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Qanat
Karen

Criado por

Karen

20. agosto 2026SE
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Qanat

A tunnel dug slightly less steeply than the ground above it, running from an aquifer in the hills to a village on the plain, delivering water by gravity for tens of kilometres with no pump and almost no evaporation. The trick is entirely in the gradient: the tunnel must fall enough to flow but not so much that the water scours the floor and collapses the roof. Vertical shafts are sunk every few tens of metres to remove spoil, ventilate the workings and give access for maintenance, and from the air a qanat is a dotted line of spoil rings marching across the desert. The technique is Persian, at least three thousand years old, and it still waters settlements in Iran, Oman, North Africa and western China.
Intermediário
2 hours

Instruções

1

Find the water table and the ground slope

A qanat only works where the water is higher than the destination.

  1. Build a sloping tank of sand with a saturated zone at the high end.
  2. Mark the water table level and the ground surface profile.
  3. Note the vertical gap between them at each point.
The mother well goes down to the aquifer at the high end. Everything after that is about getting that water out at the surface further down the slope — which works only because the LAND falls faster than the water table does.

Materiais para este passo:

Steel RulerSteel Ruler1 peça
ProtractorProtractor1 peça
2

Set the gradient — the whole craft

Too flat and it silts up; too steep and it destroys itself.

  1. Lay a tube through your model at a very gentle fall — of the order of 1 in 500 to 1 in 1000.
  2. Run water and watch the flow.
  3. Now try a steep gradient and watch the flow scour the channel.
A steep qanat erodes its own floor, undercuts the walls and collapses. A flat one deposits silt until it blocks. The muqanni who cut them worked to a gradient measured in a few metres over a kilometre, underground, by lamplight — which is why it was a hereditary specialist trade.
3

Sink the shafts

Vertical shafts at intervals along the line, and they do three jobs.

  1. Sink shafts every 20-50 m along the route.
  2. Note that each provides spoil removal, ventilation, and later access.
  3. Ring each with its spoil — that ring keeps flood water and debris out of the shaft.
The spoil rings are functional, not laziness. They are also what makes a qanat visible from the air as a line of craters, and they are how archaeologists map systems that have been dry for centuries.

Materiais para este passo:

Baltic Birch Plywood (1/8 inch, 12x12, 10-Pack)Baltic Birch Plywood (1/8 inch, 12x12, 10-Pack)1 pacote
4

Compare against an open channel

Measure the advantage that justifies all that digging.

  1. Run equal volumes through an open channel and through a covered tunnel.
  2. Leave both under a lamp or in sun for a set period.
  3. Measure what is left in each.
The open channel loses substantially more to evaporation, and in a desert climate the gap is severe. It also collects windblown dust, weeds and animals. The tunnel costs vastly more to build and then delivers water year after year with almost no loss and no energy input at all.

Materiais para este passo:

Borosilicate BeakerBorosilicate Beaker2 peças
Digital Kitchen ScaleDigital Kitchen Scale1 peça
5

History and context

Qanats — karez in Afghanistan and western China, falaj in Oman, foggara in North Africa — are Iranian in origin and are attested from around the first millennium BC. The Persian Qanat is a UNESCO World Heritage listing, and some individual systems have run continuously for well over two thousand years.

The self-limiting property is the elegant part. A qanat cannot extract more than the aquifer naturally yields — it is a gravity drain, not a pump, so when the water table falls the flow simply reduces. It is physically incapable of over-extraction. That is a governance mechanism built into the hydraulics, and it is precisely what modern diesel and electric pumps removed.

Which is why they are failing now. Across Iran and the wider region, tube wells fitted with pumps draw the water table below the qanat tunnels, and the qanats go dry — not because they broke but because someone upstream can now take water they could not previously reach. A system that was sustainable for millennia is being emptied within decades by a technology that ignores its constraint.

The social structure went with it. Qanat water was traditionally allocated by timed shares, measured with a water clock and administered by the community, with maintenance obligations attached to the rights. The muqanni trade was hereditary and dangerous — collapses were common and the work was done in cramped, unlit tunnels. Both the engineering and the institution were needed for it to work, and both are being lost together.

Materiais

5

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