Maanteeamet · 27. november 2020
Sisu (failidest)
SK
KOKKUVIIMINE
VP Projekt OÜ tingmärgid:
E PIIR
V1 Projekteeritud EP staadiumis maj-joogivee torustik
SK
V1 Projekteeritud EP staadiumis maj-joogivee torustik kinnisel meetodil
AHTUD
79.5
V13 Projekteeritud EP staadiumis toorveetorustik TÖÖM74+50
K1 Projekteeritud EP staadiumis olmekanalisatsioon
PK 13
SK
K1s Projekteeritud EP staadiumis survekanalisatsioon
K2 Projekteeritud PP staadiumis sademevee kanalisatsioon
K21 Projekteeritud PP staadiumis sademevee kanalisatsioon (kinnistu kanalisatsioon)
X
1
2
RIIA TN
2
79.2
79.1
1
K2s Projekteeritud PP staadiumis sademevee kanalisatsiooni survetoru
3
3
W1.1
V12 Projekteeritud EP staadiumis maj-joogivee torustik (AS Tartu Veevärk töövõtu maht)
1
79.
X
W1.1
K11 Projekteeritud EP staadiumis olmekanalisatsioon (AS Tartu Veevärk töövõtu maht)
X
K2
K22 Projekteeritud PP staadiumis sademevee kanalisatsioon (AS Tartu Veevärk töövõtu maht)
X
Projekteeritud hülss torustikul
79.3
W1.1
Olemasolev olmekanalisatsioon
X
K K
79.2
X
Olemasolev sademevee kanalisatsioon
W1.1
SK SK X X X
Olemasolev veetorustik X
X
X
2
2
79.
Likvideeritav torustik
.2
SK
X X SK X
L=43K
79.6
Projekteeritud restkaev (neeluluuk)
W1.1
X
Projekteeritud restkaev (nelinurkne restluuk)
X
W1.1
79.4
de315
Projekteeritud mururestkaev (kuppelluuk)
X
Riia tn
K2
X
GEODEETILINE MÕÕDISTUSPUNKT KAITSTA!
79.3
X
3
W1.1
X
79.
X
X
79.5
K2
X
W1.1
X
W1.1 BUSSIPAVILJON KOOS KÕIGE SINNA KUULUVAGA
1.1 TÕSTA ÜMBER NÄIDATUD ASUKOHTA
1.1 W
X
.1
W1.1 W11 W
.1
W1.1 W1.1 W1 2
X
4
X
3
12.5
79.6
X
79.7
X
W1.1
W1.1
K2
X
315 L=
4
79.
K2
W1.1
79.4
X
X X
de
1
L=13.4 4
X
de200K2
2
3
X
X
X
5
79.6
X
4.
X
1
L=
0 2
20 K
KWXs1.1X
79.3
A
X
X
2
79.3
.5
de
=26K
otsakork de110
79.7
X
79.5
W1.1
79.4
X
W1.1
e315 L
X
X
5
.4
79.
79
X
K2
d
.5
otsakork de160
X
W1.1
79
W1.1
79.8
W1.1
X
2
otsakork de160
L=21.5
1
K2
X
Ko
de200
X
.6 K2
79
Kb
1
2
6
X
79.
otsakork de110
X
3
W1.1
X
W1.1
W1.1
.7
BUSSIPAVILJON KOOS KÕIGE SINNA KUULUVAGA 79
X 79.6
K2
TÕATA ÜMBER NÄIDATUD ASUKOHTA
X
X
X
79.6
79
W1.1
otsakork de110
.8
X
W1.1
X
otsakork de110
2
W1.1
V1-2 (olev kaev 3 siibriga)
K
79.7
X
X
79.7
79.6
79.8
.2
X
.7
W1.1
X
79
L=49
otsakork de160
79
.7
°
X
23.67
otsakork de160
de315K2
otsakork de160
X
W1.1
1°
W1.1
79.6
X
.0
79.
33
X
X
W1.1 X
otsakork de110
6
79 . 6
79
.7 79
79
.6
79
K2
.6
X
.5
W1.1
79
W1.1
X
X
79.4
.4
X
7
79.5
79.4
79.
79.4
79
79.45
79.45
RIIA TN
.5
W1.1
TN
X
X
79 79
79.
