G-208 Kontinuirana Ab Greda

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GREDA 2 RASPONA ROBOT IZVJEŠTAJ POEC

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1 Level: Name : Standard Level Reference level : --- Maximum cracking : 0,40 (mm) Exp!ure : "#$ #ncrete creep cefficient : % N re!ult! cement cla!! : N #ncrete age (lading mment) : &' (da(!) #ncrete age : )0 ((ear!) Structure cla!! : S& *ualit( a!!urance !(!tem (4+4+$+,(,)- .+&+$($)) /ire re!i!tance cla!! : n re0uirement!2 Beam:G-208 kontinuirana ab greda Number: 12.1 Material properties: #ncrete : #&)1,0 fck % &),00 (M2a)Rectangular !tre!! di!tri3utin 4,+$+5(,)67en!it( : &)0$,,8 (k91m,).ggregate !i:e : $8,0 (mm) Lngitudinal reinfrcement: : ;)00; f(k % )00,00 (M2a)ran!ver!al reinfrcement: : ;)00; f(k % )00,00 (M2a)2.2 Geometry:&+&+$ Span 2!itin L+!upp+ L R+!upp+(m) (m) (m)1 !pan 0"2# $"0# 0"2#Span lengt=: L % ,,,0 (m)Sectin frm 0,00 t ,,0) (m),0,0 x )0,0 (cm)?it=ut left !la3?it=ut rig=t !la3&+&+& Span 2!itin L+!upp+ L R+!upp+(m) (m) (m)2 !pan 0"2# $"8# 0"2#Span lengt=: L % 4,$0 (m)Sectin frm 0,00 t ,,') (m),0,0 x )0,0 (cm)?it=ut left !la3?it=ut rig=t !la3,0,0 x )0,0, @ff!et (A up, - d?n): 0,0 x A0,0 (cm)?it=ut left !la3?it=ut rig=t !la32.$ %al&ulation options: Regulatin f cm3inatin! : EN $BB0:&00& #alculatin! accrding t : EN $BB&-$-$:&004 .#:&00' Sei!mic di!p!itin! : N re0uirement! 2reca!t 3eam : n #ver : 3ttm c % ,,) (cm): !ide c$% ,,) (cm): tp c&% ,,) (cm) #ver deviatin! : #dev % 0,0(cm),#dur % 0,0(cm) #efficient & %0+)0 : lng-term r c(clic lad Met=d f !=ear calculatin! : !trut inclinatin2.' Loads:&+4+$ #ntinuu!:>(pe Nature 2!+ Span f "0 2:0 "$ 2:$ "& 2:& ",(m) (kN1m) (m) (kN1m) (m) (kN1m) (m)di!tri3uted dead lad(Structural) tp $ $,,) 0,00 )4,4) &,,& - - --di!tri3uted !n? tp $ $,)0 0,00 ,,80 &,,& - - - -di!tri3uted ?ind tp $ $,)0 0,00 &,5, &,,& - - - -di!tri3uted Live(#ategr( .) tp $ $,)0 0,00 $$,,8 &,,& - - --di!tri3uted dead lad(Structural) tp & $,,) 0,8' 4&,'0 4,$0 - - --di!tri3uted !n? tp & $,)0 0,8' $,55 4,$0 - - - -di!tri3uted ?ind tp & $,)0 0,8' $,,) 4,$0 - - - -di!tri3uted Live(#ategr( .) tp & $,)0 0,8' B,'8 4,$0 - - --&+4+& #ncentrated:>(pe Nature 2!