1.plano Clave
1.plano Clave
1.plano Clave
I
A
M
N
H
Q
O
U
F
E
F
COMPONENTE DESCRIPCIÓN
S
COMPONENT RED DE ALCANTARILLADO
E1
COMPONENTE CONEXIONES DOMICILIARIAS
2
COMPONENTE TANQUE IMHOFF
3
COMPONENTE MITIGACION E IMPACTO
4 AMBIENTAL
PROYECTO:
Región: iNGENIERO:
ICA HIDALGO QUISPE, Omar
Agusto
PLAN
O DE
UBICA
CIÓN
3 82 000
3 79 000
3 80 000
3 83 000
3 81 000
3 84 000
3 85 000
3 86 000
3 87 000
000
DISTRIT ALTO
L
A
R
A
85 15 N
000
C
E
N
T
R
O
85 14 P
O
B
L
000 A
D
O
L
A
R
A
N
B
A
J
O
0
85 13
85 12
00
000
F
U
N
D
O
H
O
R
N
I
L
L
O
85 11
T
AI
B
NM
P
QH L4 C
UOC S =0 C
h T
EFT = 1 F
= =
F= 4 3 =
1 9
9 . . 9
3 82 100
ACEQ
. 4
3 82 200
3 82 400
3 82 500
3 82 800
3 82 900
UIA
3 82 300
3 82 600
2 1
3 82 700
FONDO DE DE 0 0
2 REGA .
ACEQUIA=93 . DIO 0 B0 .
0 2
.56 3 ‰ Pm 2
C
F
9
L= 59.50 Ø 200 mm
3
9
7
7
h
SÍMBOL CIÓN
85 13 300 =
9
PVC-UF S-20 = O DES
3
1
. S
. CRIP
0
1 = 0
9 4
.
0 RED
0
‰
DE
h
L=7.00
C =
m S= 4.00
TC 1
‰
=F . DES
9= 2
29 0
.1
4.
AG
8 C 22
5 T 2
=
9
UE
1 4
3 .
2
1
PR
OY
ECT
AD
BUZ
ON
PR
OY
ECT
AD
O
C h
F =
= 2
9 .
7
BUZONETA PROYECTADO
B 1
. 0
P
3 5
L= 59.50 Ø 200 mm
PVC-UF S-20
8 1
CONEXION DOMICILIARIA
S
=
4
.
0
0
C
C‰
T
F
=
=
9
9
4
1
B .
.
P 0
7
3 5
4
L= 59.50 Ø 200 mm 7 h
PVC-UF S-20
=
2
.
S 3
= 1
4
.
0
0
C ‰
CT h
85 13 100 F= =
=9 1
. C
93
8 CT h
1.
B 7 F= =
.8
P =9 1
L= 59.50 Ø 200 mm 95 B
3 97 .
PVC-UF S-20 8 L=
6 P 6. 2 60.00 Ø 200 mm
1 .2 0 PVC-UF
S
S-20
C
S
4 4
L= 63.00 Ø 200 0mm = C CT
F=
= PVC-UF S-204 2
1 =9
4 B 98
. .
0 P 7. L= 66.50 Ø 200 mm
0
0 S 0 1 C .6 PVC-UF S-20
‰ 3 30
‰ = S
0
6 = C
C h CT
C . 1
CT C = F=
T 0 9
F= F= C 1 B =9
0 .
=9 =9 CT C . 99
‰ 2 P
93 L= 64.20 Ø 200 mm 93 F= TC 3 8.
5 1
2. PVC-UF S-20 2. =9 =F
C
h 0 C
B S L= 64.20 Ø 200 mm 94 C
T ‰ D 2 9.
P 3.
8. PVC-UF S-20 9= F= = C 56
3
22 = B
76 S 3. L= 64.20 Ø 200 mm 59 =9 1
CT D 6
8 P F=
5
2h
. 7 = B 7. PVC-UF S-20
S
3. L= 64.20 Ø 200 mm 96 . C h
3 8 35 =9 C
= h P = B 4. PVC-UF S-20S 8 CT =
1
5 4
= . 3 1h
8 58
4.
1
L= 64.20 Ø 200 mm 97 F=
CT
1
C
0 P = B 2. PVC-UF S-20 4. L= 64.20 Ø 200 mm F=
.
