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ConvertUnits.cs
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ConvertUnits.cs
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namespace ImportWLK
{
internal static class ConvertUnits
{
private const double inHg2hPa = 33.8638866667;
private const double inHg2kPa = 3.38638866667;
private const int kPa2hPa = 10;
private const double mm2in = 25.4;
/// <summary>
/// Convert temp supplied in C to units in use
/// </summary>
/// <param name="value">Temp in C</param>
/// <returns>Temp in configured units</returns>
public static double TempCToUser(double value)
{
if (Program.Cumulus.Units.Temp == 1)
{
return MeteoLib.CToF(value);
}
else
{
// C
return value;
}
}
/// <summary>
/// Convert temp supplied in F to units in use
/// </summary>
/// <param name="value">Temp in F</param>
/// <returns>Temp in configured units</returns>
public static double TempFToUser(double value)
{
if (Program.Cumulus.Units.Temp == 0)
{
return MeteoLib.FtoC(value);
}
else
{
// F
return value;
}
}
/// <summary>
/// Convert temp supplied in user units to C
/// </summary>
/// <param name="value">Temp in configured units</param>
/// <returns>Temp in C</returns>
public static double UserTempToC(double value)
{
if (Program.Cumulus.Units.Temp == 1)
{
return MeteoLib.FtoC(value);
}
else
{
// C
return value;
}
}
/// <summary>
/// Convert temp supplied in user units to F
/// </summary>
/// <param name="value">Temp in configured units</param>
/// <returns>Temp in F</returns>
public static double UserTempToF(double value)
{
if (Program.Cumulus.Units.Temp == 1)
{
return value;
}
else
{
// C
return MeteoLib.CToF(value);
}
}
/// <summary>
/// Converts wind supplied in m/s to user units
/// </summary>
/// <param name="value">Wind in m/s</param>
/// <returns>Wind in configured units</returns>
public static double WindMSToUser(double value)
{
return Program.Cumulus.Units.Wind switch
{
0 => value,
1 => value * 2.23693629,
2 => value * 3.6,
3 => value * 1.94384449,
_ => 0,
};
}
/// <summary>
/// Converts wind supplied in mph to user units
/// </summary>
/// <param name="value">Wind in mph</param>
/// <returns>Wind in configured units</returns>
public static double WindMPHToUser(double value)
{
return Program.Cumulus.Units.Wind switch
{
0 => value * 0.44704,
1 => value,
2 => value * 1.60934,
3 => value * 0.868976,
_ => 0,
};
}
/// <summary>
/// Converts wind supplied in kph to user units
/// </summary>
/// <param name="value">Wind in kph</param>
/// <returns>Wind in configured units</returns>
public static double WindKPHToUser(double value)
{
return Program.Cumulus.Units.Wind switch
{
0 => value * 0.2777778,
1 => value * 0.6213712,
2 => value,
3 => value * 0.5399568,
_ => 0,
};
}
/// <summary>
/// Converts wind in user units to m/s
/// </summary>
/// <param name="value"></param>
/// <returns></returns>
public static double WindToMS(double value)
{
return Program.Cumulus.Units.Wind switch
{
0 => value,
1 => value / 2.23693629,
2 => value / 3.6F,
3 => value / 1.94384449,
_ => 0,
};
}
/// <summary>
/// Converts value in kilometres to distance unit based on users configured wind units
/// </summary>
/// <param name="val"></param>
/// <returns>Wind in configured units</returns>
public static double KmtoUserUnits(double val)
{
return Program.Cumulus.Units.Wind switch
{
// m/s
0 or 2 => val,
// mph
1 => val * 0.621371,
// knots
3 => val * 0.539957,
_ => val,
};
}
/// <summary>
/// Converts windrun supplied in user units to km
/// </summary>
