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@TECHREPORT{Plambeck:420599,
author = {Plambeck, Nils},
title = {{V}acuum {S}ystem {R}elated {S}imulations for {PETRA} {IV}
{U}sing {N}umerical and {M}onte-{C}arlo {M}ethods},
number = {DESY-M-19-01},
reportid = {PUBDB-2019-01604, DESY-M-19-01},
pages = {43},
year = {2019},
note = {als restricted belassen, soll nicht 'Open Access' sein
.Vielen Dank, Christel Övermann},
abstract = {This report summarizes vacuum system related calculations
and simulations that are performed with respect to a
conceptional design of PETRA IV. With assuming simple
vacuumchamber geometries comparable to the design approach
at MAX IV it addresses several key aspects of a conceptional
design including the synchrotron radiation induced power
load on vacuum chambers and other specific components,
outgassing from photon stimulated desorption, pressure
distributions, conditioning behavior and the saturation of
dumping elements. For numerical calculations the
corresponding theoretical model is explained in detail. It
is also validated using Monte-Carlo methods. The theoretical
model is limited with respect to the complexity of chamber
geometries and the consideration of photon scattering.
Additional Monte-Carlo simulations are therefore performed
for specific topics.},
cin = {MVS / PETRA III},
cid = {I:(DE-H253)MVS-20120731 / $I:(DE-H253)PETRA_III-20150811$},
pnm = {631 - Accelerator R $\&$ D (POF3-631)},
pid = {G:(DE-HGF)POF3-631},
experiment = {EXP:(DE-H253)PETRAIII(machine)-20150101},
typ = {PUB:(DE-HGF)29 / PUB:(DE-HGF)15},
doi = {10.3204/PUBDB-2019-01604},
url = {https://bib-pubdb1.desy.de/record/420599},
}