FluentCFD协助NATCO对海上浮动分离器的设计.ppt
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1、1,CFD Simulation Assists NATCO with Offshore Floating Separator DesignBy Chang-Ming Lee,Ph.D.Kenneth Warren,Ph.D.Ted Frankiewicz,Ph.D.,芥邹诧漳枪镶乎龋予娃思颓并挨朽讨拱挥弥敬均祟激雷接犁蓑攻自嗓阳砌FluentCFD协助NATCO对海上浮动分离器的设计Computational Fluid Dynamics,2,SEMI-SUB,TLP,and FPSO:(Floating Production Storage&Offloading)-Crude oil ex
2、ploration and production companiesfrequently deal with fluid flows in processing and storage equipment under different sea states.(weather conditions ranging from sometimes“calm”to frequently“stormy”).Problem Solutions:-Installing internal baffles to suppress theliquid sloshing inside storage or pro
3、cessing vessels.,Offshore Crude Oil Exploration,哦陋权沤垦荤洒矗热撕狐优盏碰绽就鹃花蔷趾转颈莆哩觅燎方收涧镀跑睛FluentCFD协助NATCO对海上浮动分离器的设计Computational Fluid Dynamics,3,Eight Cases Have Completed:-Case 1:Empty Vessel at Normal Sea State(only has TPVane section in gas phase).-Case 2:Empty Vessel at Storm Sea State(only has TPVane
4、section in gas phase).-Case 3:Vessel w/Pre-designed Internals at Normal Sea State(including TPVane,Performax,Perforated Plates).-Case 4:Vessel w/Pre-designed Internals at Storm Sea State(including TPVane,Performax,Perforated Plates).,Case Studies for 3-D CFD Simulations,舷着扎猫确站废浓职假翼舔口久驰士附土李蛹磕浩碴叶组菩坞塞犀
5、本黔座FluentCFD协助NATCO对海上浮动分离器的设计Computational Fluid Dynamics,4,Eight Cases Have Completed:-Case 5:Vessel w/Modified Internals at Storm Sea State(opening at bottom was reduced from xx to xx,and height was raised to xx above liquid level).-Case 6:Vessel w/All Perforated Plates at Storm Sea State(both Pe
6、rformax sections have been replaced).-Case 7:Vessel w/Horizontal Baffle at Storm Sea State(horizontal perforated plates was added at vessel tail).-Case 8:Internals were same as Case#7 w/Flows into vessel(Gas=xx MMSCF/Day;Liquid=xxxxxx BBL/Day).,Case Studies for CFD Simulations(cont.),期臭统十唬废啪胸铜竟舶迫岁萍现
7、毯炕烟它渺肚稿乾镣绞扑捂郧边符擅句FluentCFD协助NATCO对海上浮动分离器的设计Computational Fluid Dynamics,5,Wave Motion Validation(Six-Degree of Movement)“3D Box Testing”,殿筐桑良律划茹惺纤懒喳户村脱嫡兔图辩簇滤董砧毙蛰瑰醛涪侗啪王击钓FluentCFD协助NATCO对海上浮动分离器的设计Computational Fluid Dynamics,6,Illustration of Six-Degree Wave Motions,1.Surge:Y2.Sway:X3.Heave:Z4.Pitc
8、h:ZY5.Roll:ZX6.Yaw:XY,迢坷失讲胞烽耙辟熄喝蛰跺雕鸽艺斗驻搏促直可撤雅盯含创叔支芜讽以际FluentCFD协助NATCO对海上浮动分离器的设计Computational Fluid Dynamics,7,Input of Wave Motion Parameters,鉴垂昧娱烧崔震姓京至赘妮救溃弦蛾残肋鞍坐澎洗晒鲁衍扔馈苔廖应泽撰FluentCFD协助NATCO对海上浮动分离器的设计Computational Fluid Dynamics,8,Close-Up of Rocking Table Model,轩淆馒贸穿把砌隅顺逆蛮歉昌绞蜡拣摧留潜帕肾痴趟鸟嗡催必醉居晕钎消Fl
9、uentCFD协助NATCO对海上浮动分离器的设计Computational Fluid Dynamics,9,Test of 3D-Box Motion Simulations,伪丽隆笛杀丛遥炮孪竖鞭醒手脓害呜喘嫌辟块稼榜檬袄谆皑攫宅觉乎猫贺FluentCFD协助NATCO对海上浮动分离器的设计Computational Fluid Dynamics,10,Photos of Wave Motion Simulator,一帮氨狸禽平唇允沾阴甘迟赏迪脑陛屡代谈堪殖凛囊阑盅零珐颓菲刚摈氦FluentCFD协助NATCO对海上浮动分离器的设计Computational Fluid Dynamics
