Kostenloses Live-Webinar: VergabeHero in Aktion erleben.

04201_03230_WW-Canitz_LPH5-P2.2_LP-red_Hochwasserschutz_M200.pdf

Hochwasserschutz und Ersatz einer Fernleitung am Wasserwerk Canitz

Extrahierter Dokumenttext · Stand: 04.10.2026, 11:12 (Europe/Berlin)

Herkunft: www.evergabe.de

Tabellen, Layout und Zeichen können bei der Extraktion abweichen. Maßgeblich ist die Originaldatei.

Originaldatei öffnen

[Seite 1]

WA

WA

WA WA WA 12 WA

WA

WA

WA

WA

WA

WA

zur S11

(ca. 650m)

17

Kommunale WT

Leipzig

Wasserwerke

2+DG 13

STK 19 STK WT 19 STK

WT

STK

175/1 zur S11 STK (ca. 450m) WT

113.42 A

Nebengebäude Maschinenhaus 113.15

Bel Bel Bel Bel Bel Bel Bel Bel Bel Bel 113.19 113.17 113.48 Ww 1 1 1 11 0 1 10 .0 1 0.0 2 0 .29 .1 6 3 11 1 0 1 . 0 2 . 1 34 Bel Bel 112.73 112.96 113.00 113.14 18/1 110.16 w 110.26 STK STK STK STK STK 112.61 A 113.06 SO WT 113.05 w 110.02 Bel STK 1 1 1 1 2 2 .7 .6 0 8 1 1 1 1 2 2 .9 .8 7 9 Bel KTS Bel KTS 112.89 112.92 STK 113.01 113.00 113.14 WT KTS STK 113.10 109.79 112.97 W 113.48 109.66 113.07 109.54 1 1 09.57 109.69 109.65 KTS STK 109.59 109.54 109.le 5 B 0 109.18 109.42 109.54109.51 109.50 109.14 109.36 T o r L Bel A STK 109.01 112.92 A = 109.44 4 109.31 ,3 m 109.44 109.28 109.38 109.18 SO KPBel 1 1 0 0 9 9 .3 .3 8 7 STK Bel KTS STK T W 107.87 0.3 109 1 .0 0 7 9.07 109.17 109.31 109.33 109.3Bel 7109.34 KTS KTS KTS KTS KTS KTS KTS Bel KTS 9.0 109.28 10 1 9 0 . 9 5 . 9 40 Bel 109.13Bel Bel Bel Bel KTS Bel Bel Bel Bel Bel Bel Bel Bel ³ 107.75 109.25 108.97 109.17 KTS 107.42 W 109.00 T 109.36 109.00 WT 109.56 108.81 108.73 108.73 108.83 108.96 108.96 1 1 0 0 9 9 .2 .0 3 7 108.80 S p litt/ 107.63 107.66 108.83 108.86 109.15 SO 108.74 108.26 W T KTS STK WT 107.35 108.40 107.42 108.34 108.87 KTS STK 108.86 108.07 108.50 107.17 108.72 1 1 0 0 8 8 .6 .7 3 0 108.49 108.30 KTS STK STK 108.96 5 19 108.83 108.91 W T 108.96 WT 108.25 KTS 108.89 108.09 108.19 STK OE 108.01 108.19 108.85 KTS 108.51 107.80 108.63 108.87 108.54 107.74 107.75 KTS W KTS KTS STK 108.82 108.76 WT n z u n g T KTS a 107.88 107.69 107.99 KTS 13 KTS STK KTS STK STK STK STK 107.56 107.62 A n pfl 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 107.56 T 107.68 S 1.0 107.40 p litt/ 107.68 W Bel 18.0 107.68 107.46 107.61 Bel 107.52 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 108.83 o w 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 . 0 7 7 4 .80 108.93 107.59 107.87 107.91 107.94

