[Seite 1]
STK
A WT 109.28 109.38 STK
Bel KTS STK T W KTS 109.34 KTS KTS KTS KTS KTS KTS KTS Bel Bel 109.13Bel Bel Bel Bel KTS Bel Bel Bel Bel Bel Bel Bel Bel TW ³
KTS
W 109.00 T 109.00
108.81 108.73
108.83 108.96
108.96
108.80 S p litt/ 107.63
108.86 108.74 108.26 W T STK
KTS
108.87 KTS STK
108.86 108.07 108.50 1
1 0 0 8 8
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3 0
108.49 108.30
KTS STK
STK 108.96
5
W T 108.96 108.25 KTS 108.89 108.19 STK 108.19 108.85 KTS
108.51 107.80
108.63 108.87 108.54 107.74 107.75 KTS W KTS KTS STK 108.82 108.76 T KTS 107.88 107.69 107.99 KTS 13 KTS STK KTS STK STK STK STK 107.56 107.62 107.59 108.01 Bel Bel Bel Bel Bel Bel 107.96 2x0.25 KTS Bel 8.0 108.88 108.87 107.65 107.89 107.79 107.85 108.85 KTS W 108.85 WT T 107.68 S 1.0 107.40 p litt/ 107.68 W Bel 18.0 107.68 107.46 107.61 Bel w KTS 107.53 107.61 W leB 107.84 T W 107.52 w 107.54 107.58 107.92 107.87 107.72 107.88 107. 1 9 0 4 7.87 108.75 108.77 KTS WT Bel WT leB1 WT 08.97 108.92 WT BSP 107.52 107.80 107.87 107.79 BSP W leB 107.38 107.48 W KTS 107.72 T 107.51 0.2 W KTS leB leB 107.63 107.85 5.0 107.89 107.79 107.89 108.82 KTS leB 107.71 T o w 108.83 107.68 107.80 r L = 4 m 107.91 107.87 107.74 BSP w w1 1 0 0 7 1 1 7 . 0 8 0 . 7 1 8 6 7 . 0 6 8 .78 6 .787 107.90 KTS leB leB 0.4 0 6 . . 2 0 5 w 7.0 107.94 108.86 107.88 107.94 W leB 108.88 3x0.25 107.81 107.86 107.64 9.0 108.98 w 107.50 107.62 10 1 7 0 .9 7 0 .87 107.93 107.82 BS1P07. 1 8 0 2 7.813 1 0 0 8 8 .0 .0 5 5 W 108.98 leB 107.51 0.25 BSP 107.82 5.0 107.79 0.1 107.86 w 107.88 107.73 3.0 179 107.88 Bel 107.59 107.73 0.4 107.60 107.55 107.91 107.76 107.73 107.7 w 0 107.70 Bel 8.0 107.61 107.69 107.70 w leB 107.84 107.86 107.71 107.69BSP 109.07 0.2 0.1 109.06 4.0 107.79 107.70 3.0 107.58 107.70 108.00 109.07 leB 107.76 BSP 107.72 w B 107.84 107.76 0.7 2 107.76 w 10 1 7 0 .7 7 9 .76 107.87 10 1 7 0 . 7 8 . 7 88 leB 10.0 107.47 107.86 107.84 107.77 107.88 leB 108 1 .9 0 1 8.92 107.81 107.90 leB 107.90 109.17 107.63 OE 107.72 107.89 6x0.15 109.12 leB 107.63 6.0 107.29 107.94 107.91 leB 107.66 107.88 107.89 0.1 107.76 107.91 3.0 Tor L=4m leB 107.59 107.42 107.96 107.82 107.91 0.4 0.6 107.92 9.0 10.0 108.04 107.98 109.15 leB 107.59 107.33 107.84 108.06 108.02 109.09 107.54 107.54 107.95 Splitt/ 108.04 107.76 108.12 4 108.08 0.6 107.77 107.80 10.0 107.46 leB 108.19 108.83 107.77 107.59 107.55 107.55 107.82 108.82 108.05 107.94 Bel 107.76 107.53 107.60 108.95 107.48 107.87 108.12 0 5 . . 2 0 5 leB 108.98 107.84 107.63 107.61 107.61 Acker 108.17 leB 107.54
107.70
107.49 107.60 108.06 0.3 109.94 110077..6644