‰ 1 5 3 = . 3
6
8 P 41
S
.6
=9
=9 F . C
0 h = PVC-UFSS-20
1 .
‰
1 5 2
= . 3 0 8
B
90 = B
98 BP11 S=995.00L= 58.00 Ø 200 mm 4 C
0 0 . 0 P 5. ‰8. PVC-UF S-20 0
1 5 1 . 5 P C
9 4 3 1 .2
‰
. 0 5 h 2 .4 F C
CT h
4 0 1 L= 42.00 Ø 200 mm65 CT
5 ‰ 0 = 9 25 h L= F= =
. PVC-UF S-20 6 C F=
9 ‰ 2 5h = 19. =1 1
0 h F=1
. 6 = =
=90
2 50
S
B 10 L= 46.00. Ø 200 H
6 ‰ S 1 B
L= 52.50 Ø 200 mm PVC-UF S-20 .L= 33.80
L= 54.70 Ø 200Ømm Ø P 01 mm PVC-UF 2 S-
2
5 = . P PVC 980
200 mm 1
PVC-UF S-20 20 = 8 0. S0
20 C
. C 7.. F 1 C
T
1 2 1 0 S 0 .3 =
85 13 000 5 CT 8.0 0 C F=
4 0 S 0 = m 13 1
9 F= 966 . CT B =1
. = 1 m 3 2
6 F= P
=9 0 B . 01
7
C B 99 L= 61.00 Ø 200 mm
5 9 F L S
0 PC =1
8 7 10 H
. = =
6
CT h P 8. PVC-UF S-20 0
.
1
‰ 9CT 90
h 3 H 0..
‰ 7 1 91
F= = 1 3. S 0
CL=
= ‰ 97
E D C 4 1 0 FL1 .. 22
91 F 2
7 16 =
=9 2 ‰ h ‰ L= . . H
B 98 . 6 6 D CTF = 23. 0 B0 ==0
48L= 51.40. Ø 200 mm
h
P
L= 42.00 Ø 200 mm
6. 0 h . =
1 C S0
P0 991 PVC-UF 0 S-20 C =
= 0 =9 50 89. h 1.
2
PVC-UF S-20
.3 4
1 0
E B 9 . Ø 200 mm
L= 54.70 B
A
=3
Ø =m
6‰
..0 F =
S7 C
2
8 22 74 = C
T
P 7. 8
PVC-UF S-20 20 1 985 C=L 0
.0
8 . ‰ 1 1 6 h
2 1 6. 8 S M
0 1 83 .
S 6
2
m .
C . B F 1L FØ 200 mm=
L= 40.00
0 7 = CT 2h 0 ==0 2
= m 4 P PVC-UF S-20
9 1 F= 4=
1 B 9 0 L= 32.00 Ø 2005 mm PVC-UF 91 L= 32.20 Ø . C
6 =1 1 90.
5 P ‰ C 200 mm PVC S 1 CT h
A .
1
C ‰ 90 . .3F
0 = 0 F= =
. S
B82 80 4 S 29. 1
0 L= 53.505Ø 200 mm 1 =1
0
= A PVC-UF S-20
. 0 = 90 0
B
10 .
C 6 ‰ 71 6 P
‰ 6 . 01 2
CT . 4
A 11 . 0 0. 0
F= B 0 0 C 0 .6
=9 C 0 S 0
C
98 L= 47.50 Ø 200 mm PVC-UF S-20 L= 47.50 Ø 200FTmm PVC-UF S-20 ‰ = A ‰
CT h ‰ 46
L= 35.50 ØB 200 mm B F= = 6
6. = 8 L= 40.00
PVC-UFP S-20 S =9 MV =1 Ø 200 mm
.4 C . B PVC-UF S-20 1 I C
2 = B 98 =E 90 .
97 CT 0 P S CT h
7 6 P 7. 1R 91 7
1h S F= 0 =
S . 2 .9 A 0E ‰
2 .. =
6
F=
= 0 B0 12 = B
=9
0D 42 2 I B =1 1
= 1 6 99 L= 55.00 Ø 200 mm S 0 10 .