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

108.03 107.49 107.99 z u r S 1 107.94 1

(

c

WT TW

W T

W T

W T

TW W T

W T W T

TW AW

WA W WA T WT AW WA TW WA

WA AW WA WA TW TW WA

WA AW WA TW WT WT Bel Bel Bel Bel Bel WA WA WA WA WA TW TW TW WA WA AWWA AW WA WA WA TW WA WA WA WA WA TW TW TW WT WA TW TW TW TW WA AW WT W T WA WA AW WA AW WA AW Bel WA WA TW TW WA AW AW WA WA WA WA WT WA TW WA AW AW Bel WA WA AW WA TW AW Bel WA TW WA TW WA WA AW AW AW AW AW AW TW TW WA WA WA WT WA WA WT WA WA WA WA WA WA WA WA WA WA WA WA WA WA WA AW AW AW AW WT WA TW WA AW AW WA TW AW AW WA AW TW AW TW WT TW AW AW WA AW TW AW AW TW WT TW WA AW AW AW WT TW AW WT TW AW WT TW AW AW TW AW AW AW AW AW AW AW AW AW AW AW AW WT TW AW AW AW AW AW TW WT AW AW AW TW AW AW AW AW AW AW AW TW AW AW AW WT AW AW AW WT AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW TW TW TW AW TW AW AW AW WT WT TW AW AW TW TW TW AW WA TW TW AW WA AW WT TW AW WA WT WA WA WA WA AW WA AW TW WT WT TW TW AW AW WA AW AW TW WA AW WT TW AW TW WT TW AW AW WA AW TW AW WT WA WT AW AW WT AW AW AW AW TW WT TW AW AW TW AW AW AW AW AW TW AW WT WT WA AW AW TW AW WT TW W T TW WT WA WA WA WA WA WA WA AW AW AW TW WA WA AW WT WA WT WT WA WA AW WA WA TW WT TW WA TW WA WT AW WA WA WT WA WA AW WA WA WA WA WA WA WA WA WA WA WA WA WA WA WA WA WA WA WA WA WA WA WA WA WA WA WA WA WA WA WA WA WA W T A W WA WA WT AW TW WT AW WT AW WT TW W WT T AW WT AW TW WT AW WT W AW WT T AW TW WT WT WT WT WT WT WT TW WT WT WT TW WT TW WT WT WT WT WT WT WT TW WT WT WT WT WT

WT WT WT WT WT WT WT TW WT WT WT WT TW WT WT T W WT WT WT TW WT

WT WT WT WT WT WT WT W T WT

WT WT

TW WT WT WT AW WA WA WA WA AW AW AW WA WA WA WA WA WA WA WA WA WA AW WA WA WA WA WA WA AW AW WA AW AW WA AW WA WA WA AW AW AW AW AW AW AW AW WA AW WA AW WA AW WA WA AW WA AW WA AW AW WA WA AW AW AW AW AW AW AW AW AW AW WA AW WA AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW WA WA AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW SM -tlE SM-tlE S M-tlE S M-tlE Elt- MS

SM-tlES M-tlE

S M-tlE SM SM-tlE S M-tlE S M-tlE Elt- MS -tlE

SM-tlE S M-tlE M-tlE S MS SM-tlE S M-tlE S M-tlE Elt- MS Elt- SM-tlE S M-tlE

S M-tlE WA WA S M-tlE S M-tlE S M-tlESM -tlE LW LW L Elt- MS WA WA WA

S M-tlE Elt-M S Elt-M L WA

WA

WA

Stahlbeton-Kopfbalken H=1,2m

S

S M-t

S lE

M-tlE Elt-M S Elt-M Elt-M S Elt-M S SM -tlE LW L LW L Elt- MS WA WA WA WA WA

WA

Freiluftschrank BEW-10-V

(

G

z

e

u

w

r A

äh

u

r

fn

le

a

is

h

t

m

un

e

g

d

e

e

i

s

n e

D

s

a

g

m

le

m

ic

b

h

a

m

lk

ä

e

ß

n

i

s

g

y

e

s

n

te

P

m

fo

s

s

u

te

n

n

d

abstandes)

S WA Fernwirkstation D=113.05

S M-tlE S M-tlE Elt-M S Elt-M S Elt-M S Elt-M S SM -tlE L WL L WL Elt- MS

BEW-13-V

WA WA WA WA WA WA WA

B D

S=

= E

9 1 6

W 1

.

2 0

. -

0

0 1 6 2-V B D

S=

= E

9 1 6

W 1

.

2 0

. -

0

5 1 6 1-V Sammeldruckleitung BEW PE110-160 BEW-V (KWL) F S Q

B

i =

r

m lt

u

9 e

n

a 6 r

n

x r . o 0

e

3 h 0

n

2 r

ᴓ

ᴓ , 2

D

D m

N

N ³

8

/h 3

0 0 0 0

(1t

(L

=7 .

a

05

k t

m

iv

)

=7m)

Elt-M S Elt-M Elt-M S Elt-M S SM -tlE L WL L WL Elt- MS D S Q = = m 9 1 a 6 1 x . 1 0 . 4 0 7 1 5 ,2 m³/h WA WA WA WA WA WA F Q B i r m lt u e n a r n x ro e 2 h n 6 r ᴓ ᴓ , 1 D D m N N ³ 8 /h 3 0 0 0 0 (1t (L =6 . a 06 k t m iv ) =7m) F Q B i r m lt u e n a r n x ro e 3 h n 0 r ᴓ ᴓ , 7 D D m N N ³ 8 /h 3 0 0 0 0 (1t (L =6 . a 56 k t m iv ) =7m) M80 PE 2004 DPH 2-26 Elt-M S S

Elt-M S Elt-M S Elt-M S

Elt-M S Elt-M S Elt-M S

El S

t-M M

S -tlE SM -tlE L WL L WL

Elt- MS

L Elt- MS

WL

A=

F B i

5

r lt u e n

m

r n ro e h n

²

r ᴓ ᴓ D D N N 8 3 0 0 0 0 (1t (L =5 . a 75 k t m iv ) =7m)

