openair
importTraj function, which provides pre-calculated
back trajectories at specific receptor locations.trajCluster(traj, method = "Euclid", n.cluster = 5, plot = TRUE,
type = "default", cols = "Set1", split.after = FALSE, map.fill = TRUE,
map.cols = "grey40", map.alpha = 0.4, ...)importTraj.type determines how the data are split
i.e. conditioned, and then plotted. The default is will
produce a single plot using the entire data. Type can be
one of the built-in types as detailed in cutData
e.g. RColorBrewer
colours --- see the openair openColours
functype other than
type
independently or extracted after the cluster calculations
have been applied to thmap.fill = TRUE map.cols
controls the fill colour. Examples include map.fill
= "grey40" and map.fill = openColours("default",
10). The latter colours the countries and can help
differentiate tlattice:levelplot and cutData. Similarly,
common axis and title labelling options (such as
xlab, ylab, main) are passed to
levelplotcluster giving the calculated cluster.The distance matrix calculations are made in C++ for speed.
For data sets of up to 1 year both methods should be
relatively fast, although the method = "Angle" does
tend to take much longer to calculate. Further details of
these methods are given in the openair manual.
importTraj, trajPlot,
trajLevel## import trajectories
traj <- importTraj(site = "london", year = 2009)
## calculate clusters
traj <- trajCluster(traj, n.clusters = 5)
head(traj) ## note new variable 'cluster'
## use different distance matrix calculation, and calculate by season
traj <- trajCluster(traj, method = "Angle", type = "season", n.clusters = 4)Run the code above in your browser using DataLab