jde := basic.Date2JDE(date)
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_, loc := date.Zone()
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timezone := float64(loc) / 3600.0
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return basic.StarAzimuth(jde, ra, dec, lon, lat, timezone)
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return basic.StarHeight(jde, ra, dec, lon, lat, timezone)
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}
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// CulminationTime 恒星中天时间
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@ -127,7 +129,7 @@ func InitStarDatabase() error {
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return basic.LoadStarData()
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}
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//通过恒星HR编号获取恒星参数
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// 通过恒星HR编号获取恒星参数
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func GetStarDataByHR(hr int) (basic.StarData, error) {
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return basic.StarDataByHR(hr)
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}
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