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  <compounddef id="interfacemom__eos__linear_1_1calculate__density__linear" kind="interface" language="Fortran" prot="private">
    <compoundname>mom_eos_linear::calculate_density_linear</compoundname>
      <sectiondef kind="private-func">
      <memberdef kind="function" id="interfacemom__eos__linear_1_1calculate__density__linear_1ac8c3700bad9503cbfbc65eb9134e0550" prot="private" static="no" const="no" explicit="no" inline="no" virt="non-virtual">
        <type>subroutine</type>
        <definition>subroutine mom_eos_linear::calculate_density_linear::calculate_density_scalar_linear</definition>
        <argsstring>(T, S, pressure, rho, Rho_T0_S0, dRho_dT, dRho_dS, rho_ref)</argsstring>
        <name>calculate_density_scalar_linear</name>
        <param>
          <type>T</type>
          <defname>T</defname>
        </param>
        <param>
          <type>S</type>
          <defname>S</defname>
        </param>
        <param>
          <type>pressure</type>
          <defname>pressure</defname>
        </param>
        <param>
          <type>rho</type>
          <defname>rho</defname>
        </param>
        <param>
          <type>Rho_T0_S0</type>
          <defname>Rho_T0_S0</defname>
        </param>
        <param>
          <type>dRho_dT</type>
          <defname>dRho_dT</defname>
        </param>
        <param>
          <type>dRho_dS</type>
          <defname>dRho_dS</defname>
        </param>
        <param>
          <type>rho_ref</type>
          <defname>rho_ref</defname>
        </param>
        <briefdescription>
<para>This subroutine computes the density of sea water with a trivial linear equation of state (in [kg m-3]) from salinity (sal [PSU]), potential temperature (T [degC]), and pressure [Pa]. </para>        </briefdescription>
        <detaileddescription>
<para><parameterlist kind="param"><parameteritem>
<parameternamelist>
<parametername direction="in">t</parametername>
</parameternamelist>
<parameterdescription>
<para>Potential temperature relative to the surface [degC].</para></parameterdescription>
</parameteritem>
<parameteritem>
<parameternamelist>
<parametername direction="in">s</parametername>
</parameternamelist>
<parameterdescription>
<para>Salinity [PSU].</para></parameterdescription>
</parameteritem>
<parameteritem>
<parameternamelist>
<parametername direction="in">pressure</parametername>
</parameternamelist>
<parameterdescription>
<para>pressure [Pa].</para></parameterdescription>
</parameteritem>
<parameteritem>
<parameternamelist>
<parametername direction="out">rho</parametername>
</parameternamelist>
<parameterdescription>
<para>In situ density [kg m-3].</para></parameterdescription>
</parameteritem>
<parameteritem>
<parameternamelist>
<parametername direction="in">rho_t0_s0</parametername>
</parameternamelist>
<parameterdescription>
<para>The density at T=0, S=0 [kg m-3].</para></parameterdescription>
</parameteritem>
<parameteritem>
<parameternamelist>
<parametername direction="in">drho_dt</parametername>
</parameternamelist>
<parameterdescription>
<para>The derivatives of density with temperature [kg m-3 degC-1].</para></parameterdescription>
</parameteritem>
<parameteritem>
<parameternamelist>
<parametername direction="in">drho_ds</parametername>
</parameternamelist>
<parameterdescription>
<para>The derivatives of density with salinity in [kg m-3 ppt-1].</para></parameterdescription>
</parameteritem>
<parameteritem>
<parameternamelist>
<parametername direction="in">rho_ref</parametername>
</parameternamelist>
<parameterdescription>
<para>A reference density [kg m-3]. </para></parameterdescription>
</parameteritem>
</parameterlist>
</para>        </detaileddescription>
        <inbodydescription>
        </inbodydescription>
        <location file="/home/cermak/src/MOM6.devrob/src/equation_of_state/MOM_EOS_linear.F90" line="56" column="1" bodyfile="/home/cermak/src/MOM6.devrob/src/equation_of_state/MOM_EOS_linear.F90" bodystart="58" bodyend="74"/>
      </memberdef>
      <memberdef kind="function" id="interfacemom__eos__linear_1_1calculate__density__linear_1a2ddbc80400759c5bb13eaf8305ea8ef7" prot="private" static="no" const="no" explicit="no" inline="no" virt="non-virtual">
        <type>subroutine</type>
        <definition>subroutine mom_eos_linear::calculate_density_linear::calculate_density_array_linear</definition>
        <argsstring>(T, S, pressure, rho, start, npts, Rho_T0_S0, dRho_dT, dRho_dS, rho_ref)</argsstring>
        <name>calculate_density_array_linear</name>
        <param>
          <type>T</type>
          <defname>T</defname>
        </param>
        <param>
          <type>S</type>
          <defname>S</defname>
        </param>
        <param>
          <type>pressure</type>
          <defname>pressure</defname>
