2022-10-20 23:24:08 +00:00
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/*------------------------------- phasicFlow ---------------------------------
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O C enter of
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O O E ngineering and
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O O M ultiscale modeling of
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OOOOOOO F luid flow
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------------------------------------------------------------------------------
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Copyright (C): www.cemf.ir
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email: hamid.r.norouzi AT gmail.com
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------------------------------------------------------------------------------
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Licence:
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This file is part of phasicFlow code. It is a free software for simulating
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granular and multiphase flows. You can redistribute it and/or modify it under
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the terms of GNU General Public License v3 or any other later versions.
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phasicFlow is distributed to help others in their research in the field of
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granular and multiphase flows, but WITHOUT ANY WARRANTY; without even the
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implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
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-----------------------------------------------------------------------------*/
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2022-12-09 22:02:54 +00:00
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#ifndef __AdamsBashforth5_hpp__
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#define __AdamsBashforth5_hpp__
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2022-12-09 22:02:54 +00:00
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#include "integration.hpp"
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#include "pointFields.hpp"
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namespace pFlow
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{
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struct AB5History
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{
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realx3 dy1_={0,0,0};
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realx3 dy2_={0,0,0};
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realx3 dy3_={0,0,0};
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realx3 dy4_={0,0,0};
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2022-12-09 22:02:54 +00:00
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TypeInfoNV("AB5History");
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};
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INLINE_FUNCTION
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iIstream& operator>>(iIstream& str, AB5History& ab5)
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{
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str.readBegin("AB5History");
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str >> ab5.dy1_;
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str >> ab5.dy2_;
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str >> ab5.dy3_;
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str >> ab5.dy4_;
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str.readEnd("AB5History");
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str.check(FUNCTION_NAME);
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return str;
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}
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INLINE_FUNCTION
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iOstream& operator<<(iOstream& str, const AB5History& ab5)
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{
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str << token::BEGIN_LIST << ab5.dy1_
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<< token::SPACE << ab5.dy2_
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<< token::SPACE << ab5.dy3_
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<< token::SPACE << ab5.dy4_
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<< token::END_LIST;
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str.check(FUNCTION_NAME);
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return str;
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}
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class AdamsBashforth5
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:
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public integration
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{
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protected:
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using HistoryFieldType = pointField<VectorSingle,AB5History>;
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// this is a device
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HistoryFieldType& history_;
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using rpIntegration = Kokkos::RangePolicy<
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DefaultExecutionSpace,
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Kokkos::Schedule<Kokkos::Static>,
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Kokkos::IndexType<int32>
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>;
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public:
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// type info
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TypeInfo("AdamsBashforth5");
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//// - Constructors
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AdamsBashforth5(
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const word& baseName,
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repository& owner,
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const pointStructure& pStruct,
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const word& method);
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virtual ~AdamsBashforth5()=default;
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// - add a virtual constructor
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add_vCtor(
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integration,
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AdamsBashforth5,
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word);
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//// - Methods
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bool predict(
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real UNUSED(dt),
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realx3Vector_D & UNUSED(y),
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realx3Vector_D& UNUSED(dy)) override;
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bool correct(real dt,
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realx3Vector_D & y,
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realx3Vector_D& dy) override;
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2022-10-25 16:00:57 +00:00
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bool setInitialVals(
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const int32IndexContainer& newIndices,
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const realx3Vector& y) override;
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bool needSetInitialVals()const override
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{
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return false;
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}
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uniquePtr<integration> clone()const override
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{
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return makeUnique<AdamsBashforth5>(*this);
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}
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bool intAll(real dt,
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realx3Vector_D& y,
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realx3Vector_D& dy,
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range activeRng);
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template<typename activeFunctor>
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bool intRange(real dt,
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realx3Vector_D& y,
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realx3Vector_D& dy,
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activeFunctor activeP );
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};
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template<typename activeFunctor>
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bool pFlow::AdamsBashforth5::intRange(
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real dt,
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realx3Vector_D& y,
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realx3Vector_D& dy,
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activeFunctor activeP )
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{
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auto d_dy = dy.deviceVectorAll();
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auto d_y = y.deviceVectorAll();
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auto d_history = history_.deviceVectorAll();
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auto activeRng = activeP.activeRange();
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Kokkos::parallel_for(
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"AdamsBashforth5::correct",
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rpIntegration (activeRng.first, activeRng.second),
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LAMBDA_HD(int32 i){
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if( activeP(i))
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{
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d_y[i] += dt*(
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static_cast<real>(1901.0 / 720.0) * d_dy[i]
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- static_cast<real>(2774.0 / 720.0) * d_history[i].dy1_
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+ static_cast<real>(2616.0 / 720.0) * d_history[i].dy2_
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- static_cast<real>(1274.0 / 720.0) * d_history[i].dy3_
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+ static_cast<real>( 251.0 / 720.0) * d_history[i].dy4_
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);
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d_history[i] = {d_dy[i] ,d_history[i].dy1_, d_history[i].dy2_, d_history[i].dy3_};
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}
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});
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Kokkos::fence();
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return true;
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}
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} // pFlow
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2022-12-09 22:02:54 +00:00
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#endif //__integration_hpp__
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