Mean curvature averaged over vesicle area added.
| | |
| | | ts_uint tstep,n; |
| | | ts_char *number; |
| | | struct dirent **list; |
| | | ts_double l1,l2,l3; |
| | | ts_double l1,l2,l3,hbar; |
| | | int count; |
| | | ts_fprintf(stderr,"TRISURF-NG v. %s, compiled on: %s %s.\n", TS_VERSION, __DATE__, __TIME__); |
| | | |
| | | fprintf(stdout, "OuterLoop Volume Area lamdba1 lambda2 lambda3 Nbw/Nb\n"); |
| | | fprintf(stdout, "OuterLoop Volume Area lamdba1 lambda2 lambda3 Nbw/Nb hbar\n"); |
| | | |
| | | |
| | | count=scandir(".",&list,0,alphasort); |
| | |
| | | vesicle_volume(vesicle); |
| | | vesicle_area(vesicle); |
| | | gyration_eigen(vesicle,&l1,&l2,&l3); |
| | | fprintf(stdout,"%d %.17e %.17e %.17e %.17e %.17e %.17e\n",atoi(number),vesicle->volume, vesicle->area,l1,l2,l3, (ts_double)count_bonds_with_energy(vesicle->blist)/(ts_double)vesicle->blist->n), |
| | | hbar=vesicle_meancurvature(vesicle)/vesicle->area; |
| | | fprintf(stdout,"%d %.17e %.17e %.17e %.17e %.17e %.17e %.17e\n",atoi(number),vesicle->volume, vesicle->area,l1,l2,l3, (ts_double)count_bonds_with_energy(vesicle->blist)/(ts_double)vesicle->blist->n,hbar); |
| | | tstep++; |
| | | write_histogram_data(atoi(number), vesicle); |
| | | free(number); |
| | |
| | | vesicle->area=area; |
| | | return TS_SUCCESS; |
| | | } |
| | | |
| | | ts_double vesicle_meancurvature(ts_vesicle *vesicle){ |
| | | // Integrates (H dA) over vesicle area A, where H=(C1+C2)/2. |
| | | // (To be devided by A outside of function) |
| | | ts_double mc; |
| | | ts_uint i; |
| | | mc=0; |
| | | for(i=0;i<vesicle->vlist->n;i++){ |
| | | mc=mc+vesicle->vlist->vtx[i]->curvature; |
| | | } |
| | | return mc/2.0; |
| | | } |
| | |
| | | ts_bool vesicle_free(ts_vesicle *vesicle); |
| | | ts_bool vesicle_volume(ts_vesicle *vesicle); |
| | | ts_bool vesicle_area(ts_vesicle *vesicle); |
| | | ts_double vesicle_meancurvature(ts_vesicle *vesicle); |
| | | #endif |