0 9 P PVC-UF S-20 .A 84 P
1 . . 7. = . 01 2
‰ h 1 0 3
1 5 0 .3 S 6 5 0. 0
L.P L.P = 9 0 C
L.P L.P . C 6 0 44 = C . 0 .5
L.P L.P 1 T
5 CT h ‰ 7 1 F L= 12.00 m 0 C ‰ 30
. =
5 F= = h 4 = 0 CT h 0
‰ =9 G 1
7
C = . B 9
9 BS= 21.67 ‰ F= =
3 9
VEREDA VEREDA
98 L= 55.00
. Ø 200 mm CT 1 7A P 8 T‰ =1 1
VEREDA
B F= 1 . B
VEREDA
7. PVC-UF
4 S-20 . 3 . A 90 .
8 9 L= 30.00 P
85 12
P .7 G0 S =9 8 ‰ 2
8 Ø 200
2
C 1 90 2
H=Variable 2 = B 98 7 8 0
32
900 H=Variable H=Variable Tuberia de Desague L= 49.00 Ø
6 200 mm 5 7. mm PVC CT h ..
2 P h S
Tuberia de Desague Tuberia de Desague PVC-UF S-20 . .6 F= = 68
2 = =
0 60 =1 1 77
1 1 2
0 0h 90 .
4.00 . 1
8.50 ‰ 90 0
7.00 = 7 .
S .. 0
1.20 1.20 1.20 1.20 1 0 3
1.20 = 99
5.60 . 3
14.60 8 B‰ 33
1 0
. T
1 0
0 A C
. 0
6 1 C
T
‰ F=
0 =1
10
17. 01
12.00 A 14.00 8
00 0..
.
55
0
77
SE SECCION B-B 0
h
C =
CC S CT
F= 1.
0
IO E B
=9
0
98
N C P 7.
2 .9
A- C 5 73
A I 1h
=
O 1
.
N 2
2
C
-
C
L= 49.00 Ø 200 mm
PVC-UF S-20
S
=
8
.
L.P L. 0
P L.P L. L.P L.P L.P L.P 0
LL..PP L. L.P L. P ‰
C
P P
VEREDA
CT
F=
VEREDA
B =9
VEREDA VEREDA 99
H=Variable P
Tuberia de 2 L=8. C C
H=Variable H=Variable
Desague H=Variable Tuberia de H=Variable Tuberia de H=Variable Tuberia de Tuberia de T 4 31..1 CT CT
85 12 Desague Desague Desague Desague u 0012 F= F=
b Ø0h
800 2. L= =9 =9
1.75 1.25 e 20= 9 99
7 2.50 2.25 2.25 20.
ri 01 8.S= 8.
5 a m. B 00
P Ø 3.
8.00 .5
d m0 35‰ 51
e 2 20
2 5h
BP2 1
D 3 0
m =2 h
e 1 =
s m
. 1
a 0 .
g 0 0
u S 0 PROYECTO:
e =
8 INSTALACION DEL SERVICIO DE
. ALCANTARILLADO EN EL CC.PP LARAN
0
0 BAJO, DISTRITO DE ALTO LARAN -
‰ CHINCHA - ICA
1.00
3.50 1.00
1.00 3.00 1. 1.00 2.50 1.0 1.00 2. 1.0 3.50 2.50 PLANO:
RED MATRIZ
0 0 00 0 (ALCANTARILLADO)
0
5.50 5.00 4.50 Localidad:
INTEGRANTES: C
4. C.PP LARAN ALVA
YANCE,
O
D
00 Jeffry I
G
O
:
C LARAN
C CHINCH
I A
O
T N
AI
NM
B I-
P
Q
h U
H
OC 4 I Región:
0 i NGENIERO:
30
= EFT ICA HIDALGO QUISPE, Omar Agusto
3 82 100
F=
3 82 200
3 82 400
3 82 500
3 82 800
3 82 900
3 82 300
3 82 600
3 82 700
1 0
9 ACEQ
. UIA
FONDO DE 2 DE
2 REGA
ACEQUIA=93 . DIO B
0
.56 3 P
C
F
9 3
9
85 SÍMBOLO
=
9
13
DESCRIPCIÓN
1
Ø 200
.
mm
1
9
PVC-UF
S-20
RED
DE
h
L=7.00
C =
m S= 4.00
‰ TC 1
.
