Pabrik minangka Blok Lego
Kita ora mung mbangun pabrik — kita nyusun dheweke. Power pods, water pods, heat pods, controls pods, lan line pods nyambung nganggo port standar. Asile: bangunan cepet, upgrade gampang, lan industri resik sing tumindak kaya tangga teparo sing ramah.
Napa pabrik Lego (lan napa padha menang)
Keahlian langka; wektu larang regane. Kita ngemas loro-lorone dadi blok sing bisa diulang: pods sing bisa dikirim, dipindai, dipasang, lan digunakake. Fisika sing padha ing saben negara; luwih sithik kejutan ing saben bangunan.
- Speed: pods wis dites ing seed shop (Bagian 3); wektu ing situs mung kanggo nyambung, ora kanggo nggawe.
- Quality: QA konsentrasi ing panggonan sing paling kuwat, banjur diangkut nganggo forklift.
- Flexibility: produk ganti → ganti line pod, ora kampus.
Set blok (pods sing bakal sampeyan deleng ing endi-endi)
Power Pod (PP)
- MV switchgear • inverter • transformator • site BESS
- Ratings: 5 • 20 • 50 blok MW
- Footprint: ~250 • 600 • 1,800 m²
- Port: MEC‑96‑E
Water Pod (WP)
- UF/RO/DI • daur ulang loop • pangolahan padatan
- Ratings: 100 • 500 • 2,000 m³/dina
- Port: MEC‑48‑M
Heat Pod (HP)
- E‑boilers • pompa panas • panyimpenan termal
- Ratings: 5 • 20 • 80 MWth
- Port: MEC‑48‑H
Controls Pod (CP)
- SCADA • PLCs • sinkron wektu • digital twin
- Pelabuhan: MEC‑48‑C
Line Pods (LP)
- Proses skids: caster (Bagian 4–5), rak ER (Bagian 6), kiln (Bagian 9), laminator (Bagian 3)
- Kapal wis kabel; colok utilitas spines nalika teka
People Pods (PPe)
- Balai • laboratorium • loker • teluk QA
- Pompa panas HVAC ing loop HP
Pelabuhan & standar (MEC)
Tabel cepet MEC
| Pelabuhan | Layanan | Titik desain |
|---|---|---|
| MEC‑96‑E | Cincin tegangan sedheng | 33 kV • nganti 50 MVA |
| MEC‑48‑E | Daya AC Rendah/Sedheng | 400/690 V • nganti 2 MVA |
| MEC‑48‑H | Loop termal | 10–25 bar • 140–250 °C |
| MEC‑48‑M | Banyu proses | ISO camlocks • DN50–DN200 |
| MEC‑48‑C | Kontrol | Cincin fiber ganda + PoE |
Ports dikunci & dikode warna. Scan → kunci → aktifake. Ora ana spaghetti.
Pola tata letak
- Bus cincin MV ngubengi kampus; pods nyambung.
- Parit tulang punggung utilitas: banyu/uap/fiber mlaku bareng.
- Bays grid 12 m sing cetha; dhuwur cetha 10–12 m.
Koreografi rakitan (saka pad kosong nganti produk pisanan)
Garis wektu (greenfield)
| Fase | Minggu | Cathetan |
|---|---|---|
| Fondasi & tulang punggung parit | 8–12 | Paralel karo bangunan pod |
| Shell & crane | 8–10 | Rangka standar |
| Setel & align pod | 3–5 | Roll-off, bolt-down |
| Hook-up (MEC) | 4–6 | Port kode warna |
| Komisi (adhem → panas) | 4–7 | Tes kanthi nomer seri |
Brownfield: kurangake 4–8 minggu yen pad/utilitas wis ana.
