tbf/DataStreamInterface/Enums.cs

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///
/// Copyright (c) 2020 Sensus Slovensko a.s.
///
using System;
namespace DataStreamInterface
{
public enum Unit
{
None,
pulse,
degree,
/// Volume
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ml, /// 1 ml = 0.001 l
l, /// * 1 liter
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dm3, /// 1 dm3 = 1 l
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USgal, /// 1 US gallon = 3.78541178 l
UKgal, /// 1 imperial gallon = 4.54609 l
cf, /// 1 cubic foot = 28.316846592 l
m3, /// 1 m3 = 1000 l
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/// Flow
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lph, /// 1 l/h = 0.001 m3/h
lpm, /// 1 l/m = 60 l/h = 0.06 m3/h
m3ph, /// * 1 m3/h
lps, /// 1 liter/s = 3.6 m3/h
USgalps, /// 1 US gallon per second = 13.627482408 m3/h
m3pm, /// 1 m3/m = 60 m3/h
cfs, /// 1 cubic foot per second = 101.9406477312 m3/h
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/// Mass
g, /// 0.001 kg
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lb, /// 0.45359237 kg
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kg, /// * 1 kilogram
t, /// 1000 kg
/// Time
ms, /// 1 ms = 0.001 s
s, /// * 1 second = 1 s
min, /// 1 min = 60 s
hour, /// 1 hour = 60 min = 3600 s
/// Temperature
C, /// * degree Celsius (°C)
F, /// degree Fahrenheit
K, /// degree Kelvin
/// Pressure
Pa, /// 1 Pa = 0.01 hPa
hPa, /// 1 hPa = 100 Pa
mbar, /// 1 mbar = 1 hPa = 100 Pa
kPa, /// 1 kPa = 10 HPa
inHg, /// 1 inHg = 33.864 hPa
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psi, /// 1 psi = 0.0689475729 bar
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bar, /// * 1 Bar = 1000 mbar = 0.1 MPa = 100000 Pa
MPa, /// 1 MPa = 10000 hPa
/// Humidity
RPct, /// * 1 R%
/// Relative error
Promile, /// 1 promile = 0.1 %
Pct, /// * 1 %
/// Length
mm, /// * 1 millimeter
cm, /// 1 cm = 10 mm
inch, /// 1 inch = 25.4 mm
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dm, /// 1 dm = 100 mm
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foot, /// 1 foot = 304.8 mm
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yard, /// 1 yard = 914.4 mm
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m, /// 1 m = 1000 mm
/// Density
kgpm3, /// * 1 kg/m3 = 0.001 kg/l
kgpl, /// 1 kg/l = 1000 kg/m3
/// Energy
J, /// * 1 Joul
kJ, /// 1 kJ = 1000 J
MJ, /// 1 MJ = 1000000 J
Wh, /// 1 Wh = 3600 J
kWh, /// 1 kWh = 3600000 J
MWh, /// 1 MWh = 3600000000 J
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/// Electrical conductivity
uSpcm, /// * 1 uS/cm
mSpm, /// 1 mS/m = 10 uS/cm
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/// Meter coefficient - volume
ppl, /// * 1 pulse/l
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ppdm3, /// 1 pulse/dm3
degpl, /// 1 degree/l
degpdm3, /// 1 degree/dm3
lpp, /// 1 l/pulse
dm3pp, /// 1 dm3/pulse
lpdeg, /// 1 l/degree
dm3pdeg, /// 1 dm3/degree
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/// Meter coefficient - energy
ppkWh, /// * 1 pulse/kWh
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kWhpp, /// 1 kWh/pulse
}
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public enum Quantity
{
/// Quantities with units and conversions (double -> double)
Volume,
Flow,
Mass,
Time,
Temperature,
Pressure,
Humidity,
Error,
Length,
Density,
Energy,
Pulses,
PulsePerLtr,
PulsePerKWh,
Conductivity,
/// Quantities without units and conversions
Number,
String,
Boolean,
DateTime,
Enumerated,
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}
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public static class Units
{
public static bool IsDefaultUnit(Unit unit)
{
