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Updated docs to 1.6
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35 changes: 18 additions & 17 deletions docs/annotated.html
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<tr style="height: 56px;">
<td id="projectlogo"><img alt="Logo" src="cmf-logo-2018.svg"/></td>
<td id="projectalign" style="padding-left: 0.5em;">
<div id="projectnumber">1.4.1</div>
<div id="projectnumber">1.6.0</div>
<div id="projectbrief">catchment modelling framework</div>
</td>
</tr>
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<tr id="row_0_9_1_1_" style="display:none;"><td class="entry"><span style="width:64px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classcmf_1_1upslope_1_1_e_t_1_1constant_e_tpot.html" target="_self">constantETpot</a></td><td class="desc">A constant evapotranspiration </td></tr>
<tr id="row_0_9_1_2_" style="display:none;"><td class="entry"><span style="width:64px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classcmf_1_1upslope_1_1_e_t_1_1_content_stress.html" target="_self">ContentStress</a></td><td class="desc">A simple water content based stress model based on Feddes (1978) </td></tr>
<tr id="row_0_9_1_3_" style="display:none;"><td class="entry"><span style="width:64px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classcmf_1_1upslope_1_1_e_t_1_1_hargreave_e_t.html" target="_self">HargreaveET</a></td><td class="desc">Calculates the Evapotranspiration using Hargreave's equation </td></tr>
<tr id="row_0_9_1_4_" style="display:none;"><td class="entry"><span style="width:64px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classcmf_1_1upslope_1_1_e_t_1_1_penman_evaporation.html" target="_self">PenmanEvaporation</a></td><td class="desc">Calculates evaporation from an open water body </td></tr>
<tr id="row_0_9_1_5_" style="display:none;"><td class="entry"><span style="width:64px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classcmf_1_1upslope_1_1_e_t_1_1_penman_monteith_e_t.html" target="_self">PenmanMonteithET</a></td><td class="desc">Calculates the potential evapotranspiration according to FAO(1998) </td></tr>
<tr id="row_0_9_1_6_" style="display:none;"><td class="entry"><span style="width:64px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classcmf_1_1upslope_1_1_e_t_1_1_priestley_taylor_e_t.html" target="_self">PriestleyTaylorET</a></td><td class="desc">Calculates the Evapotranspiration using Priestley-Taylor equation </td></tr>
<tr id="row_0_9_1_7_" style="display:none;"><td class="entry"><span style="width:64px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classcmf_1_1upslope_1_1_e_t_1_1_root_uptake_stess_function.html" target="_self">RootUptakeStessFunction</a></td><td class="desc">An abstract class to calculate the actual transpiration from potential transpiration </td></tr>
<tr id="row_0_9_1_8_" style="display:none;"><td class="entry"><span style="width:64px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classcmf_1_1upslope_1_1_e_t_1_1_shuttleworth_wallace.html" target="_self">ShuttleworthWallace</a></td><td class="desc">Calculates the sum of soil evaporation and transpiration according to Shuttleworth &amp; Wallace 1985, as implemented in BROOK 90 (Federer 1990) </td></tr>
<tr id="row_0_9_1_9_" style="display:none;"><td class="entry"><span style="width:64px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classcmf_1_1upslope_1_1_e_t_1_1stressed_e_t.html" target="_self">stressedET</a></td><td class="desc">An abstract base class for <a class="el" href="namespacecmf_1_1upslope_1_1_e_t.html" title="Contains different flux_connection classes for the description of evaporation and transpiration...">ET</a> Methods with a WaterStressFunction </td></tr>
<tr id="row_0_9_1_10_" style="display:none;"><td class="entry"><span style="width:64px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classcmf_1_1upslope_1_1_e_t_1_1_suction_stress.html" target="_self">SuctionStress</a></td><td class="desc">The classical suction depending transpiration Stress curve after Feddes </td></tr>
<tr id="row_0_9_1_11_" style="display:none;"><td class="entry"><span style="width:64px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classcmf_1_1upslope_1_1_e_t_1_1_s_w__evap__from__canopy.html" target="_self">SW_evap_from_canopy</a></td><td class="desc">Connection for Shuttleworth-Wallace canopy interception evaporation </td></tr>