        </param>
        <param>
          <type>rho</type>
          <defname>rho</defname>
        </param>
        <param>
          <type>start</type>
          <defname>start</defname>
        </param>
        <param>
          <type>npts</type>
          <defname>npts</defname>
        </param>
        <param>
          <type>Rho_T0_S0</type>
          <defname>Rho_T0_S0</defname>
        </param>
        <param>
          <type>dRho_dT</type>
          <defname>dRho_dT</defname>
        </param>
        <param>
          <type>dRho_dS</type>
          <defname>dRho_dS</defname>
        </param>
        <param>
          <type>rho_ref</type>
          <defname>rho_ref</defname>
        </param>
        <briefdescription>
<para>This subroutine computes the density of sea water with a trivial linear equation of state (in kg/m^3) from salinity (sal in psu), potential temperature (T [degC]), and pressure [Pa]. </para>        </briefdescription>
        <detaileddescription>
<para><parameterlist kind="param"><parameteritem>
<parameternamelist>
<parametername direction="in">t</parametername>
</parameternamelist>
<parameterdescription>
<para>potential temperature relative to the surface [degC].</para></parameterdescription>
</parameteritem>
<parameteritem>
<parameternamelist>
<parametername direction="in">s</parametername>
</parameternamelist>
<parameterdescription>
<para>salinity [PSU].</para></parameterdescription>
</parameteritem>
<parameteritem>
<parameternamelist>
<parametername direction="in">pressure</parametername>
</parameternamelist>
<parameterdescription>
<para>pressure [Pa].</para></parameterdescription>
</parameteritem>
<parameteritem>
<parameternamelist>
<parametername direction="out">rho</parametername>
</parameternamelist>
<parameterdescription>
<para>in situ density [kg m-3].</para></parameterdescription>
</parameteritem>
<parameteritem>
<parameternamelist>
<parametername direction="in">start</parametername>
</parameternamelist>
<parameterdescription>
<para>the starting point in the arrays.</para></parameterdescription>
</parameteritem>
<parameteritem>
<parameternamelist>
<parametername direction="in">npts</parametername>
</parameternamelist>
<parameterdescription>
<para>the number of values to calculate.</para></parameterdescription>
</parameteritem>
<parameteritem>
<parameternamelist>
<parametername direction="in">rho_t0_s0</parametername>
</parameternamelist>
<parameterdescription>
<para>The density at T=0, S=0 [kg m-3].</para></parameterdescription>
</parameteritem>
<parameteritem>
<parameternamelist>
<parametername direction="in">drho_dt</parametername>
</parameternamelist>
<parameterdescription>
<para>The derivatives of density with temperature [kg m-3 degC-1].</para></parameterdescription>
</parameteritem>
<parameteritem>
<parameternamelist>
<parametername direction="in">drho_ds</parametername>
</parameternamelist>
<parameterdescription>
<para>The derivatives of density with salinity in [kg m-3 ppt-1].</para></parameterdescription>
</parameteritem>
<parameteritem>
<parameternamelist>
<parametername direction="in">rho_ref</parametername>
</parameternamelist>
<parameterdescription>
<para>A reference density [kg m-3]. </para></parameterdescription>
</parameteritem>
</parameterlist>
</para>        </detaileddescription>
        <inbodydescription>
        </inbodydescription>
        <location file="/home/cermak/src/MOM6.devrob/src/equation_of_state/MOM_EOS_linear.F90" line="80" column="1" bodyfile="/home/cermak/src/MOM6.devrob/src/equation_of_state/MOM_EOS_linear.F90" bodystart="82" bodyend="102"/>
      </memberdef>
      </sectiondef>
    <briefdescription>
<para>Compute the density of sea water (in kg/m^3), or its anomaly from a reference density, using a simple linear equation of state from salinity (in psu), potential temperature (in deg C) and pressure [Pa]. </para>    </briefdescription>
    <detaileddescription>
    </detaileddescription>
    <location file="/home/cermak/src/MOM6.devrob/src/equation_of_state/MOM_EOS_linear.F90" line="27" column="1" bodyfile="/home/cermak/src/MOM6.devrob/src/equation_of_state/MOM_EOS_linear.F90" bodystart="27" bodyend="28"/>
    <listofallmembers>
      <member refid="interfacemom__eos__linear_1_1calculate__density__linear_1a2ddbc80400759c5bb13eaf8305ea8ef7" prot="private" virt="non-virtual"><scope>mom_eos_linear::calculate_density_linear</scope><name>calculate_density_array_linear</name></member>
      <member refid="interfacemom__eos__linear_1_1calculate__density__linear_1ac8c3700bad9503cbfbc65eb9134e0550" prot="private" virt="non-virtual"><scope>mom_eos_linear::calculate_density_linear</scope><name>calculate_density_scalar_linear</name></member>
    </listofallmembers>
  </compounddef>
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