Warnings
WXX## Value #1 for option §1 at keyword §2 at order #2, §1 may clash with #2 Warning Code
When a warning occurs, nanoFluidX will issue a corresponding code for that warning. A warning code starts with letter W followed by a two-letter category identifier. For example, IO for input/output. The last element of the warning code is a number representing the order within the category. For example, WIO 338.
Warning Message
- §: This symbol represents a string such as a phase name or file path. These symbols are followed by a number according to their order in the message. A recurring § symbol will keep the same number.
- #: This symbol represents a number such as a phase ID or motion ID. These symbols are followed by a number according to their order in the message. A recurring # symbol will keep the same number.
Warning Description
This is an interpretation of the solver message. It may involve further explanation on why a certain situation occurs, the reason why the message has been issued, or the steps to take to alleviate the problem. It is meant as a first point of reference when a question on a certain message arises.
WCM - CELLMESH
WCM1
Resource limit in #1, #2 (#3,#4,#5) at (#6,#7,#8) in #9- particles clumping due to compression between moving walls
- too large of a timestep size
- too large of a single phase surface tension coefficient
- incorrect motion definitions
- unusual motion combinations
- kernel dx in cfg doesn't match the actual dx in the discretized geometry
- discretized geometric irregularities
- hanging or overlapping particles
WDM - DOMAIN
WDM1
Reference velocity was not explicitly defined. Computed reference velocity based on defined motion, inlet and/or imposed region velocities: S1, #1 [m/s]WDM2
Reference density was not explicitly defined. Maximum fluid density in the domain is: #1 [kg/m\^3]WDM3
Reference length was not explicitly defined. Largest dimension of the fluid bulk in the dominant acceleration field direction is approximately: #1 [m]WDM4
Reference curvature was not explicitly defined. Set to 1/(5*dx): #1 [1/m]WDM5
Reference viscosity was not explicitly defined. Set to maximum perceived per-phase viscosity.WDM6
All body frame (moving reference frame) terms are set to be ignored. Deactivating body frame.WDM7
Bodyforce file cannot be used when body frame is active. Ignoring bodyforce file.WDM8
The time interval defined in the bodyforce file does not encompass the full duration of the simulation.WDM9
The time interval defined in the bodyframe states file does not encompass the full duration of the simulation.WDM10
Particle bounding box was not explicitly defined. Calculating based on inputfile.WFS - FRAMESUITE
WFS1
The road profile extends beyond the domain boundaries in y direction.WIM - IMPOSEREGIONS
WIM1
The time-velocity series defined in S1 for PARALLELEPIPEDVEL impose region #1 does not encompass the full duration of the simulation. Please make sure that "t_start", "t_end", "parallelepipedvel_tvs_offset" and "parallelepipedvel_tvs_latch" options are set according to your requirements.WIM2
The time-velocity series defined in S1 for CYLINDERVEL impose region #1 does not encompass the full duration of the simulation. Please make sure that "t_start", "t_end", "cylindervel_tvs_offset" and "cylindervel_tvs_latch" options are set according to your requirements.WIM3
The time-acceleration series defined in S1 for PARALLELEPIPEDACC impose region #1 does not encompass the full duration of the simulation. Please make sure that "t_start", "t_end", "parallelepipedacc_tas_offset" and "parallelepipedacc_tas_latch" options are set according to your requirements.WIM4
The time-acceleration series defined in S1 for CYLINDERACC impose region #1 does not encompass the full duration of the simulation. Please make sure that "t_start", "t_end", "cylinderacc_tas_offset" and "cylinderacc_tas_latch" options are set according to your requirements.WIM5
The time-temperature series defined in S1 for PARALLELEPIPEDTEMP impose region #1 does not encompass the full duration of the simulation. Please make sure that "t_start", "t_end", "parallelepipedtemp_tts_offset" and "parallelepipedtemp_tts_latch" options are set according to your requirements.WIM6
The time-temperature series defined in S1 for CYLINDERTEMP impose region #1 does not encompass the full duration of the simulation. Please make sure that "t_start", "t_end", "cylindertemp_tts_offset" and "cylindertemp_tts_latch" options are set according to your requirements.WIM7
The value of some porous viscous loss matrix elements of PARALLELEPIPEDPOROUS impose region #1 are negative. The simulation may behave unexpectedly.WIM8
The value of some porous inertial loss matrix elemnts of PARALLELEPIPEDPOROUS impose region #1 are negative. The simulation may behave unexpectedly.WIM9