<tr id="row_0_9_1_12_" style="display:none;"><td class="entry"><span style="width:64px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classcmf_1_1upslope_1_1_e_t_1_1_s_w__evap__from__layer.html" target="_self">SW_evap_from_layer</a></td><td class="desc">Connection for Shuttleworth-Wallace ground evaporation </td></tr>
<tr id="row_0_9_1_13_" style="display:none;"><td class="entry"><span style="width:64px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classcmf_1_1upslope_1_1_e_t_1_1_s_w__evap__from__snow.html" target="_self">SW_evap_from_snow</a></td><td class="desc">Connection for Shuttleworth-Wallace canopy interception evaporation </td></tr>
<tr id="row_0_9_1_14_" style="display:none;"><td class="entry"><span style="width:64px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classcmf_1_1upslope_1_1_e_t_1_1_s_w__evap__from__surfacewater.html" target="_self">SW_evap_from_surfacewater</a></td><td class="desc">Connection for Shuttleworth-Wallace canopy interception evaporation </td></tr>
<tr id="row_0_9_1_15_" style="display:none;"><td class="entry"><span style="width:64px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classcmf_1_1upslope_1_1_e_t_1_1_s_w__transpiration.html" target="_self">SW_transpiration</a></td><td class="desc">Connection for Shuttleworth-Wallace transpiration </td></tr>
<tr id="row_0_9_1_16_" style="display:none;"><td class="entry"><span style="width:64px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classcmf_1_1upslope_1_1_e_t_1_1timeseries_e_tpot.html" target="_self">timeseriesETpot</a></td><td class="desc">A timeseries driven evapotranspiration </td></tr>
<tr id="row_0_9_1_17_" style="display:none;"><td class="entry"><span style="width:64px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classcmf_1_1upslope_1_1_e_t_1_1_turc_e_t.html" target="_self">TurcET</a></td><td class="desc">Calculates ETpot after Turc (DVWK) </td></tr>
<tr id="row_0_9_1_18_" style="display:none;"><td class="entry"><span style="width:64px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classcmf_1_1upslope_1_1_e_t_1_1_volume_stress.html" target="_self">VolumeStress</a></td><td class="desc">A WaterStressFunction based on the stored water volume of a layer </td></tr>
<tr id="row_0_9_1_4_" style="display:none;"><td class="entry"><span style="width:64px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classcmf_1_1upslope_1_1_e_t_1_1_oudin_e_t.html" target="_self">OudinET</a></td><td class="desc">Calculates ETpot after Oudin et al 2005 </td></tr>
<tr id="row_0_9_1_5_" style="display:none;"><td class="entry"><span style="width:64px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classcmf_1_1upslope_1_1_e_t_1_1_penman_evaporation.html" target="_self">PenmanEvaporation</a></td><td class="desc">Calculates evaporation from an open water body </td></tr>
<tr id="row_0_9_1_6_" style="display:none;"><td class="entry"><span style="width:64px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classcmf_1_1upslope_1_1_e_t_1_1_penman_monteith_e_t.html" target="_self">PenmanMonteithET</a></td><td class="desc">Calculates the potential evapotranspiration according to FAO(1998) </td></tr>
<tr id="row_0_9_1_7_" style="display:none;"><td class="entry"><span style="width:64px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classcmf_1_1upslope_1_1_e_t_1_1_priestley_taylor_e_t.html" target="_self">PriestleyTaylorET</a></td><td class="desc">Calculates the Evapotranspiration using Priestley-Taylor equation </td></tr>
<tr id="row_0_9_1_8_" style="display:none;"><td class="entry"><span style="width:64px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classcmf_1_1upslope_1_1_e_t_1_1_root_uptake_stress_function.html" target="_self">RootUptakeStressFunction</a></td><td class="desc">An abstract class to calculate the actual transpiration from potential transpiration </td></tr>
<tr id="row_0_9_1_9_" style="display:none;"><td class="entry"><span style="width:64px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classcmf_1_1upslope_1_1_e_t_1_1_shuttleworth_wallace.html" target="_self">ShuttleworthWallace</a></td><td class="desc">Calculates the sum of soil evaporation and transpiration according to Shuttleworth &amp; Wallace 1985, as implemented in BROOK 90 (Federer 1990) </td></tr>