/// <param name="value">Windrun in configured units</param>
/// <returns>Wind in km</returns>
public static double WindRunToKm(double value)
{
return Program.Cumulus.Units.Wind switch
{
// m/s
0 or 2 => value,
// mph
1 => value / 0.621371192,
// knots
3 => value / 0.539957,
_ => 0,
};
}
/// <summary>
/// Converts windrun supplied in user units to miles
/// </summary>
/// <param name="value">Windrun in configured units</param>
/// <returns>Wind in mi</returns>
public static double WindRunToMi(double value)
{
return Program.Cumulus.Units.Wind switch
{
// m/s
0 or 2 => value * 0.621371192,
// mph
1 => value,
// knots
3 => value / 0.8689762,
_ => 0,
};
}
/// <summary>
/// Converts windrun supplied in user units to nautical miles
/// </summary>
/// <param name="value">Windrun in configured units</param>
/// <returns>Wind in Nm</returns>
public static double WindRunToNm(double value)
{
return Program.Cumulus.Units.Wind switch
{
// m/s
0 or 2 => value * 0.539956803,
// mph
1 => value * 0.8689762,
// knots
3 => value,
_ => 0,
};
}
/// <summary>
/// Converts windrun supplied in miles to user units
/// </summary>
/// <param name="value">Windrun in miles</param>
/// <returns>Wind in user units</returns>
public static double MilesToUserUnits(double value)
{
return Program.Cumulus.Units.Wind switch
{
// m/s = km
0 or 2 => value * 1.609344,
// mph = miles
1 => value,
// knots = n.miles
3 => value * 0.869,
_ => 0,
};
}
public static double UserWindToKPH(double wind) // input is in Units.Wind units, convert to km/h
{
return Program.Cumulus.Units.Wind switch
{
// m/s
0 => wind * 3.6,
// mph
1 => wind * 1.609344,
// kph
2 => wind,
// knots
3 => wind * 1.852,
_ => wind,
};
}
public static double UserWindToMS(double wind) // input is in Units.Wind units, convert to m/s
{
return Program.Cumulus.Units.Wind switch
{
// m/s
0 => wind,
// mph
1 => wind * 0.44704,
// kph
2 => wind * 0.2777778,
// knots
3 => wind * 0.5144444,
_ => wind,
};
}
public static double UserWindToMPH(double value)
{
return Program.Cumulus.Units.Wind switch
{
0 => value * 2.23693629,
1 => value,
2 => value * 0.621371,
3 => value * 1.15077945,
_ => 0,
};
}
public static double UserWindToKnots(double value)
{
return Program.Cumulus.Units.Wind switch
{
0 => value * 1.943844,
1 => value * 0.8689758,
2 => value * 0.5399565,
3 => value,
_ => 0,
};
}
/// <summary>
/// Converts rain in mm to units in use
/// </summary>
/// <param name="value">Rain in mm</param>
/// <returns>Rain in configured units</returns>
public static double RainMMToUser(double value)
{
return Program.Cumulus.Units.Rain == 1 ? value / mm2in : value;
}
/// <summary>
/// Converts rain in inches to units in use
/// </summary>
/// <param name="value">Rain in mm</param>
/// <returns>Rain in configured units</returns>
public static double RainINToUser(double value)
{
return Program.Cumulus.Units.Rain == 1 ? value : value * mm2in;
}
/// <summary>
/// Converts rain in units in use to mm
/// </summary>
/// <param name="value">Rain in configured units</param>
/// <returns>Rain in mm</returns>
public static double UserRainToMM(double value)
{
return Program.Cumulus.Units.Rain == 1 ? value * mm2in : value;
}
public static double UserRainToIN(double rain)
{
return Program.Cumulus.Units.Rain == 0 ? rain / mm2in : rain;
}
/// <summary>
/// Convert pressure in mb to units in use
/// </summary>
/// <param name="value">pressure in mb</param>
/// <returns>pressure in configured units</returns>
public static double PressMBToUser(double value)
{