LWL SLTWKL WA WA WA WA W

S A

LTWK W

L A WA WA WA WA SLTW WA KL W 2 A P 6 E WA .4 1 1 WA 1 m 0WA SL WA TWK

B

L WA

K

WA

1 WA

-

W

2 A

6 WA SLTWKL WA WA WA WA W S A LTWKL WA WA

D

WA

P

WA

H

WA W

1 A

-

WA

26 WA STK WA W S A LWTKL WA 1 PWA 0 E .7 WA1 4 1 WA m 0WA SLWTK W L A WA WA WA WA WA WA WA SLWTKL WA WA WA WA WASLWTWKA L 1

P

WA 5

E

. WA 6 1

8 W

1

A 0 m WA SLWT WA KLWA

A

WA

=

WA 1

WA 0 SL

WA WTKL m

WA WA ²

WA WA WA SLWTKL SLWTKL 1 P 7 E .6 1 6 1 m 0 SLWTKL SLWTKL STK SLWTKL SLWTKL A= SLWT 9 KL 0m² SLWTKL SLWTKL SL 4 W P TKL 5 E .1 1 8 6 m 0 SLWTKL SLWTKL L WL K T S S T K STK STK STK STK STK

B T1 K 5 2 m -26

STK T15m STK 4

P

2

E

.S3T

1

K1

6

m

0 STK STK STK STK STK

B

F

D

S Q

B

i =

=

r

m l

E

t

u

9 1

e

n

a 6

W 1

r

n

x r .

3

o 0

e

.

3 h

-

0 1

n

3 0

r

ᴓ

2

ᴓ , 0

9

D

D

-

m

N

V

N ³

8

/h 3

0 0 0 0

(1t

(L

=7 .

a

12

k t

m

iv

)

=7m)

Elt-M S Elt-M S SM -tlE Elt- MSLWL LWL LWL T15m T15m 2 P 0 E .8 1 9 6 m 0 Elt-M SElt-M LWL