return unit == Unit.l || unit == Unit.m3ph || unit == Unit.kg || unit == Unit.s || unit == Unit.C ||
unit == Unit.bar || unit == Unit.RPct || unit == Unit.Pct || unit == Unit.mm || unit == Unit.kgpm3 ||
unit == Unit.J || unit == Unit.uSpcm || unit == Unit.ppl || unit == Unit.ppkWh;
}
public static Quantity GetQuantity(Unit units)
{
switch (units)
{
case Unit.pulse:
case Unit.degree:
return Quantity.Pulses;
case Unit.ml:
case Unit.l:
case Unit.dm3:
case Unit.USgal:
case Unit.UKgal:
case Unit.cf:
case Unit.m3:
return Quantity.Volume;
case Unit.lph:
case Unit.lpm:
case Unit.m3ph:
case Unit.lps:
case Unit.USgalps:
case Unit.m3pm:
case Unit.cfs:
return Quantity.Flow;
case Unit.g:
case Unit.lb:
case Unit.kg:
case Unit.t:
return Quantity.Mass;
case Unit.ms:
case Unit.s:
case Unit.min:
case Unit.hour:
return Quantity.Time;
case Unit.C:
case Unit.F:
case Unit.K:
return Quantity.Temperature;
case Unit.Pa:
case Unit.hPa:
case Unit.mbar:
case Unit.kPa:
case Unit.inHg:
case Unit.psi:
case Unit.bar:
case Unit.MPa:
return Quantity.Pressure;
case Unit.RPct:
return Quantity.Humidity;
case Unit.Promile:
case Unit.Pct:
return Quantity.Error;
case Unit.mm:
case Unit.cm:
case Unit.inch:
case Unit.dm:
case Unit.foot:
case Unit.yard:
case Unit.m:
return Quantity.Length;
case Unit.kgpm3:
case Unit.kgpl:
return Quantity.Density;
case Unit.J:
case Unit.kJ:
case Unit.MJ:
case Unit.Wh:
case Unit.kWh:
case Unit.MWh:
return Quantity.Energy;
case Unit.uSpcm:
case Unit.mSpm:
return Quantity.Conductivity;
case Unit.ppl:
case Unit.ppdm3:
case Unit.degpl:
case Unit.degpdm3:
case Unit.lpp:
case Unit.dm3pp:
case Unit.lpdeg:
case Unit.dm3pdeg:
return Quantity.PulsePerLtr;
case Unit.ppkWh:
case Unit.kWhpp:
return Quantity.PulsePerKWh;
default:
return Quantity.Number;
}
}
public static double ConvertTo(Unit units, double v)
{
switch (units)
{
/// Volume: internal representation in l
case Unit.ml: return 1000 * v; /// 1 l = 1000 ml
case Unit.USgal: return 0.26417205 * v; /// 1 gal(US) = 3.78541178 l
case Unit.UKgal: return 0.21996925 * v; /// 1 gal(UK) = 4.54609 l
case Unit.cf: return 0.0353146667215 * v; /// 1 cubic foot = 28.316846592 l
case Unit.m3: return 0.001 * v; /// 1 m3 = 1000 l
/// Flow: internal representation in m3/h
case Unit.lph: return 1000 * v; /// 1 l/h
case Unit.lpm: return v / 0.06; /// 1 l/m
case Unit.lps: return v / 3.6; /// 1 l/s
case Unit.USgalps: return 0.0733811257326 * v; /// 1 US gallon per second
case Unit.m3pm: return v / 60; /// 1 m3/m
case Unit.cfs: return 0.009809629644858 * v; /// 1 cubic foot per second
/// Mass: internal representation in kg
case Unit.g: return 1000 * v; /// 1 g = 0.001 kg
case Unit.lb: return 2.2046226 * v; /// 1 lb = 0.45359237 kg
case Unit.t: return 0.001 * v; /// 1 t = 1000 kg
/// Time or duration: internal representation in seconds [s]
case Unit.ms: return 1000 * v;
case Unit.min: return v / 60;
case Unit.hour: return v / 3600;
/// Temperature: internal representation in °C
case Unit.F: return 1.8 * v + 32; /// degree Fahrenheit
case Unit.K: return v + 273.15; /// degree Kelvin
/// Pressure: internal representation in bar = 0.1 MPa
case Unit.Pa: return 100000 * v;
case Unit.hPa: return 1000 * v; /// 1 hPa = 100 Pa
case Unit.mbar: return 1000 * v; /// 1 mbar = 1 hPa = 100 Pa
case Unit.kPa: return 100 * v; /// 1 kPa = 10 HPa
case Unit.inHg: return 29.53 * v; /// 1 inHg =
case Unit.psi: return 14.5037738 * v; /// 1 psi =
case Unit.MPa: return 0.1 * v; /// 1 MPa = 10000 hPa
/// Relative error: internal representation in %
case Unit.Promile: return 10 * v; /// 1 promile = 0.1 %
/// Diameter, length: internal representation in mm
case Unit.cm: return 0.1 * v; /// 1 cm = 10 mm
case Unit.inch: return v / 25.4; /// 1 inch = 25.4 mm
case Unit.dm: return 0.01 * v; /// 1 dm = 100 mm
