Uses of Class
ucar.unidata.view.sounding.ComputeCell

Packages that use ComputeCell
ucar.unidata.view.sounding Provides support for aerological diagrams. 
 

Uses of ComputeCell in ucar.unidata.view.sounding
 

Subclasses of ComputeCell in ucar.unidata.view.sounding
 class AddCell
          Computes the sum of two data objects.
 class AirDensityProfileCell
          Computes a profile of air density from a profile of virtual temperature.
 class AirTemperatureCell
          Computes the in-situ air temperature from pressure and temperature.
 class BuoyancyProfileCell
          Computes a buoyancy profile from profiles of parcel and environmental densities.
 class CapeCell
          Computes the Convective Available Potential Energy (CAPE) from a profile of massic energy.
 class CinCell
          Computes the Convective INhibition (CIN) from a profile of massic energy, the initial release level, and the level of free convection.
 class DewPointExtractorCell
          Extracts the dew-point temperature from a dew-point temperature profile at a given pressure.
 class DomainEvaluatorCell
          Evaluates a function at a Set domain.
 class DomainExtractorCell
          Extracts the Set domain of a Field.
 class DryTrajectoryCell
          Computes the trajectory of a parcel of air lifted pseudo-adiabatically from an initial level to the LCL.
 class EnergyFeatureCell
          Computes a massic energy feature from a profile of massic energy and two integration limits.
 class EnergyProfileCell
          Computes the massic energy profile of an atmospheric buoyancy-profile.
 class EvaluateIntegralCell
          Computes a definite integral by evaluating an indefinite integral.
 class IntegrateCell
          Computes the indefinite integral of a FlatField.
 class LayerMeanCell
          Computes the mean value of an atmospheric profile parameter over a layer.
 class LclPressureCell
          Computes the condensation pressure at the lifting condensation level (LCL).
 class LclTemperatureCell
          Computes the condensation temperature at the lifting condensation level (LCL).
 class LfcCell
          Computes the Level of Free Convection (LFC) from an atmospheric buoyancy-profile.
 class LnbCell
          Computes the level of neutral buoyancy (LNB) from an atmospheric buoyancy-profile.
 class MaxPressureCell
          Computes the maximum pressure of an atmospheric profile.
 class MixingRatioCell
          Computes mixing ratio from a pressure and the dew-point at that pressure.
 class MixingRatioProfileCell
          Computes a profile of water-vapor mixing-ratio from a profile of temperature.
 class PotentialTemperatureProfileCell
          Computes a profile of potential temperature from a profile of temperature.
 class ProfileCleanerCell
          Cleans a profile by eliminating non-finite pressures and ensuring that the profile is ascending.
 class ProfileCombinerCell
          Combines two profiles together.
 class ProfileFeatureCell
          Computes the level of a feature from an atmospheric buoyancy-profile.
 class RealEvaluatorCell
          Evaluates a function at a Real point.
 class SelectorCell
          Creates an output Data object from an array of input Data objects.
 class TuplerCell
          Creates an output VisAD Tuple individual, data objects.
 class VirtualTemperatureProfileCell
          Computes a profile of virtual temperature from moisture data and a profile of temperature.
 class WetTrajectoryCell
          Computes the trajectory of a parcel of saturated air lifted pseudo-adiabatically from the LCL.
 

Methods in ucar.unidata.view.sounding that return ComputeCell
 ComputeCell CellCycleException.getComputeCell()
          Returns the ComputeCell at which a cycle was detected.
 

Methods in ucar.unidata.view.sounding with parameters of type ComputeCell
 void CellNetwork.add(ComputeCell cell)
          Adds a cell.
 void CellNetwork.remove(ComputeCell cell)
          Removes a cell.
 void CellCycleException.setFound(ComputeCell cell)
          Sets the output cell that caused the cycle.