e u g 7.0 107.90 F 107.79 107.59 107.83 107.86
107.93
10 1 7 0 .9 7 6 .91Tor L=4,9m 107.93 109.96
107 1
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0
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4
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108.93 107.59
107.87
107.91 107.94
108.98 M500 0.2 107.58 107.84 5.0 107.51 107.55
107.80 108.95 107.81 107.82 w
107.81 107.69 107.76 108.00 107.70 107.72 107.99 107.72 W
107.95 107.86 107.68 107.41 107.95 OE 107.82 180 107.89 0.3 181 8.0 107.43
107.35 107.56 3 107.38
TW TW WA AW AW AW TW WA WA WA WT WA WA WT WA WA
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AW Anschlusspunkt prov. AW AW AW AW AW AW AW TAWW-PrAoW visAWoriuAWm (aAWlterAWnati AW v, w AW enn AW ZBL AW C A a W nitz neu in H19862 AW
BK 5-19 + DPH 5-19 Betrieb) oberirdisch Eigenwasserversorgung PN10 AW
WA WA WA WA PE-HD 110x10 SDR11 isoliert und mit Begleitheizung WA WA
Anbindung L=40m mit Rohrbrücke über HWS-Trasse WA 1,30 WA WA
WA
2 Leerrohre PE110 0 KRB 1-26 3
, Ersatzneubau TW-Eigenversorgung 1 T=6m (davon 1 Reserve); ∑L=60m X
SM-tlE WW PE-HD 110x10 SDR11 L=30m
47970098 A7 MJ DN150 SM-tlE R G O O K K 1 1 0 0 6 8 . . 9 2 7 9 (wärmegedämmt) Grundfos Typ Fö S r 1 d 0 e 7 rl 4 e H is 6 t B u 5 n 1 g 1 7 Z 8 0 l 0 / 1 s WA
A6 11.3° Förderhöhe 22m LEGENDE GOK 108.27
ROK 106.76 B2 90.0° DN110 WA SM-tlE X R G O O K K 1 1 0 0 6 7 . . 3 4 5 0 SM-tlE PE18 7 0 .28 m F A a u l s ls t r K an e s lle p r o w rt a d n e d r d R ur o c h h r b e r u a c u h s G G 1 e b fü ä r ude WA WA WA WA WA WA WA WA X F M F K K -1 -1 4 4 5 5 ° ° D D N N 8 8 0 0 0 0 D M o u p ff p e e n l b fl o a g n e sc n h 4 b 5 o ° g m en it 4 N 5 e ° n m nw it e N it e e n D nw N e 8 i 0 te 0 DN800 11.75 m SM-tlE 2x2 Leerrohre PE110 PE110 (DA20 A 0 PU = -Sch 1 aum 5 ) m² benötigt wird --> Berücksichtigung der FFR-1 1000 x 800 Doppelflansch-Übergangsstück zentrisch von DN1000 auf DN800 X B1 90.0° DN110 Elt-MESlt-M El S t-M S S M-tlE Elt-MESlt-MS SM-tlE SM-tlE R G A O 5 O K 1 K 1 1 1 . S 3 0 0 M- ° 6 8 tlE . . 5 1 8 0 (davon 2 Reserve); ∑L=100m R G O O K K 1 1 0 0 6 7 . . 1 3 2 8 )m u a h cS -U P m 1 in . 1 V 7 o .0 rb 3 e .0 m 2 e b rk e u s n c g h r d ie e b s e L n V en -B L e e re is i t c u h n s gen WA WA WA WA WA WA WA WA WA WA WA WA K T- - 1 1 8 8 0 0 0 0 x 200 D Ab o s p p p e e r lf r l k a la n p sc p h e s D üc N k 8 m 00 it m Fl i a t n U s m ch fa a h b r z u w ng eig (DN1 = 800 | DN2 = 200) Elt-MS E E l l t t - - M M S S Elt-M E S l 1 t E - T MS 8 r W E E s lt 0 - lt M - E M S l S t- a M E - l R M x i S t E -M lt n - S E M H l t S t- 1 M S z S