S

Elt-M SElt-M S Elt-M S Elt-M S SM -tlE Elt- MS

L WL

3 .3

5

P E

m

1 6

0 A=26m² Elt-M S Elt-M S SM -tlE Elt- MS Elt-M SElt-M S L WL Elt-M S Elt-M S Elt-M SElt-M E S lt E - lt M -M S S Elt-M S Elt- E M lt-M S SM -t E lE lt-M S SM -tlE 79 Elt- MS Elt- MS 2.510+ LW L 0- ( 2 d L a e vo e n rr o 1 h R re e s P e E r 1 ve 1 ) 0 ; ∑L=40m AW AW AW AW B i W n E k a l W . s s T - e V e r i - b l B v a e e u r c k p k l f a e la m n s e m te in e r l a r L u u M n f g B 10/60 1 3. 0 2 m P E 1 6 0 0+290.427 S Elt-M S Elt- E M l S t-M Elt-M SElt- E M lt S -M S Elt-M S SM -tlE Elt- MS 426.210+0 LW L - LWL A=42m² 109 0 .7 + 00 2 + 8 2 1 8 .0 3 3 .0 5 35 BK 1-19 + DPH 1-19 S Elt-MS Elt-MS Elt-MS Elt-MS Elt-M E S lt-M SElt- E E M l l t S t - - M M S S Elt- E M lt- S M El S t-M S SM -tlE Elt-M S SM -tlE Elt- MS SM -tlE 343 5 . 0 8 1 0 . 0 7 + 00 0 + - 0- AW LWL BK AW 5 10 L WL - 9 1 . AW 1 9 3 + D AW PH AW 5-19 AW AW AW AW AW AW AW AW AW AW AW AW AW AW AW W A A W WA WA WA WA WA -1 1 :2 0 .0 9.50 Elt-MS Elt-MS Elt-MS SM-tlE SM-tlE 109.14 WA 1,30 Elt-M E S lt-MSElt-MS 109.14 WA WA X Elt-MS Elt E -M lt- E S M lt S -M E ES lt l - t- M M S S SM-tlE SM-tlE 0 0 0 + 0 1 LW 0 L S9TK .50 Sickerrohrleitung PE OD 315 WA Elt-MS E E lt l - t M -M E S S lt-M E E l S t- lt M - E M S l S t S -M M S -tlE E E lt l - t M - E M lSt- S M E SE lt- l E M t- l M t S - S M S M S -tlE E E lt l E- t- Ml M t-SM S S E E lt E - l M t lt - - M S M S S S M-tlE E E l E t l - t l M - t- M M S S S E E l E t- l l t M t - - M M S S S S M-tlE E E E lt l l - t t - M - M M S S S E E l E l t t - - l M M t-M S S S S M-tlE E E E l l t t - - lt M M -M S S S E E l l t E t - - M M lt- S S M S S M-tlE E E E l l t t - - lt M M -M S S S Elt E -M lt- S M B D D S Q t S S M = - = t N = m lE E 5 1 1 . a 1 4 0 W 0 E x 0 6 l 3 9 t-M 0 . S . 4 m - E 6 0 0 lt 0 - 0 M 0 6 S S S m M 1 -t t lE b - ³/ S h SM-tlE SM-tlE 0 0 S 0 M . -tlE SM-tlE SM-tlE SM-tlE LWL STK LWL STK LWL STK 1 3 , 1 3 P . 0 E 5 9 1 m L 1 W 0 L STK Sa 10 m L 9 W .L S5 TK m 0 e K T l L = R d WL S 6 B T r K m u - 1 1 : 2. c 0 -2 k 6 leitu ( n 2 d g L a X B e vo e E n r W r o 1 h P R r E e B e E 1 s P W 1 e E - 0 r 0 1 v 2 - - 2 e 1 S 8 ) 0 ; 0 ∑L=60m Grundfos Typ Fö S r 1 d F 0 e ö 7 r r 4 l d e H i e s 6 r t h 4 B u ö 7 5 n 9 h 1 g 7 e 1 7 0 Z 2 8 0 0 2 9 l 0 / m 8 1 s WA WA B i W n E k a l W . s s T - e S e r i - b l B v a e e u r c k p k l f a e la m n s e m te in e r l a r L u u M n f g B 10/60 BQ4 0 8 2 E m P 7 2 .3 -1: 1 2. 0 0 9.50 X BQ4 Elt-MS E E l l t t - - M M S S Elt E -M lt- S MS - A S b E E l l E t t - - l M M t-M S S d S t E E l l t t E - b - M M lt- S S M i S S M c . -tlE - h D E E l l t t E - - M M l t t- S S MS u E E i l l t t - - E M M c lt S S -M n S S M h -tlE g t E E l l t t w - - E M M lt S S -M f ES E l l t t r - - M M E a S l S t- e M S S M n -tlE ie d E E l l t t - - M E M l S S s t-M E ES l l t t - L - M M E S l S t- S M S S = M-tlE p 3 E E l l t t - - M M E u S S lt , -M E ES l 8 t- lt M - n M E S l S t-M m S S M d -tlE E w E l t- lt M - E M S & l S t-M E a l S t E -M lt- S E M lt S - n M B S S M-tlE d = E E lt- l S t M f - E M M S l - 0 t t S - l e E M E SE lt- lt M - E M , S l n t S -M 9 S S M- s tlE m SM E t E l - t t l - l t E E M - e M lt S - S M E SE lt b l r t - - E M M l S t S - M S S . M - -tl E S M- 2 tlE K E E l l t E t - - M M lt 0 - S S M a S E E l l t t E - - c M M lt- S S M b S S M S m M -tl - E tl e E E E l l l E t t - - l M M t- q u M S S S E E lt l E - t S M - u . l M M t- S - M t S l S E S M- e t K lE E E lt r - lM E t- a l MS t-M S u S S E M E l E t - l - t t l M - b l t E M -M S S n S SM- e tlE g ElEt- E Ml l t - - lt SM 1 -M S S M : S 2 E - E tl E l E l . t t - l - 0 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 lt- lt M -M S S SM-tl L E WL S S M T -tl K E SM-tlE S L T W KL S L T W KL D D S Q t= = N = m 4 1 1 1 . S L a 9 T W 0 0 0 KL x 5 3 8 0 X . . 