Show
Ignore:
Timestamp:
08/20/2007 12:51:39 PM (17 months ago)
Author:
AHaumer
Message:

improved documentation

Files:
1 modified

Legend:

Unmodified
Added
Removed
  • Modelica/branches/maintenance/2.2.1/Modelica/Thermal/FluidHeatFlow.mo

    r581 r583  
     1//within Modelica.Thermal; 
    12package FluidHeatFlow  
    23  "Simple components for 1-dimensional incompressible thermo-fluid flow models"  
     
    220221<table> 
    221222<tr> 
    222 <td><b>output</b></td> 
    223 <td><b>explanation</b></td> 
    224 <td><b>formula</b></td> 
    225 <td><b>actual steady-state value</b></td> 
     223<td valign=\"top\"><b>output</b></td> 
     224<td valign=\"top\"><b>explanation</b></td> 
     225<td valign=\"top\"><b>formula</b></td> 
     226<td valign=\"top\"><b>actual steady-state value</b></td> 
    226227</tr> 
    227228<tr> 
    228 <td>dTSource</td> 
    229 <td>Source over Ambient</td> 
    230 <td>dtCoolant + dtToPipe</td> 
    231 <td>20 K</td> 
     229<td valign=\"top\">dTSource</td> 
     230<td valign=\"top\">Source over Ambient</td> 
     231<td valign=\"top\">dtCoolant + dtToPipe</td> 
     232<td valign=\"top\">20 K</td> 
    232233</tr> 
    233234<tr> 
    234 <td>dTtoPipe</td> 
    235 <td>Source over Coolant</td> 
    236 <td>Losses / ThermalConductor.G</td> 
    237 <td>10 K</td> 
     235<td valign=\"top\">dTtoPipe</td> 
     236<td valign=\"top\">Source over Coolant</td> 
     237<td valign=\"top\">Losses / ThermalConductor.G</td> 
     238<td valign=\"top\">10 K</td> 
    238239</tr> 
    239240<tr> 
    240 <td>dTCoolant</td> 
    241 <td>Coolant's temperature increase</td> 
    242 <td>Losses * cp * massFlow</td> 
    243 <td>10 K</td> 
     241<td valign=\"top\">dTCoolant</td> 
     242<td valign=\"top\">Coolant's temperature increase</td> 
     243<td valign=\"top\">Losses * cp * massFlow</td> 
     244<td valign=\"top\">10 K</td> 
    244245</tr> 
    245246</table> 
     
    323324<table> 
    324325<tr> 
    325 <td><b>output</b></td> 
    326 <td><b>explanation</b></td> 
    327 <td><b>formula</b></td> 
    328 <td><b>actual steady-state value</b></td> 
     326<td valign=\"top\"><b>output</b></td> 
     327<td valign=\"top\"><b>explanation</b></td> 
     328<td valign=\"top\"><b>formula</b></td> 
     329<td valign=\"top\"><b>actual steady-state value</b></td> 
    329330</tr> 
    330331<tr> 
    331 <td>dTSource1</td> 
    332 <td>Source1 over Ambient</td> 
    333 <td>dTCoolant1 + dTtoPipe1</td> 
    334 <td>15 K</td> 
     332<td valign=\"top\">dTSource1</td> 
     333<td valign=\"top\">Source1 over Ambient</td> 
     334<td valign=\"top\">dTCoolant1 + dTtoPipe1</td> 
     335<td valign=\"top\">15 K</td> 
    335336</tr> 
    336337<tr> 
    337 <td>dTtoPipe1</td> 
    338 <td>Source1 over Coolant1</td> 
    339 <td>Losses1 / ThermalConductor1.G</td> 
    340 <td> 5 K</td> 
     338<td valign=\"top\">dTtoPipe1</td> 
     339<td valign=\"top\">Source1 over Coolant1</td> 
     340<td valign=\"top\">Losses1 / ThermalConductor1.G</td> 
     341<td valign=\"top\"> 5 K</td> 
    341342</tr> 
    342343<tr> 
    343 <td>dTCoolant1</td> 
    344 <td>Coolant's temperature increase</td> 
    345 <td>Losses * cp * totalMassFlow/2</td> 
    346 <td>10 K</td> 
     344<td valign=\"top\">dTCoolant1</td> 
     345<td valign=\"top\">Coolant's temperature increase</td> 
     346<td valign=\"top\">Losses * cp * totalMassFlow/2</td> 
     347<td valign=\"top\">10 K</td> 
    347348</tr> 
    348349<tr> 
    349 <td>dTSource2</td> 
    350 <td>Source2 over Ambient</td> 
    351 <td>dTCoolant2 + dTtoPipe2</td> 
    352 <td>30 K</td> 
     350<td valign=\"top\">dTSource2</td> 
     351<td valign=\"top\">Source2 over Ambient</td> 
     352<td valign=\"top\">dTCoolant2 + dTtoPipe2</td> 
     353<td valign=\"top\">30 K</td> 
    353354</tr> 
    354355<tr> 
    355 <td>dTtoPipe2</td> 
    356 <td>Source2 over Coolant2</td> 
    357 <td>Losses2 / ThermalConductor2.G</td> 
    358 <td>10 K</td> 
     356<td valign=\"top\">dTtoPipe2</td> 
     357<td valign=\"top\">Source2 over Coolant2</td> 
     358<td valign=\"top\">Losses2 / ThermalConductor2.G</td> 
     359<td valign=\"top\">10 K</td> 
    359360</tr> 
    360361<tr> 
    361 <td>dTCoolant2</td> 
    362 <td>Coolant's temperature increase</td> 
    363 <td>Losses * cp * totalMassFlow/2</td> 
    364 <td>20 K</td> 
     362<td valign=\"top\">dTCoolant2</td> 
     363<td valign=\"top\">Coolant's temperature increase</td> 
     364<td valign=\"top\">Losses * cp * totalMassFlow/2</td> 
     365<td valign=\"top\">20 K</td> 
    365366</tr> 
    366367<tr> 
    367 <td>dTmixedCoolant</td> 
    368 <td>mixed Coolant's temperature increase</td> 
    369 <td>(dTCoolant1+dTCoolant2)/2</td> 
    370 <td>15 K</td> 
     368<td valign=\"top\">dTmixedCoolant</td> 
     369<td valign=\"top\">mixed Coolant's temperature increase</td> 
     370<td valign=\"top\">(dTCoolant1+dTCoolant2)/2</td> 
     371<td valign=\"top\">15 K</td> 
    371372</tr> 
    372373</table> 
     