ü M n W -tl a 6 E n c e E E lt- u l , t M - E M e k - S lt 4 S n -M E B S p E lt- l b t u M - E M S lt S -M t S S aS a M b l -tlE e u u D a E E lt l - i t E M -M w l t S t u - S M R E S A u E lt lt - - E M M l e S t S -M n 1 S S S M-t r lE g 1 k T E E l l t E t - - M M lt- S S M P L 4 S E E C l l t t E - - M M lt- = S S x M E S S M a -tl 2 E 6 - n E E H m 3 l l E t t - - l M M t-M S i S S m E t ED lt l E - t S M - z l M M t- S - M t S l S E S M-tlE E E lt- lM E t- l MS t-M S S K S E M E l E t - l - a t t l M - l t E M -M S b S S S e M- l tlE k a ElEt n - E Mlt- lt SM a -M S S M S l E - E tl E l E l t t - l - t M M -M S S S SM-tlE EltE- E Ml S t lt -S M - M M - S t S lE E E E l l t t - l - t M - M M S S S SM-tlE E S lt-E E M M l l - t t t S - - l M E M S S E E E lt- l l t t M - - M M S S S S P M E -t 1 lE 3 8 3 0 S . E M 1 lt - 0 - t E l EM E lt m lS - t- M M S S E E l E t- A lt l M t - - M S M S S SM-tlE = SM-tlE Elt 6 -MS Elt-M 5 S SM-t S lE M m -tlE H T ² = S 1 S 2 , + 5 - W 2 m 6 +S BK 4-19 + DPH 4-19 X STK STK S S T T K K STK S S TK TK F R G - O O 1 S K K T 8 K A 0 1 1 2 0 0 0 F R K 6 G 5 . 7 1 F O O a . 2 . = S K 2 3 G K T m K b S R G T 3 6 K - G T 2 e - K O G 1 O 1 1 - 0 l 2 6 0 K D K b 8 5 2 7 N 0 ü 1 . . . 1 8 S 3 5 3 0 0 T 0 0 n 2 2 K 0 ° 9 5 7 x d D . . 2 3 2 e N 7 6 0 m l 8 0 S ( 0 T l S K 0 . T u K . ² ) 0 0 2 A D ( 0 1 1 E P 7 7 .4 1 S S T T K K F R G F O O K K K - 1 1 1 R B G 0 4 0 3 5 O 5 7 O . . . K 9 8 0 K 4 0 0 ° 1 1 1 . K D 0 0 0 - ° N 6 7 1 . D F R G . 8 1 3 D F 0 N O O 4 7 N 0 R 1 K K - 1 8 1 1 1 0 0 0 0 1 0 5 5 7 0 . . 0 9 4 0 0 9 x 8 KTS KT 0 S KTS 0 KTS KTS KT M S R R KTS ü o a c h s k r c e b h / a F in u o e r b n m A e h s t = e a t 2 e i u l 6 e h s m / e A + n ² r d m R e a o r r h u tu r n k r d e H T a = S n e n 1 1 i , a u n 5 -2 l m n b 6 + d a u R n o e h u r e k r eller E P m T je i W E i w g t - e e - B H P n i e l D w s r g o a a 1 l v STK e STK s STK n 1 i STK ST i K s s t 0 h o T e x e r W r 1 i v i u z 0 e - m W u A H r S n s y N o D g d W r A r R r L g . a = u 1 1 n W 9 n 1 A t o 0 g ü i b s m H A b W e W o A e 2 n r l A i W i r 2 s r e n d W c S 3 r A b i t h P 9 s t i u o l c 1 n N u n r W h A d s z 1 ( d u U s - 0 B n p F WA g u H n ) k WA t pr WA ov. R M G O O J1 K K 2 1 1 2 0 0 5 6 8 . . 9 0 2 1 14 P 1 E 8 X - . D 00 N 5 m 225 16 R M G O O J2 K K 2 1 1 2 0 0 5 6 7 . . 4 7 7 5 X BK 2-19 + DP F R G - O O H 1 K K / 1 S 2 E 1 T 1 K U 0 - 0 K 4 1 5 7 -1 . . 