4 0 m 6 5 0 0 5 S m tb ³/h B S L T W KL K 3 0 P 4 . E 7 ( 2 - 7 1 1 d m 6 x 9 S L 0 T a W KL 2 + v L o D e n P S L e H T W KL 2 r 4 r R - o 1 B D D S Q t= h 9 e = N = m E 4 S 1 L 1 1 . r T W a s 9 K 0 W 0 L 1 0 e x 5 3 8 0 0 e . . 4 1 9 0 m - 6 5 0 0 . r 0 5 P 5 S m 3 v 0 tb E - ³ e / S S L h T W - KL 1 1 ) : 2. ; 0 1 X ∑ 0 L S L T W = KL - 1: 2 1 . 0 00 S L m T W KL 107.41 1 Q B STK STK STK STK STK STK STK STK STK KTS KTS KTS STK STK STK WA WA WA WA WA WA WA WA WA WA WA WA WA W W A A WA W W A A WA W W A A WA W W A A WA W W A A WA WA H W ö in h k e e 1 ls m tü / t z L m än a g u 0 e e 4 r , 8 50 m -1 :2 .0 STK B D D S Q t= = = N m E 5 1 1 . a 1 2 0 W 0 - x 1 0 0 3 8 - S T : 1 0 K 2 . . 4 m - 6 : 8 0 . 2 0 0 0 0 0 . 0 S m 8 X P t 1 b - ³ E . / S S 2 T h K 2 8 8 1 1 m 0 0 0 7 8 .S . 1 T P 8 8 K E 0 4 0 8 2 X . 7 8 2 0 5 . 9 m 5 -1: 0 8 2 E P 2 ST P . 1 K m 0 7 .2 E 0 2 0 4 8 1 . 0 0 2 8 3 + m . 2 8 4 2 0 2 .8 4 X 3 0+2 0 4 + 8 2 . 4 4 5 9 6 0 ° . 4 8 + A 5 2 0 5 b 4 w .0 i 3 n 5 klu B 5 n K ° g A 8 2 b , - 4 w 1 7 i 9 nk + lu n D g PH 2-19 LEG S E TK ND LW E A L A g g e e P s s = = S L 9 4 TK 0 5 A 0 m N m ² U ² NG A B B S S S S P B L L S W e s i e a t t p f e t n r a l e e p a t m u f o n L r h e u r h s n i m e r e m - l s e t a b o d K e n t b r - l e i e h w k N a t r g e s b b t l r a b a u d w n o i e e e e b e n n r t n e f d f w u e P l e d g e g e K c l ( ä E s s F A o k r o h t s t s 1 i l i h r Z g s p e i g p e 1 n n e u f i u a i 0 t t 1 b e l r u e n n u n u 8 a ( n r g g f B n n A - l t k g S 7 s u i g ( ( b e n c B 0 B n t f g a n d h ü ( 0 g e e S a h e r r s s s ä L n l i m A k c b t t n = a g a a k e b i k 6 n t n e b t t f l e , e o d e ü d r e 2 p i n l r z t l 0 / / u r ( k M u m i B W W s n o ä S e m g p i i g e h e s P f a g b e d t r d S a o e a m e e + n b f l r r i k ö . d n h o h S e r G ) e t e d i T n e c r r e e r r s k s n a r t e t L t e e e f e r a o l l r h s l l d - o u u m G e h G n n p i e r g g g W l u b e ) ) u n ä i n t a k u u g u t n d s s 2 g e s 3 ) ) B ta 0 i t n V ik n ) e 0 n 1 e /2 n 0 tw 26 ässerung ( ( - T T D = = S 1 1 V 0 0 8 7 -W , , 5 0 a - - 1 1 n 0 0 d 7 2 L , , 0 5 = = = 3 1 4 ,8 , , 5 5 m m m & ; ; V V B = = = c c 2 a a m . . 6 4 b 0 m is m ³ S ) ³ p ) undwand-UK K a b e lk a n a l Elt-MS Elt-E E M l l t tS - - M M S S E E E lt- l l t t M - - M M S S S SM-tlE Elt- E EM lt lS - t- M M S S E E l E t- lt l M t - - M S M S S SM-tlE SM-tlE Elt-MS Elt-MS SM-t S lE M-tlE H T= S 1 2 ,5 -2 m 6 2 S L T W KL S L T W KL SL TW KL Kab 4 elbündel (l.u.) KTS KTS KTS KTS H T= S 1 1 ,5 -2 m 6 STK STK D M (n a a o m t t e w m r e ia b n l a c d l o i k g n e e t n a s s in / y e v s e r te r 1 f m ü 0 g F b u a ß re f s ür 2, 4 STK 109.50 X X R B Tr a ü in u c k k g w b ru a a n u s d s T e e r r r e k s p u c p n h e d u u t / z n B z g o a n ( u B e m o ( f h T ä r W l k lu e S n rn g Z ) u I nd Rammsondierung) STK STK STK STK STK STK STK STK STK STK STK A= STK 24m STK ² STK Elt-ME S lt-MSE S E l T t- lt M K -M S S Elt- E M l E t S - l M t- S M E SE lt- l E t M S - l M T t S - K M S SM S SM -tl - E tlE Elt- E M lt E S -M lt- S M E SE lt- lt M - E M S lt S S S - S M M M T - S - tl t K E lE Elt E -M lt- S M E S lt- E M l E t S -M lt S - E S M M S lt S - - M t M lE - S S tlE TKE E lt- lt M -M S E S lt E -M lt- SE M S l S t E M -M l S t - - t M S M lE S -tl S E TK E E lt l - t EM -M ltS- S M E S lt- E E S M l lt t M - S - M M - S t S K S l M E - S tl T a E K be E E ltE- l l t M - l k t M -SM S a S Elt E E n - S M l l M t t - - S M M a - S tl S S E M l S -tl T E K E E ltE- l M t l - t M -SM S S Elt E S E -M l M l t t - - S M M -t S Sl S S E T M S K T -t K lE El E tE- l M t l - t M -SM S S El E t E S -M S l l M t t - - T S M M - S K tSl S S E T M K -tlE El E t-EM