I
V1
TUV
79.5
.5 79.5 79.4 .6 otsakork de110
NÄHTAVUSKOLMNURK
5
79
K2
W1.1
V71 79
X
W1.1
.2
79.3 .5
9.
79.4 4 V1
X=20.6 79.4
79.4
32
1
K2 V1
L
de250
79.5 79
X
4
.5
X
K2 V1
X79.
79
de 4°
9
1
10079.4
3 2
.4
1
6.
79 20 15.
.4
5
V1
4
79.4
79.6
=1
.1 0L 79
4
m(
79
00K2
5 =1 .3
79.3
L
K2
W1.1
79.3
A TN
V1
V=
X
W1.1
2.3
V1
X
K2
50
79.3
2
W
X
RA 1.1
de
RII
79.3
79.3
K2
W1.1
79
W1.1 HU
2
W1.1
X
79
.
.4
79X
5
79
W1.1
79.
.1
L
.3
.1
DA D
79
W1 PROJ.LUMESTEN
X
V)
.3
X
.1
79 .1
W1
V719
79
.2
79.2
X
X
78.9
39
79.3
79.1
.4
4
12
78 .8
79.
WX1.1
L=42 2
.9 78
00
79
.9
79X
K
0 .
.1
.1
9
78.
K0
X
79
.2
79
79.2
PR
2
2
.2
78.9
79.2
79
2
2
.8
2
2
3
2 2
W71.19
79.1 78.
W1.1
78
7 9.
.3
1
X
2
V1
1
78.8 8
2
1
V1 V1
2
0
1
1
2
79.1
1
X
1 1
X
79.1
de25
K11
79.0 1 78.7
K22
1
K11
V12
79
K22
1
K11
1
V12
K22
79 .3 79.1
K11
V1
79
V12
V1
K22
K2
79.1
.2 78.9
V1
K11
V1 P3
V12
K22
de160 L=18.5 K11
.1
K2
K11
78.7 3
X
0 L=28.0 L=14.1 K11
K22
79.2 79. de16P025 L=25
V1 50L=25
de16 .3
V1 42 5
3
1
K11
23
de315 K11
1
78.8
K2 K2
1
3
V1 3
.2 1
K2
79.2
2
V1 K11 V1 K11 25 6 1
de31
K11 K11
78.7 3 1
K2
79.0
V1 0 L=26.9
4
X
V1 de16 V1 1 1
K2 K2
2
3 4
V1
P 100 L=20
de16 .6
L=22.3 3
K11 K2 2
79.2
78.8
4
79 3 2 1
K11 K2 .0
V1 0 L=28.6 V1
1
5 K11
3
2
79.2 de31 K2 78.9 2
X
K11 2 3
79
0
5 4
K2 de315 L=27.9
78. 1 79.
.2
1
2
79.0
78.8
de25 K2
1
1
3
K2
79
9
2 3
K2
2
1
K2 K2
de200 L=15.1
X
79.2
X X
.1
.
2
79.0
1
79.1
K2
23
78.8
79.
79 X
79 79.1
W1.1
de110 L=16.6
0
79.0 78.9
W1
1
X
.0
79.2
K2
78.9
.1
79.1
79.2 79.1
V1 X
79.1
.1
79
79.1 0.00° 00
0.0 .0°0°
3
2
79.1
K2
79 78.8
V1K1
78.9
K2
.1
X
W1.1X
.1
K2
78.9
78.8
W1.1
79.0 78.9
79
79. W1
79.1 79.1 78.9
X
0 .0 W1.1
K2
0.00°
79 9
.1 79.0
78 X
79.0
1
INN
2
it B
79.0
.1
W1.1
.9
K2
.
NWi 1
78 8 W1.1
L
a tn
3
W1.1 W1.1 W1.1
X
X
100 m (V=50 78.9
TU PIIR . 78.9 W1.1 W1.1 W1.1 W1.1
78 7 W1.1 W1.1 .0
R
R 78.9 79.0
AHULDAV) W1.1
1
79
A
1
78.8
T UDE ET
78.8
ik
W1.1 W1.1
1
79.
X
79.0 W1.1
. W1.1 W1.1
L=20 2
78 6 TN W1.1 W1.1
s
W1.1
W1.1
X V
.7
X
RIIA ringr.