9 9 4 L 8 W 0 9 L 0 W H P S 0 STK V A A W D U E G S S L L W e e b b i t t r n e n a r e u e r s s t o o f s L u s e c r p p l m d a s r c - e k r e e o K f ä e n h m r - l r r h u k N t r a s i r r i e z e a r k s r s c b i e h ä b e s l c c b h e a y h u s d h h e - P l p d S a l n e i e l a ( e E p r r F g r t r a b m e ü H s 1 m r n e Z p c e 1 ö a ( t a r k a a i A 0 h r l r u n u t u D e t u ( f u n n A s t r N G s r u f b b e c 8 n a e g l h 0 d g u l a ä r 0 e s ä n n A k r n | g d a b ( k F E e b s f e ü l o e r p a r r b z l e n e M u e r s ic r r c k ä S k h h l h a P b a - r n M a p S o t r p b e u k i e n o f e ( f t G e i u T e t n n O r r S s a d L c K t f ü a o h Ü ) c d - a b | G k e c e R h p e D r o t g u b N h f a n ä ü 8 r b k u o r 0 t e d b N 0 2 e e a e 3 ) r n t 0 k z V a A e n ) G ) te f ü (R r A O u K fb ) ereitung) E S r t ST b K sa -B tz a S n TK u S e w R i u c K e ü b h 7 ST r c K 3 a e k 5 k u r u b 3 A n a , ST 5 K g u S x T K A 2 , a S C S 5 TK b T m a e n L l i k i n o S t T K K a z n s 7 n 3 s e 6 a a n l STK K397 STK K3 A 98 = STK 2 A 4 R F G F O O R m K K - 2 1 1 0 0 1 S 5 7 0 TK . ² . 0 0 1 0 9 2 x 800 ST 1 K K Elt - -M 2 E S lt -M D SE S N E l T t- lt M K R E - G M 8 S S U O O 00 - K K 3 1 1 8 Elt 0 0 0 - E M l E 4 t 7 0 S - l M t- . . S M 9 1 E SE l 9 t 0 - l E t M S - l M T t S - K M S S R G T M S SM - - O t O l - E 3 tl R G EA K K 8 O 4 O E l 0 1 t 1 - E K M 1 K 0 l 0 t 0 E S - 1 M l 4 t 7 1 - 1 S M . E . 3 . 0 S 0 E l 9 1 t- l ° t 6 M 7 - E 9 0 M S l . t S . S S - S 3 M M 8 M T - S - 7 t 9 l t K E lE Elt E -M lt- S M E B S lt- E M l E R t G A S -M lt S - E O S 3 M O M S lt S - - M t M K l 1 K E - S S tl 1 P E T 1 1 E K .3 0 0 1 4 8 ° 6 7 E . 0 E 4 lt . . - l 6 3 t M 8 -M S E 7 m 8 S lt E -M lt- SE M S l S t E M -M l S t - - t M S M l G E S -tl G S E T P G K E - 2 1 D 3 E 0 E 8 l . t N 1 l - . 0 t EM R - G A 6 2 M l 8 tS- 1 S M O 2 m O 0 E S m 0 l K t 6 K - E E S M l l 0 t t M - S - 1 M M 1 - S . t S K S 0 l 0 M 0 E - S ° 6 7 tl T a E . .K 3 8 b 8 2 9 . e P E 3 E ltE E - l 8 l t M - l k t M - 1 SM m S 8 a S E F R G 0 lt E E n - S - M O l l O M t t 3 - - S M M a - S t K K l S S E 8 M l S - 0 1 t 1 l T E 0 0 K 0 5 7 . . E 0 5 E ltE 5 - 8 l M t l - t M -SM S S E R G A lt E S E -M l P M l O 1 t t O - - S M - M E t S Sl K S 6 K S E 6 T 1 M S K . 0 8 T - 3 1 t 1 K l . 0 E 5 0 0 0 m ° 2 6 7 . . E 3 9 l E tE- 9 l M 1 t l - t M -SM S S El E t E S -M S l l M t t E D - - T Z S M M - S K tSl S S E T M 7 K F R . - G t 1 lE 1 F O r B O N m G K K K G s E - l 3 G E t 1 - 1 EM l t - l - L 0 t D 2 0 S M - M a N 5 S 2 7 S E 8 . . . 