The value of some porous viscous loss matrix elemnts of CYLINDERPOROUS impose region #1 are negative. The simulation may behave unexpectedly.WIM10
The value of some porous inertial loss matrix elemnts of CYLINDERPOROUS impose region #1 are negative. The simulation may behave unexpectedly.WIM11
Variable viscosity is requested and at least one porous region is defined. Only the inertial contribution of porous region will be effective.WIR - INLETREGIONS
WIR1
Inlet region #1 does not support motion. The requested motion will be ignored.WIR2
Particle indexing is not supported with restart/continue (recon) runs. The indices of particles generated by inlet regions may not be consistent with the clean run.WIR3
Inlet region #1 does not have an active extension (extend = false), but an extension outside of active interval is requested (extpre = true or extpst = true). Ignoring the inactive interval extensions.WIR4
Inlet region #1 has an inactive extension, but an extension length is specified. Ignoring the extension.WIR5
Inlet region #1 has an active extension, but no extension length is specified. Ignoring the extension.WIR6
Disregarding tangent vector for inlet region #1 without arbitrary orientation.WIR7
Inlet region #1 has no specified start time. Assuming zero.WIR8
Inlet region #1 has an "inletregion_stf_phaselist" but no "inletregion_stf_file". The option "inletregion_stf_phaselist" has no effect.WIR9
The stencil file S1 for inlet region #1 has 3 columns. The option "inletregion_stf_phaselist" has no effect.WIR10
At least one coordinate of the center location provided for inlet region #1 is further than 0.05dx away from the geometric center of the stencil.WIR11
The points in the stencil file provided for inlet region #1 may not be planar.WIR12
Inlet region #1 radius is smaller than dx. No particles may appear.WIR13
At least one coordinate of the center location provided for inlet region #1 is further than 0.05dx away from the geometric center of the stencil.WIR14
The points in the stencil file provided for inlet region #1 may not be planar.WIR15
Inlet region #1 radius is smaller than dx. No particles may appear.WIR16
The computed tangent for inlet region #1 is not parallel to provided tangent.WIR17
At least one coordinate of the center location provided for inlet region #1 is further than 0.05dx away from the geometric center of the stencil.WIR18
The points in the stencil file provided for inlet region #1 may not be planar.WIR19
All rectangle side lengths specified for inlet region #1 are smaller than dx. No particles may appear.WIR20
The computed tangent for inlet region #1 is not parallel to provided tangent.WIR21
At least one coordinate of the center location provided for inlet region #1 is further than 0.05dx away from the geometric center of the stencil.WIR22
The points in the stencil file provided for inlet region #1 may not be planar.WIR23
All rectangle side lengths specified for inlet region #1 are smaller than dx. No particles may appear.WIR24
Inlet region #1 has an unrecognized state type of S1. The recognized state types are "vel" for velocity, "vfl" for volume flowrate and "mfl" for mass flowrate. Switching to type "vel".WIR25
The time-state series defined in S1 for inlet region #1 does not encompass the full duration of the simulation. Please make sure that time_start, time_end, tss_offset and tss_latch options are set according to your requirements.WIR26
Ramp up and ramp down times for inlet region #1 are ignored because a time-state series file is specified.WIR27
Parameter "inletregion_temp" of inlet region #1 must be positive.WIO - INPUTOUTPUT
WIO1
The current free disk storage space is less than the estimated amount for all output data. The simulation will stop once the disk is full.WIO2
Case directory exists but content does not match the current target, assuming distributed file system topology.WIO3
No STL file specified for phase #1 (S1).WIO4
Cannot find STL file S1 for phase #1 (S2).WIO5
At least one output time from the particle output times file has been ignoredWIO6
At least one output time from the restart output times file has been ignoredWIO7
No STL file specified for visualization surface #1 (S1).WIO8
Cannot find STL file S1 for visualization surface #1 (S2).WIO9
failed purging restart/continue (recon) file S1WIO10
There are seven columns in the provided input file. Ignoring velocity data as inputfileReadMode is set to INPTFL_PXYZ.WIO11
There are four columns in the provided input file. Switching the inputfileReadMode to INPTFL_PXYZ.WIO12
There are eight columns in the provided input file. Ignoring velocity data as inputfileReadMode is set to INPTFL_PXYZS.WIO13
