# | Line 35 | Line 35 | |
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35 | * [1] Meineke, et al., J. Comp. Chem. 26, 252-271 (2005). | |
36 | * [2] Fennell & Gezelter, J. Chem. Phys. 124, 234104 (2006). | |
37 | * [3] Sun, Lin & Gezelter, J. Chem. Phys. 128, 24107 (2008). | |
38 | < | * [4] Vardeman & Gezelter, in progress (2009). |
38 | > | * [4] Kuang & Gezelter, J. Chem. Phys. 133, 164101 (2010). |
39 | > | * [4] , Stocker & Gezelter, J. Chem. Theory Comput. 7, 834 (2011). * |
40 | * | |
40 | – | * |
41 | * Triangle.cpp | |
42 | * | |
43 | * Purpose: Provide basic triangle object for OpenMD | |
# | Line 92 | Line 92 | Vector3d Triangle::computeCentroid(){ | |
92 | ||
93 | Vector3d Triangle::computeCentroid(){ | |
94 | HaveCentroid_ = true; | |
95 | < | centroid_ = (vertices_[0] + vertices_[1] + vertices_[2])/3.0; |
95 | > | centroid_ = (vertices_[0] + vertices_[1] + vertices_[2])/RealType(3.0); |
96 | return centroid_; | |
97 | } | |
98 | ||
# | Line 126 | Line 126 | Mat3x3d Triangle::hydro_tensor( | |
126 | const Vector3d& rj2, | |
127 | RealType s, RealType viscosity){ | |
128 | ||
129 | < | Vector3d v2 = (rj0 + rj1 + rj2)/3.0; // sub-centroid |
129 | > | Vector3d v2 = (rj0 + rj1 + rj2) / RealType(3.0); // sub-centroid |
130 | Vector3d dr = ri - v2; // real centroid to sub-centroid | |
131 | < | RealType l2 = 1.0/dr.lengthSquare(); |
131 | > | RealType l2 = RealType(1.0)/dr.lengthSquare(); |
132 | ||
133 | Mat3x3d G; | |
134 | < | G = (SquareMatrix3<RealType>::identity() + outProduct(dr,dr)*l2)*sqrt(l2); |
134 | > | G = (SquareMatrix3<RealType>::identity() + outProduct(dr,dr)*l2)*RealType(sqrt(l2)); |
135 | ||
136 | G *= 0.125/3.14159285358979; | |
137 | G *= s/viscosity; |
– | Removed lines |
+ | Added lines |
< | Changed lines |
> | Changed lines |