<tr id="row_0_9_1_10_" style="display:none;"><td class="entry"><span style="width:64px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classcmf_1_1upslope_1_1_e_t_1_1stressed_e_t.html" target="_self">stressedET</a></td><td class="desc">An abstract base class for <a class="el" href="namespacecmf_1_1upslope_1_1_e_t.html" title="Contains different flux_connection classes for the description of evaporation and transpiration...">ET</a> Methods with a WaterStressFunction </td></tr>
<tr id="row_0_9_1_11_" style="display:none;"><td class="entry"><span style="width:64px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classcmf_1_1upslope_1_1_e_t_1_1_suction_stress.html" target="_self">SuctionStress</a></td><td class="desc">The classical suction depending transpiration Stress curve after Feddes </td></tr>
<tr id="row_0_9_1_12_" style="display:none;"><td class="entry"><span style="width:64px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classcmf_1_1upslope_1_1_e_t_1_1_s_w__evap__from__canopy.html" target="_self">SW_evap_from_canopy</a></td><td class="desc">Connection for Shuttleworth-Wallace canopy interception evaporation </td></tr>
<tr id="row_0_9_1_13_" style="display:none;"><td class="entry"><span style="width:64px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classcmf_1_1upslope_1_1_e_t_1_1_s_w__evap__from__layer.html" target="_self">SW_evap_from_layer</a></td><td class="desc">Connection for Shuttleworth-Wallace ground evaporation </td></tr>
<tr id="row_0_9_1_14_" style="display:none;"><td class="entry"><span style="width:64px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classcmf_1_1upslope_1_1_e_t_1_1_s_w__evap__from__snow.html" target="_self">SW_evap_from_snow</a></td><td class="desc">Connection for Shuttleworth-Wallace canopy interception evaporation </td></tr>
<tr id="row_0_9_1_15_" style="display:none;"><td class="entry"><span style="width:64px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classcmf_1_1upslope_1_1_e_t_1_1_s_w__evap__from__surfacewater.html" target="_self">SW_evap_from_surfacewater</a></td><td class="desc">Connection for Shuttleworth-Wallace canopy interception evaporation </td></tr>
<tr id="row_0_9_1_16_" style="display:none;"><td class="entry"><span style="width:64px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classcmf_1_1upslope_1_1_e_t_1_1_s_w__transpiration.html" target="_self">SW_transpiration</a></td><td class="desc">Connection for Shuttleworth-Wallace transpiration </td></tr>
<tr id="row_0_9_1_17_" style="display:none;"><td class="entry"><span style="width:64px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classcmf_1_1upslope_1_1_e_t_1_1timeseries_e_tpot.html" target="_self">timeseriesETpot</a></td><td class="desc">A timeseries driven evapotranspiration </td></tr>
<tr id="row_0_9_1_18_" style="display:none;"><td class="entry"><span style="width:64px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classcmf_1_1upslope_1_1_e_t_1_1_turc_e_t.html" target="_self">TurcET</a></td><td class="desc">Calculates ETpot after Turc (DVWK) </td></tr>
<tr id="row_0_9_1_19_" style="display:none;"><td class="entry"><span style="width:64px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classcmf_1_1upslope_1_1_e_t_1_1_volume_stress.html" target="_self">VolumeStress</a></td><td class="desc">A WaterStressFunction based on the stored water volume of a layer </td></tr>
<tr id="row_0_9_2_" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;">&#160;</span><span id="arr_0_9_2_" class="arrow" onclick="toggleFolder('0_9_2_')">&#9654;</span><span class="icona"><span class="icon">N</span></span><b>vegetation</b></td><td class="desc"></td></tr>
<tr id="row_0_9_2_0_" style="display:none;"><td class="entry"><span style="width:64px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classcmf_1_1upslope_1_1vegetation_1_1_vegetation.html" target="_self">Vegetation</a></td><td class="desc">Holds the vegetation parameters for the calculation of <a class="el" href="namespacecmf_1_1upslope_1_1_e_t.html" title="Contains different flux_connection classes for the description of evaporation and transpiration...">ET</a> and fractionating rainfall. Not every <a class="el" href="namespacecmf_1_1upslope_1_1_e_t.html" title="Contains different flux_connection classes for the description of evaporation and transpiration...">ET</a> method uses all parameters </td></tr>
