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TEKNOLOGI
BOLEH PAKAI

The Gas Turbine: When the Turbine Finally Beat Its Own Compressor
Compress air, burn fuel in it, and expand the hot gas through a turbine that also turns the compressor. The idea is simple and old. Making it work took until 1903, when the Norwegian engineer Ægidius Elling ran the first gas turbine that delivered more power than its own compressor consumed.
The difficulty is arithmetic. The compressor takes most of what the turbine makes, so small losses in either machine wipe out the net output entirely. It needed efficient compressors and turbine metal that could stand red heat — and the Whittle turbojet in this catalogue is the result.
This rung works out the arithmetic, then demonstrates it safely with an air turbine and a compressor on the bench.
Pertengahan
About 3 hours
Arahan
1
1
Net work: turbine minus compressor
Net work: turbine minus compressor
Memuatkan buku nota Jupyter…
2
2
Demonstrate the energy bill with compressed air
Demonstrate the energy bill with compressed air
No combustion here. Print a small impulse air turbine — a 60 mm wheel with 20 cupped buckets — on the shaft of a hobby motor used as a generator, with a 330 Ω load and the multimeter across it. Blow it with the air compressor through the regulator and a nozzle made from a short piece of tube.
Measure the electrical power out (V² ÷ R). Then measure the power the compressor draws from the wall while it runs — the clamp meter on the live conductor, times the mains voltage.
The turbine returns a tiny fraction of what the compressor took. That is the gas turbine's problem without the fuel: compression is expensive, and only by adding heat between compressor and turbine does the turbine get back more than it cost.
Bahan untuk langkah ini:
Filamen PETG30 g
Hobby Motor - Gear1 keping
Perintang 330 ohm1 keping
Tiub vinil jernih0.5 meterAlatan diperlukan:
Pemampat udara (jenis penkek)
Pengatur penurun tekanan
Multimeter
Meter apit arus AU/AT 600 A
Pencetak 3D filamen (FDM)
Cermin Mata Keselamatan Jernih
Pelindung pendengaran3
3
History and context
History and context
**Ægidius Elling, Norway, 1903** — the first gas turbine to deliver net power — more than its own compressor consumed. No patent number is asserted here, and the details of his machine are left to the sources; the principle is the payload. Earlier attempts had failed exactly as the notebook predicts: the compressor ate all the turbine's output.
The line runs through Büchi's turbocharger (the next rung) — a gas turbine driving a compressor, fed by an engine's exhaust — to the Whittle turbojet and the power-station gas turbine.
**Honest limits.** Efficiency depends on turbine inlet temperature, which is limited by materials and cooling; small gas turbines are inefficient; and part-load efficiency falls away. **Do not build a combustion gas turbine**: the parts spin at speeds where a failure is a shrapnel event, and the combustor is a blowtorch.
Bahan
4- 30 gPemegang Tempat
- Hobby Motor - Gear10% komisen1 keping$2.50
- 1 kepingPemegang Tempat
- 0.5 meterPemegang Tempat
Alatan Diperlukan
7- Pemegang Tempat
- Pemegang Tempat
- Pemegang Tempat
- Pemegang Tempat
- Pemegang Tempat
- Pemegang Tempat
- Pelindung pendengaran10% komisenPemegang Tempat
Jumlah anggaran
Apa yang dibeli oleh pembuatnya. Bahan tanpa harga diperoleh di tempat anda membelinya.
Blueprint berkaitan
Blueprint ini berkongsi pengetahuan — teknik, bahan atau prinsip

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The Heat of Compression: Why Compressed Air Is Hot and Wet
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The Screw Compressor: A Built-In Ratio, and the Cost of the Wrong One
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Mekanik
11
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The Rotary Regenerator: Store Heat in a Wheel and Carry It Across
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15
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The Sirocco Fan: Many Shallow Forward-Curved Blades
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CC0 Domain Awam
Blueprint ini dikeluarkan di bawah CC0. Anda bebas menyalin, mengubah, mengedar, dan menggunakan karya ini untuk sebarang tujuan, tanpa meminta kebenaran.
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