79.1 79.1
K
AHTTEEAM
2
78.7
2
a . W1.1
it B
78
10 m
79.2
78 A
a
78 X
RII
.3 LUMESTENDI ASUKOHT 79.2
X
78.6 79.W31.1
1
.5
M
Ni
78.9
.8
m ÖÖ AAN
8
X
78 7 4 TUVI TN 79.3
e2
78.9
.2
t s T . 78.5
TARTU LINN
78.7
.0
TUVI TN
79.35
78
0
79
0
Me
M VEOKI PARKLA
X
78
2 78.4
de25
.3
+
X
78 RIIA ringr.
MAANTEEAMET
9.1
e .1
6
X 78
t 77
37
78.3
7
77 .2
K2
3
78
77 77 78 1
K1
77 .9 .2
a
79.
77.5 .8
X
.5
V1
79
.0
j .
.7 X
.6 7 . 78.2
W1
X
P P 14
X
8
.2
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gu
77 77.4 7 79.3
.1
it A
79
.0 78.1
8 X
78 7
7 9 1
X
Ni
78.0
'
X
Ko
23
X 79.2
'N
X
. X
.1
W1.1 W1.1 W1.1 5
4
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W1.1 77
78 .6
W1.1
XW1
W1.1 X 77.9
.0
.8
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78 .5
P
.
79
7 X
X 78.6
79
78 4
7 7.8
Pa
X 7 77.7
1
V
X 1
X
.7
V
W1.
78. .3
79.2
X
77 6
Pa
79.1
W1.1
W1.1
78 2
79.3
W1.1
it A
79.
X
.
78.
4
.7
.1 77 77.6
Ni
.1
78.1
X
W1
78
W1.1 X
.5 79
78.0
7 7 77.5
X
79.0
77.9
'
.4
'N
.3
X 77.4 .0
77.8
79.3
77 3
X
79
.7
79
77.7
X
77.3 1
77
.
P
. 2 .
77
77.6
79 79
X
Pa
X 77.2 .0
77.5
.2 .1
W1.1
W1.1
W1
V
W1.1
.1
7 79
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V1
77.4
W1
7
77X.1
78.7
Pa
78
.1
77.3
79.2
X
15Y
77
X
77.0
77.2
16Y
'
X
'N
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.0
76.X9
77.1
.1
V
77
W1
W1
X .1
77.0 .9
X
W1
X 8
Pa
P
.9 76. 7
78.9
76
X W1.1
76 .8
Pa
X
X
76.X 6
X X 79.1
1.1
V1
76 .7
.8 W1.1 W
Ko
79
76 76. .5
W1.1
1.1 25
de250 L=
X
W1.1 W
76 6
W1.1
79.2
W1.1
X
it A
76 .5
.1
6 .7 76 X 4
X 78.
8 0.00° 2.54°
W1.1 W
1.1
Kb
K2
6.3
79
7 79.
.
WW1.1.11
de200 L=15.8
76 .4
. W1.W11.1 9.3
3
Ni
.6 76 3X
X 4
1
24.7
.0
2
76 de250 L= K2
W1.1
W1.W11.1
X
78
=1
79.3
76 6.3
7
.8
.
it B
76 .2 W1.W11.1
K2
.5 79.3
X
.9
78
K2
0L
76
7
79.4
Ni
76 78
K2
1
79.4
3
X .8 79
L=31.9
X
4 X
7 . K2
20
6 .1 W1.1
de250K2
2
.1
76
76.1 V1 79. W11.1
W
L=13.2
X 79.4 W1.1
Va
de
.3 78 0
.2
L
77.7 7 6 .7 K2 W1.1
X
E263. LÕIK
X
1
Pä
W1.1
Kb N
.1
78.8
79.3
X
76.0 76 W11.1 79.2
76.2
77.6
W
RIIA ringr.
77.6 W1.1
3
2
Kb
.
X 5.54°
it A
0.00°
76
75.9 X 1
V1
de200K2
79
Ko
2
77.5 76.1
.0
75.8 1.1
W1.1 . 79.2 W1.1
it B
Ni
W 1
1
3
1.1.11
X
N
En
25W
2
W1.1
12
77.4 W.3
Ko
75.7 X K2
76.0 Wd1.e1315 L=
3
X
1
Ni
X
Kb
W 79.1 W1.1
Lp
75. K2 V1
K2
7 .9 dWe13.1
5
6
Kb
75.9
3
77.3 X
75=159.5
78.9
2
78.9
3
W1.1 W1.1
S
K2 15 79.0
'E'
X W1.1
Kd
X
75.8 L .
1
7 4 L=2
de250 L=28K2
77.5
78.9
78
X
85 X
78
W1.1
78.
