## Monte Carlo solution of the ray effect problemUniversity of Michigan, 1986 - Computers |

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ANDY code ANDY input calculate the neutron CJ o CJ CM CM CM CM in CM COCO code and MCREQ distance to collision DOUBLE PRECISION DX=DX-EX EX=XTOL flux along side FLUX IN INTERVAL GO TO 90 HISTORIES STARTED Iff 10 Iff Iff Iff Iff MCREF and MCREQ MCREF Listing MCREQ Results Monte Carlo code MONTE CARLO METHOD neutron scalar flux NEUTRON STRIKE neutron transport NORMALIZED FLUX Normalized Scalar Flux number of histories particle Point-Wise Normalized Scalar Problem for dX=dY=0.1 RANDOM NUMBER Ray Effect Problem relative error RETURN GO Scalar Flux Standard Scalar Flux Values source region SUBROUTINE symmetric Ray Effect test run input three codes top edge total number track length contributions track length estimator UI UI UJ UI UJ UI UJ UJ UJ UJ Ul Ul UJ Vacuum Values Along Side X X X XS2=XS2+XTOL Z=RANF(INTEG