+ Span f "$ /: /x M( n "&(m) (kN) (kN) (kNCm) (m)cncentrated frce dead lad(Structural) tp $ $,,) &,,& )B,5B - - $ 0,00cncentrated frce !n? tp $ $,)0 &,,& $8,)8 - - $ 0,00cncentrated frce ?ind tp $ $,)0 &,,& ),,B - - $ 0,00cncentrated frce Live(#ategr( .) tp $ $,)0 &,,& $&,$& - - $ 0,00cncentrated frce dead lad(Structural) tp & $,,) 0,8' )B,5B - - $ 0,00cncentrated frce !n? tp & $,)0 0,8' $8,)8 - - $ 0,00cncentrated frce ?ind tp & $,)0 0,8' ),,B - - $ 0,00cncentrated frce Live(#ategr( .) tp & $,)0 0,8' $&,$& - - $ 0,00f - lad factr2.# %al&ulation results:2.#.1 (ea&tions!upport )1#a!e /x /: Mx M((kN) (kN) (kNCm) (kNCm)D.LL$ 0,00 54,48 - -0,00SN@D$ 0,00 4,B& - 0,00DEN7$ 0,00 ,,5, - 0,00LL$ 0,00 $),)4 - 0,00D.LL& 0,00 -$,,50 - 0,00SN@D& 0,00 -0,)5 - 0,00DEN7& 0,00 -0,4, - 0,00LL& 0,00 -,,$8 - 0,00D.LL, 0,00 $,,0& - 0,00SN@D, 0,00 ,,80 - 0,00DEN7, 0,00 $,$5 - 0,00LL, 0,00 &,84 - 0,00D.LL4 0,00 -),&& - 0,00SN@D4 0,00 -$,4) - 0,00DEN74 0,00 -0,45 - 0,00LL4 0,00 -$,08 - 0,00!upport )2#a!e /x /: Mx M((kN) (kN) (kNCm) (kNCm)D.LL$ 0,00 )5,'8 - -0,00SN@D$ 0,00 ,,', - 0,00DEN7$ 0,00 &,B0 - 0,00LL$ 0,00 $&,05 - -0,00D.LL& 0,00 '),5' - 0,00SN@D& 0,00 ,,)) - -0,00DEN7& 0,00 &,5$ - -0,00LL& 0,00 $B,58 - 0,00D.LL, 0,00 )0,)B - -0,00SN@D, 0,00 $4,0$ - 0,00DEN7, 0,00 4,)8 - 0,00LL, 0,00 $0,&) - 0,00D.LL4 0,00 )B,,0 - -0,00SN@D4 0,00 $8,4& - -0,00DEN74 0,00 ),,) - -0,00LL4 0,00 $&,0& - -0,00!upport )$#a!e /x /: Mx M((kN) (kN) (kNCm) (kNCm)D.LL$ 0,00 -8,00 - 0,00SN@D$ 0,00 -0,40 - 0,00DEN7$ 0,00 -0,,0 - 0,00LL$ 0,00 -$,&) - 0,00D.LL& 0,00 54,,0 - -0,00SN@D& 0,00 ,,05 - -0,00DEN7& 0,00 &,,4 - -0,00LL& 0,00 $5,$& - -0,00D.LL, 0,00 -,,'& - 0,00SN@D, 0,00 -$,08 - 0,00DEN7, 0,00 -0,,4 - -0,00LL, 0,00 -0,55 - 0,00D.LL4 0,00 ),5$ - 0,00SN@D4 0,00 $,)' - 0,00DEN74 0,00 0,)& - -0,00LL4 0,00 $,$8 - -0,002.#.2 *nternal +or&es in ,L!Span Mt max+ Mt min+ Ml Mr *l *r Nmax+ Nmin+(kNCm) (kNCm) (kNCm) (kNCm) (kN) (kN)2$ '),$, -,,,84 ,8,,' -$)&,,$ $$4,B0 -&0',BB 0,00 0,002& $08,80 -8,50 -$45,'4 ,8,4& &4,,)5 -$$5,&0 0,00 0,000 1 2 3 4 5 6 720 015 010 0500- 50- 10 0- 15 0- 20 0- 25 0- 30 0[ m][ k N* m]B end i ngM oment UL S : M M r M t M c0 1 2 3 4 5 6 7- 40 0- 30 0- 20 0- 10 0010 020 030 040 0[ m][ k N]S e! r " or c eUL S : # #r #c $ % t i r r &' % ( #c $ t ot ! ) (2.#.