modelTwoWayPressureIndependent
Extends from Buildings.Fluid.Actuators.BaseClasses.PartialTwoWayValve.
Information
Two way valve with a pressure-independent valve opening characteristic.
The mass flow rate is controlled such that it is nearly equal to its
set point y*m_flow_nominal, unless the pressure
dp is too low, in which case a regular Kv
characteristic is used.
Main equations
First the minimum pressure head dp_min
required for delivering the requested mass flow rate
y*m_flow_nominal is computed. If
dp > dp_min then the requested mass flow
rate is supplied. If dp < dp_min then
m_flow = Kv/sqrt(dp). Transition between
these two flow regimes happens in a smooth way.
Typical use and important parameters
This model is configured by setting m_flow_nominal
to the mass flow rate that the valve should supply when it is
completely open, i.e., y = 1. The pressure drop corresponding
to this working point can be set using dpValve_nominal,
or using a Kv, Cv or Av
value. The parameter dpValve_fixed can be used to add
additional pressure drops, although in this valve it is equivalent to
add these to dpValve_nominal.
The parameter l2 represents the non-ideal
leakage behaviour of this valve for high pressures.
It is assumed that the mass flow rate will rise beyond
the requested mass flow rate y*m_flow_nominal
if dp > dpValve_nominal+dpFixed_nominal.
The parameter l2 represents the slope
of this rise:
d(m_flow)/d(dp) = l2* m_flow_nominal/dp_nominal.
In the ideal case l2=0, but
this may introduce singularities, for instance when
connecting this component with a fixed mass flow source.
Options
Parameter deltax sets the duration of
the transition region between the two flow regimes
as a fraction of dp_nominal or m_flow_nominal,
depending on the value of from_dp.
Implementation
Note that the result in the transition region when
using from_dp = true is not identical to
the result when using from_dp = false.
Variables *_y1 and *_y2
serve a dual use.
They are used to
1) compute the support points at *_x1 and *_x2,
which should not depend on m_flow or dp and
2) to compute the flow functions when outside of this regime,
which does depend on m_flow or dp.
Min and max functions are therefore used such that one equation
can serve both puroposes.
Parameters
| Type | Name | Default | Description |
|---|---|---|---|
| Advanced | |||
| Real | l2 | 0.01 | Gain for mass flow increase if pressure is above nominal pressure |
| Real | deltax | 0.02 | Transition interval for flow rate |
Revisions
-
June 10, 2021, by Michael Wetter:
Changed implementation of the filter and changed the parameterorderto a constant as most users need not change this value.
This is for #1498. -
August 7, 2020, by Ettore Zanetti:
changed the computation ofphiusingmax(0.1*l, . )to avoid phi=0. See issue 1376. -
November 9, 2019, by Filip Jorissen:
Guarded the computation ofphiusingmax(0, . )to avoid negative phi. See issue 1223. -
October 25, 2019, by Jianjun Hu:
Removed icon graphics annotation. This is for #1225. -
April 14, 2017, by Filip Jorissen:
Revised implementation usingcubicHermitesuch that it does not have a local maximum and such that it is C2-continuous. See #156. -
March 24, 2017, by Michael Wetter:
RenamedfilteredInputtouse_inputFilter.
This is for #665. -
March 15, 2016, by Michael Wetter:
ReplacedspliceFunctionwithregStep. This is for issue 300. -
January 22, 2016, by Michael Wetter:
Corrected type declaration of pressure difference. This is for #404. -
January 29, 2015, by Filip Jorissen:
First implementation.