UBUHANZI
UBWIZA N'UBUZIMA
UBUKORIKORI
UMUCO N'AMATEKA
IMYIDAGADURO
IBIDUKIKIJE
IBIRIBWA N'IBINYOBWA
UBWUBATSI BUSUBIRA INYUMA
UBUMENYI
SIPORO
IKORANABUHANGA
IBYAMBARWA

Youblob (generated from this blueprint's notebook) · CC0
Counterflow: The Same Area Does More When the Streams Run Opposite
Every heat exchanger in this batch — the economiser, the condenser, the plate exchanger — is built to one rule: make the hot and cold streams run in opposite directions. It is the single cheapest improvement in heat transfer, because it costs no extra metal.
Run the same way, two streams approach a common middle temperature and stop; the cold one can never leave hotter than the hot one does. Run opposite, the cold stream meets the hottest fluid just as it leaves, and can come out warmer than the hot stream exits.
This rung builds a tube-in-tube exchanger from a copper tube inside a hose, logs four temperatures with an Arduino, and runs it both ways to measure the difference.
Hagati
About 5 hours
Amabwiriza
1
1
Parallel against counterflow, in numbers
Parallel against counterflow, in numbers
Gupakira ikaye ya Jupyter…
2
2
Build a tube-in-tube exchanger
Build a tube-in-tube exchanger
Take 2 m of 10 mm copper tube and slide it inside 2 m of clear vinyl tube with a bore comfortably larger — the annulus between them is the second channel. At each end fit a tee from the PVC fittings kit: the copper passes straight through the tee and is sealed where it exits with silicone; the tee's side branch is the jacket connection.
You now have two independent channels: inside the copper, and between copper and vinyl. Coil the whole thing loosely and insulate it with glass wool, leaving the four connections free. Push a waterproof temperature probe into each of the four connections through a hole sealed with silicone.
Ibikoresho by'iyi ntambwe:
Umuyoboro w'umuringa mm 102 metero
Umuyoboro wa vinili ubonerana2.5 metero
Urutonde rw'ibihuza umuyoboro wa PVC1 ikirundo
Igitambaro cy'ubwoya bw'ikirahure gikumira ubushyuhe1 sqm
Uruvange rw'ibifatanya by'imiyoboro1 ikirundo
Temperature Sensor - Waterproof (DS18B20)4 ibiceIbikoresho bikenewe:
Igikoresho cyo guca umuyoboro
Icyuma Cyivumbura Kidafite Insinga
Ibyuma Byinshi byo Gucukura
Uturindantoki tw'uruhu tw'akazi3
3
The logger
The logger
Four DS18B20 probes on a single data wire, logging hot in, hot out, cold in and cold out every few seconds as comma-separated lines you can paste into the notebook or a spreadsheet.
hx_logger.inoarduino
Ibikoresho by'iyi ntambwe:
Arduino Uno R31 igice
Rezisitansi ya kilo-ohm 102 ibice
Insinga zo guhuza1 ikirundoIbikoresho bikenewe:
Mudasobwa Ifite Arduino IDE4
4
Run it both ways
Run it both ways
Feed the copper with hot water from a bucket on a shelf — about 60 °C from a kettle topped up with cold — and the jacket with cold tap water. Set both flows to the same rate by timing each outlet into a measuring jug (aim for about 1 litre per minute).
**Parallel:** both streams enter at the same end. Let the logger settle for five minutes and note the four temperatures.
**Counterflow:** swap the jacket's hoses so the cold enters at the far end. Keep both flows the same. Settle and note.
Compare the cold outlet in the two runs. In counterflow it comes out noticeably warmer — often warmer than the hot outlet — with no change to the hardware except which way one hose points. Work out the heat each side carried; they should agree within a few per cent.
Ibikoresho by'iyi ntambwe:
Amazi40 litiroIbikoresho bikenewe:
Ibirika by'amashanyarazi by'ikirahure
Indobo
Icyombo cyo gupima
Isaha yo Guhagarika
Igipimo cy'ubushyuhe cy'igikoni5
5
Context
Context
A practice rung: no patent anchors counterflow — it is physics that engineers learned and wrote into every exchanger. The effectiveness–NTU method used in the notebook was set out in the mid-twentieth century and is how exchangers are sized today.
Where it shows up in this catalogue: the economiser meets the coolest gas with the coldest water; the Stirling engine's regenerator and a rocket's regenerative cooling both depend on it; the Linde air liquefier works only because its counterflow exchanger lets the cold returning gas pre-cool the incoming gas.
**Honest limits.** Counterflow gains most when you want the streams to approach each other's temperatures; for a small temperature change on one side it matters less. And it cannot beat the laws: with equal flows even a perfect counterflow exchanger only approaches 100 % effectiveness as its area goes to infinity.
Ibikoresho
11- 2 meteroUmwanya
- 2.5 meteroUmwanya
- 1 ikirundoUmwanya
- 1 igiceUmwanya
- 1 ikirundoUmwanya
- Temperature Sensor - Waterproof (DS18B20)10% komisiyo4 ibice$9.43
- guhera kuri$26.85
- guhera kuri$1.18
- guhera kuri$1.60
- 40 litiroUmwanya
Ibikoresho bikenewe
10- 1 vendor sell this, none ship to you yetUmwanya
- Umwanya
- Umwanya
- Umwanya
- Umwanya
- Umwanya
Igiteranyo Giteganyijwe
Ibyo uwabikoze yaguze. Ibikoresho bidafite igiciro ubigura aho ubibonye.
Blueprint zijyanye
Izi blueprint zisangira ubumenyi — uburyo, ibikoresho cyangwa amahame

The Economiser: The Heat Still Going Up the Chimney
na Martin
Mekanike
5
0
0
0
0
0

The Radiator: Mostly Convection, and Why Temperature Is Everything
na Emma
Mekanike
5
0
0
0
0
0

Stirling Engine
na Martin
IBIDUKIKIJE
46
0
0
0
0
0

The Cooling Tower
na Peter
Mekanike y'Amazi
40
0
0
0
1
0

Regenerative Cooling
na Emma
Umwanya
52
0
0
0
0
0

Ammonia Refrigeration Machine
na Emma
IKORANABUHANGA
39
0
0
0
2
0
CC0 Umurenge rusange
Iyi blueprint yasohowe munsi ya CC0. Ushobora gukoporora, guhindura, gukwirakwiza no gukoresha nta kwemererwa.
Shyigikira Umuremyi ugura ibicuruzwa binyuze muri Blueprint ye Komisiyo y'Umuremyi byashyizweho n'Abacuruzi, cyangwa kora verisiyo nshya y'iyi Blueprint ukayinjiza nk'isano muri Blueprint yawe kugira ngo musangire inyungu.