Kru ing lokasi (puncak)
- Listrik 40–60%, tukang pipa 15–25%, riggers 10–15%
- Pods wis dipasang kabel: kira-kira 70–85% terminasi rampung ing toko seed
- Las lapangan dipotong kira-kira 50–70% dibandingake karo bangunan khusus
Pengiriman & bill of lading (iku dikirim kaya Lego uga)
Beban tipikal saben pod
| Pod | TEU (20’ eq.) | Pecahan paling abot | Cathetan |
|---|---|---|---|
| PP‑20 (daya) | 8–12 | ~22 t skid | MV gear dipérang dadi 2 |
| WP‑500 (banyu) | 4–6 | ~12 t skid | UF/RO pigura |
| HP‑20 (panas) | 5–7 | ~18 t drum | E‑boiler inti |
| LP (garis tipikal) | 10–20 | ~24 t | Gumantung saka industri |
| CP + PPe | 2–4 | ~8 t trek | Kontrol + kantor |
Pecahan gedhe dilebokake ing trailer modular; liyane kabeh ditumpuk.
Koreografi saka dermaga menyang dermaga
- Scan & tahap miturut jinis pod; rute sadurunge menyang bay.
- Pasang, atur ing pad grout, kencengake & tag.
- Colok port MEC → jabat tangan SCADA → nyalurake energi.
Skenario kloning sing wis diitung sadurunge
“Micro PV” starter — 200 MWp/yr module line
| Item | Jumlah / Nilai |
|---|---|
| Pods | PP‑5×1 • WP‑100×1 • HP‑5×1 • LP×3 • CP×1 • PPe×1 |
| Beban rata-rata | ~10–12 MW |
| PV minimal kanggo daya mandiri | ~52–62 MWp |
| 12 jam panyimpenan | ~120–140 MWh |
| Area cangkang | ~12–18k m² |
| Dock→produk pisanan | ~14–20 minggu |
“City Finisher” — coil→galv→paint hub
| Item | Jumlah / Nilai |
|---|---|
| Pods | PP‑20×1 • HP‑20×1 • WP‑500×1 • LP×4 • CP×1 • PPe×2 |
| Beban rata-rata | ~18–28 MW |
| PV minimal | ~92–144 MWp |
| 12 jam panyimpenan | ~220–340 MWh |
| Area cangkang | ~20–30k m² |
| Dock→produk pisanan | ~16–24 minggu |
“Mill‑in‑a‑Box” — billet/bagean 0.5 Mt/tahun (scrap→EAF→roll)
| Item | Jumlah / Nilai |
|---|---|
| Pods | PP‑50×1 • PP‑20×1 • HP‑80×1 • WP‑2000×1 • LP(caster)×1 • LP(rolling)×2 • CP×1 • PPe×4 |
| Beban rata-rata | ~40–50 MW (liyane saka puncak leleh) |
| PV minimal | ~205–257 MWp |
| 12 jam panyimpenan | ~480–600 MWh |
| Area cangkang | ~25–40k m² |
| Dock→produk pisanan | ~22–32 minggu |
Nomer cocog karo bagean sadurunge; ora nganggo kalkulator, mung matematika sing wis rampung.
Upgrade & perbaikan (ganti, ora mateni)
Buku pandhuan upgrade
- Pod anyar ing tahap adhem ing teluk paralel.
- Cutover sajrone jendhela 8–16 jam sing direncanakake.
- Pod lawas bali menyang toko benih (Bagéan 3) kanggo dibangun maneh.
Strategi cadangan
- 1 PP‑5, 1 WP‑100, lan 1 CP pod saben kampus minangka cadangan.
- Cadangan LP kritis kanggo bottleneck (contone, laminator, caster).
- Kolam pod regional sing dienggo bareng nyuda capex lan wektu mati.
Carane kita njaga supaya aman
Pitakon & Wangsulan
“Apa saben wilayah béda?”
“Yen campuran produk owah piye?”
“Kepiye carané supaya ora kejiret vendor lock‑in?”
Sabanjure — Produk: Saka Balok nganti Superkomputer (Bagéan 11 saka 14). Kita bakal ngetutaké atom saka bijih nganti obyek — saka rel lan panel nganti rak lan klaster AI.