    494495<table> 
    495496<tr> 
    496 <td><b>output</b></td> 
    497 <td><b>explanation</b></td> 
    498 <td><b>formula</b></td> 
    499 <td><b>actual steady-state value</b></td> 
     497<td valign=\"top\"><b>output</b></td> 
     498<td valign=\"top\"><b>explanation</b></td> 
     499<td valign=\"top\"><b>formula</b></td> 
     500<td valign=\"top\"><b>actual steady-state value</b></td> 
    500501</tr> 
    501502<tr> 
    502 <td>dTSource</td> 
    503 <td>Source over Ambient</td> 
    504 <td>dtouterCoolant + dtCooler + dTinnerCoolant + dtToPipe</td> 
    505 <td>40 K</td> 
     503<td valign=\"top\">dTSource</td> 
     504<td valign=\"top\">Source over Ambient</td> 
     505<td valign=\"top\">dtouterCoolant + dtCooler + dTinnerCoolant + dtToPipe</td> 
     506<td valign=\"top\">40 K</td> 
    506507</tr> 
    507508<tr> 
    508 <td>dTtoPipe</td> 
    509 <td>Source over inner Coolant</td> 
    510 <td>Losses / ThermalConductor.G</td> 
    511 <td>10 K</td> 
     509<td valign=\"top\">dTtoPipe</td> 
     510<td valign=\"top\">Source over inner Coolant</td> 
     511<td valign=\"top\">Losses / ThermalConductor.G</td> 
     512<td valign=\"top\">10 K</td> 
    512513</tr> 
    513514<tr> 
    514 <td>dTinnerColant</td> 
    515 <td>inner Coolant's temperature increase</td> 
    516 <td>Losses * cp * innerMassFlow</td> 
    517 <td>10 K</td> 
     515<td valign=\"top\">dTinnerColant</td> 
     516<td valign=\"top\">inner Coolant's temperature increase</td> 
     517<td valign=\"top\">Losses * cp * innerMassFlow</td> 
     518<td valign=\"top\">10 K</td> 
    518519</tr> 
    519520<tr> 
    520 <td>dTCooler</td> 
    521 <td>Cooler's temperature rise between inner and outer pipes</td> 
    522 <td>Losses * (innerGc + outerGc)</td> 
    523 <td>10 K</td> 
     521<td valign=\"top\">dTCooler</td> 
     522<td valign=\"top\">Cooler's temperature rise between inner and outer pipes</td> 
     523<td valign=\"top\">Losses * (innerGc + outerGc)</td> 
     524<td valign=\"top\">10 K</td> 
    524525</tr> 
    525526<tr> 
    526 <td>dTouterColant</td> 
    527 <td>outer Coolant's temperature increase</td> 
    528 <td>Losses * cp * outerMassFlow</td> 
    529 <td>10 K</td> 
     527<td valign=\"top\">dTouterColant</td> 
     528<td valign=\"top\">outer Coolant's temperature increase</td> 
     529<td valign=\"top\">Losses * cp * outerMassFlow</td> 
     530<td valign=\"top\">10 K</td> 
    530531</tr> 
    531532</table>