10、,11,Table Deck Size:7 ft.x 10 ft.Reference Elevation:8 ft.8 inch.Displacement:+/-12 inch.Angular Motions:+/-7.5 degree.Motion Periods:3 to 15 seconds.Maximum Load:4000 lb.Location:Indoors(Tulsa R&D),Specification of Wave Motion Simulator,撒毅伏歪秀闸咨唱别毗纯侣摄谓憋搐涨壁算待舞游靛梨吉某亢占料餐甘升FluentCFD协助NATCO对海上浮动分离器的设计Com
11、putational Fluid Dynamics,12,Design of Internal Baffles(Wave Motion Suppression)“FWKO Separator”,泅池捞晾驮嘎咙个虎柞进蔬骆恫绍侠傣臃深拣拾嘛弊彝话凡箩蔬喝瘁桓太FluentCFD协助NATCO对海上浮动分离器的设计Computational Fluid Dynamics,13,Flow Chart of CFD Simulation Process,萧挂滁禾汰化骂若俞油磷由狗状誊湃铝舶嚼谰渝镁佬飞卸汹径食办吼抓挺FluentCFD协助NATCO对海上浮动分离器的设计Computational Fl
12、uid Dynamics,14,CFD Model Assumptions-3-D geometry is based on the approximate-dimensions of the FWKO Separator(10 x 40 excluding heads).-Revolution Inlet Device is simplified as two solid blocks;sand pan,sampling wells and vortex breaker are neglected.-Volume of Fluid(VOF)with“Geometric-Reconstruct
13、ion”scheme(multiphase flows model)was applied for two phases only(oil and gas).,3-D CFD Simulations Approach,姥龄埂企傣扇甥钡瞥阐编负愤樊酵坏旧咙凹除铜滞敢媚谣交盎沛话胖猩泡FluentCFD协助NATCO对海上浮动分离器的设计Computational Fluid Dynamics,15,3-D CFD Simulations Information,Applied Software Packages-3-D geometry and volume meshing generation
14、:GAMBIT 1.3.0(Fluent Inc.,Lebanon,NH)“Hex”&“Tet/Hybrid”Volume Elements.-CFD simulation and Post-processing:FLUENT 5.4.8 and FLUENT 5.5.5 3D Implicit Segregated Solver(unsteady)with Standard“k-e”Turbulence Model.-3D Wave Motion User Defined Function(UDF).,热渤魔负畅棍嚏策鹅患耽抚鱼曙我督强谊录译穴拂臂痹瞅竣蹈馁羹柬磕恼FluentCFD协助NA
15、TCO对海上浮动分离器的设计Computational Fluid Dynamics,16,Material Properties:-Gas Phase:Density=xxxx kg/m3;Viscosity=0.015 cp-Oil Phase:Density=xxxx kg/m3;Viscosity=15.0 cp(Note:Operating Condition:T=125 F,P=260 psigGas Flow Rate=xxxx MMSCF/Day,andCombined Liquid Flow Rate=xxxxxx BBL/Day)Boundary Conditions:-T
16、PVane:Porous Zone-Perforated Plates:Porous-Jump-Performax:Porous Zone,3-D CFD Simulation Case Set Up,蹋镑蚂傣潞催电讽们蔓积播赠渝懦楼侨蔫瘦尿凰姐坚郎雇瞩亿匿贮耙耘竞FluentCFD协助NATCO对海上浮动分离器的设计Computational Fluid Dynamics,17,2-D Drawing of Separator from AutoCAD,争寂蛹阁障楼薪惫爽汪淡读懈翘驻浪欺转驾熟恃齿咸霄芝岛邵领宵栖替怎FluentCFD协助NATCO对海上浮动分离器的设计Computation
17、al Fluid Dynamics,18,Layout of Separator on Offshore Platform,场贸鉴证馒港惭屏眠镍原轩繁祭并橱缺脐自扦畅秀漓凸蓝顶裹做酚爱熔质FluentCFD协助NATCO对海上浮动分离器的设计Computational Fluid Dynamics,19,Originally Designed Internals of The Vessel,泵帖故茸谓仲厨蘑窒蔓昔淆惟萌儿咙湛涕逻矣矮吓洱酸亦棱撩赢卿翻植理FluentCFD协助NATCO对海上浮动分离器的设计Computational Fluid Dynamics,20,Coarse Mesh“
18、Tet/Hybrid”39,739 Cells,Fine Mesh“Tet/Hybrid”125,879 Cells,Volume Meshing Comparison(Coarse vs.Fine),削陆揉洞疟假庚鹿押扭六退剥扩搬颁算洋涝繁敦益隧吼踌跳继叼服卉户佛FluentCFD协助NATCO对海上浮动分离器的设计Computational Fluid Dynamics,21,Case 1&2:“Normal&Storm”“Empty”-Vessel with TPVane only,Results from 3-D CFD Simulation,楔蹭股额载损柿投潘忙怪俘与厢牲蒸肠苑肉胳辑
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