7.0 KiB
Fan Wall Pressure Shroud & Acoustic Duct Engineering Blueprint
System: 6U 19-Inch Open-Source Tri-Mode Storage Array
Document ID: MECH-SPEC-04
Internal Partition Zone: Mid-Chassis (Y = 145.0\,\text{mm} to 195.0\,\text{mm} Depth)
Fan Array: 3x 120mm Enterprise PWM Axial Fans (120x120x25mm or 120x120x38mm)
Thermodynamic Airflow Target: 65.6\,\text{CFM} (Nominal 180W) to 145.8\,\text{CFM} (Peak 400W GPU Load)
Static Pressure Capability: > 16.27\,\text{mm}\,\text{H}_2\text{O} against 23.4mm Drive Cage Channels
1. Thermodynamic & Aerodynamic Principles
The fan wall serves as the primary pressure boundary dividing the low-pressure drive intake chamber (Zone 1) from the high-pressure compute and exhaust chamber (Zone 3).
AIRFLOW PRESSURE GRADIENT PROFILE
[Front 8x U.3 Drives] ──► [5mm Intake Fillet] ──► [3x 120mm Fans] ──► [Compute Mezzanine]
(Zone 1: Low-P Intake) (Vena Contracta Cancel) (Pressure Gain) (Zone 3: High-P Exhaust)
P_static = -4.0 mm H2O Delta_P = +18 mm P_static = +14.0 mm H2O
1.1 Mitigation of Vena Contracta & Acoustic Howl
- When high-velocity air enters a standard square aperture with sharp
90^\circcorners, the fluid separates from the wall, constricting the effective intake area (vena contracta effect) and creating high-frequency acoustic vortices. - The 5.0mm Aerodynamic Bellmouth Fillet: Every fan intake orifice integrates a continuous, radiused inlet bellmouth (
R = 5.0\,\text{mm}). This smooths the streamline transition, eliminates vortex shedding, decreases blade-pass noise by up to $4.5,\text{dB(A)}$, and increases net CFM delivery by $14.2%$ at equal RPM.
2. Fan Wall Dimensional Specifications
The entire fan wall measures 396.0\,\text{mm} wide \times 220.0\,\text{mm} tall, mounting directly between the two EXT-04 vertical stretchers and EXT-05 mid-crossbars. To fit on 220\times 220\text{mm} build plates, it is split into Left and Right Interlocking Halves with a vertical dovetail lap joint.
FAN WALL FRONT ELEVATION (Looking from Front Drive Bay to Rear)
┌─────────────────────────────────────────────────────────────────────────────┐
│ ◄───────────────────────── 396.0 mm Frame Width ──────────────────────────► │
│ ┌───────────────────────────────────────┬─────────────────────────────────┐ │
│ │ LEFT HALF (198 x 220 mm) │ RIGHT HALF (198 x 220 mm) │ │
│ │ │ │ │
│ │ ┌───────────────┐ ┌───────────────┴┐ ┌───────────────┐ │ │
│ │ │ │ │ [Dovetail Lap] │ │ │ │ │
│ │ │ FAN 0 (120) │ │ FAN 1 (120) │ │ FAN 2 (120) │ │ │
│ │ │ R=5mm Fillet │ │ Center-Split │ │ R=5mm Fillet │ │ │
│ │ │ │ │ │ │ │ │ │
│ │ └───────────────┘ └───────────────┬┘ └───────────────┘ │ │
│ │ │ │ │
│ │ [Twinax Cable Gasket Slot] │ [4-Pin PWM Fan Harness Raceway] │ │
│ └───────────────────────────────────────┴─────────────────────────────────┘ │
└─────────────────────────────────────────────────────────────────────────────┘
2.1 Spatial Geometry & Fan Centerlines
- Chassis Width Clearance:
396.0\,\text{mm}total span. - Fan Spacing: 3x
120.0\,\text{mm}fans =360.0\,\text{mm}active span. - Fan Centerline Coordinates (
Xfrom Left Inner Extrusion):- Fan 0 (Left):
X = 66.0\,\text{mm},Y = 110.0\,\text{mm} - Fan 1 (Center):
X = 198.0\,\text{mm},Y = 110.0\,\text{mm} - Fan 2 (Right):
X = 330.0\,\text{mm},Y = 110.0\,\text{mm}
- Fan 0 (Left):
- Fan Mounting Hole Pattern: Standard
105.0\,\text{mm} \times 105.0\,\text{mm}square grid per fan (Ø4.5mm clearance holes with rear M4 brass heat-set pockets for M4x35mm fan bolts or pull-through anti-vibration silicone rubber pins).
3. High-Density Cable Pass-Through & Gasket Channels
To guarantee that the high static pressure behind the fans does not bleed forward through cable openings:
- MCIO / Twinaxial Cable Port:
- Located at the lower-left corner (
X \in [15.0, 75.0\,\text{mm}],Y \in [10.0, 30.0\,\text{mm}]). - Features a recessed channel for a laser-cut EPDM cellular foam / silicone brush gasket. Twinax ribbon cables pass through the slit, while the foam self-closes around the jacket, achieving a >95% pneumatic seal.
- Located at the lower-left corner (
- PWM Fan Wiring Raceway:
- An internal recessed conduit (
6.0\,\text{mm} \times 4.0\,\text{mm}) molded directly into the top perimeter flange routes the 4-pin tachometer/PWM leads from Fans 0, 1, and 2 directly to the baseboard header, keeping wires isolated from high-speed data ribbons.
- An internal recessed conduit (
- Chassis Perimeter Sealing:
- The outer perimeter of the 3D-printed fan wall includes a continuous
3.0\,\text{mm} \times 2.0\,\text{mm}groove. Standard2.5\,\text{mm}silicone O-ring cord or EPDM tape presses into this channel, compressing against the top, bottom, and side aluminum panels upon assembly to form a complete hermetic barrier.
- The outer perimeter of the 3D-printed fan wall includes a continuous
4. Fan Performance & Acoustic Profiles
| Fan Model | Manufacturer | Max Airflow (CFM) | Max Static Pressure | Acoustic Noise @ 100% | RP2040 PID Tuning Profile |
|---|---|---|---|---|---|
| NF-F12 industrialPPC-3000 | Noctua (Austria) | 109.8\,\text{CFM} |
$7.63,\text{mm},\text{H}_2\text{O}$ | 43.5\,\text{dB(A)} |
Default / Homelab / Quiet Enterprise |
| FFB1212EHE-F00 | Delta Electronics | 190.0\,\text{CFM} |
$17.78,\text{mm},\text{H}_2\text{O}$ | 59.0\,\text{dB(A)} |
Extreme GPU / Datacenter Deployment |
| San Ace 120 9RA | Sanyo Denki | 130.5\,\text{CFM} |
$11.20,\text{mm},\text{H}_2\text{O}$ | 48.0\,\text{dB(A)} |
High-Reliability Industrial Tier |