case Unit.foot: return v / 304.8; /// 1 foot = 304.8 mm
case Unit.yard: return v / 914.4; /// 1 yard = 914,4 mm
case Unit.m: return 0.001 * v; /// 1 m = 1000 mm
/// Density: internal representation in kg/m3
case Unit.kgpl: return 0.001 * v;
/// Energy, internal representation in Joul
case Unit.kJ: return 0.001 * v; /// 1 kJ = 1000 J
case Unit.MJ: return 0.000001 * v; /// 1 kJ = 1000000 J
case Unit.Wh: return v / 3600.0; /// 1 Wh = 3600 J
case Unit.kWh: return v / 3600000.0; /// 1 kWh = 3600000 J
case Unit.MWh: return v / 3600000000.0; /// 1 MWh = 3600000000 J
/// Electrical conductivity
case Unit.mSpm: return 0.1 * v;
/// Invert pulses
case Unit.kWhpp:
case Unit.lpp:
case Unit.dm3pp:
case Unit.lpdeg:
case Unit.dm3pdeg: return (v <= float.Epsilon) ? 0 : 1/v;
default: return v; /// Do not convert
}
}
public static double ConvertFrom(Unit units, double v)
{
switch (units)
{
/// Volume: internal representation in l
case Unit.ml: return 0.001 * v; /// 0.001 l
case Unit.USgal: return 3.78541178 * v; /// 1 gal(US) = 3.78541178 l
case Unit.UKgal: return 4.54609 * v; /// 1 gal(UK) = 4.54609 l
case Unit.cf: return 28.316846592 * v; /// 1 cubic foot = 28.316846592 l
case Unit.m3: return 1000 * v; /// 1000 l
/// Flow: internal representation in m3/h
case Unit.lph: return 0.001 * v; /// 1 l/h
case Unit.lpm: return 0.06 * v; /// 1 l/m
case Unit.lps: return 3.6 * v; /// 1 l/s
case Unit.USgalps: return 13.627482408 * v; /// 1 US gallon per second
case Unit.m3pm: return 60 * v; /// 1 m3/m
case Unit.cfs: return 101.9406477312 * v; /// 1 cubic foot per second
/// Mass: internal representation in kg
case Unit.g: return 0.001 * v; /// 1 g = 0.001 kg
case Unit.lb: return 0.45359237 * v; /// 1 lb = 0.45359237 kg
case Unit.t: return 1000 * v; /// 1 t = 1000 kg
/// Time or duration: internal representation in seconds [s]
case Unit.ms: return 0.001 * v;
case Unit.min: return 60 * v;
case Unit.hour: return 3600 * v;
/// Temperature: internal representation in °C
case Unit.F: return 5 * (v - 32) / 9; /// degree Fahrenheit
case Unit.K: return v - 273.15; /// degree Kelvin
/// Pressure: internal representation in bar = 0.1 MPa
case Unit.Pa: return 0.00001 * v; /// 1 hPa = 100 Pa
case Unit.hPa: return 0.001 * v; /// 1 hPa = 100 Pa
case Unit.mbar: return 0.001 * v; /// 1 mbar = 1 hPa = 100 Pa
case Unit.kPa: return 0.01 * v; /// 1 kPa = 10 HPa
case Unit.inHg: return 0.033864 * v; /// 1 inHg = 33.864 hPa
case Unit.psi: return 0.0689475729 * v; /// 1 psi = 0.0689475729 bar
case Unit.MPa: return 10 * v; /// 1 MPa = 10000 hPa
/// Relative error: internal representation in %
case Unit.Promile: return 0.1 * v; /// 1 promile = 0.1 %
/// Diameter, length: internal representation in mm
case Unit.cm: return 10 * v; /// 1 cm = 10 mm
case Unit.inch: return 25.4 * v; /// 1 inch = 25.4 mm
case Unit.dm: return 100 * v; /// 1 dm = 100 mm
case Unit.foot: return 304.8 * v; /// 1 foot = 304.8 mm
case Unit.yard: return 914.4 * v; /// 1 yard = 914,4 mm
case Unit.m: return 1000 * v; /// 1 m = 1000 mm
/// Density: internal representation in kg/m3
case Unit.kgpl: return 1000 * v;
/// Energy, internal representation in Joul
case Unit.kJ: return 1000 * v; /// 1 kJ = 1000 J
case Unit.MJ: return 1000000 * v; /// 1 kJ = 1000000 J
case Unit.Wh: return 3600 * v; /// 1 Wh = 3600 J
case Unit.kWh: return 3600000 * v; /// 1 kWh = 3600000 J
case Unit.MWh: return 3600000000 * v; /// 1 kWh = 3600000000 J
/// Electrical conductivity
case Unit.mSpm: return 10 * v;
/// Invert
case Unit.kWhpp:
case Unit.lpp:
case Unit.dm3pp:
case Unit.lpdeg:
case Unit.dm3pdeg: return (v <= float.Epsilon) ? 0 : 1/v;
default: return v; /// Do not convert
}
}
}
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}