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76.3
78.
76.4
77.2
76.2
78.
4755 .3
79.5
76.5
8.2
78.
Ko
76.6
Hb
78.
.9
V1
76.7
.8
78.
75.7 de .2
76
WX1.1
78.
K2
76.8
78.
77.
77.
77.
7
77.6
77.3
77.4
77.5
76.9
77.0
77.1
77.2
6
S
V1
W1.1
5
K2 X
1
75
4
75 9
W1.
3
.1
Kd
Kb
77.1
74
2
75.6 W1.1
1
0
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9
79.6
8
W1.1
7
X
K2
.0
76
.
W1.1
78
X
2
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1
X
1
.85
75
En
.5 74.8
.1
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K2
75 L=23 .85
.9 79.7
3
77
Lp
2
75.
e458
Ko
W1.1
X
8 X X
X
8
N
S
d
W1.1
K2
75 V
7
K2
.0
Kb
W1.1
Kd
75.7 X
Kb
77
V1
.3a
1
74.8
74.9
75.0
79.8
75.1
2
7.3
W1.
.2
75.4
2,8%
W1.1 2
W1.1 de250 L=
5P
.4
1
78.8
X
2
78.8 75.6
.5
1
K2
it B
W71.
.6
82
1
6.8
X
Va
3
.7
82
15 L=3
K2 X K2
.8
82
W1.1
3
4
78.75 75.5 W1.1
82
de3
Ni
.9
.91
82
.0
82 2 3
X X X 79.8
X
76
K2 X W1.1
.1
79.9
W1.1 K2
1
78.75 K2
83
75.4
.2
PRO 75.3
83
2
.3
.7
'E'
=40K
.8
K2
W1.1
83
80.0
.4
L
sp
W1.1
W1X Hb X
J. P 2
4
de200
S
83
76 75.3
.5
78.7
X
S
3
W1.1
2
1
83
UH
.6
Kd
78.7 79.9
83
Kd
78.
2,8%
S
.7
En
KEK K2
1
W1.1
83
2
9
Kd
3
83
V1
X
OH 79.
W1.1
2
T 79.8 K2
7
.8
84.
K2
W1 .1
75
it B
3
o
W1.1
.9
78.8 9
1
78.
83
.0
K
.1
79.7
.2
77.4
83
78.6
K2
.2
78.6
.1
Ni
84
X
79.5 X
Kb
2
79.
W1.1
2,5%
75
84
6
79.6 W1.1 X
X
1
X
W1.
.4
W1.1
.3
79.8 W1.1 7X
9.4
2
5
78.7
84
X
84
75.3
78.5 79.5
.
79
X
84
78.5 W1.1
3
1
.5
79.4 X 79.3
X
79
W1.1
2
75.4N
K2 K2
sVp1
X
X K2
Ko
79.7 W1.1
.6
.4
79.3
X79.2
Kb
79.3
7
78.4 W1.1
.8
84
.9
.
2,5%
X L=49 K2
84
79.2
78 78.4
.9
E263. LÕ
0 W1.1
84
En
5. de250 2
X
75.5 Kb
79.6 X
W1.1
.6
84
79.1
X
.22
8 K
79.2
79.
X
1
W1.1 79.1
=42K
PROJ. MÜRATÕKKESEIN
W1.
W1.1 .1 K2
K2 79.5 X
W1 t B
85
78
RIIA ring
X
0
.1 W1.1
Ko
TÜÜP MS 2.2 K2
78.
3 W1.1 5.2 K2
X
W1
75.6
.9
78
i
X
3
79.0
X
3
Ni
1
W1.1 X
2
8
Kb
77.
75.7
75 75.4
W1.1 79.4
IK 2
.8
L=160m
200 L
.1
K2
W1
78
75.8
K2
V1
75.9
X
78.6
.7
.1
W1.1 .3 W1.1
76.0
.5 85 78.9 =50.0 K2
7
.3
76.1
e200 L
K2
r.
X
7 8.6 85
78
X
2
76.2
W1.1 85.6 W1.1 X d K2
76.3
.2 788. .7 .4
1
79.3.1
.6
1