Applied and Computational Mathematics (ACM)

Dynamic Iteration Schemes

Dynamic iteration via source coupling

Standard time-integration methods solve transient problems all at once. This may become very inefficient or impossible for large systems of equations. Imaging that such large systems often stem from a coupled problem formulation, where different physical phenomena interact and need to be coupled in order to produce a precise mathematical model.
E.g. highly integrated electric circuits (as in memory chips or CPUs) produce heat, which effects in turn their behavior as electrical system; thus one needs to couple electric and thermal subproblem descriptions. On the one hand, this creates multiple time scales due to different physical phenomena, which demands an efficient treatment, see multirate. On the other hand, in a professional environment one usually has dedicated solvers for the subproblems, which need to be used, and an overall problem formulation is not feasible for any of the involved tools.

For those partitioned problems a dynamic iteration method becomes beneficial or even the sole way-out: it keeps the subproblems separate, solves subproblems sequentially (or in parallel) and iterates until convergence (fixed-point interation). Thus the subproblem's structure can be exploited in the respective integration.

To guarantee or to speed up convergence the time interval of interest is split into a series of windows. Then the time-integration of the windows is applied sequentially and in each window the subproblems are solved iteratively by your favoured method.

Group members working on that field

  • Andreas Bartel
  • Michael Günther

Former and ongoing Projects

Cooperation

Publications



2005

1385.

George, Christian; Strekowski, R. S.; Kleffmann, Jörg; Stemmler, Konrad; Ammann, Markus
Photoenhanced uptake of gaseous NO2 on solid organic compounds: a photochemical source of HONO?
Faraday Discussions, 130 :195
2005
Herausgeber: The Royal Society of Chemistry

1384.

[german] Tausch, Michael W.; Seesing, Michael; G. Ibanez, J.; Mena-Brito, R.; Fregoso-Infante, A.
Photoredoxreaktionen mit Nano-Titandioxid
Praxis der Naturwissenschaften - Chemie in der Schule, 54 (3) :22--24
2005

1383.

Dearing, P.M.; Klamroth, Kathrin; Segars, R. Jr.
Planar location problems with block distance and barriers
Annals of Operations Research, 136 :117-143
2005

1382.

Es-Sarhir, Abdelhadi; Farkas, Bálint
Positivity of perturbed Ornstein-Uhlenbeck semigroups on C\sb b(H)
Semigroup Forum, 70 (2) :208--224
2005

1381.

Yurchenko, Sergei N.; Zheng, Jingjing; Lin, Hai; Jensen, Per; Thiel, Walter
Potential-energy surface for the electronic ground state of NH\(_{3}\) up to 20000 cm\(^{-1}\) above equilibrium
The Journal of Chemical Physics, 123 (13) :134308
2005

1380.

Yurchenko, Sergei N.; Zheng, Jingjing; Lin, Hai; Jensen, Per; Thiel, Walter
Potential-energy surface for the electronic ground state of NH\(_{3}\) up to 20000 cm\(^{-1}\) above equilibrium
The Journal of Chemical Physics, 123 (13) :134308
2005

1379.

Yurchenko, Sergei N.; Zheng, Jingjing; Lin, Hai; Jensen, Per; Thiel, Walter
Potential-energy surface for the electronic ground state of NH3 up to 20000 cm-1 above equilibrium
The Journal of Chemical Physics, 123 (13) :134308
2005

1378.

Vogt, Ulrich; Dreiseidler, A.; Baumbach, G{ü}nter; Kurtenbach, Ralf; Petrea, Monica; Kohler, M.; Corsmeier, Ulrich
Quality assurance of air pollutant measurements during the BAB II field experiment
Atmospheric Environment, 39 (31) :5642-5664
2005
Herausgeber: Pergamon

1377.

Vogt, Ulrich; Dreiseidler, A.; Baumbach, Günter; Kurtenbach, Ralf; Petrea, Monica; Kohler, M.; Corsmeier, Ulrich
Quality assurance of air pollutant measurements during the BAB II field experiment
Atmospheric Environment, 39 (31) :5642-5664
2005
Herausgeber: Pergamon

1376.

Vogt, Ulrich; Dreiseidler, A.; Baumbach, G{ü}nter; Kurtenbach, Ralf; Petrea, Monica; Kohler, M.; Corsmeier, Ulrich
Quality assurance of air pollutant measurements during the BAB II field experiment
Atmospheric Environment, 39 (31) :5642-5664
2005
Herausgeber: Pergamon

1375.