DES
=F
9= 2
29 0
.1 AG
8 4.
22
5 2
UE
1
3
PR
OY
ECT
AD
BUZ
ON
PR
OY
ECT
AD
BUZONETA PROYECTADO
B
P
3
8 CONEXION DOMICILIARIA
Ø 200
mm
PVC-UF
S-20
B
P
3
7
Ø 200
mm
PVC-UF
S-20
85 13 100
B
P
3 B
6 P Ø 200
Ø 200
1 mm
mm
4 PVC-UF C
PVC-UF
S-20
S-20 Ø 200
mm B
PVC-UF P
S-20 Ø 200
1 C mm
3
PVC-UF
S-20
B
P
Ø 200 1
C
B mm
PVC-UF
Ø 200 D2
P B mm D
S-20 Ø 200
3 P PVC-UF B mm Ø 200
5 3 S-20 P PVC-UF mm
4 B Ø 200 C
3 S-20 PVC-UF
P 1 mm
3
3 S-20 B PVC-UF
Ø 200 F C
mm
2 P S-20
B
PVC-UF B B C
P P Ø 200
3 S-20 P
3 1 mm
1 0
2
1
F PVC-UF
9 S-20
Ø 200 mm PVC-UF S-20 Ø 200 mm
PVC-UF S-20 Ø B Ø 200 H
B P mm
Ø 200 Ø 200
P 8 PVC-
mm
1
mm F UF S-
85 13 000 PVC-UF PVC-UF
0 20
S-20 S-20 B
B P
B F Ø 200 P 7 H
Ø 200 2
P
mm mm 9 H
1 0
Ø 200
PVC-UF E 0
7
S-20 D mm
m F H
B D B m
Ø 200
P C P
mm
C
2 E B B
A
=3
6
F PVC-UF
8 Ø 200 74
P .0 S-20
1 mm 1
F
M
6 PVC-UF 2
B
Ø 200 S-20 P Ø 200
mm B 5 mm
PVC-UF
A S-20
P
1
C C FPVC-UF
S-20
5
Ø 200 mm PVC-UF S-20 Ø 200 mm
PVC-UF S-20
A B B
P
4
A Ø 200
B mm
PVC-UF A
Ø 200 B S-20
B mm
P MV Ø 200
PVC-UF B Ø 200 =E B mm I
Ø 2002 S-20 mm 1R P
P PVC-UF
mm 7 PVC-UF A 0E 2
2 S-20
PVC-UF B0 S-20 B 0D I B
S-20 P .A
Ø 200 P
1 mm 0 3
L.P L.P 9 PVC-UF 0
L.P L.P L.P L.P S-20
G B B
VEREDA
VEREDA VEREDA
Ø 200 A P T B
VEREDA B 1
mm 8 ØA200 P
85 12
P G PVC-UF 2
mm 1
H=Variable 2 B
H=Variable H=Variable S-20 PVC-UF
900 Tuberia de Desague 6 P S-20
Tuberia de Desague Tuberia de Desague 2
1
4.00 Ø 200
8.50 7.00 mm
1.20 1.20 1.20 1.20 PVC-UF
1.20 S-20
14.60 5.60
1 B
1 T
. A
6 1
0
CC S
IO E B
N C P
2
A- C 5
A I
O
N
C
-
C
Ø 200
mm
PVC-UF
S-20
L.P L.
P L.P L. L.P L.P L.P L.P
LL..PP L. L.P L. P
P P
VEREDA
VEREDA
VEREDA VEREDA B
H=Variable P Ø 200
Tuberia de 2 mm
H=Variable Tuberia de H=Variable Tuberia de H=Variable Tuberia de H=Variable Tuberia de H=Variable Tuberia de
Desague 4 PVC-UF
85 12 Desague Desague Desague Desague Desague
S-20
800 2.