lt l - tS M -M S S E S l E t E S - T l M l S t M t K - - M T S M - K t S Sl S E M 1 -t Q lE B Elt E -EM lt l - tS M -M S S S E T S E l K t E - S T l M t lt - K M - M S M - S t S S lE M-tlE Elt E -M lt E - S M lt S - S M E T SE l K t- lt M S - P E M M S l S t - S - t M l M E S -tl 3 E Elt E -M lt- S S M E T S l K t E -M l E t- S l M t-M S S ES S M lt M - - M t - l t E S lE Elt E S -M l T t- K S 4 MSE E l 5 t l - E t M - l M t S - ° M S S SE S M l M t- - A t M - l t E l S E b S E T l K t E w -M lt- S MS i EE n llt E t--M l M t- S k M S S S MR E l T S - l t u t M l - E M -t S lE n r E S ü l T E t g - K M lte- S M S S L c T E W K l E t E p- L l M 3 t lt - - M S k M 2 S P S S M . p- E E t 2 l S E l b t- M M 2 - 1 S t e lE 8 m 6 S a E 6 T 1 l 2 t 0 K -M , 7 3 S 4 S E u T 0 L l W T t . - W E M K 6 lt S L -SM 9 MS - 1 t 0 lE 5 5 9 + S . M 4 0 - 9 t S lE T 0 K + 2 0 Q SL B TW KL SM S - T T tl W K E X X 107. 3 S 9 L 9 TW 2 K 9 L . 3 S S 0 T M 1 K -t + lE 0 STKST 2 K Q B S T X W T S K M KTS - 4 KTS tlE 0 5 + 1 S 0 4 T . K 7 ° K 7 T 4 S L S W T A - KL 1: 2 S b K KT . T T 0 S 1 K S S T w K 07 i 1 - n 1 . : S 0 2 7 T k K . K 8 0 T 7 S l S L . u W T 5 KL X n S 9 KT K T 1 K S S T g T S 0 K 9. S 5 K T T K 0 S B D D S Q t= S L = N = W T m S E 4 K K T L T 1 K 1 . S K S a 1 9 T T 0 W 0S K x X 0 4 3 8 0 . . 5 m - 6 5 S 0 K 2 0 T T 0 4 K S S m 4 S t S L T b - ³ W T K K / L S S S K h TK N S ( TK T T K S STKS D TK e KT K 8 S e TS u ST X t K S L b W a T S KL K TK TS a il K - T u S KT P S T l S S L T a K W TK K L r TS n e KT X S K p TS 4 p . S L 3 W T e K KL TS K ) TSKTS 5 1 P . E 1 4 S L 2 W K T T K m 2 L K S T 5 S S L K W T T K S L KTS KTS KTS STK Volumen R T ca r ü e . c p 1 k p b 1 e a m u ³ / 15 m³ - ) 1 :2 .0 AW STK AW STK AW ST A K W AW STK AW AW STK AW 109.5 STK 0 K T B D D S Q t = R = = N = S m E 5 T 6 K B 1 1 1 . a 2 m 0 W 0 0 x 0 3 8 0 2 . . 3 0 m - 6 8 - 4 P 0 0 0 S 2 S E T 4 K m 6 5 2 6 t . 8 b 7 0 - ³ 1 / S m h STK 1 0 ST , K 0 3 R B D D S Q t= = N = m E 5 1 1 1 . a 2 0 W 0 e 0 x 0 3 8 0 . . 5 0 m - 6 8 5 p 0 0 0 S m 7 tb - ³ t / S h ilienschutzschaun B S S 6 fü 0 e a t r ü x t n o S c 6 d k n a 0 l ) a - n x S g 1 d y e 5 s s r a 0 t W e c z k m w W -B s e t e i C e la f i ü a n g l n e l i u g it n z ( g 28 Qu N e 1 1 1 5 7 3 6 8 9 2 4 1 0 2 r 1 r u . L ng E ss M t G e K K K K e T T T T T T T T l a a a a l d W W W W W W W W e n b b n i a e e a L L L L L L L L n u E l l l l m Sp N u T d S E F n Z R B r i t i v i i R D g A d B R l r n f B R r o t . o ü u e e k e b L D o h L w o K m r Z e n n r n w H i l h w a n h s r e S Z a " B n B a v a u v z a w n e K p w r i a E b B e e c c r t e L w c s d b e n ü u a r C a s e e e e h a h r n L k r s a w e a l s n s u T s s i h h h l d s w w g a s e f c W r o e s g s C o c i & h t s e e e c a n l r r a a w s e r e r h h r e t a l m m m m h a l i g u R a e r s s g e e t L i r w e r B l z l t n z n u r l b c s l i e u l . . . r u r W e e w t r z e e i a i i h e n u l k u u n t n t e s e i e e i r z s i t a r g n " t s g t ü g u r i n n u u M s z B W t f r g ü e E d n u t W n n o e v g e b l g n W u d g h o r e . r e W g . g r m d a r e S . ien P T D b E N e Q 1 s 4 A D D W 1 u d v D D D D 6 t 0 D 0 A N N e a e N N N 0 N K N r e i n r s 2 m 1 1 S N V 3 4 8 r s c 3 2 9 0 0 d k t 0 0 0 h 0 c 5 S 0 0 0 K v 0 0 0 s i 0 h 0 0 0 e R a e P t G G G d D A b n r o S G G V D d e e G G G Z i t C f G G ä n t N l f t m 1 / m 5 t 0 a a a u u u i i i i i i i i i ß ß ß n n n n n n n n n e e e B v B B B B B B B B B o r r r e e e e e e e e e r e B B B B t t t t t t t t t r r r r r r r r r t e e e V i i i i i i i i i r e e e e e e e e e t t t i r r r b b b b b b b b b e i i i e e e b b b b sst i i i i i i a n n n n n n B B B B B B n a a a a a a t B B B B B B a e e e e e e u u u u u u u c e e e e e e t t t t t t h ß ß ß ß ß ß r r r r r r s t t t t