2 |
|
.\" Print using the -ms macro package |
3 |
|
.DA 07/10/2016 |
4 |
|
.LP |
5 |
< |
.tl """Copyright \(co 2016 Regents, University of California |
5 |
> |
.tl """Copyright \(co 2017 Regents, University of California |
6 |
|
.sp 2 |
7 |
|
.TL |
8 |
|
The |
961 |
|
The first modifier will also be used to shade the area leaving the |
962 |
|
antimatter volume and entering the regular volume. |
963 |
|
If mod1 is void, the antimatter volume is completely invisible. |
964 |
< |
Antimatter does not work properly with the material type "trans", |
965 |
< |
and multiple antimatter surfaces should be disjoint. |
964 |
> |
If shading is desired at antimatter surfaces, it is important |
965 |
> |
that the related volumes are closed with outward-facing normals. |
966 |
> |
Antimatter surfaces should not intersect with other antimatter boundaries, |
967 |
> |
and it is unwise to use the same modifier in nested antimatter volumes. |
968 |
|
The viewpoint must be outside all volumes concerned for a correct |
969 |
|
rendering. |
970 |
|
.NH 3 |
1569 |
|
in Lausanne, Switzerland. |
1570 |
|
.NH 1 |
1571 |
|
References |
1572 |
+ |
.LP |
1573 |
+ |
Lee, Eleanor S., David Geisler-Moroder, Gregory Ward, |
1574 |
+ |
``Modeling the direct sun component in buildings using matrix |
1575 |
+ |
algebraic approaches: Methods and validation,'' |
1576 |
+ |
.I Solar Energy, |
1577 |
+ |
vol. 160, 15 January 2018, pp 380-395. |
1578 |
|
.LP |
1579 |
|
Ward, G., M. Kurt & N. Bonneel, |
1580 |
|
``Reducing Anisotropic BSDF Measurement to Common Practice,'' |