7 2.50 2.25 2.25 1.75 1.25
5
Ø 200
mm
B
P
2
PROYECTO:
3
INSTALACION DEL SERVICIO DE ALCANTARILLADO
EN EL CC.PP LARAN BAJO, DISTRITO DE ALTO
LARAN - CHINCHA - ICA
1.00 B
3.50 1.00 P PLANO: DIAGRAMA DE
1.00 3.00 1. 1.00 2.50 1.0 1.00 2. 1.0 3.50 2.50
2
0 0 00 0 2 FLUJO
5.50 5.00 0
4.50 Localidad:
(ALCANTARILL
INTEGRANTES:
4. C.PP LARAN ALVA
00
YANCE,
Jeffry ADO)
C
O
D
I
G
O
:
C LARAN
C CHINCH
3 82 600
3 82 700
3 82 800
3 82 900
I A
O
L.P
N
L.P
I-
I
85 13
100
VEREDA VEREDA
H=Variable
B Tuberia de Desague
P Ø 200 mm
1 PVC-UF S-
4 20 C 8.50
1.20 1.20
14.60
B
Ø 200 mm P Ø 200 mm
PVC-UF S- 1 C PVC-UF S- 17.00
20 3 20
SECCI
B ON A-
P A
1 C
2
L.P L.P
D
D
VEREDA
C VEREDA
B B H=Variable
2 1 F PVC-UF S-
9 1 20 7.00
Ø 200 mm B B
Ø 200 mm
H 1.2 1.20
PVC-UF S- PVC-UF S-20
20
P Ø 200 mm P H 0 11.60
1
85 13
000 Ø 0
PVC-UF S- F 8 12.00 A 14.00
20 20 B
B 0
F B P H SECCION B-B
P m P 7
1 Ø 200 mm m 9
E D
B 7 PVC-UF S- PV D B ØF200 mm H
P 20 C CØ P C
2 E B Ø 200 mm B A
6C
FPVC-UF S- C
Ø 200 mm P PVC-UF S-
=3
74 20
8
.0
PVC-UF S- 1 20
1
20
M
2 B F mm
Ø 200
L.P
L.P
L.P
L.P
6 P PVC-UF S-
Ø 200 mm B 2 5 20
A PVC-UF S- P 0 F
20 1 0 Ø VEREDA VEREDA
VEREDA VEREDA
5 20
A B 0 B
H=Variable
m P H=Variable
A 4
Tuberia de Desague Tuberia de Desague
B Ø 200 mm m
PVC-UF S- PV
Ø 200 mm A
m Ø 200 mm 4.00 2.75
Ø 200 mm B 20 m CB
B PVC-UF S- B Ø 200 mm PVC-UF S- 1.20 1.20
PVC-UFPS- M V P 20 1.00 3.50
20 2
20 P PVC-UF S-
A =E Ø 200
2
I 5.60 1.00
7
B2 20
B 1R mm I B
0 PVC- 5.50
P Ø 200 mm 0E P 8.00
PVC-UF S- 0D UF
1 3
9 20 .A SECCIO
N C-C SECCION D-D
G 0 B
0 B
Ø 200 mm A P T
B B
1
GPVC-UF S- A P
P 20 8
85 12 900
B 2Ø 1
2
6 P 20
Ø 200 mm 2 0 L.P L.
PVC-UF S- 1 m LL..PP L.P
P
20 Bm
PV
T
AC
1
VEREDA VEREDA VEREDA VEREDA
H=Variable H=Variable
Tuberia de Desague Tuberia de Desague
2.50 2.25
B VEREDA VEREDA
P
2 Ø
85 12 H=Variable H=Variable
800
4 H=Varia
ble
Tuberia de Desague Tuberia de Desague Tuberia de Des
Ø
B B 2.25 1.75 1.25
2 P P
0 2 3.50 2.50
2 1.00 2.00 1.00
0 3 2 4.00
2
0 SECCIO
0 N G-G SECCION H- SECCION I-I
m H
m
m
m SÍMBOLO
DESCRIPCIÓN
RED DE DESAGUE
PROYECTADA
P
R
O
Y
E
C
T
O
:
Provincia:
CH
IN
CH
A
Región:
:
1/ 1
1
0.05 0.05
4
5
LEYENDA
8
1.- MATRIZ Ø 200mm. PVC-U
6
2.- TUBO CACHIMBA DE PVC
PLANTA
CORTE B-B 3.- TUBERIA DE DESCARGA DE PVC
4 PRE-FABRICADO
7
ISOMETRICO 3 6
CACHIMBA
CORT
E B-B
2
P
R
O
Y
E
C
T
O
:
iNGENIERO:
HIDALGO QUISPE, Omar
Agusto