There are five columns in the provided input file. Switching the inputfileReadMode to INPTFL_PXYZS.WIO14
Wrong particle count in binary inputfile.WIO15
At least one particle has a phase ID smaller than one.WIO16
At least one particle has a phase ID greater than the total number of phases.WIO17
The input discretized geometry file contains #1 out-of-domain particles. Please refer to "outofdomain.txt" file for further information.WIO18
The maximum magnitude of WALL/MOVINGWALL normals is #1. A simulation with maximum normal magnitude larger than 1.1 may behave unexpectedly.WIO19
All particles of MOVINGWALL phase #1 have left the domain. The simulation may behave unexpectedly.WIO20
All particles of phase #1 have left the domain. The simulation may behave unexpectedly.WIO21
There are #1 particles in the domain that have neighbors closer than 0.9dx in distance. Please refer to "overlapping.txt" file for further information.WMT - MOTIONS
WMT1
The time range defined in POSITION_FILE of motion #1 on phase #2 does not cover the interval specified by tstart_prescribe and tend_prescribe. Phase #2 will remain stationary outside of the time range defined in POSITION_FILE.WMT2
At least one body phase of motion #1 is not a MOVINGWALL phase. Ignoring the requested equilibrium adjustment.WMT3
Time-velocity series file and at least one of initial velocity, velocity, ramp up time or ramp down time are defined for motion #1. Ramp times and constant velocities are ignored.WMT4
The effective spring constant of front or rear wheels of motion #1 is either not defined or not positive. The simulation may behave unexpectedly.WMT5
The effective damping coefficient of front or rear wheels of motion #1 is either not defined or not positive. The simulation may behave unexpectedly.WMT6
Time-velocity series file and at least one of initial velocity, velocity, ramp up time or ramp down time are defined for motion #1. Ramp times and constant velocities are ignored.WMT7
Some passive rigid body states are not available in the restart/continue (recon) file. The simulation may behave unexpectedly.WOR - OUTLETREGIONS
WOR1
An extension type other than noext is requested for spherical outlet region #1. The extension is ignored.WOR2
Outlet region #1 does not have an active extension, but an extension outside of active interval is requested. Ignoring the inactive interval extensions.WOR3
Outlet region #1 has an inactive extension, but an extension length is specified. Ignoring the extension.WOR4
Oulet region #1 has an active extension, but no extension length is specified. Ignoring the extension.WOR5
Outlet region #1 has no specified start time. Assuming zero.WOR6
Sphere outlet region #1 has a radius smaller than dx.WOR7
Cuboid outlet region #1 has at least one length value smaller than dx.WOR8
Cylinder outlet region #1 has a radius smaller than dx.WOR9
Cylinder outlet region #1 has a height smaller than dx.WOR10
The time-state series defined in S1 for outlet region #1 does not encompass the full duration of the simulation. Please make sure that time_start, time_end, tss_offset and tss_latch options are set according to your requirements.WOR11
Ramp up and ramp down times for outlet region #1 are ignored.WPH - PHASES
WPH1
All WALL type subphases should have the same fluidContactPhase. Setting fluidContactPhase for Phase #1 to #2. Please set makesubphase option to false to choose a different fluidContactPhase for phase #1.WPH2
All WALL type subphases should have the same contact angle. Setting contact angle for Phase #1 to #2. Please set makesubphase option to false to choose a different contact angle for phase #1.WPH3
All WALL type subphases should have the same adhesionCoeff. Setting adhesionCoeff for Phase #1 to #2. Please set makesubphase option to false to choose a different adhesionCoeff for phase #1.WPH4
All WALL type subphases should be either slip or no-slip. Setting noSlip for Phase #1 to #2.WPH5
All MOVINGWALL type subphases should have the same fluidContactPhase. Setting fluidContactPhase for Phase #1 to #2. Please set makesubphase option to false to choose a different fluidContactPhase for phase #1.WPH6
All WALL type subphases should have the same contact angle. Setting contact angle for Phase #1 to #2. Please set makesubphase option to false to choose a different contact angle for phase #1.WPH7
All MOVINGWALL type subphases should have the same adhesionCoeff. Setting adhesionCoeff for Phase #1 to #2. Please set makesubphase option to false to choose a different fluidContactPhase for phase #1.WPH8
All MOVINGWALL type subphases should be either slip or no-slip. Setting noSlip for Phase #1 to #2.WPH9
The requested fluid contact time will be ignored for the following phase(s) due to no field output request: #1 \ldots #2WPH10
