63 "Transport of soluted substances.")
69 return Record(
"Coupling_OperatorSplitting",
70 "Transport by convection and/or diffusion\n" 71 "coupled with reaction and adsorption model (ODE per element)\n" 72 " via operator splitting.")
76 "Time governor settings for the transport equation.")
78 "Settings for computing mass balance.")
80 "Output stream settings.\n Specify file format, precision etc.")
82 "Specification of transported substances.")
85 "Type of the numerical method for the transport equation.")
87 "Reaction model involved in transport.")
97 Input::register_class< TransportOperatorSplitting, Mesh &, const Input::Record>(
"Coupling_OperatorSplitting") +
108 *
this += porosity.name(
"porosity")
109 .description(
"Porosity of the mobile phase.")
110 .input_default(
"1.0")
112 .flags_add(in_main_matrix & in_rhs);
114 *
this += water_content.name(
"water_content")
115 .description(
"INTERNAL. Water content passed from unsaturated Darcy flow model.")
117 .flags_add(input_copy & in_time_term & in_main_matrix & in_rhs);
119 *
this += cross_section.name(
"cross_section")
121 .flags_add(in_time_term & in_main_matrix & in_rhs);
123 *
this += sources_density.name(
"sources_density")
124 .description(
"Density of concentration sources.")
125 .input_default(
"0.0")
126 .units(
UnitSI().kg().m(-3).s(-1) )
129 *
this += sources_sigma.name(
"sources_sigma")
130 .description(
"Concentration flux.")
131 .input_default(
"0.0")
133 .flags_add(in_main_matrix & in_rhs);
135 *
this += sources_conc.name(
"sources_conc")
136 .description(
"Concentration sources threshold.")
137 .input_default(
"0.0")
138 .units(
UnitSI().kg().m(-3) )
155 cfl_convection(numeric_limits<double>::max()),
156 cfl_reaction(numeric_limits<double>::max())
167 convection->set_time_governor(
time());
170 convection->substances().initialize(in_rec.
val<
Input::Array>(
"substances"));
182 convection->set_balance_object(
balance_);
184 convection->initialize();
191 this->
eq_data_ = &(convection->data());
193 convection->get_par_info(el_4_loc, el_distribution);
195 if ( reactions_it ) {
200 reaction->substances(convection->substances())
201 .concentration_matrix(convection->get_concentration_matrix(),
202 el_distribution, el_4_loc, convection->get_row_4_el())
203 .output_stream(convection->output_stream())
245 convection->output_stream()->write_time_frame();
261 convection->output_stream()->write_time_frame();
286 bool cfl_changed = cfl_convection_changed || cfl_reaction_changed;
288 if (steps == 1 || cfl_changed)
290 convection->time().set_upper_constraint(
cfl_convection,
"Time step constrained by transport CFL condition (including both flow and sources).");
291 convection->time().set_upper_constraint(
cfl_reaction,
"Time step constrained by reaction CFL condition.");
307 for (
unsigned int sbi=0; sbi<
convection->n_substances(); sbi++)
312 source[sbi] -= region_mass[ri];
334 for (
unsigned int sbi=0; sbi<
convection->n_substances(); sbi++)
339 source[sbi] += region_mass[ri];
342 balance_->add_cumulative_source(sbi, source[sbi]);
349 LogOut().fmt(
"CONVECTION: steps: {}\n", steps);
int LongIdx
Define type that represents indices of large arrays (elements, nodes, dofs etc.)
static const Input::Type::Record & get_input_type()
Main balance input record type.
Abstract base class for equation clasess.
void zero_time_step() override
unsigned int bulk_size() const
static const Input::Type::Record & get_input_type()
Declare input record type for the equation TransportOperatorSplittiong.
static const Input::Type::Record & get_input_type()
The specification of output stream.
virtual void set_velocity_field(const MH_DofHandler &dh) override
void next_time()
Proceed to the next time according to current estimated time step.
static std::shared_ptr< OutputTime > create_output_stream(const std::string &equation_name, const Input::Record &in_rec, std::string unit_str)
This method delete all object instances of class OutputTime stored in output_streams vector...
static string subfields_address()
const RegionDB & region_db() const
static const Input::Type::Record & get_input_type()
Input type for a substance.
TransportOperatorSplitting(Mesh &init_mesh, const Input::Record in_rec)
Constructor.
static Input::Type::Abstract & get_input_type()
Common specification of the input record for secondary equations.
void initialize() override
Basic time management functionality for unsteady (and steady) solvers (class Equation).
static const Type none_type
Mark Type with all bits unset.
#define LogOut()
Macro defining 'log' record of log.
Basic time management class.
void view(const char *name="") const
Class ReactionTerm is an abstract class representing reaction term in transport.
Class Dual_por_exchange implements the model of dual porosity.
static Input::Type::Abstract & get_input_type()
Common specification of the input record for secondary equations.
std::shared_ptr< ReactionTerm > reaction
static constexpr Mask input_copy
#define START_TIMER(tag)
Starts a timer with specified tag.
double cfl_convection
Time restriction due to transport.
std::shared_ptr< Balance > balance_
object for calculation and writing the mass balance to file.
FLOW123D_FORCE_LINK_IN_CHILD(transportOperatorSplitting)
Class representing dual porosity model in transport.
virtual void set_time_governor(TimeGovernor &time)
void update_solution() override
static Input::Type::Abstract & it_abstract_term()
Support classes for parallel programing.
void output_data() override
Write computed fields.
std::shared_ptr< ConcentrationTransportBase > convection
FLOW123D_FORCE_LINK_IN_PARENT(firstOrderReaction)
static const Input::Type::Record & get_input_type()
#define END_TIMER(tag)
Ends a timer with specified tag.
double cfl_reaction
Time restriction due to reactions.
Simple sorption model without dual porosity.
Class for representation SI units of Fields.
static UnitSI & dimensionless()
Returns dimensionless unit.
This file contains classes representing sorption model. Sorption model can be computed both in case t...
virtual ~TransportOperatorSplitting()
Destructor.
static const int registrar
Registrar of class to factory.