- Project Runeberg -  Den Norske Nordhavs-expedition 1876-1878 / The Norwegian North-Atlantic Expedition 1876-1878 / 2. Bind /
153

(1880-1901) [MARC]
Table of Contents / Innehåll | << Previous | Next >>
  Project Runeberg | Catalog | Recent Changes | Donate | Comments? |   

Full resolution (JPEG) - On this page / på denna sida - Sidor ...

scanned image

<< prev. page << föreg. sida <<     >> nästa sida >> next page >>


Below is the raw OCR text from the above scanned image. Do you see an error? Proofread the page now!
Här nedan syns maskintolkade texten från faksimilbilden ovan. Ser du något fel? Korrekturläs sidan nu!

This page has never been proofread. / Denna sida har aldrig korrekturlästs.

speeifiske Vægter i de forskjellige Dyb. lean man regne
med Differentsformelen:

A p = a„S„ . Al

der udtrykker Trykkets Tilvæxt, i Atmosfærer, i et
Vandlag, hvis midlere Tæthed, ved almindeligt Lufttryk, er S„,
hvis Højde er H, hvis øverste Begrændsningstlade ei’ en
Niveauflade, der har Dybden H„ (under 45° Bredde) og
Trykket p„, underste Begrændsningsflade Dybden
og Trykket p„ p. Beregningen efter denne Formel

sker lettest ved successiv Approximation ligesom efter
Formelen for p Side 148.

Etter Tornøes Tabeller har jeg beregnet den
gjennemsnitlige Værdi af Havvandets Tæthed for de forskjellige
Dybder, idet Observationerne bleve fordelte i Grupper efter
Dybden 50 til 150, 150 til 250 Favne o. s. v.. inden hvilke
der toges Middel saavel af Dybderne som af Tæthederne.
Saaledes fremkom den følgende Tabel, første Halvdel.
Tallene i den anden Halvdel ere fremkomne ved grafisk Udjevning.

specific gravities in the different depths, we can then
compute with the formula of differences: —

A V = «»«,. , .r^Afi,

)’»4

A/)

which expresses the increase of pressure, in atmospheres,
caused by the weight of a column of water whose mean
density under ordinary atmospheric pressure is 8„, whose
height is /S H, whose upper surface is a surface of level,
which has the depth H„ (latitude 45°) and a pressure of
p„, its lower surface having the depth H„ + A H and the
pressure p„ p. The computation, according to this

formula, is most easily made by successive approximation,
as with the formula for p. page 148.

From Tornøe’s Tables, I have computed the average
density of the sea-water for the different depths, the
observations being divided into groups, according to a depth of 50
to 150, 150 to 250 fathoms, etc., within which the mean was
taken, alike of the depth and of the density. In this manner,
was produced the first half of the following Table. The
figures in the second half were found by a smoothing curve.

Dybde ,, Antal Obs. Dybde

(Depth) ’ " (Number of Of,s.) (Depth)

o Fv. 1.02690

117 Fv. 1.02731 21 100 727

202 756 16 200 755

299 776 9 300 777

416 709 6 400 797

506 804 7 500 804

611 801 8 I 600 805

695 812 5 I 700 804

800 800 2 800 802

904 768 3 900 799

1006 780 i 1000 796

iito 798 4 ’100 794

1205 800 2 1200 791

1316 788 3 ’ 1300 789

1407 778 2 1 1400 785

1511 783 3 1500 782

1607 790 i 1600 779

1695 770 3 1700 776

I760 8IO T 18OO 773

1861 82O I j I9OO 77O

2000 767

Efter Formelen for p beregnedes
Tabel, første Halvdel.

den følgende

According to the formula for /\ p. I computed the
following Table, first half.

Don norskt- NordlinvsiixyiéMtinn. H. Mohn: Nordhavets Dybder. Temperatur og Strømninger.

20

<< prev. page << föreg. sida <<     >> nästa sida >> next page >>


Project Runeberg, Sun Dec 10 20:01:49 2023 (aronsson) (download) << Previous Next >>
https://runeberg.org/nordhavexp/2/0337.html

Valid HTML 4.0! All our files are DRM-free