8 S l 0 0 E 5 6 t E S - T 0 l M l R E G S t 7 M ° t K 0 - - M T S t M - U t K O D O S C Sl S E S 0 M z - K N K - 2 tlE S 8 1 1 8 0 0 n 0 0 0 a 0 E 5 7 0 lt E - . E . M lt 0 6 l - tS M - e 7 M 4 n S S S S E T T G S E l K t E K - S T l M t lt - K M u - M i S M - S t S S lE t M- F G R t G l b z E - O O 2 E K K R G T 8 l t E a - - M O 0 O l 1 t 1 2 G E - S P M 0 0 l 0 K K t S - 8 S S M 5 7 E T u T 3 0 1 SE 1 . l . K K t 0 - l 8 0 t 0 M S 0 - P E M 9 N 6 M S 5 7 l R E G x S t - S - . t M . M l U 0 O E 8 L O 2 S - 9 t 6 - 0 l K E K 1 0 1 1 1 8 = E 0 0 0 lt E - 5 M 7 0 lt A 0 - S . S M . 0 E 8 T 6 S l K 9 t 7 E -M l E t- S l M t = -M S 7 S ES S M lt M - - M t - l t E 6 S lE m B E 9 lt E S -M l T t- K S MSE m E lt l - E t M - l M t S -M S S SE S 4 M l M t- - ² K t M - l t E l S E 7 R S A E T l K t E - 4 M lt- S M 0 S ü S EEllt E t--M l M t- S M S c S S T MR E T S - l t t M l - E M k -t S lE r E S ü l T b E t W -M K lte- S MS c K E a l E t E p- l M t lt - 4 - M S k M u S S S u M 8 p- E tl S E l b t r - 8 M M - S t e l z E E S a l E t- T 1 M lt K - S M , e 3 S E u T 0 l W t- E E M lt l n S t - - M SM S MS -tl E E lt-M S S M E - l E t S t l - E l M T t- K M S S Elt- E E M lt l S t - - M SM S MS -tl E E lt-MS S E M S lt - T T - t M l W K E S X E X lt- E M lt S -MSMS-tlE E G S S S T M K - r c tlE G s h S a T G KS w TK tz S T X a W T S L K M KTS n- KTS tlE r = S z e T K K TS 2 e u S 8 K K r T T b T S K S S T K S m M B a -tlE ST K u K e TS r X S K Z T K TK g S S T T S T K WS B M-t D lE S K T L T K S N SKT P TKS K S T T S K X 8 N SM-tl S E K 0 T T K S 1 0 ST 6 K S S K TK STK T T K S STKSTK KT K S TS ST X K S K TK TS KTS KTS STK KTS KT X S KTS STK KTS KTSKT S S TK KT K S TS KTS X 13.88 m G G G- D 8 N800 KTS 9 KTS KTS K F R G STK - O 7 O 4 R F G K K F 8 O 4 O 0 R 1 1 K K 0 2 0 0 - 3 6 1 8 1 . 0 . 0 8 9 1 6 8 0 2 1 . . 0 9 1 x 2 1 50 1 0 0 A=77 2 m 1.20 G m G G ² -DN800 R B ( V V a R e T e o u g r r ü r s e f e l c e e a p R M G n k O O M l i t K K p K d s w b z - 1 1 2 0 0 e 1 6 f t 7 a 1 . . 1 8 a r u . W 3 4 7 ° e u D s n N i 8 e s 0 m g 0 e t t a K r e m c W r h s e t u L 1 a s , n ) 3 s t 0 i g s o t n a t m i A o W i n t A W als AW AW AW AW AW AW E G G r W G s K T= R a G - 6 B t H m z L 2 e n - = 2 b e 6 3 e u 2 r b l m e a i u t 1 u 0 ,0 n 3 g DN 80 R E P 0 r E e s - a H p tz D t n i e 2 li u 2 e b 5 n a x2 u s 0 T c ,5 W h S - u H D t a R z u 1 s p 1 t c l e L h i = tu 8 a n m u g n D U D d zu e i n i e e r L n . . . . I . . . t . . . . . . . . . . . . . s n . . e . . . . . . . . . . E . . g . . . . . . . . E . . . . V . . e . . . . . . r . . . . . . . . . . . . e B . . . . i . . l . . . . . . r . . . . n . . e a . . . . . . . . . . G . . . n . . . . . . . e . . . . . . . . P h . . . r . g . . . . . . . . . . . . a . . . . . . s t . . . . . S . G . . . . o . . e . . . . l r B . . . . E . . . . T . . u . . o a a . . . . . . i . . e . . T . . K l . . . . n s . . . e . . . . l . . . u . . e . . r . . n . . . . . . . . . . . . N . . . . . . g b . . . . . . n . . . . . . d . . . . . . . . . . . . L . . A . . d . . u . . . . . . . . g . . . . . . e W . . . . . . . . D . . . . a . . . i . . . n E . . . . . . . . . . e . . r . . . . . . . . l . . v . . . g . t . . . . g . . . . - . . . . . . n . . M . . . . E V . . . . o . . . . . . e . . . . . . s . . . . S . . . . . . t . . . . . . . . n . . . . e . . . . . . t . . . . . . . . . . . . l d . . . r . . . . . . . . . . e r . . . . . B . . . . ä . . . . A . . . . . . s e . . . . . . . . . . . . d . . . . . . . . g . . . . . . . . o . . r u . . T G B . S . . . . . e . . . . . i . . . . . . . . . e T e . . a . . g . . r . . . . f . . . L . . l . K . . s . . T . . . . . . g g . . . . s r . . . . l . . . . W . . . . . . e . . . i . . . n . . . . . . u r . . . . c . . . . . . A . . t . . . . . . . i a . . . . . . . . . W . . . . h n t . . a . . . . . . e . . . . . . . u . . . b . . . . . . . . . . . . g . . . . . . . . . r . . . . . . . n z n . . . . u . . . . . . . . f . . . . s . . . . . . . . . . . . o u . . g n d t r r e g I d ä n n s e g f g A Z S T o r e u e l a r u t r i r n c i a m n X n u ß d e h n X e k n e a n . d K h w a r t t o i m n a n o a B r o b l n s t X i X a B e g X e X X m e e s s T g t l u l e r - f m e X i n ü i r e u s s g r e W b n t c e E E R n d n S G A l l h ( t t W n - X X T . - W a M h o i N K u s c Ü . S V S e h t h E C z T b o u r W t n z r e r a t a b e o e B r e n B T B e s ) n t e r i z a l i k t h e c z a u a e h u ( b n b t T s s e n t W s z g t k c w i u e S n h . . . . A . . . . . . . e . n . . i . . . . . . . . . . n . . Z n . n . . . . . . . . . . . . . . . u c d . . . . . . . . . . . . . . . . i e . . ) . . . . . . . . . . t k i . . ß . . . . . . . . . . s . . . . t . . . n w . . . . . I . . . . e . . e . . . . . . e . . . . t . . . . . . . . . . . . . . . . . . . n . u . . . . . . A . . r . S . G . . e . . . . . . ( . . B . . . . . . . . T . . r . . a . . . . s . . . . e . . B i n T . . K . . u . . s . . d . . . . . n l . . . . . . . . . i . . . . . . . . . . s . . e n . . . e . e . . . . . . e . . . . . . . . . . . . . . . . p . . . . . . h d A . . t . . . . . . . . . . . . . . . . r W a . . . . . . g . r . . . . . e . . . . . . i E . . . . . . . . u . . e . . e . . u . . . . . . l e . . . . . . t . . . . . . . . - . . . . c . . . . P n M . . b . s . . . . . . n . . . . . . . . . . . . . . . S h . . . . . . t . . . . . . l . . . . a . . . . . . b d . . ( a . . . . . . . . . . . . . . . . . . k . . . . . u . a . . . . . i . e . . n . . . . . . . . . . n . . . . ü . . . . . . . . e u . . . . . . n . . . . . . . . . . . . d . . . . T G B . S . n 4 . . . . . . . . f . . . . . . . . . . e T . . a . . K . . . . e . . . z . . f . . . l . K . . s . . V T . . . . . . . . t . 2 . . . . . . . . . W t . u . . . a . . i . . . . . . . . . . . . g . . o . . ) . . . . . . A . . . . d r . . . b . . . . . . . . . . . W . . . . ) l . . . . . . . . . . . . e . . l . . e V . . . . . . . . . . s . . . . . . . . . . . . . . . . . . n . . . . l . . . . . . t e . . . . . . o . . . . . . . . . ä . . . . . . . r A r n f t ü u N d g n i g M S S T G B T A A S u n g k e r n t t e W W t i a e c i r r e u e n l g l o o s d e h e u n i k t m m - H A i k t u g e . d u N w o v n c e a r - - m i a k R M N m o h e s s u a s n c t t d ü i p i u e e s b t h e c t t s n l d e k e e l l k r u e t g e r a d l l e s s l s i e r n K r n p n p s s u i a e W r t a p l c a u e l r n a k c n i L P t n n h u g f u n e n li n u c g m g n h g t it A Elt-MS Elt-MS Elt-MS Elt-MS Elt- E M lt S -MSSM-tlE SM-tlE A=57m² STK M GO M K K - 1 1 0 2 8 2 .1 .5 2 ° DN800 X Elt-MS Elt-MS Elt-MS Elt-MS Elt E -M lt- S MSSM-tlE TW SM-tlE 7 RO STK K 106.63
X 11 X
Aufnahme Außendurchmesser zum Baubeginn
INDEX DATUM ÄNDERUNG NAME K825 F F r e e r i n lu w ft ir s k c s h ta ra ti n o k n Elt-MS Elt-MS Elt-MS El E t-M lt- S MS Elt E E -M l l t t - - S M M SS S M- E tl l E t-MS Elt-MS El E t-M lt-M S S SM-tlE SM-tlE F R G - O O 5 K K 8 0 1 1 0 0 0 6 S 7 M . . 7 -7tlE 6 8 G G G- D N 8 0 0 6. 6 2 m STK STK X X 12 10 G .1 G 5 G m -DN800 R M G O O J- K K 2 1 8 1 0 0 0 6 0 7 . . 1 6 3 5 (Grundlage MJ-Bestellung über KWL) AST Canitz (VEW) Elt-MS Elt-MS Elt-MS Elt-MS El E t- l M t-M S S SM-tlE TW S 6 M-tlE G T- O 4 K 8 0 1 0 0 7 x . 7 2 5 00 KTS
TW-Provisorium Nr. 2 oberirdisch
Elt-MS Elt-MS Elt-MS Elt-MS EE lt- lt M-M SS SM-tlE K R
- S 3 M O -t D lE K
N 1
8 0
0 6
0 .74 13 AUFTRAGGEBENDE LAGEREFERENZSYSTEM ZBL PN16 Schwarzer Berg Elt-MS Elt-MS Elt-MS Elt-MS EEltl-tM-MSS SM-tlE TW R G T- O O 5 K K 8 0 1 1 0 0 0 6 7 . . 6 7 9 1 SM-tlE KTS X Leipziger Wasserwerke ETRS89_UTM33N PE-HD 500x45,4 SDR11 L=40m Elt-MS Elt-MS Elt-MS Elt-MS EEltl-tM-MSS SM-tlE R G T- O O 6 K K 8 0 1 1 0 0 0 6 7 x . . 6 6 2 6 8 00 KTS SM-tlE BK 3-19 + DPH 3-19 KWL GmbH H D Ö H H H EN N S 2 Y 0 ST 1 E 6 M
L + e S it t u b n -W gs i v d e e r r s la c g h e lu r s 1 s 5m³
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