The compressibility induced by the virial pressure of the "TARTAKOVSKY2016_F1" model in phase #1 exceeds the amount chosen via "rho_compr". The speed of sound (cs) of this phase should at least be about #2.WPH11
Parameter "rho_0" of phase #1 (S1) was not set in the cfg file. The simulation may behave unexpectedly.WPH12
Parameter "rho_0" of phase #1 (S1) was not set in the cfg file and the energy transport equation is active. The simulation may behave unexpectedly.WPH13
Parameter "rho_0" of phase #1 is outside of the physical range. Recommended values are between 0 and 25000.WPH14
Parameter "dyn_visc" of phase #1 must be positive.WPH15
Parameter "surf_ten" of phase #1 must be positive.WPH16
Parameter "gamma" of phase #1 is recommended to be within 0 and 10 interval.WPH17
Parameter "rho_compr" of phase #1 must be positive.WPH18
Parameter "init_vel" of phase #1 ignored.WPH19
Parameter "temp_0" of phase #1 must be positive.WPH20
Parameter "heat_cap" of phase #1 (S1) was not set in the cfg file. The simulation may behave unexpectedly. .WPH21
Parameter "heat_cap" of phase #1 is outside of the physical range. Recommended values are between 0 and 10000.WPH22
Parameter "heat_cond" of phase #1 (S1) was not set in the cfg file. The simulation may behave unexpectedly.WPH23
Parameter "heat_cond" of phase #1 is outside of the physical range. Recommended values are between 0 and 1000.WPH24
The subphase request for phase #1 is ignored. Only WALL/MOVINGWALL phases can be added to a subphase.WPH25
Contact angle for "TARTAKOVSKY2016_F1" surface tension model was selected with more than one FLUID phase present and will be ignored.WPR - PROBES
WPR1
The normal vector specified for probe S1 has zero magnitude. Reverting to spherical shape.WPR2
The computed particle spacing for S1 does not match the simulation dx (more than 0.05dx difference). This may affect the probe output data.WSP - SIMPARAM
WSP1
Unrecognized keyword chain: S1.S2 or S1.S2(#1).S3WSP2
The number of timesteps required to complete the simulation is larger than the maximum number of iterations allowed.WSP3
The requested time step size is larger than the calculated time step size. The simulation "may" behave unexpectedly.WSP4
The requested time step size is larger than the calculated time step size. The simulation "may" behave unexpectedly.WSP5
"AP_VCORR" velcorr scheme is not available for "WEIGHTED" interaction scheme. "T_VCORR" will be used instead.WSP6
"T_VCORR" velcorr scheme is not available for "RIEMANN" interaction scheme. "AP_VCORR" will be used instead.WSP7
The starting value of APD attenuation interval "APD_attenuation_interval" is larger than its end value. The attenuation will act as a sharp cut at the starting value.WSP8
APD attenuation interval "APD_attenuation_interval" has a start value and/or end value that is smaller than zero. APD effects may be negligible.WSP9
APD attenuation interval "APD_attenuation_interval" has a large start value and/or large end value. APD effects may not be attenuated.WSP10
Adhesion model is used together with "TARTAKOVSKY2016_F1" surface tension model.WSP11
It is not possible to enable TEMP field output without enabling "energy_transport".WSP12
It is not possible to enable viscosity field output without activating "varvisc_temperature" or "varvisc_non_Newtonian".WSP13
It is not possible to enable VCORR field output without activating "transportvelocity". Deactivating VCORR field output.WSP14
It is not possible to enable strain rate field output without activating "varvisc_non_Newtonian".WSP15
More ranks requested than GPUs available on host S1WSP16
Failed to set CPU affinity on host S1.WSE - SURFEXTS
WSE1
The non-synchronized output time interval specified in "extractor_dtoutput" for extractor S1 is less than simulation time step size.WSE2
The number of samples requested for S1 in "extractor_nsample" must be a non-negative integer.WSE3
The density based pressure filter reference phase of solid phases for extractor S1 does not point to a fluid phase. Heaviest fluid is now being used.WSE4
At least one torque output request was active for extractor S1 without assigning a moving wall to follow. The request is now deactivated.WSE5
Please note that variable viscosity is not supported with force, torque or HTC outputs.WVS - VISCOSITYMODELS
WVS1
Parameter "viscosityModel_visc_visc" of phase #1 must be positive.WVS2
Parameter "viscosityModel_k" of viscosity model #1 must be positive.WVS3
Parameter(s) "viscosityModel_visc_min" and/or "viscosityModel_visc_max" of viscosity model #1 must be positive.WVS4
Parameter "viscosityModel_visc_min" of viscosity model #1 is greater than "viscosityModel_visc_max". Swapping values.WVS5
Parameter(s) "viscosityModel_visc_0" and/or "viscosityModel_visc_inf" of viscosity model #1 must be positive.