t t i i i i i i e e e e e e B r r r r r r e e e e e e i i i i i i V r r r r r r e e e e e e b b b b b b b b b b b b S ( O tb R 1 1 1 1 1 1 . o - K 0 0 0 0 0 0 K h o r 6 5 5 7 6 6 d p , , , , , , e M f 8 2 7 0 1 9 b c 0 1 8 7 4 0 a ku e l k n ( ( ( ( ( ( e d 1 3 2 1 2 1 g n , , , , , , b i 1 7 2 7 4 3 6 u i 0 s 0 9 2 3 6 0 8 m U ) ) ) ) ) ) ,5 K 0) S B E E & m E V t S S R e E R i i a V n n A i e ³ A t n t t S i V ü h / ü R R R r b b e S , , n n r 3 b n i P c l l c t e a a r V V b b e s ü ü ü p 0 o , a s l k k E b u u e c i e S g c c c u e e e e e e e e m V c u n b b r ) h g - k k k t u n r r r r r r r r h g & & d a , e o a H p i l l s s s s s s & w b b b u n n d e e w u u S r n u a a a a a a e D a a a n u A A l g w g g e n e e s A i p t t t t t t u u u g ( n h ( u u i z z z z z z n n n g a t g i Ü 8 8 4 ß n Z u 2 n ß , , , r d l l l l l l n n s s e n n u o o o o o o S 0 0 e 0 e n 2 d e B s b i S S S a e c c g g G n e d n s s s s s s 0 0 i 0 u d 5 c n n c e f L r w n h h p p p e e e e e e u b e g u h e h w x G n n m r s G G G w w u u u S r r r r r r p e a n C S 2 n w a e e a a n G Z n n n w o e e R u r G G u G R R R R R R 0 t c u u R a e m n e n e d d d B n i i m , h K , e e n ß ß ü ü ü ü ü ü G G G i d e u 5 r w w w D ß o L d i E D t a i c c c c c c t e e p b e t Z Z l i e a a a N u S i z i k k k k k k b n N s D n n i e a n t B B n n n n n T n h b b b b b b a D n u e b b a S 6 S S d d d L L t W i a a a a a a 1 l D S , s e a l R 0 V u b b b c e R R u u u u u u 0 i c E i i b r n u R N L 0 a 1 n n a a a i - 0 h h b W i . 1 e 1 1 u u u D & n 0 a i S e t 4 D D 8 n 5 0 0 , , , b l i m N a i 0 0 t b S N N n 0 0 0 , a n 0 0 ) t 0 0 u , , d S S S S S t t t t t a a a a a h h h S W h h l l l e l l c ( ( ( ( D D D r ( W D D 1 1 1 3 k h 5 s N N N 0 0 0 2 a N N t 0 u o n 1 1 1 4 8 f 1 1 1 d f 6 6 6 t 5 3 d x 0 0 0 D z x 0 0 i c x x x 0 0 0 N 1 r 0 0 k 4 0 0 0 o e 8 8 8 2 ( D ) ) L L ) ) ) ) h L L L A 0 0 0 0 0 r , , x 5 5 , , , 8 8 8 m m m m m A s D u P N e ß E D D D D W r - e N N N N ( ( ( ( e H n W 8 4 8 8 r n S k D 4 3 4 4 8 4 8 8 a e s d D n 2 4 2 2 t 0 0 0 0 o u d 2 u 0 0 0 0 f R d x x x x f 2 e i ( r c 1 G G G G D 5 2 1 2 2 k c 1 A x e 1 7 1 1 T G G G G h ) 2 ) ) ) ) R W G G G G 0 m oh ,5 r L e x s d d d d d r r r 2 2 2 2 2 r r ü ü ü ü ü ( ( ( ( ( x x x x x R c c c V V V V V c c k k k D D D D D i D D D D D g g g g g k k e e e n i i i i i e e l l l l l i i i i i c c c c c . . . . . n n n c c c c c g n n h h h h h D D D D D d d d h h h h h d d r t t t t t e e e t t t t t o o o o o u u u u u e e a b b b b b s s s y y y y y n n n n n s s r r r r r u m m m m m e e e e e g g g g g W W W W W m i i i i i s s s s s t t t t t a a a a a a a a e e e e e e e e e e a a s s s C C C C C i i i i i d n n n n n s s j j j j j s s s e e e e e u u u u u s s i s s s s s e e e c e e r r r r r a a a a a 6 6 6 6 6 r r r a a a a a h r r t t t t t 0 0 0 0 0 z z z z z D D D f f f f f D D m m m m m l l l l l t e e e e e u N N N g g g g g N N x x x x x m m m m m e e e e e n 1 1 1 C C C C C g g g g g 5 3 g 0 0 0 e e e e e 0 0 ) ) ) ) ) 0 0 0 n n n n n 0 0 0 0 0 , , , , , STK STK STK STK STK STK Elt-MS Elt-MS Elt-MS El E t- l M t-M S S Elt- E E M lt l S t - - M SM S MS -tl E E lt-MS El E t- l M t-M S S Elt E - E M l l t t - S - M MS S MS-t E lE lt-MS El E t- l M t-M S S Elt E - E M l l t t - S - M MS S SM-t E lE lt-MS Elt-MS Elt E -M lt- S MSSM-tlE SM-tlE TWSM-tlE SM-tlE T S W M-tlE SM A -tlE =57m STK ² 9 STK STK S X TK S LW TKL - 1 1: 0 2 X . 0 9S L.W T 5 KL0 S LW TKL 10 A= 10 7 7.8 7 9 m 3 ² Q B X X P E 2 3 2 1 S . 2 T 5 K 5 , 7 3 m 0 STK -1 :2 .0 In Betrieb TW A Za u u ß n e a r n B la e g tr e ie W b ( W he C u a t T e W n ) itz gepl. Rückbau / Ver T f W üllung M Tr e in d k iu w m asserleitung STK Freiluftschrank Elt-MS Elt-MS Elt-MS Elt-MS Elt E -M lt- S MSSM-tlE SM-tlE STK 107.9 ST 0 K

