- Schema: Era5Profile → NarrProfile; table renamed via migration rename_era5_profiles_to_narr_profiles (ALTER TABLE + rename indexes, atomic and instant, no row rewrite) - Weather helpers: find_nearest_era5/era5_for_contact/era5_profiles_for_path → find_nearest_narr/narr_for_contact/narr_profiles_for_path - BackfillEnqueueWorker: :era5 → :narr type (virtual, no narr_status column); reconcile_stale_queued_to_unavailable and status_priority_order now skip virtual types via @virtual_types. Fixes the prod crash where the cron tried to update a non-existent era5_status column. - ContactWeatherEnqueueWorker: build_era5_jobs → build_narr_jobs, era5_jobs_for_contact → narr_jobs_for_contact - ContactLive: @era5 → @narr, maybe_enqueue_era5 → maybe_enqueue_narr; UI label "ERA5 (0.25°)" → "NARR (32 km)" - Cron (runtime.exs): args types list now "narr" instead of "era5" - /status: progress row, status-by-type card, totals.narr_profiles, and table-count lookup all target narr_profiles - Drop obsolete Era5CdsJob schema + era5_cds_jobs table (inspection artifact from the retired CDS pipeline; 34 orphan rows in prod) - Misc docstring/comment cleanups (skew_t, about, wgrib2, propagation_train) Includes a regression test for the virtual-type crash.
297 lines
9.3 KiB
Elixir
297 lines
9.3 KiB
Elixir
defmodule MicrowavepropWeb.SkewT do
|
|
@moduledoc """
|
|
Skew-T log-P diagram renderer. Builds the full set of SVG
|
|
primitives (isobars, isotherms, dry adiabats, saturation mixing
|
|
ratio lines, and temperature/dewpoint traces) for a single HRRR
|
|
or NARR pressure-level profile so the contact detail template can
|
|
draw it declaratively.
|
|
|
|
## Meteorology
|
|
|
|
* Magnus formula for saturation vapor pressure:
|
|
`es(T) = 6.112 * exp(17.67 * T / (T + 243.5))` with T in °C.
|
|
* Saturation mixing ratio: `ws = 622 * es / (p - es)` in g/kg.
|
|
* Dry adiabat (constant potential temperature θ, K):
|
|
`T(p) = θ * (p / 1000)^(R/cp)` with `R/cp ≈ 0.2854`.
|
|
|
|
## Skew transform
|
|
|
|
Pressure is on a log axis (top to bottom, larger p at the bottom).
|
|
Isotherms are skewed 45° by shifting each (T, p) point right as
|
|
pressure decreases, so a vertical line on the chart corresponds
|
|
to a temperature that rises with height — a hallmark of the
|
|
classic skew-T log-P diagram.
|
|
"""
|
|
|
|
@dew_point_line_color "#16a34a"
|
|
@temp_line_color "#dc2626"
|
|
|
|
@dry_adiabat_thetas_k 250..360//10
|
|
@mixing_ratios_g_kg [0.4, 1.0, 2.0, 4.0, 8.0, 12.0, 16.0, 20.0]
|
|
|
|
@type projected :: {x :: float(), y :: float()}
|
|
|
|
@type chart :: %{
|
|
width: number(),
|
|
height: number(),
|
|
padding_top: number(),
|
|
padding_bottom: number(),
|
|
padding_left: number(),
|
|
padding_right: number(),
|
|
plot_width: number(),
|
|
plot_height: number(),
|
|
t_min: number(),
|
|
t_max: number(),
|
|
p_bot: number(),
|
|
p_top: number(),
|
|
skew: number()
|
|
}
|
|
|
|
@default_opts [
|
|
width: 560,
|
|
height: 620,
|
|
padding_top: 24,
|
|
padding_bottom: 36,
|
|
padding_left: 44,
|
|
padding_right: 20,
|
|
t_min: -40.0,
|
|
t_max: 40.0,
|
|
p_bot: 1050.0,
|
|
p_top: 100.0,
|
|
skew: 0.55
|
|
]
|
|
|
|
@doc """
|
|
Build a chart config from overrideable keyword options. Returned
|
|
struct has the plot dimensions pre-computed.
