Finite Volume Solver  prototype
A framework to build finite volume solvers for the AG Klein at the Freie Universität Berlin.
Cone.hpp
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1 // Copyright (c) 2018 Maikel Nadolski
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20 
21 #ifndef FUB_GEOMETRY_CONE_HPP
22 #define FUB_GEOMETRY_CONE_HPP
23 
24 #include <array>
25 
26 namespace fub {
27 
28 class ConeIF {
29 public:
30  ConeIF() = default;
31  ConeIF(const std::array<double, 3>& point, double base_radius, double height,
32  bool inside = true);
33 
34  double ComputeDistanceTo(const std::array<double, 3>& x) const noexcept;
35 
36 private:
37  std::array<double, 3> base_point_{0.0};
38  double base_radius_{1.0};
39  double height_{1.0};
40  bool inside_{true};
41 };
42 
43 } // namespace fub
44 
45 #endif
Definition: Cone.hpp:28
double height_
Definition: Cone.hpp:39
std::array< double, 3 > base_point_
Definition: Cone.hpp:37
double ComputeDistanceTo(const std::array< double, 3 > &x) const noexcept
ConeIF()=default
ConeIF(const std::array< double, 3 > &point, double base_radius, double height, bool inside=true)
bool inside_
Definition: Cone.hpp:40
double base_radius_
Definition: Cone.hpp:38
The fub namespace.
Definition: AnyBoundaryCondition.hpp:31