1.6MW 矿山供电系统(2026年第三季度中国供应商价格)
1.6 MW Mining Power System Cost Breakdown (Q3 2026 China Supplier Pricing) — itemized bill of materials and FOB pricing for a typical configuration.
Estimated total (FOB): $313,963 · 1600 kVA transformer
Bill of materials
| Item | Specification | Qty | Price (USD) |
|---|---|---|---|
| HV incoming panel (KYN28A-12-630-315) | 630 A / 31.5 kA · vacuum | 1 | $2,448 |
| Main transformer (S13-M-1600/10) | 1600 kVA · Oil-Immersed · Copper · S13 | 1 | $18,228 |
| LV incoming panel (GGD-2500) | 2500 A busbar · In 2309 A | 1 | $6,155 |
| LV feeder panel (×2) (GGD-2500) | distributes 10 circuits | 2 | $12,310 |
| Cable branch box (LV) (DFW-0.4) | 1-in / 4-out · 0.4 kV · 630 A | 2 | $1,260 |
| Main feeder cable (TX→LV) (YJV 0.6/1kV 300 mm² ×5) | 5× 300 mm² Cu · ΔU 1.80% @ 120 m · $154.0/m | 5 | $92,400 |
| Feeder cable — Crusher 1 (×10) (YJV 120 mm²) | 120 mm² Cu · 238 A · ΔU 2.3% · $68.8/m | 10 | $82,560 |
| Branch trunk cable (LV → branch box 1) (YJV 300 mm² ×2) | 2× 300 mm² Cu · 953 A · ΔU 1.9% · $154.0/m | 2 | $36,960 |
| Branch trunk cable (LV → branch box 2) (YJV 300 mm²) | 300 mm² Cu · 477 A · ΔU 1.9% · $154.0/m | 1 | $18,480 |
| Main busbar (Cu) (Cu 125×10) | 125×10 · 2500 A rating · ref $147.8/m | included | POA |
| Grounding electrode (Φ20mm × 2.5m rod) | R₁ 39.6 Ω → 13 rod(s) ≤ 4 Ω | 13 | $125 |
| Soft starter cabinet (largest motor) (500 kW) | Soft starter (3.0× In) · start dip 5.0% | 1 | $6,600 |
| Detuned PFC capacitor bank (626 kvar) | automatic · 7% detuned · 0.4 kV | 1 | $8,300 |
| Series detuning reactor (7%) (43.8 kvar) | 189 Hz tuning · below 5th harmonic | 1 | $2,788 |
| Active harmonic filter (APF) (300 A) | VFD harmonic mitigation (40% VFD load) · GB/T 14549 | 1 | $25,350 |
Single-line diagram
How it was calculated
- Crushers: 2 × 250 kW = 500 kW
- Hoists: 1 × 500 kW = 500 kW
- Ventilation fans: 3 × 160 kW = 480 kW
- Conveyors: 4 × 90 kW = 360 kW
- Connected load = 1,840 kW → demand = 1,840 × 0.7 = 1,288 kW
- Altitude derating: 1500 m → factor 0.97 → effective load = 1,288 ÷ 0.97 = 1,321 kW
- Largest motor start (motor-starting): 500 kW ÷ (0.90×0.85) × 3.0 = 1,961 kVA → dip = 5.0% vs limit 15%
- Reactive compensation: Qc = 1,321 × (tanφ₁ − tanφ₂) = 626 kvar
- VFD harmonics: 40% VFD load → Ih = 241 A (30% THDi) · 7% detuned reactor
- Loads: P=1,321 kW, PF 0.80, 10 circuits
- Demand: 1,321 × 1 = 1,321 kW
- Transformer: S = 1,321 ÷ 0.95 = 1390.5 kVA → 1,600 kVA standard
成本敏感因素
- 设备 — 变压器/开关柜/逆变器是最大单项。
- 储能 — 电池是最大变量。
- 铜价与运费 — 铜价联动线缆与运费使到岸成本 ±5–10% 波动。
常见问题
海拔如何影响变压器和开关柜的额定值?
海拔 1000 m 以上空气稀薄,散热和绝缘强度下降。变压器约每升高 100 m 降容 0.5%,开关柜类似。1500 m 站场约降 2.5%,3000 m 约降 10%。计算器按 IEC 60076 与 IEC 62271 对所选变压器和开关柜施加海拔降容。
井下矿山供电的典型电压是多少?
井下矿山以 10 kV 或 6 kV 配电入井,再降压到 1.14 kV 或 0.66 kV 供破碎机、提升机和输送机,0.4 kV 供辅助。长电缆和电机启动宜用较高低压等级。计算器以 10/0.4 kV 地面厂区建模,并对提升机、破碎机做启动压降校核。
矿井提升机为什么需要特殊启动考虑?
矿井提升机(常 500 kW-3 MW)直接启动电流为额定 5-7 倍,可使井下母线跌到 85% 以下并跳掉其他传动。软启动或变频可限制冲击,变压器须按启动 kVA 选型。计算器校核最大电机的压降并据此选供电。
矿山变频器的谐波如何处理?
变频负载占 40% 时 THDi 可超 20%,需配 7% 去谐电容器组或 APF 以满足 IEEE 519(PCC 处 5% THD)。计算器按变频占比配置无功补偿与去谐;重粉尘工况还需 IP54 及以上外壳。
矿山厂区该取多大需用系数?
破碎机、提升机、风机和输送机不会同时达峰,需用系数典型 0.6-0.75。250 kW 破碎机 + 500 kW 提升机 + 160 kW 风机 + 90 kW 输送机的 1600+ kW 装机很少同时超过 60-70%。计算器在选变压器 kVA 前套用 kd。
矿山开关柜需要什么外壳与防护?
矿山开关柜须防尘防潮:地面厂区 IP54/IP55,井下含瓦斯矿井用隔爆 Ex d(IEC 60079)。重粉尘缩短爬电距离,故需加大电气间隙并采用耐漏电绝缘。计算器按粉尘等级在 BOM 中标注对应外壳等级。