107.91

X STK INDEX DATUM ÄNDERUNG NAME

STK STK STK F A e S r T n w C ir a k n s i t t a z t ( io V n EW) Elt-MS Elt-MS Elt-MS El E t-M lt- S MS El E t E -M l l t t - - S M M S S S M E -t l l t E -MS Elt-MS El E t- l M t-M S S SM-tlE TW SM-tlE SM-tlE S K T TS K 4 0 7. 9 4 1 + 0 0 10 STK 7X.93 4 P .7 E 5 2 m 2 5 P 1 E .3 2 0 2 m 5 STK 11 STK STK STK Elt-MS Elt-MS Elt-MS

El E

t-M lt-

S MS EE l

E t- lt M

lt

M S

M S S

S M

E

l t

t l

E MS Elt-MS EEltl-tM-MSS SM-tlE TW SM-tlE SM-tlE KTS 3 Q

B

4 0

3. 5 5 1 + STK 109.50

X AUFTRAGGEBENDE LAGEREFERENZSYSTEM

STK STK Elt-MS Elt-MS Elt-MS El E t-M lt- S MS EEl E tl-t l M- t M -M SS S S M E - lt t - lE MS Elt-MSEl E t-M lt- S MS SM-tlE TW KTS SM-tlE SM-tlE SM-tlE BK 3-19 + DP 2 H . 4 6 1 + 3 0 -19 X 90° Abwinklung L K e W ip L z i G ge m r b W H asserwerke H E D Ö T H H R H E S N N S 8 2 Y 9 0 S _ T 1 U E 6 M TM33N

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 Elt-MS Elt-MElSt-MS Elt-M El

S E t- l M t-M S S E E l

l t

t E

M

M lt S

  • S M S

S M-tlE Elt- E M l S t- E M l S t-M E E K S T l S l t t - - M E M Elt-M S l S S t-M S S M K -TtSlE Elt- E M S l S t M -M - E K

t S T

l l E S

t- E M E l l S t t - - M ME S Slt- S M M

S -tlE SM

E

l t

t l

E

MSElt E -M lt-

S MS SM-tlE TW

B

D

D

S Q t= =

=

N m

E

4 1

1

. a 1 3 0

W 0

x 0 7 3

7 S

0 .

.

4 M

m

-

6 9 -t

0 l

5

E 0

0 7

S m

5

tb

-

³/

S

h SM-tlE

6 5

P

A I

B W

H

n

R

U

e O

F

o

g

a

T

J r

c

E

R e

s a K

A

h

n

s T

G

t

w

e

N

e

ie E

n r

a

H u

w d

M

s

r E

e e

s

b R

e

r

I ü N

I k

r

n

r

s

o

g C

c

e

K

a

h

n n

u

le

i i

t

e t

z

m

z u

H

m

re

Q

&

2 0

H

0

e n

&

s

L

e

e

n

i t

G

un

m

g

b

s

H

neuordnung

P

L

B

G

2

2 0

E

R

E

E

2

2 4

I

A

O Z

S

.

. 2

R 0

0 E J

T

0 E

B

I

9

9

U

C 1 K

E

N

.

. H

2

2 - T

I

G

T

0 N -

0

0 N

E

S

E

2

2 &

T

U

P

T

6

6

H

M 0

A

M 3

S

E

E

2 R 30-

t

a 1

p

f

f

l

KTS

S M-tlE Elt-MS Elt-MSElt-MS Elt-MSElt E -M lt-

S MS SM-tlE PLAN M 5

AßSTAB

B 1700 / H 841 KTS S M-tlE

Elt-MS Elt-MESlt-MS Elt-M El S t-M El S t-M E E S l l t t - - M E M l S t S -M S S M-tlE Elt-MS Elt-MS SM-tlE

L

(o

a

h

g

n

e

e

p l

T

a

W

n

-

H

P

o

r

c

o

h

je

w

k

a

tt

s

e

s

il

e

)

rschutzleistungen

P

1

2 L

:

. A

2

2 N

0

b -

0

NUMMER

Alle Unterlagen dieser Ausschreibung