Results: Table: Minor change.

opt-result
Pierre-Antoine 2026-06-26 14:54:55 +02:00
parent 4bab4580ad
commit 7fd38eec00
1 changed files with 26 additions and 25 deletions

View File

@ -74,74 +74,75 @@ class TableModel(PamhyrTableModel):
row = index.row()
column = index.column()
p = self._lst[row]
if self._opt_data == "reach":
if self._headers[column] == "name":
v = self._lst[row].name
v = p.name
return str(v)
elif self._opt_data == "profile":
if self._headers[column] == "name":
v = self._lst[row].name
v = p.name
return str(v)
elif self._headers[column] == "rk":
v = self._lst[row].rk
v = p.rk
return f"{v:.4f}"
elif self._opt_data == "solver":
if self._headers[column] == "solver":
v = self._lst[row]
v = p
if v is None:
v = self._data[0].solver_name
return str(v)
elif self._opt_data == "raw_data":
p = self._lst[row]
if self._headers[column] == "name":
if p.name == "":
return f"{p.rk:.4f}"
return f"{p.name}"
elif self._headers[column] == "water_elevation":
v = self._lst[row].get_ts_key(self._timestamp, "Z")
v = p.get_ts_key(self._timestamp, "Z")
if v is None:
v = 0.0
return f"{v:.4f}"
elif self._headers[column] == "discharge":
v = self._lst[row].get_ts_key(self._timestamp, "Q")
v = p.get_ts_key(self._timestamp, "Q")
if v is None:
v = 0.0
return f"{v:.4f}"
elif self._headers[column] == "velocity":
v = self._lst[row].get_ts_key(self._timestamp, "V")
v = p.get_ts_key(self._timestamp, "V")
if v is None:
v = 0.0
return f"{v:.4f}"
elif self._headers[column] == "width":
z = self._lst[row].get_ts_key(self._timestamp, "Z")
v = self._lst[row].geometry.wet_width(z)
z = p.get_ts_key(self._timestamp, "Z")
v = p.geometry.wet_width(z)
return f"{v:.4f}"
elif self._headers[column] == "depth":
z = self._lst[row].get_ts_key(self._timestamp, "Z")
v = self._lst[row].geometry.max_water_depth(z)
z = p.get_ts_key(self._timestamp, "Z")
v = p.geometry.max_water_depth(z)
return f"{v:.4f}"
elif self._headers[column] == "mean_depth":
z = self._lst[row].get_ts_key(self._timestamp, "Z")
v = self._lst[row].geometry.mean_water_depth(z)
z = p.get_ts_key(self._timestamp, "Z")
v = p.geometry.mean_water_depth(z)
return f"{v:.4f}"
elif self._headers[column] == "wet_area":
z = self._lst[row].get_ts_key(self._timestamp, "Z")
v = self._lst[row].geometry.wet_area(z)
z = p.get_ts_key(self._timestamp, "Z")
v = p.geometry.wet_area(z)
return f"{v:.4f}"
elif self._headers[column] == "wet_perimeter":
z = self._lst[row].get_ts_key(self._timestamp, "Z")
v = self._lst[row].geometry.wet_perimeter(z)
z = p.get_ts_key(self._timestamp, "Z")
v = p.geometry.wet_perimeter(z)
return f"{v:.4f}"
elif self._headers[column] == "hydraulic_radius":
z = self._lst[row].get_ts_key(self._timestamp, "Z")
v = self._lst[row].geometry.wet_radius(z)
z = p.get_ts_key(self._timestamp, "Z")
v = p.geometry.wet_radius(z)
return f"{v:.4f}"
elif self._headers[column] == "froude":
q = self._lst[row].get_ts_key(self._timestamp, "Q")
z = self._lst[row].get_ts_key(self._timestamp, "Z")
v = self._lst[row].get_ts_key(self._timestamp, "V")
a = self._lst[row].geometry.wet_area(z)
b = self._lst[row].geometry.wet_width(z)
q = p.get_ts_key(self._timestamp, "Q")
z = p.get_ts_key(self._timestamp, "Z")
v = p.get_ts_key(self._timestamp, "V")
a = p.geometry.wet_area(z)
b = p.geometry.wet_width(z)
if b == 0.0 or a == 0.0:
froude = 0.0
else: