/* * Copyright 1998-2014 University Corporation for Atmospheric Research/Unidata * * Portions of this software were developed by the Unidata Program at the * University Corporation for Atmospheric Research. * * Access and use of this software shall impose the following obligations * and understandings on the user. The user is granted the right, without * any fee or cost, to use, copy, modify, alter, enhance and distribute * this software, and any derivative works thereof, and its supporting * documentation for any purpose whatsoever, provided that this entire * notice appears in all copies of the software, derivative works and * supporting documentation. Further, UCAR requests that the user credit * UCAR/Unidata in any publications that result from the use of this * software or in any product that includes this software. The names UCAR * and/or Unidata, however, may not be used in any advertising or publicity * to endorse or promote any products or commercial entity unless specific * written permission is obtained from UCAR/Unidata. The user also * understands that UCAR/Unidata is not obligated to provide the user with * any support, consulting, training or assistance of any kind with regard * to the use, operation and performance of this software nor to provide * the user with any updates, revisions, new versions or "bug fixes." * * THIS SOFTWARE IS PROVIDED BY UCAR/UNIDATA "AS IS" AND ANY EXPRESS OR * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE * DISCLAIMED. IN NO EVENT SHALL UCAR/UNIDATA BE LIABLE FOR ANY SPECIAL, * INDIRECT OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING * FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION OF CONTRACT, * NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION * WITH THE ACCESS, USE OR PERFORMANCE OF THIS SOFTWARE. */ package ucar.nc2.dataset.transform; import ucar.nc2.Dimension; import ucar.nc2.Variable; import ucar.nc2.dataset.CoordinateTransform; import ucar.nc2.dataset.NetcdfDataset; import ucar.nc2.dataset.TransformType; import ucar.nc2.dataset.VerticalCT; import ucar.unidata.geoloc.vertical.OceanSG2; import ucar.unidata.util.Parameter; /** * Create a ocean_s_coordinate_g2 Vertical Transform from the information in the Coordinate Transform Variable. * * @author Sachin (skbhate@ngi.msstate.edu) */ public class VOceanSG2 extends AbstractCoordTransBuilder { private String s = "", eta = "", depth = "", c = "", depth_c = ""; public String getTransformName() { return "ocean_s_coordinate_g2"; } public TransformType getTransformType() { return TransformType.Vertical; } public CoordinateTransform makeCoordinateTransform(NetcdfDataset ds, Variable ctv) { String formula_terms = getFormula(ds, ctv); if (null == formula_terms) return null; // :formula_terms = "s: s_rho c: Cs_r eta: zeta depth: h depth_c: hc"; String[] values = parseFormula(formula_terms, "s C eta depth depth_c"); if (values == null) return null; s = values[0]; c = values[1]; eta = values[2]; depth = values[3]; depth_c = values[4]; CoordinateTransform rs = new VerticalCT("OceanSG2_Transform_" + ctv.getFullName(), getTransformName(), VerticalCT.Type.OceanSG2, this); rs.addParameter(new Parameter("standard_name", getTransformName())); rs.addParameter(new Parameter("formula_terms", formula_terms)); rs.addParameter((new Parameter("height_formula", "height(x,y,z) = eta(x,y) + (eta(x,y) + depth([n],x,y)) * ((depth_c*s(z) + depth([n],x,y)*C(z))/(depth_c+depth([n],x,y)))"))); if (!addParameter(rs, OceanSG2.ETA, ds, eta)) return null; if (!addParameter(rs, OceanSG2.S, ds, s)) return null; if (!addParameter(rs, OceanSG2.DEPTH, ds, depth)) return null; if (!addParameter(rs, OceanSG2.DEPTH_C, ds, depth_c)) return null; if (!addParameter(rs, OceanSG2.C, ds, c)) return null; return rs; } public String toString() { return "OceanSG2:" + " s:" + s + " c:" + c + " eta:" + eta + " depth:" + depth + " depth_c:" + depth_c; } public ucar.unidata.geoloc.vertical.VerticalTransform makeMathTransform(NetcdfDataset ds, Dimension timeDim, VerticalCT vCT) { return new OceanSG2(ds, timeDim, vCT.getParameters()); } }