add docstring and fix evalResidual
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4 changed files with 14 additions and 7 deletions
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@ -79,6 +79,10 @@ public:
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vector_fp& mobi_e_fixed);
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protected:
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/*!
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* This function overloads the original function. The residual function
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* of Poisson's equation is added.
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*/
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virtual void evalResidual(double* x, double* rsd, int* diag,
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double rdt, size_t jmin, size_t jmax);
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virtual void updateTransport(double* x, size_t j0, size_t j1);
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@ -242,9 +242,13 @@ protected:
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m_kin->getNetProductionRates(&m_wdot(0,j));
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}
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virtual void updateProperties(size_t jg, double* x, double* rsd, int* diag,
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double rdt, size_t jmin, size_t jmax);
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//! Update the properties (thermo, transport, and diffusion flux).
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//! This function is called in eval after the points which need
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//! to be updated are defined.
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virtual void updateProperties(size_t jg, double* x, size_t jmin, size_t jmax);
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//! Evaluate the residual function. This function is called in eval
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//! after updateProperties is called.
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virtual void evalResidual(double* x, double* rsd, int* diag,
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double rdt, size_t jmin, size_t jmax);
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@ -547,10 +547,10 @@ class IonFlame(FreeFlame):
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csvfile = open(filename, 'w')
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writer = _csv.writer(csvfile)
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writer.writerow(['z (m)', 'u (m/s)', 'V (1/s)', 'T (K)',
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'phi (V)', 'E (V/m)', 'rho (kmol/m3)'] + self.gas.species_names)
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'phi (V)', 'E (V/m)', 'rho (kg/m3)'] + self.gas.species_names)
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for n in range(self.flame.n_points):
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self.set_gas_state(n)
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writer.writerow([z[n], u[n], V[n], T[n], phi[n], E[n], self.gas.density_mole] +
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writer.writerow([z[n], u[n], V[n], T[n], phi[n], E[n], self.gas.density] +
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list(getattr(self.gas, species)))
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csvfile.close()
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if not quiet:
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@ -240,12 +240,11 @@ void StFlow::eval(size_t jg, doublereal* xg,
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jmax = std::min(jpt+1,m_points-1);
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}
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updateProperties(jg, x, rsd, diag, rdt, jmin, jmax);
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updateProperties(jg, x, jmin, jmax);
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evalResidual(x, rsd, diag, rdt, jmin, jmax);
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}
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void StFlow::updateProperties(size_t jg, double* x, double* rsd, int* diag,
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double rdt, size_t jmin, size_t jmax)
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void StFlow::updateProperties(size_t jg, double* x, size_t jmin, size_t jmax)
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{
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// properties are computed for grid points from j0 to j1
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size_t j0 = std::max<size_t>(jmin, 1) - 1;
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