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Full text: 61, 1933

Ann, d. Hydr. usw. 1933, 
Thiel, G.: Strombeobachtungen deutscher Fischdampier unter Island. 
CL EN EEE EEE N 
Tafel 41, 
EEE N 
He a. 
HA 
1. Hralsbakur-Süd. 
Ausgleichung der Nord- und Ostkomponenten, 
Nordkomponenten Ostkomponenten 
Dix | I Dy (Paar 21 |] bo vo= |? % |P %0 %0) 
B | RR B—R B | R |B_R 
Tabelle 2. 
R Ort | Ort Ort 
Meß- | ı mE 2 Lı  Meß- z Meß- i a 
stelle Geographische Lage ATZE | Jahr, stelle Kun ae Az Jahr, |: a [pt Ankalıl | ‚Jahr, 
S 7 | ot Beobacht. | Monat 1 ’ © 7 [|Beobacht. Monat = + © * [| Beobacht. N onat 
„ Ine Hsh&E sr.“ " Ayest, ; 
7 S 7 3 4 199) 47 1931, X. 
14 6 at 63 1b |2) 40 4 x IT, 
6 a8 63 10 20 45 8 « wirt 
16 %S 28 63 10 20 45 6 « IX. 
45 16 24 63 10 20 45 9 x X. 
„ 50 16 5 _63_10 20 45° 1 [ + XL 
63 50 46 10 42 11 90 45| 29 
53 50 16 10 ©. 
63 50 116 10 5 ı . Imamnaeyjar-West, 
53 46 116 321 % 63 22 |21 18 4 11931, IV. 
53 50 |16 30[ 4 63 21 21 30 11 x « 
53 50 | 16 30 | 1 63 14 21 50 6 $ 1. 
PO AT an 16 63 27 121 40 8 < IL, 
63 91 91 3851 92Q 
i0 RW) *a.Nordwest, 
63 45 |: 12 Se 1930, VII. 
63 45 123 10 13 . |1031, IL 
63 45 | 23 20 6 «x & 
63 45 | 23 17 4 1|1930, VIL. 
63 52 |23 8 1 & & 
63 50 122 55 3 1981, x 
63 50 23 0 ® ! 1930, VII 
63 55 22 57 4. . IX. 
Tabelle 4. 
; Zee hd. 
Mondstunden |] ie Sonnen- [mone 
zeit ze 
3 
| | 
| cost | sint 
n - 
3biSYHW 528 1740| 912" 41.000 |-- 0.978 | — 0.206 | + 3.18 | + 0.58 + 006 40.49 204 |1.4400 + 0.56 | + 0.09 | — 0.05 | + 0.04 | 0.24 | 0.0096 
3 «4 _5 6 —153.0| 2122 4+1.000|— 0.846 | —0.533 | 0.00 0.00 +-0.08| — 0.08 0.08 0.0064| + 1,50 | + 1.50 | 4 0.14 | + 1.36 | 1.36 1.8496 
L «3 —3 19 — 99.5 | 263.9. 41.000 | — 0.106 | — 0.994 | + 1.60 + 0.80 | ++ 0.20 -4- 0.60 1.20 | 0.7200| + 1.87 | +0,94 + 0.65 | + 0.29 | 0.58 0.1682 
1.2 233 — 76,5 | 286.1 }1.000 | +0.277 | — 0,961 | — 0.87 —0.22 | + 0.28 — 0.45 1.80 | 0.8100] + 2.52 | + 0.63 | 4 0.80 | — 0.17 | 0.68 | 0.1156 ! 
12bis1v.H.W.|. |—1 38 — 49.0| 312,7 + 1.000 | -+ 0.678 — 0.735 | + 2.09 | 4 0.42 | 40.25 | +4 0.17 0.85 | 0.1445| + 4.05 +0,81 +0.88 —0.07 0.35 0.0245 | 
1<0« « 1°| —036/— 180| 342.6 1-1.000|+0.951 | — 0.299 | — 0.25 — 0.03 -+0.22 — 0.25 | 2.25 | 0.5625 | + 4.02 -+0.45 | + 0.83 | — 0.38 | 3.42 | 1.2996 
10 «1n.H.W.|7|4+036|+ 180| 17.4 -1.000|+4- 0.954 +0.299| + 3.07 | + 0.44 -- 0.16 | + 0.28 1.96 | 0.5488| + 6.09 | + 0.87 |"-4- 0.59 40,28 | 1.96 0.5488} 
1 <«2« < +1 50/4 55.0| 53.1 '-1.000 ++ 0.600 + 0.800 | — 0.38 — 0.19 + 0.08 | — 0.27 | 0.54 | 0.1458] — 0.92 | — 0.46 +0,23 | — 0.69 | 1.38 0.9522 { 
2bie3n.H.W.| |+3 O0l-4 90.0| 86.9 -1.000 +0.054 | 4 0,998 | + 1.39 41,39 0.00 +1,39 | 1.88 1.9044 ' — 0.57 | — 0.57 —0.08|— 0.49 | 0.49 0.2401 
3 e4« «. |5|-43 29| + 104,5) 101.0 }-1.000!— 0.191 | + 0.982 | + 0.61 | + 0.12 | — 0.02 | +0,14 0.70 0.0980 + 1.96 | +4-0.39 — 0.19 +4-0.58|2.90 1.6820 
4«<5« « |414+446|+143,0| 183.2 7 1.000 | — 0.746 + 0.666 | — 2,89 | — 0.72 | — 0.03 — 060 2.78 1.9044 —38,97| —0.99 | — 0.30 | —0.69 2.76 1.9044 
z306« « 161454214-1710 165.2 + 1.000 |-— 0.967 | + 0.255! — 1.60 — 0.271 — 0.01 | — 0.26 1.56 10.405€ -0.09!—0.02|-—0.23 -40.2111,.26 0.2646 
T a 8.6910 
Normalgleichungen, Koeffizienten und ihre mittleren Fehler, 
a 5 € I 8 
[1 52.000 + 4349| — 0.172 | + 5.950 
—— — 32.386 |— 5.647 | +4 4.021 
—— — + 19.602 | — 2.604 
[ll Er = 8.700 _ 9.97% ı 
My = 4 0.983 
Ay = 40.11 
mi4dy) ==0.14 
By =+009 
m(By) = 40.18 
Ox = —011 
m(Cx») =-4 023 
2. Hyalsbakur-Si 7 nst, 
4 64 25 | 12 40 9 1931, XL 
> 64 20 | 12 50 2 1930, IX. 
