石油工程专业英语采油技术基础(Production Technology) .ppt
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1、Lesson 3 Production Technology,3.1 Completion Components,3.2 Surface production Facilities,3.3 Field Examples of Production Systems,3.4 System Performance,3.0 Introduction,3.0 Introduction,Now lets consider the well as part of a dynamic production system.Wells are drilled and logged,maps are revised
2、,and the reservoir begins to take shape as a volume having certain dimensions.(Big ones,hopefully!)But once production begins,the reservoir is only a part of a larger system that includes the reservoir,wellbore,tubing string,artificial lift equipment,surface control devices,gathering lines,separator
3、s,treaters,tanks,and metering devices.,计量装置,All of these elements behave according to their own specific performance relationships,but each,in turn,also depends upon and influences the other elements.Production engineers are concerned with the interaction of these performance relationships as produc
4、tion occurs over time,anticipating performance changes and designing the system to maximize recovery of oil and gas economically.,3.0 Introduction,This chapter outlines production system equipment,starting with the completed well and moving along the flow path through the surface facilities.The same
5、 path is then retraced,but this time focusing on the dynamic flowing performance relationships that govern fluid movement through the system.,地面设备,3.0 Introduction,3.1 Completion Components,Together with the cement sheath holding it in place,the casing performs several important function:,supporting
6、 the sides of the hole;preventing communication of fluids and pressures between shallow and deep formations;allowing for control of pressures;providing a base for surface and subsurface equipment.,水泥环,A cross section of a typical casing installation is shown in figure 3.1.The number of concentric“st
7、rings”,their relative sizes and strengths,the setting depths,and cementing techniques will vary according to the depth and drilling program for the well.The conductor prevents the surface hole from caving and it also prevents lost circulation.In offshore situations,the drive pipe is hammered into th
8、e mud to provide a conduit from below the seafloor to the production deck,and the conductor casing is set inside the drive pipe.,击入式管子,循环漏失,3.1 Completion Components,Surface casing provides protection for shallow freshwater formations,and the producing string of casing is set to or through the produ
9、ctive zones,to isolate them and allow for selective completions.There may be intermediate casing strings between surface and production casing if the depth of the well requires it.Each casing string is cemented in place and the production string is perforated across the productive zone.,淡水层,生产层,技术套管
10、,表层和生层套管,3.1 Completion Components,The central downhole component of a completed well is the production tubing.There are four primary reasons for utilizing production tubing as a conduit for producing fluids:,It is relatively easy to remove if problems develop.,It isolates producing fluids from the
11、casing and makes control of the fluids easier.,It facilitates circulation of heavy fluids into the wellbore to control the well.,Its smaller diameter allows for safety devices and artificial lift equipment to be included in the completion design.,It allows for more efficient producing rates from low
12、er productivity wells.,生产油管,Tubing is suspended from a tubing hanger within the wellhead at the surface,and the producing zone(s)may be isolated by production packers in the tubing string.A well may be completed with several strings of tubing(dual completion,triple completion,etc.),each carrying pro
13、duction from a different zone.Some extremely productive wells produce through casing without tubing,or through both tubing and the casing-tubing annulus.,3.1.1 Tubing Components,The design of a particular completion depends on:,the number and type of productive zones;the expected pressures and flow
14、rates;the need to control sand production;the need for artificial lift or stimulation;and the regulations governing operations in the area.,Figure 3.3 shows schematic examples of a number of typical completions.In addition,the following definitions and associated figures describe the most common com
15、ponents of those completion examples.,Packer:The packer seals the casing-tubing annulus with a rubber packing element,thus preventing flow and pressure communication between tubing and annulus.Packers are designed either to remain in the well permanently or to be retrieved if future downhole work is
16、 required.,封隔器,3.1.1 Tubing Components,Multistring Packer:The multistring packer seals the casing-tubing annulus where more than one tubing string is involved.Up to five-string packers are available,but more than a triple completion is rare because of the difficulty of retrieval if problems develop.
17、,Sliding Sleeve:the sliding sleeve component is a wireline-operated sleeve,which will open or close ports in the tubing to allow fluid in or out.,滑套,多管柱封隔器,Tubing Anchor:The tubing anchor is essentially a packer without the sealing element and is designed to prevent tubing but not fluid movement.,油管
18、锚,Blast Joint:A blast joint is a section of heavy-duty tubing located opposite production perforations in a multistring completion.,耐磨接头,Safety Joint:The safety joint allows for the parting of an auxiliary tubing string beneath a multiple string packer when the packer is being retrieved.,安全接头,Landin
19、g Nipple(fig.3.11):Landing nipples are a variety of short tubing components with interior profiles that allow for the wireline setting of plugs,safety valves,chokes,pressure gauges,etc.,within the tubing by using the appropriate locking device.,座放短节,Figure3.11 Landing nipple and flow coupling instal
20、lation.Courtesy Baker Packers,a Baker Oil Tools Company.,Subsurface Safety Valve:This component is a valve assembly within the tubing string,which is designed to close in case of emergency.,井下安全阀,Figure3.13 Tubing retrievable subsurface safety valve operation:(a)closed,(b)open.Courtesy Baker Packers
21、,a Baker Oil Tools Company.,3.1.2 Surface Flow Control Equipment,The valves and connections at the top of the well are often referred to collectively as the“wellhead”or“Christmas tree”.,The design of the entire arrangement depends on several factors:,the expected maximum and operating pressures;the
22、number and sizes of casing strings;the number and sizes of tubing strings;,采油树,the need for auxiliary equipment,such as subsurface safety valves,electrical conduits for submersible pumps,and chemical injection equipment;,the outside environment.onshore,offshore,or subsea;,the inside environment:CO2
23、and H2S content of produced fluids or corrosive formation water;,辅助设备,Figure 3.14 shows a typical surface flow control installation for a multiple casing string,single tubing string,flowing well.,Figure3.14 Surface flow control installation for a single tubing string,mulyiple casing string,flowing w
24、ell.Courtesyrs Exxon.,自流井,The casinghead(fig.3.15)is screwed,or welder to the outermost casing stub.,套管头,The tubing head performs a function similar to the casinghead,in that it accommodates a tubing hanger,which usually screws onto the top of the tubing string(s)and seals off the casing-tubing annu
25、lus with metal-to-metal and/or rubber sealing elements.Often the tubing hanger is further secured by a series of set screws.An adapter(also called a tubing“bonnet”)provides a transition from the tubing head to the arrangement of valves and fittings above the casing and tubing head,used to control fl
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