Short, Luke Chandler; Benter, Thorsten
Real-Time Analysis of Exhaled Breath with MPLI-MS: Observed Nitric Oxide Profile
Chest, 128 (4) :236S
2005

1374.

Short, Luke Chandler; Benter, Thorsten
Real-Time Analysis of Exhaled Breath with MPLI-MS: Observed Nitric Oxide Profile
Chest, 128 (4) :236S
2005

1373.

Short, Luke Chandler; Benter, Thorsten
Real-Time Analysis of Exhaled Breath with MPLI-MS: Observed Nitric Oxide Profile
Chest, 128 (4) :236S
2005

1372.

[german] Tausch, Michael W.; Seesing, Michael
Redoxreaktionen an Nano-Titandioxid
Praxis der Naturwissenschaften - Chemie in der Schule, 54 (3) :16--19
2005

1371.

Farkas, Bálint; Révész, Szilárd Gy.
Rendezvous numbers in normed spaces
Bull. Austral. Math. Soc., 72 (3) :423-440
2005

1370.

Yurchenko, Sergey N.; Thiel, Walter; Carvajal, Miguel; Lin, Hai; Jensen, Per
Rotation-Vibration Motion of Pyramidal XY\(_{3}\) Molecules Described in the Eckart Frame: The Calculation of Intensities with Application to NH\(_{3}\)
Advances in Quantum Chemistry, 48 :209-238
2005
Herausgeber: Academic Press

1369.

Yurchenko, Sergey N.; Thiel, Walter; Carvajal, Miguel; Lin, Hai; Jensen, Per
Rotation-Vibration Motion of Pyramidal XY\(_{3}\) Molecules Described in the Eckart Frame: The Calculation of Intensities with Application to NH\(_{3}\)
Advances in Quantum Chemistry, 48 :209-238
2005
Herausgeber: Academic Press

1368.

Yurchenko, Sergei N.; Carvajal, Miguel; Jensen, Per; Lin, Hai; Zheng, Jingjing; Thiel, Walter
Rotation-vibration motion of pyramidal XY\(_{3}\) molecules described in the Eckart frame: Theory and application to NH\(_{3}\)
Molecular Physics, 103 (2-3) :359-378
2005

1367.

Yurchenko, Sergei N.; Carvajal, Miguel; Jensen, Per; Lin, Hai; Zheng, Jingjing; Thiel, Walter
Rotation-vibration motion of pyramidal XY\(_{3}\) molecules described in the Eckart frame: Theory and application to NH\(_{3}\)
Molecular Physics, 103 (2-3) :359-378
2005

1366.

Yurchenko, Sergey N.; Thiel, Walter; Carvajal, Miguel; Lin, Hai; Jensen, Per
Rotation-Vibration Motion of Pyramidal XY3 Molecules Described in the Eckart Frame: The Calculation of Intensities with Application to NH3
Advances in Quantum Chemistry, 48 :209-238
2005
Herausgeber: Academic Press

1365.

Yurchenko, Sergei N.; Carvajal, Miguel; Jensen, Per; Lin, Hai; Zheng, Jingjing; Thiel, Walter
Rotation-vibration motion of pyramidal XY3 molecules described in the Eckart frame: Theory and application to NH3
Molecular Physics, 103 (2-3) :359-378
2005

1364.

Short, Luke Chandler; Benter, Thorsten
Selective measurement of HCHO in urine using direct liquid-phase fluorimetric analysis
Clinical Chemistry and Laboratory Medicine (CCLM), 43 (2) :178-182
2005
Herausgeber: De Gruyter

1363.

Short, Luke Chandler; Benter, Thorsten
Selective measurement of HCHO in urine using direct liquid-phase fluorimetric analysis
Clinical Chemistry and Laboratory Medicine (CCLM), 43 (2) :178-182
2005
Herausgeber: De Gruyter

1362.

Short, Luke Chandler; Benter, Thorsten
Selective measurement of HCHO in urine using direct liquid-phase fluorimetric analysis
Clinical Chemistry and Laboratory Medicine (CCLM), 43 (2) :178-182
2005
Herausgeber: De Gruyter

1361.

[english] Rohe, Bernd; S. Veeman, W.; Tausch, Michael W.
Synthesis and photocatalytic activity of silane-coated and UV-modified nanoscale zinc oxide
Nanotechnology, 17 (1) :277--282
2005
Herausgeber: {IOP} Publishing