; 64 20 |12 40 11 1931, XIL 
# 64 20 |12 40 20 1932, LI 
"64 20 [12 25 10 1931, VIIL 
64 21 16 nm 
„ tokksnes-Ost, 
» 64 12 | 14 10 1 1931, X. 
) 64 8 [14 213 7 x « 
; | 64 10 114 25| 16 11930, 1X. 
1 64 5 114 15 8 x VIIL 
3 64 10 | 14 35 1 1931, VIIL 
HZ 
CU a Tr 
"srtland. 
53 20 18 57 2 
5% 20 | 18 57 47 
63 20 |18 57 5 
53 20 | 18 57 10 
63 20 | 18 57 19 
33 20 | 18 57 30 
"° 20 |18 57 » 
4 FR 6 
1930, VIT 
x VID 
<< DD 
1981 
3 
V. 
ZIE 
IT 
h 
x 
u | 
k 
1 | 
3 
4, . !snes-West, 
64 10 |15 2 10 
64 5 |15 15 6 
64 3 115 22 5 
64 0 115 10 2 
64 0 |15 10 16 
Bf 1 115 1°” 
1931, VI. 
1930, IX. 
: vll 
® « 
931, IX 
x 
33 50 |. 55 . 419, L 
33 30 23 © 3 1930, VIL.' 
33 52 |23 8 1 Er 
33 45 | 22 48 2 * | 
3.5 1223 57 18 x IX. 
OT za 
rm 
h m o 
— 5 56 = 188.0 
5 0=2151 
—4 0=244.1 
—3 0=273.1 
—2 0=3021 
—1 0==331.0 
0 0= OL 
+1 0= 289 
+2 0= 580 
+3 0= 869 
+4 0=1159 
+5 O0=144£ 
& 6 ü— 1099 
1 
Gezeitenstrom: 
Li = 014 Ro = 0,59 
M(Ry)=-+021 M(RA)= + 0.20 
Ra == 061 
M (Re) = 4 0.20 
Restetrom: 
RR = 028 
M (Rp) = 4 0.15 
Tabelle 3. 
Hyalsbakur- Süd. 
Nord- ur” Jstkomponenten des Stromes, 
Zeitunterschied Strom 
gegen das nächste en 
H, W. in QU. * Rich. A 
vor nach tung | digkeit 
Tabelle 5. *., Hvalsbakur-Südost. 
/ ZN A N Igleich n. 
Mondstunden [2 ınter- | Pla | Pla A 
sah? a b 6 Ir %o 
[152000 |-+4- 4.563 |+ 1.876 | + 49.400 | — 65.100 
25.319 | -- 2,358 | +4 18.374 | — 14.012 
+ 26.687 | -- 3.668 | + 38.106 
| 185.010 -- 408.345 
et 
kr h 
bis 5 v.H.W. 
*zd4d« € 
€ 3 € <& 
«BB « < 
x 1 « x 
< 0 % * 
« 1 a. H.W- 
Sm Sm ' 
— 0.00 | — 1.00 
—5 2] —035 | — 0.85 
—3 41| +0,38 | — 1.42 
—2 341] 1.13 | — 2.29 
—124| H032 +032 
0 10 +01 A011 
21 ‚0.89 -- 
wu 1.13 = 
0.35 | 
“0.28 
10.07 
LAAR 
h m 
—0 54 
-1 0 
—0 20 
—0 17 
—0 43 
-o0 8 
—0 & 
0? 
0 ; 
—(} 
ib 2m 
bis 
üb Om 
vor 
9 2.0 
NNW| 0 
WSW| 2 
NO | u 
NO | 9 
_— | 2.00 
046] — — 
— | 077, — 
071 — Ö.71 
0,35 — 0.35 
— — 1.00 
_— 1.00 
1.00 = 1 
KL 1.00 | _— 
+ 1.52 | — 1,77 | + 6.06 | — 2.04 
— 1.77 — 2.04 
— 025 +4.02 | 
LI 
(all = 
NN N 
4N En 
n(4Ax) =. “5 
„M By =+ < M 
906 n(By) = 0.04 
— 0.08 Or = + 0.00 
10.76 | CC) = + 0.04 
Gezeitenstrom: 
RR = 006 Ro = 0.16 Ro = 0.17 
M (Rl=-004 MR) = -E010 M(Ro) = + 0.10 
! 
J 
4 
} 
"pllıro == 250,896 
NO =. 537 
Ao =— 2.13 
Bo = 005 
LU (Bo) =-+ 011 
Do =— + 0.16 
m(Co) =+ 010 
1 
2} #7 
73 
1 
> 
zn 
4 < 5 
+ 6 
0) | 
Restsatrom: 
Rx = 0.16 
M (R,)= 40.06 
Fortsetzung der Tabelle 5 auf Tafel 42. 
zz a 
br A EEE
	        
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