<tr id="row_0_9_3_" style="display:none;"><td class="entry"><span style="width:48px;display:inline-block;">&#160;</span><span class="icona"><span class="icon">C</span></span><a class="el" href="classcmf_1_1upslope_1_1aquifer.html" target="_self">aquifer</a></td><td class="desc">A class to represent large groundwater storages, not bounded to the usual horizontal discretization scheme, the <a class="el" href="classcmf_1_1upslope_1_1_cell.html" title="This class is the basic landscape object. ">Cell</a> </td></tr>
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<a class="el" href="http://www.uni-giessen.de/hydro">
Institute of Landscape Ecology and Resources Management,University of Gie&szlig;en</a>
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<tr style="height: 56px;">
<td id="projectlogo"><img alt="Logo" src="cmf-logo-2018.svg"/></td>
<td id="projectalign" style="padding-left: 0.5em;">
<div id="projectnumber">1.4.1</div>
<div id="projectnumber">1.6.0</div>
<div id="projectbrief">catchment modelling framework</div>
</td>
</tr>
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<a class="el" href="http://www.uni-giessen.de/hydro">
Institute of Landscape Ecology and Resources Management,University of Gie&szlig;en</a>
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<div id="projectnumber">1.4.1</div>
<div id="projectnumber">1.6.0</div>
<div id="projectbrief">catchment modelling framework</div>
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<a class="el" href="http://www.uni-giessen.de/hydro">
Institute of Landscape Ecology and Resources Management,University of Gie&szlig;en</a>
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<td id="projectlogo"><img alt="Logo" src="cmf-logo-2018.svg"/></td>
<td id="projectalign" style="padding-left: 0.5em;">
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<div id="projectnumber">1.6.0</div>
<div id="projectbrief">catchment modelling framework</div>
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<a class="el" href="http://www.uni-giessen.de/hydro">
Institute of Landscape Ecology and Resources Management,University of Gie&szlig;en</a>
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<td id="projectlogo"><img alt="Logo" src="cmf-logo-2018.svg"/></td>
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<div id="projectnumber">1.4.1</div>
<div id="projectnumber">1.6.0</div>
<div id="projectbrief">catchment modelling framework</div>
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<a class="el" href="http://www.uni-giessen.de/hydro">
Institute of Landscape Ecology and Resources Management,University of Gie&szlig;en</a>
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<td id="projectlogo"><img alt="Logo" src="cmf-logo-2018.svg"/></td>
<td id="projectalign" style="padding-left: 0.5em;">
<div id="projectnumber">1.4.1</div>
<div id="projectnumber">1.6.0</div>
<div id="projectbrief">catchment modelling framework</div>
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<a class="el" href="http://www.uni-giessen.de/hydro">
Institute of Landscape Ecology and Resources Management,University of Gie&szlig;en</a>
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<td id="projectlogo"><img alt="Logo" src="cmf-logo-2018.svg"/></td>
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<div id="projectnumber">1.6.0</div>
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</td>
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<a class="el" href="http://www.uni-giessen.de/hydro">
Institute of Landscape Ecology and Resources Management,University of Gie&szlig;en</a>
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<tr style="height: 56px;">
<td id="projectlogo"><img alt="Logo" src="cmf-logo-2018.svg"/></td>
<td id="projectalign" style="padding-left: 0.5em;">
<div id="projectnumber">1.4.1</div>
<div id="projectnumber">1.6.0</div>
<div id="projectbrief">catchment modelling framework</div>
</td>
</tr>
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<a class="el" href="http://www.uni-giessen.de/hydro">
Institute of Landscape Ecology and Resources Management,University of Gie&szlig;en</a>
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