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@ARTICLE{Lawson:202197,
      author       = {Lawson, K. D. and Groth, M. and Belo, P. and Brezinsek, S.
                      and Corrigan, G. and Czarnecka, A. and Delabie, E. and
                      Drewelow, P. and Harting, D. and Książek, I. and Maggi, C.
                      F. and Marchetto, C. and Meigs, A. G. and Menmuir, S. and
                      Stamp, M. F. and Wiesen, S.},
      title        = {{I}mproved {EDGE}2{D}-{EIRENE} simulations of {JET}
                      {ITER}-like wall {L}-mode discharges utilising poloidal
                      {VUV}/visible spectral emission profiles},
      journal      = {Journal of nuclear materials},
      volume       = {463},
      issn         = {0022-3115},
      address      = {Amsterdam [u.a.]},
      publisher    = {Elsevier Science},
      reportid     = {FZJ-2015-04486},
      pages        = {582 - 585},
      year         = {2015},
      abstract     = {A discrepancy in the divertor radiated powers between
                      EDGE2D-EIRENE simulations, both with and without drifts, and
                      JET-ILW experiments employing a set of NBI-heated L-mode
                      discharges with step-wise density variation is investigated.
                      Results from a VUV/visible poloidally scanning spectrometer
                      are used together with bolometric measurements to determine
                      the radiated power and its composition. The analysis shows
                      the importance of D line radiation in contributing to the
                      divertor radiated power, while contributions from D
                      radiative recombination are smaller than
                      expected.Simulations with W divertor plates underestimate
                      the Be content in the divertor, since no allowance is made
                      for Be previously deposited on the plates being re-eroded.
                      An improved version of EDGE2D-EIRENE is used to test the
                      importance of the deposited layer in which the sputtering
                      yield from supposed pure Be divertor plates is reduced to
                      match the spectroscopic signals, while keeping the
                      sputtering yield for the Be main chamber walls unchanged.},
      cin          = {IEK-4},
      ddc          = {530},
      cid          = {I:(DE-Juel1)IEK-4-20101013},
      pnm          = {174 - Plasma-Wall-Interaction (POF3-174)},
      pid          = {G:(DE-HGF)POF3-174},
      typ          = {PUB:(DE-HGF)16},
      UT           = {WOS:000358467200121},
      doi          = {10.1016/j.jnucmat.2014.11.111},
      url          = {https://juser.fz-juelich.de/record/202197},
}