LIST
FEGURÐ OG VELLÍÐAN
HANDVERK
MENNING OG SAGA
SKEMMTUN
UMHVERFI
MATUR OG DRYKKUR
ÖFUGVERKFRÆÐI
VÍSINDI
ÍÞRÓTTIR
TÆKNI
KLÆÐANLEG TÆKNI
The Liquid-Ring Pump: The Water Is the Piston
Martin

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Martin

27. september 2026NO
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The Liquid-Ring Pump: The Water Is the Piston

A bladed wheel spins off-centre in a round casing partly filled with water. The spin throws the water outward into a ring that follows the casing wall. Because the wheel is off-centre, the ring is deep between the blades on one side and shallow on the other — so each space between two blades fills with water, empties, and fills again once per turn. Each emptying draws gas in; each refilling pushes it out. The water is the piston, and nothing rubs. Lewis Hallock Nash's patent of 1914 is the form that went into production. It will pump wet gas, dirty gas, vapour that condenses and even slugs of liquid without harm, and the ring cools the gas as it compresses it. That makes it the standard vacuum pump for paper machines, power-station condensers and chemical plant. It also has a hard floor: it cannot pump below the vapour pressure of its own ring. This rung builds a see-through model and measures that floor.
Miðlungs
About 6 hours

Leiðbeiningar

1

One bucket, one revolution: Nash's cycle as a sequence

Blockly vinnusvæði

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2

Print the impeller and set it off-centre in a clear casing

Use a length of clear acrylic tube of about 100 mm bore as the casing, closed by two acrylic end plates bolted through with machine screws and sealed with O-rings in printed grooves. Print a 12-bladed impeller in PETG, 80 mm across, with radial blades and a hub for a steel shaft. Make it the full width of the casing less 0.5 mm, so each blade nearly touches both end plates — the end plates are where the gas ports are, and a large side gap lets the gas short-circuit from outlet back to inlet. Mount the shaft in bearings in the end plates **8 mm off the casing's centre**, so the impeller nearly touches the casing at the top and clears it by about 18 mm at the bottom. Nash put the variation in the casing shape instead — the enlarged lobe — but the effect on the water ring is the same.

Efni fyrir þetta skref:

Akrýlrör (glært)Akrýlrör (glært)1 stykki
AkrýlplataAkrýlplata1 plata
PETG-þráðurPETG-þráður90 g
HrástálsstöngHrástálsstöng1 stykki
Hjólalegur í hjólabrettiHjólalegur í hjólabretti2 stykki
Úrval O-hringjaÚrval O-hringja1 sett
VélskrúfurVélskrúfur12 stykki

Nauðsynleg verkfæri:

FDM-þrívíddarprentariFDM-þrívíddarprentari
HleðsluborHleðslubor
BorasettBorasett
Stafrænn skífmælir 6 tommurStafrænn skífmælir 6 tommur
SexkantlyklasettSexkantlyklasett
3

Cut the ports in the right place

The ports are crescent-shaped slots in one end plate, close to the hub, and their position is the whole design. - The **inlet** slot goes where the ring is moving AWAY from the hub — where the buckets are emptying — covering the arc from just past the close point to the bottom. - The **discharge** slot goes where the ring is moving back IN — where the buckets are filling — ending just before the close point. - Between the end of one slot and the start of the other, leave solid plate at least one blade-spacing wide at each end, so that no bucket is ever open to both at once. Mark the direction of rotation on the plate before you cut. The same pump turned backwards blows out of its inlet. Fit a hose tail to each slot through a printed manifold and seal it with silicone. Tee the vacuum gauge into the inlet hose.

Efni fyrir þetta skref:

SílikonþéttiefniSílikonþéttiefni1 stykki
Glær vínylslangaGlær vínylslanga1 metri
SlönguklemmusafnSlönguklemmusafn1 sett
LofttæmismælirLofttæmismælir1 stykki

Nauðsynleg verkfæri:

HleðsluborHleðslubor
BorasettBorasett
MerkipenniMerkipenni
ReglustikaReglustika
4

Run it, and watch the ring

Fill the casing to about a third with water with a drop of dye in it, and drive the shaft with the cordless drill. Below a certain speed the water simply sloshes. Above it the water climbs the wall and forms a ring, and you can see it: deep at the bottom, thin at the top, and the buckets emptying and filling as they pass. Close the inlet hose with your thumb and read the gauge. Increase the speed and read it again. Then feed the service water: lead a slow trickle of cold water into the inlet side and let the discharge carry the surplus out with the air into a bucket. Measure the temperature of the water leaving. Then do the test that matters: run once with cold water, once with warm. The warm ring will not reach the same vacuum however fast you drive it — the notebook in the next step says exactly how far it will get.

Efni fyrir þetta skref:

VatnVatn10 lítrar
Matarlitur (litur til að sjá straumlínur)Matarlitur (litur til að sjá straumlínur)1 dropi

Nauðsynleg verkfæri:

HleðsluborHleðslubor
Stafrænn snúningshraðamælirStafrænn snúningshraðamælir
EldhúshitamælirEldhúshitamælir
FataFata
Tær öryggisglerauguTær öryggisgleraugu
5

Vapour pressure sets the floor; heat moves it

Hleð Jupyter-vinnubók…
6

The vacuum is poor: find out why

The faults behind a liquid-ring pump that will not pull down, in the order to check them.

Flow

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7

History and context

**US 1,091,529, 'Pump and Air Compressor', Lewis Hallock Nash of New York, assignor to the Nash Engineering Company; filed 24 February 1910, patented 31 March 1914.** The specification describes a wheel turning in a cylindrical case chamber with an enlarged portion or *"lobe"*: the water in a bucket *"is caused to flow out into said enlargement by the centrifugal force of the revolving wheel"*, leaving an opening *"through which air or other gas can be drawn"*, and returns as the lobe contracts to eject it. Nash founded the Nash Engineering Company in 1905, in Norwalk, Connecticut; the Nash name is still on liquid-ring pumps today. The liquid ring's great virtue is what it tolerates. Gas saturated with water vapour is no problem — the vapour condenses into the ring. Particles pass through. A slug of liquid is simply added to the ring. That is why it drains the water from the felts of paper machines and holds the vacuum on steam condensers, where a dry pump would drown. **Honest limits.** Its efficiency is low: much of the shaft power churns the ring. The vapour pressure of the service liquid caps the vacuum. It needs a supply of service liquid and gets rid of warm effluent. And the service liquid mixes with what is pumped, so if the gas is toxic, the water becomes a waste stream to treat.

Efni

13

Nauðsynleg verkfæri

11

CC0 opinbert ríki

Þessi teikning er gefin út undir CC0. Þér er frjálst að afrita, breyta, dreifa og nota þetta verk í hvaða tilgangi sem er, án þess að biðja um leyfi.

Studdu smiðinn með því að kaupa vörur í gegnum teikningu hans þar sem hann fær þóknun smiða sem seljendur ákvarða, eða búðu til nýja endurskoðun á þessari teikningu og tengdu hana sem tengingu í þinni eigin teikningu til að deila tekjum.

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