|
|
"""
|
|
@spec chart_config(keyword()) :: chart()
|
|
def chart_config(opts \\ []) do
|
|
opts = Keyword.merge(@default_opts, opts)
|
|
|
|
width = Keyword.fetch!(opts, :width)
|
|
height = Keyword.fetch!(opts, :height)
|
|
padding_top = Keyword.fetch!(opts, :padding_top)
|
|
padding_bottom = Keyword.fetch!(opts, :padding_bottom)
|
|
padding_left = Keyword.fetch!(opts, :padding_left)
|
|
padding_right = Keyword.fetch!(opts, :padding_right)
|
|
|
|
plot_width = width - padding_left - padding_right
|
|
plot_height = height - padding_top - padding_bottom
|
|
|
|
%{
|
|
width: width,
|
|
height: height,
|
|
padding_top: padding_top,
|
|
padding_bottom: padding_bottom,
|
|
padding_left: padding_left,
|
|
padding_right: padding_right,
|
|
plot_width: plot_width,
|
|
plot_height: plot_height,
|
|
t_min: Keyword.fetch!(opts, :t_min),
|
|
t_max: Keyword.fetch!(opts, :t_max),
|
|
p_bot: Keyword.fetch!(opts, :p_bot),
|
|
p_top: Keyword.fetch!(opts, :p_top),
|
|
skew: Keyword.fetch!(opts, :skew)
|
|
}
|
|
end
|
|
|
|
@doc """
|
|
Build the skew-T primitives for `profile` — a list of maps with
|
|
string keys `"pres"`, `"tmpc"`, `"dwpc"`, and optionally `"hght"`.
|
|
Returns `nil` when the profile is missing or empty.
|
|
"""
|
|
@spec build([map()] | nil, keyword()) :: map() | nil
|
|
def build(profile, opts \\ [])
|
|
def build(nil, _), do: nil
|
|
def build([], _), do: nil
|
|
|
|
def build(profile, opts) when is_list(profile) do
|
|
chart = chart_config(opts)
|
|
|
|
t_points =
|
|
profile
|
|
|> Enum.filter(fn l -> is_number(l["tmpc"]) and is_number(l["pres"]) end)
|
|
|> Enum.sort_by(&(-&1["pres"]))
|
|
|> Enum.map(fn l -> project(l["tmpc"], l["pres"], chart) end)
|
|
|
|
td_points =
|
|
profile
|
|
|> Enum.filter(fn l -> is_number(l["dwpc"]) and is_number(l["pres"]) end)
|
|
|> Enum.sort_by(&(-&1["pres"]))
|
|
|> Enum.map(fn l -> project(l["dwpc"], l["pres"], chart) end)
|
|
|
|
%{
|
|
width: chart.width,
|
|
height: chart.height,
|
|
padding_top: chart.padding_top,
|
|
padding_bottom: chart.padding_bottom,
|
|
padding_left: chart.padding_left,
|
|
padding_right: chart.padding_right,
|
|
plot_width: chart.plot_width,
|
|
plot_height: chart.plot_height,
|
|
isobars: isobars(chart),
|
|
isotherms: isotherms(chart),
|
|
dry_adiabats: dry_adiabats(chart),
|
|
mixing_ratio_lines: mixing_ratio_lines(chart),
|
|
t_points: t_points,
|
|
td_points: td_points,
|
|
t_path: points_to_path(t_points),
|
|
td_path: points_to_path(td_points),
|
|
temp_color: @temp_line_color,
|
|
dewpoint_color: @dew_point_line_color
|
|
}
|
|
end
|
|
|
|
# ── Meteorology ──────────────────────────────────────────────
|
|
|
|
@doc """
|
|
Saturation vapor pressure (hPa / mb) for temperature `t_c` in °C.
|
|
Magnus formula with the Tetens coefficients used by IFS/GFS.
|
|
"""
|
|
@spec saturation_vapor_pressure(number()) :: float()
|
|
def saturation_vapor_pressure(t_c) when is_number(t_c) do
|
|
6.112 * :math.exp(17.67 * t_c / (t_c + 243.5))
|
|
end
|
|
|
|
@doc """
|
|
Invert the saturation-mixing-ratio relation: given a mixing
|
|
ratio `ws_g_kg` and pressure `p_mb`, return the temperature
|
|
(°C) whose saturation vapor pressure yields that mixing ratio.
|
|
"""
|
|
@spec temperature_from_mixing_ratio(number(), number()) :: float()
|
|
def temperature_from_mixing_ratio(ws_g_kg, p_mb) when is_number(ws_g_kg) and is_number(p_mb) and ws_g_kg > 0 do
|
|
es = ws_g_kg * p_mb / (622.0 + ws_g_kg)
|
|
ln = :math.log(es / 6.112)
|
|
243.5 * ln / (17.67 - ln)
|
|
end
|
|
|
|
@doc """
|
|
Temperature (°C) along the dry adiabat with potential temperature
|
|
`theta_k` (K) at pressure `p_mb` (mb).
|
|
"""
|
|
@spec dry_adiabat_temperature(number(), number()) :: float()
|
|
def dry_adiabat_temperature(theta_k, p_mb) when is_number(theta_k) and is_number(p_mb) do
|
|
theta_k * :math.pow(p_mb / 1000.0, 0.2854) - 273.15
|
|
end
|
|
|
|
# ── Projection ───────────────────────────────────────────────
|
|
|
|
@doc """
|
|
Project a `(t_c, p_mb)` point onto chart pixel coordinates.
