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- MikeTreml/MissionControl
- 최근 소스 활동
- 2026년 4월 29일 22:06
- 감지된 SKILL.md 언어
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설치 방법
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소스 파일 검토
설치 여부를 결정하기 전에 SKILL.md와 SkillsMP에 표시된 보조 파일을 읽어 보세요.
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기본적으로 소스를 먼저 확인하는 Prompt가 선택됩니다. 직접 명령으로 전환하거나 로컬 사본을 다운로드할 수도 있습니다.
설치 여부를 결정하기 전에 SKILL.md와 SkillsMP에 표시된 보조 파일을 읽어 보세요.
Codex 또는 Claude로 설치 이 Prompt를 복사해 Codex, Claude 또는 다른 어시스턴트에 붙여 넣으면 Skill 페이지를 검토하고 설치를 진행할 수 있습니다.
직접 명령은 검토 Prompt를 거치지 않습니다. 실행하기 전에 소스를 확인하세요.
npx skills add https://github.com/MikeTreml/MissionControl --skill pressure-vessel명령은 한 줄로 유지됩니다. 복사하기 전에 가로로 스크롤해 전체 내용을 확인하세요.
로컬 사본을 원하시나요? SkillsMP에서 현재 제공할 수 있는 파일을 다운로드하세요.
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SOC 직업 분류 기준
SKILL.md 표시 중
| name | pressure-vessel |
| description | Skill for pressure vessel design and analysis per ASME BPVC |
| allowed-tools | ["Read","Write","Glob","Grep","Bash"] |
| metadata | {"specialization":"mechanical-engineering","domain":"science","category":"structural-analysis","priority":"medium","phase":5,"tools-libraries":["COMPRESS","PVElite","ANSYS","ASME BPVC"]} |
The Pressure Vessel Design skill provides capabilities for designing and analyzing pressure vessels per ASME Boiler and Pressure Vessel Code, ensuring code compliance and safe operation.
| Aspect | Division 1 | Division 2 |
|---|---|---|
| Design basis | Design-by-rule | Design-by-analysis |
| Allowable stress | Lower | Higher |
| Safety factor | 3.5 (UTS) | 2.4 (UTS) |
| Analysis required | Limited | Detailed FEA |
| Typical application | General service | High pressure, critical |
Internal pressure:
t = (P * R) / (S * E - 0.6 * P)
External pressure:
t = iterative based on L/D_o and D_o/t
Where:
t = required thickness
P = design pressure
R = inside radius
S = allowable stress
E = joint efficiency
| Type | Stress Ratio | Application |
|---|---|---|
| Hemispherical | 0.5 | High pressure |
| 2:1 Elliptical | 1.0 | General purpose |
| Torispherical | 1.77 | Low pressure |
| Flat | Variable | Limited pressure |
| Conical | Variable | Transitions |
t = (P * D) / (2 * S * E - 0.2 * P)
Where:
D = inside diameter
S = allowable stress
E = joint efficiency
Required reinforcement area:
A = d * t_r * F
Where:
d = finished nozzle diameter
t_r = required shell thickness
F = correction factor for plane
Available area from:
- Excess shell thickness (A1)
- Excess nozzle thickness (A2)
- Reinforcing pad (A3)
- Weld area (A4, A5)
Criterion: A1 + A2 + A3 + A4 + A5 >= A
Horizontal limit: d or R + t_n + t
Vertical limit (shell): d or R + t_n + t
Vertical limit (nozzle): 2.5 * t_n or 2.5 * t + t_e
| Type | Rating | Application |
|---|---|---|
| Slip-on | 150-600 lb | General, lower pressure |
| Weld neck | 150-2500 lb | High pressure, critical |
| Socket weld | 150-600 lb | Small bore |
| Blind | 150-2500 lb | Closures |
| Lap joint | 150-600 lb | Corrosive service |
ASME B16.5 pressure-temperature ratings:
- Class 150, 300, 600, 900, 1500, 2500
Select class where:
P_design <= P_rating at T_design
Impact test required if:
T_design < MDMT
MDMT determination:
1. Base MDMT from UCS-66 curves
2. Adjust for actual stress ratio
3. Consider coincident ratio
4. Apply Table UCS-66.1 reduction
Stress ratio reduction:
MDMT_adjusted = MDMT - temperature credit
If impact testing required:
- Test temperature <= MDMT - 30 F (typical)
- Minimum energy: 15 ft-lb (full size Charpy)
- Average of 3 specimens
- Single specimen minimum: 10 ft-lb
Division 1:
P_test = 1.3 * MAWP * (S_test / S_design)
Division 2:
P_test = 1.43 * MAWP * (S_test / S_design)
Where:
MAWP = Maximum Allowable Working Pressure
S_test = allowable stress at test temperature
S_design = allowable stress at design temperature
1. Fill vessel completely with water
2. Remove all air pockets
3. Apply test pressure slowly
4. Hold for minimum 10 minutes
5. Reduce to MAWP for inspection
6. Inspect all welds and connections
7. Document results
| Category | Symbol | Limit |
|---|---|---|
| General membrane | Pm | S |
| Local membrane | PL | 1.5S |
| Bending | Pb | 1.5S |
| Secondary | Q | 3S |
| Peak | F | Fatigue analysis |
Primary stress:
Pm <= S
PL <= 1.5S
PL + Pb <= 1.5S
Primary + Secondary:
PL + Pb + Q <= 3S
Fatigue:
Use peak stress F in fatigue curves
Required information:
- Manufacturer identification
- Vessel description and design data
- Material specifications
- Joint efficiencies
- Inspection data
- Test data
- Stamping information
{
"vessel_type": "pressure|vacuum|combined",
"design_conditions": {
"pressure": "number (psig or barg)",
"temperature": "number (F or C)",
"MDMT": "number (F or C)"
},
"geometry": {
"diameter": "number",
"length": "number",
"head_type": "elliptical|hemispherical|torispherical|flat"
},
"material": {
"shell": "string (SA-XXX)",
"heads": "string",
"nozzles": "string"
},
"code_edition": "string"
{
"design_summary": {
"MAWP": "number",
"required_thicknesses": {
"shell": "number",
"heads": "number"
},
"selected_thicknesses": "object"
},
"nozzle_schedule": [
{
"size": "string",
"purpose": "string",
"reinforcement": "object"
}
],
"MDMT_evaluation": {
"MDMT": "number",
"impact_test_required": "boolean"
},
"hydrostatic_test":