$ *nternal +or&es in !L!Span Mt max+ Mt min+ Ml Mr *l *r Nmax+ Nmin+(kNCm) (kNCm) (kNCm) (kNCm) (kN) (kN)2$ 8$,08 0,00 $0,00 -$$0,,4 '&,5' -$)$,0' 0,00 0,002& 58,'& 0,00 -$05,8) -$$,)& $5),B' -'4,8& 0,00 0,000 1 2 3 4 5 6 7* 06 04 02 00- 2 0- 4 0- 6 0- * 0- 1 0 0- 1 2 0[ m][ k N* m]B end i ngM ome nt S L S : M + r M r + r M c + r M c + , ' M + , ' M r + , '0 1 2 3 4 5 6 7- 2 0 0- 1 5 0- 1 0 0- 5 005 01 0 01 5 02 0 0[ m][ k N]S e! r " or c eS L S : #+ r #r + r #+ , ' #r + , '0 1 2 3 4 5 6 7- 1- 0 - 500 - 511 - 52[ m][ 0 - 1 .]S t r ! i n% : /t /c B0 1 2 3 4 5 6 7- 2 0 0- 1 0 001 0 02 0 03 0 04 0 0[ m][ M 0! ]S t r e% % e% : /t % /c % B %2.#.' (e-uired rein+or&ement areaSpan Span (cm&) Left !upprt (cm&) Rig=t !upprt (cm&)3ttm tp 3ttm tp 3ttm tp2$ 4,,B 0,00 $,5' 0,8& 0,00 ',$52& ),)5 0,00 0,00 5,B0 $,55 0,550 1 2 3 4 5 6 71 51 05051 01 52 02 53 0[ m][ c m2 ]1ei n2 or c e ment /r e ! 2 o r B end i ng: /3 t /3 r /3 mi n /d e% /4er +gr o% %0 1 2 3 4 5 6 72 52 01 51 05051 01 52 02 5[ m][ c m2 5m]1ei n2 or c e ment /r e ! 2 o r S e ! r : /% t /% t + % t r &t /% r /% 6! ng2.5.5 Defection and crackingwt(QP) Total due to quasi-permanent combinationwt(QP)dopAllowable due to quasi-permanent combinationDwt(QP) Deflection increment from the quasi-permanent load combination after erecting a structure.Dwt(QP)dop Admissible deflection increment from the quasi-permanent load combination after erecting a structure.wk - width of perpendicular crackspan wt(QP) wt(QP)dopDwt(QP) Dwt(QP)dop wk(cm) (cm) (cm) (cm) (mm)P! "#$ !#% "#" "#" "#$P$ "#& !#& "#! "#" "#%2.6 Theoretical results - detailed results:2.6.1 P1 : Span from !25 to "!" #m$ULS SLS/3%ci%%! M m!7- M min- M m!7- M min- / 3ottom / to'$m( $kN*m( $kN*m( $kN*m( $kN*m( $cm2( $cm2(0825 3683* -12877 10800 -9816 187* 08620846 52875 -12861 26840 0800 2864 08620879 72877 0800 45826 0800 3873 08001812 *287* 0800 568*1 0800 4827 08001845 *5813 0800 61806 0800 4839 0800187* *3857 0800 57896 0800 4831 08002811 75862 -3807 47869 0800 38** 08152844 5*817 -33864 31822 0800 2890 18662877 27853 -**856 0800 -3*8*9 183* 48573810 0800 -1518*10800 -*1801 0800 *8143830 0800 -1528310800 -1108340800 *817ULS SLS/3%ci%%! N m!7- N min- N m!7- N min-$m( $kN( $kN( $kN( $kN(0825 0800 0800 0800 08000846 0800 0800 0800 08000879 0800 0800 0800 08001812 0800 0800 0800 08001845 0800 0800 0800 0800187* 0800 0800 0800 08002811 0800 0800 0800 08002844 0800 0800 0800 08002877 0800 0800 0800 08003810 0800 0800 0800 08003830 0800 0800 0800 0800ULS SLS/3%ci%%! # m!7- # m!7- !2'$m( $kN( $kN( $mm(0825 114890 *287* 0800846 9582* 6*85* 0800879 64849 46826 0811812 33893 24809 0821845 -12831 -*854 082187* -41865 -298*9 0822811 -72891 -52853 0812844 -104849-7583* 0802877 -20*899-15180*0803810 -20*899-15180*0813830 -20*899-15180*0822.6.2 P2 : Span from "!55 to %!