过程装备与控制工程专业英语翻译-19(8页).doc
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1、-过程装备与控制工程专业英语翻译-19-第 8 页Unit 19 Types of Heat ExchangersHeat exchangers are equipment primarily for transferring heat between hot and cold streams.They have separate passages for the two streams and operate continuously.The most versatile and widely used exchangers are the shell-and-tube types but
2、various plate and other types are valuable and economically competitive or superior in some applications.These other types will be discussed briefly but most of the space following will be devoted to the shell-and-tube types primarily because of their importance but also because they are most comple
3、tely documented in the literature.Thus they can be designed with a degree of confidence to fit into a process.The other types are largely proprietary and for the most part must be process designed by their manufacturers.Plate-and-Frame Exchangers Plate-and-frame exchangers are assemblies of pressed
4、corrugated plates on a frame. Gaskets in grooves around the periphery contain the fluids and direct the flows into and out of the spaces between the plates.Close spacing and the presence of the corrugations result in high coefficients on both sides several times those of shell-and tube equipment and
5、 fouling factors are low.he accessibility of the heat exchange surface for cleaning makes them particularly suitable for fouling services and where a high degree of sanitation is required as in food and pharmaceutical processing.Operating pressures and temperatures are limited by the natures of the
6、available gasketing materials with usual maxima of 300 psig and 400 F.Since plate-and-frame exchangers are made by comparatively few concerns most process design information about them is proprietary but may be made available to serious engineers.Friction factors and heat transfer coefficients vary
7、with the plate spacing and the kinds of corrugations.Pumping costs per unit of heat transfer are said to be lower than for shell-and-tube equipment.1n stainless steel construction the plate-and-frame construction cot is 50%-70% that of the shell-and-tube.Spiral Heat Exchangers In spiral heat exchang
8、ers the hot fluid enters at the center of the spiral element and flows to the periphery; flow of the cold liquid is countercurrent entering at the periphery and leaving at the center.Heat transfer coefficients are high on both sides and there is no correction to the log mean temperature difference b
9、ecause of the true countercurrentaction. These factors may lead to surface requirements 20% or so less than those of shell-and-tube exchangers. Spiral types generally may be superior with highly viscous fluids at moderate pressures.Compact (Plate-Fin) Exchangers Compact exchangers are used primarily
10、 for gas service.Typically they have surfaces of the order of 1200 m2 /m3 corrugation height 3.8-11.8 mm corrugation thickness 0.2-0.6 mm and fin density 230-700 fins/m.The large extended surface permits about four times the heat transfer rate per unit volume that can be achieved with shell-and-tube
11、 construction.Units have been designed for pressiIres up to 80 atm or so.The close spacings militate against fouling service.Commercially compact exchangers are used in cryogenic services and also for heat recovery at high temperatures in connection with gas turbines.For mobile units as in motor veh
12、icles compact exchangers have the great merits of compactness and light weight.Any kind of arrangement of cross and countercurrent flows is feasibleand three or more different streams can be accommodated in the same equipment.Pressure drop heat transfer relations and other aspects of design are well
13、 documented.Air Coolers In such equipment the process fluid flows through finned tubes and cooling air is blown across them with fans. The economics of application of air coolers favors services that allow 25-40 1 temperature difference between ambient air and process outlet.In the range above 10 Mb
14、tu/l air coolers can be economically compettve with watercoolers when water of adequate quality is available in su Hicient amountDouble-Pipe Exchangers This kind of exchanger conssts of a central pipe supported withn a larger one by packng glands. The straight length is limited to a maximum of about
15、 20 ft;otherwise the center pipe wi1l sag and cause poor distribution in the annulus.It is customary to operate with the high pressure high temperature high density and corrosive fluid in the inner pipe and the less demanding one in the annulus. The inner surface can be provide with scrapers as in d
16、ewaxing of oils or crystallization from solutions.External longitudinal fins in the annular space can be used to improve heat transfer with gases or viscous fluids.When greater heat transfer surfaces are needed several double-pipes can be stacked in any combination of series or parallel.Double-pipe
17、exchangers have largely lost out to shell-and-tube units in recent years.They may be worth considering in these situations:1. When the shell-side coefficient is less than half that of the tube side;the annular side coeHicient can be made comparable to the tube side.2. Temperature crosses that requir
18、e multishell shell-and-tube units can be avoided by the inherent true countercurrent flow in double pipes.3. High pressures can be accommodated more economically in the annulus than they can in a larger diameter shell.4. At duties requiring only 100200 sqft of surface the double-pipe may be more eco
19、nomical even in comparison with off-the-shell unts.Shell-and-Tube Exchangers This type of exchangers will be discussed in the following section.(Selected from: Stanley M.WalasChemical Process Equiment Butterworth Publishers 1988.)Words and Expressions1.passage n.通道,通过2.versatile a.多用途的,通用的3.propriet
20、ary a.专利的,私有的4.corrugate v.成波纹状,起波纹;corrugation n5.groove n.沟,槽6.coefficient n.系数7.gasket n.密封垫片8.foul v.弄脏,堵塞;fouling factor 污垢系数9.sanitation n.卫生10.pharmaceutical a.制药的;药物的11.countercurrent n. ; a.逆流12.fin n.翅片;v.装翅片13.militate v.妨碍,起作用14.cryogenic a.冷冻的,低温的15.recovery n.恢复,回收,再生16.gland n.填料盖,密封套
21、17.sag v.下垂,下沉18.annulus n.环状空间; annular a环形的.19.dewax v.脱蜡20.crystallization n.结晶,结晶体21.stack n.堆积,烟囱22.inherent .内在的,固有的23.accommodate v.调节,适度,容纳Unit 19 换热器的种类换热器起初是为了在热流和冷流中传热。对两种冷热流体一般有单独的通道,一般是连续性操作。最通用的换热器是壳管式换热器。但是不同种类板式和其他形式是有价值的和经济竞争能力。虽然一些其他形式也被讨论,但是接下来大部分都在讨论壳管式的。起初是因为它们的重要性也是应为他们在文献中由较完整
22、的记载。因袭它们可以以一种适当过程的准确标准被设计。其他类型的基本上市带有专利性的,并且多数必须有他们的制造厂来进行工艺设计。板框式换热器 板框式换热器是在一个结构上压紧波纹板的装配体。围在边缘的够槽中密封垫片含有液体,并且控制板间液体的流入与流出空间。紧密的缝隙和波纹的板框换热器,在两侧的上部达到了管壳式换热器的几倍,而且板框式换热器的污垢系数较小。换热表面对于清扫的容易性德尔板框式换热器特别适用于污垢设备,也适用于卫生要求较高的行业,比如制药和食品工业,受到可能的垫圈式的密封材料性能的影响,一般最高压力值为300 psig,最高温度为400 .。由于较少气液制造板框式换热器,大多数关于板框
23、式换热器的工艺设计资料到有专利性,但也许提供给负责的工程师。摩擦饮食和热传递系数碎着班的空间和波纹的种类变化。泵花费的每个热传递单元比壳管式设备低。用纯钢制造板框式换热器的费用是管壳式的5070%。螺旋型换热器 在螺旋形换热设备中,热流进入螺旋单元的中心,并且流到边缘。冷流体是逆流的。在边缘进入并在中心位置流出。在两边热传递系数较高。由于真正的逆流形式没有原来形式的温差,这些因素可能导致表面要求20%或更小的壳管式换热器。螺线形式对于中等压力的高粘性流体比较适合。翘片式换热器 翘片式换热器首先被应用在油气设备中。典型的翘片式换热器在单位体积上有1200平方米的表面积,翘片高度3.811.8 m
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