library(lubridate) library(ggplot2) library(StreamMetabolism) library(xts) library(reshape) library(scales) A_8234 <- sunrise.set(47.07756,15.475705, "2024/01/01", timezone="MET", num.days=370) sunrise <- A_8234$sunrise sunset <- A_8234$sunset sunrise <- strftime(sunrise, format="%R", tz="MET") sunset <- strftime(sunset, format="%R", tz="MET") A_8234["sr"] <- as.POSIXct(sunrise, format = "%H:%M") A_8234["ss"] <- as.POSIXct(sunset, format = "%H:%M") A_8234["timestamp"] <- align.time(A_8234$sunrise, 60*10) A_8234 <- A_8234[c("timestamp", "sr", "ss")] locsrss <- ggplot(A_8234, aes(x=A_8234$timestamp)) + geom_line(aes(y=A_8234$sr)) + geom_line(aes(y=A_8234$ss)) + labs(title = " Sonnenauf-/Sonnenuntergang - A_8234 2024", x = "Datum", y = "Zeit") pdf("A_8234_SA_SU.pdf", paper="a4r", width=11) locsrss dev.off() png(filename="A_8234_SA_SU.png", width = 1400, height = 800, units = "px") locsrss dev.off() A_8234["Sonnenaufgang"] <- strftime(A_8234$sr, format="%H:%M") A_8234["Sonnenuntergang"] <- strftime(A_8234$ss, format="%H:%M") write.table(A_8234, file="A_8234_SaSu.csv", dec=',', sep=';', row.names=FALSE)