return Program.Cumulus.Units.Press switch
{
0 => value,
1 => value,
2 => value / inHg2hPa,
3 => value / kPa2hPa,
_ => 0,
};
}
/// <summary>
/// Convert pressure in kPa to units in use
/// </summary>
/// <param name="value">pressure in kPa</param>
/// <returns>pressure in configured units</returns>
public static double PressKPAToUser(double value)
{
return Program.Cumulus.Units.Press switch
{
0 => value * kPa2hPa,
1 => value * kPa2hPa,
2 => value / inHg2kPa,
3 => value,
_ => 0,
};
}
/// <summary>
/// Convert pressure in inHg to units in use
/// </summary>
/// <param name="value">pressure in mb</param>
/// <returns>pressure in configured units</returns>
public static double PressINHGToUser(double value)
{
return Program.Cumulus.Units.Press switch
{
0 => value * inHg2hPa,
1 => value * inHg2hPa,
2 => value,
3 => value * inHg2kPa,
_ => 0,
};
}
/// <summary>
/// Convert pressure in inHg to hPa
/// </summary>
/// <param name="value">pressure in inHg</param>
/// <returns>pressure in hPa</returns>
public static double PressINHGToHpa(double value)
{
return value * inHg2hPa;
}
/// <summary>
/// Convert pressure in units in use to mb
/// </summary>
/// <param name="value">pressure in configured units</param>
/// <returns>pressure in mb</returns>
public static double UserPressToMB(double value)
{
return Program.Cumulus.Units.Press switch
{
0 => value,
1 => value,
2 => value * inHg2hPa,
3 => value * kPa2hPa,
_ => 0,
};
}
/// <summary>
/// Convert pressure from user units to hPa
/// </summary>
/// <param name="value"></param>
/// <returns></returns>
public static double UserPressToHpa(double value)
{
return Program.Cumulus.Units.Press switch
{
0 => value,
1 => value,
2 => value * inHg2hPa,
3 => value * kPa2hPa,
_ => 0,
};
}
/// <summary>
/// Convert pressure from user units to kPa
/// </summary>
/// <param name="value"></param>
/// <returns></returns>
public static double UserPressToKpa(double value)
{
return Program.Cumulus.Units.Press switch
{
0 => value / kPa2hPa,
1 => value / kPa2hPa,
2 => value * inHg2kPa,
3 => value,
_ => 0,
};
}
/// <summary>
/// Convert pressure in units in use to inHg
/// </summary>
/// <param name="value">pressure in configured units</param>
/// <returns>pressure in mb</returns>
public static double UserPressToIN(double value)
{
return Program.Cumulus.Units.Press switch
{
0 => value / inHg2hPa,
1 => value / inHg2hPa,
2 => value,
3 => value / inHg2kPa,
_ => 0,
};
}
/// <summary>
/// Converts degree days from Fahrenheit to user-configured temperature units.
/// </summary>
/// <param name="value">Degree days in Fahrenheit</param>
/// <returns>Degree days in user-configured temperature units</returns>
public static double DegreeDaysFtoUser(double value)
{
if (Program.Cumulus.Units.Temp == 0)
{
return value * 5.0 / 9.0;
}
else
{
// F
return value;
}
}
/// <summary>
/// Takes speed in user units, returns Bft number
/// </summary>
/// <param name="windspeed"></param>
/// <returns></returns>
public static int Beaufort(double speed)
{
double windspeedMS = UserWindToMS(speed);
if (windspeedMS < 0.3)
return 0;
else if (windspeedMS < 1.6)
return 1;
else if (windspeedMS < 3.4)
return 2;
else if (windspeedMS < 5.5)
return 3;
else if (windspeedMS < 8.0)
return 4;
else if (windspeedMS < 10.8)
return 5;
else if (windspeedMS < 13.9)
return 6;
else if (windspeedMS < 17.2)
return 7;
else if (windspeedMS < 20.8)
return 8;
else if (windspeedMS < 24.5)
return 9;
else if (windspeedMS < 28.5)
return 10;
else if (windspeedMS < 32.7)
return 11;
else return 12;
}
}
}