& #m$ULS SLS/3%ci%%! M m!7- M min- M m!7- M min- / 3ottom / to'$m( $kN*m( $kN*m( $kN*m( $kN*m( $cm2( $cm2(3855 0800 -1478*40800 -1078650800 789038*4 *81* -12*8940800 -60874 0841 68*24825 35890 -46803 11805 -9804 1874 28244866 70864 -6870 40819 0800 3861 08335807 93869 0800 61825 0800 48*6 0800584* 104834 0800 73852 0800 5844 080058*9 106860 0800 768*2 0800 5857 08006830 102870 0800 71832 0800 5835 08006871 **860 0800 5686* 0800 485* 08007812 618*7 -11836 32891 0800 3813 08567840 36842 -15899 10803 -11852 1877 0877ULS SLS/3%ci%%! N m!7- N min- N m!7- N min-$m( $kN( $kN( $kN( $kN(3855 0800 0800 0800 080038*4 0800 0800 0800 08004825 0800 0800 0800 08004866 0800 0800 0800 08005807 0800 0800 0800 0800584* 0800 0800 0800 080058*9 0800 0800 0800 08006830 0800 0800 0800 08006871 0800 0800 0800 08007812 0800 0800 0800 08007840 0800 0800 0800 0800ULS SLS/3%ci%%! # m!7- # m!7- !2'$m( $kN( $kN( $mm(3855 243857 17589* 08238*4 243857 17589* 0814825 124855 90805 0804866 93876 67877 0805807 62896 4584* 082584* 32854 23845 08358*9 -5805 -3837 0836830 -34872 -24890 0826871 -65800 -468*4 0827812 -95879 -69813 0807840 -117820-*4862 0802.% 'einforcement:2.%.1 P1 : Span from !25 to "!" #m$(ongitudinal reinforcement:' 3ottom $B500B(4 14 ) : 2894 2rom 0804to 2897' %&''ort $B500B(6 1* ) : 5834 2rom 0804to 583*2 1* ) : 4820 2rom 0804to 0804Surface reinforcement #)5)$:2 10 ) : 3823 2rom 0816to3839Trans*ersal reinforcement:' m!in $B500B(%tirr&'% 23* ) : 1844e : 1*0804 ; 2*0815 ; 9*0820 ; 11*080* $m(2 10 ) : 3823e : 1*-0809 $m('in% 23* ) : 1844e : 1*0804 ; 2*0815 ; 9*0820 ; 11*080* $m(2 10 ) : 3823e : 1*-0809 $m(2.%.2 P2 : Span from "!55 to %!& #m$(ongitudinal reinforcement:' 3ottom $B500B(4 14 ) : 2819 2rom 2841to 48604 14 ) : 385* 2rom 4804to 7862' !%%em3)ing $to'( $B500B( 2 10 ) : 2879 2rom 4849to 782*' %&''ort $B500B(4 16 ) : 1837 2rom 6824to 78621 16 ) : 3875 2rom 7861to 7861Surface reinforcement #)5)$:2 10 ) : 4803 2rom 3846to7849Trans*ersal reinforcement:' m!in $B500B(%tirr&'% 35* ) : 1844e : 1*0802 ; 1**0805 ; 2*081* ; 9*0820 ; 5*0815 $m(2 10 ) : 4803e : 1*-0809 $m('in% 35* ) : 1844e : 1*0802 ; 1**0805 ; 2*081* ; 9*0820 ; 5*0815 $m(2 10 ) : 4803e : 1*-0809 $m(" +aterial sur*e,:'