化工装备技术
化工裝備技術
화공장비기술
CHEMICAL EQUIPMENT TECHNOLOGY
2015年
2期
23-26
,共4页
变压吸附%制氢%许用应力%疲劳分析%断裂力学%ASME
變壓吸附%製氫%許用應力%疲勞分析%斷裂力學%ASME
변압흡부%제경%허용응력%피로분석%단렬역학%ASME
PSA%Hydrogen production%Allowable stress%Fatigue analysis%Fracture mechanics%ASME
对于变压吸附氢气分离系统,以变压吸附器的设计和制造尤为重要,其优化设计和高质量制造是保证变压吸附氢气分离系统长周期稳定运行和产品高出产率的关键。重点介绍了基于ASME 锅炉及压力容器规范第Ⅷ卷第二册的变压吸附器疲劳分析计算和制造特点。
對于變壓吸附氫氣分離繫統,以變壓吸附器的設計和製造尤為重要,其優化設計和高質量製造是保證變壓吸附氫氣分離繫統長週期穩定運行和產品高齣產率的關鍵。重點介紹瞭基于ASME 鍋爐及壓力容器規範第Ⅷ捲第二冊的變壓吸附器疲勞分析計算和製造特點。
대우변압흡부경기분리계통,이변압흡부기적설계화제조우위중요,기우화설계화고질량제조시보증변압흡부경기분리계통장주기은정운행화산품고출산솔적관건。중점개소료기우ASME 과로급압력용기규범제Ⅷ권제이책적변압흡부기피로분석계산화제조특점。
The design and manufacture of pressure swing adsorber is especially important for pressure swing adsorption ( PSA) hydrogen separation system. The optimal design and high-quality manufacture of the vessel is the key to guarantee a long-period cycled stabilization and high yield of the PSA hydrogen separation system. Highlights the fatigue analysis and calculation for pressure swing adsorber vessel based on ASME Boiler & Pressure Vessel CodeⅧ (rules for construction of pressure vessel) , Division 2 (alternative rules) .