|
|
"""
|
|
@spec project(number(), number(), chart()) :: projected()
|
|
def project(t_c, p_mb, chart) when is_number(t_c) and is_number(p_mb) do
|
|
p_ratio = pressure_ratio(p_mb, chart)
|
|
|
|
y = chart.padding_top + (1.0 - p_ratio) * chart.plot_height
|
|
|
|
x_base =
|
|
chart.padding_left +
|
|
(t_c - chart.t_min) / (chart.t_max - chart.t_min) * chart.plot_width
|
|
|
|
x = x_base + chart.skew * p_ratio * chart.plot_width
|
|
{x, y}
|
|
end
|
|
|
|
defp pressure_ratio(p_mb, chart) do
|
|
# 0 at p_bot (chart bottom), 1 at p_top (chart top). Log-P scale.
|
|
:math.log(chart.p_bot / p_mb) / :math.log(chart.p_bot / chart.p_top)
|
|
end
|
|
|
|
# ── Background curves ────────────────────────────────────────
|
|
|
|
@isobar_levels_mb [1000, 850, 700, 500, 400, 300, 250, 200, 150, 100]
|
|
|
|
defp isobars(chart) do
|
|
for p <- @isobar_levels_mb, p <= chart.p_bot and p >= chart.p_top do
|
|
{_x, y} = project(0.0, p * 1.0, chart)
|
|
|
|
%{
|
|
y: y,
|
|
x_start: chart.padding_left,
|
|
x_end: chart.padding_left + chart.plot_width,
|
|
label: "#{p}",
|
|
label_y: y + 3
|
|
}
|
|
end
|
|
end
|
|
|
|
defp isotherms(chart) do
|
|
# Draw isotherms every 10°C across the data area. Each one is a
|
|
# straight line between its (t, p_bot) and (t, p_top) projections,
|
|
# clipped to the plot rectangle by the svg viewport.
|
|
for t_c <- -120..40//10 do
|
|
{x_bot, y_bot} = project(t_c * 1.0, chart.p_bot, chart)
|
|
{x_top, y_top} = project(t_c * 1.0, chart.p_top, chart)
|
|
|
|
label_x =
|
|
if t_c >= chart.t_min and t_c <= chart.t_max do
|
|
{x, _} = project(t_c * 1.0, chart.p_bot, chart)
|
|
x
|
|
end
|
|
|
|
%{
|
|
x1: x_bot,
|
|
y1: y_bot,
|
|
x2: x_top,
|
|
y2: y_top,
|
|
t_c: t_c,
|
|
label_x: label_x,
|
|
label_y: chart.padding_top + chart.plot_height + 14
|
|
}
|
|
end
|
|
end
|
|
|
|
defp dry_adiabats(chart) do
|
|
pressures = log_pressure_samples(chart.p_bot, chart.p_top, 24)
|
|
|
|
for theta <- @dry_adiabat_thetas_k do
|
|
points =
|
|
Enum.map(pressures, fn p ->
|
|
t = dry_adiabat_temperature(theta * 1.0, p)
|
|
project(t, p, chart)
|
|
end)
|
|
|
|
%{theta_k: theta, path: points_to_path(points)}
|
|
end
|
|
end
|
|
|
|
defp mixing_ratio_lines(chart) do
|
|
# Mixing ratio isohumes only make sense in the lower troposphere.
|
|
pressures = log_pressure_samples(chart.p_bot, 400.0, 18)
|
|
|
|
for ws <- @mixing_ratios_g_kg do
|
|
points =
|
|
Enum.map(pressures, fn p ->
|
|
t = temperature_from_mixing_ratio(ws, p)
|
|
project(t, p, chart)
|
|
end)
|
|
|
|
%{ws_g_kg: ws, path: points_to_path(points)}
|
|
end
|
|
end
|
|
|
|
defp log_pressure_samples(p_from, p_to, count) do
|
|
log_from = :math.log(p_from)
|
|
log_to = :math.log(p_to)
|
|
step = (log_to - log_from) / (count - 1)
|
|
|
|
for i <- 0..(count - 1) do
|
|
:math.exp(log_from + i * step)
|
|
end
|
|
end
|
|
|
|
defp points_to_path([]), do: ""
|
|
|
|
defp points_to_path([{x0, y0} | rest]) do
|
|
initial = "M#{format_coord(x0)},#{format_coord(y0)}"
|
|
|
|
body =
|
|
Enum.map_join(rest, " ", fn {x, y} -> "L#{format_coord(x)},#{format_coord(y)}" end)
|
|
|
|
if body == "", do: initial, else: initial <> " " <> body
|
|
end
|
|
|
|
defp format_coord(n) when is_number(n), do: :erlang.float_to_binary(n * 1.0, decimals: 2)
|
|
end
|