核技术英语-核技术英语-Chapter10-Neutron-Chain-Reactions课件.ppt
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- 核技术 英语 Chapter10 Neutron Chain Reactions 课件
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1、NUCLEAR ENERGYPROFESSIONAL(SPECIAL)ENGLISH COURSEChapter 10 Neutron Chain Reactions(中子链式反应中子链式反应)Chapter 14 Neutron Chain Reactions(中子链式反应中子链式反应)The possibility of a chain reaction involving neutrons in a mass of nuclear fuel such as uranium depends on:(a)nuclear properties(特性特性)such as cross sectio
2、ns(截面截面)and neutrons produced per absorption;(b)the size,shape,and arrangement of the materials.14.1 CRITICALITY AND MULTIPLI-CATION (临界性和增殖性临界性和增殖性)To achieve a self-sustaining chain reaction(自持链式反应自持链式反应),one needing no external neutron supply,a critical mass(临界质量临界质量)of uranium must be collected.
3、To appreciate this requirement we visualize the simplest nuclear reactor,consisting of a metal sphere of uranium-235.接上页(P199 第二段第四行中)Suppose that it consists of only one atom of U-235.If it absorbs a neutron and fissions,the resultant neutrons do nothing further,there being no more fuel.If instead
4、we have a small chunk(大块大块)of uranium,say a few grams,the introduction of a neutron might set off(导致导致)a chain of several reactions,producing more neutrons,but most of them would escape through the surface of the body,a process called leakage(泄漏泄漏).接上页(P200 第二行中)Such an amount of fuel is said to be“
5、subcritical”(次次临界的临界的).Now if we bring together about 50 kg of U-235 metal,the neutron production balances the leakage losses,and the system is self-sustaining or“critical(临界的临界的).”The size is the critical volume and the amount of fuel is the critical mass.Neutrons had to be introduced to start the
6、chain reaction,but the number is maintained without further additions.The term(术语术语)critical mass has become popular to describe any collection of entities large enough to operate independently.P200第二段第三行末If we add still more uranium to the 50 kg required for criticality(临界状态临界状态),more neutrons are
7、produced than are lost,the neutron population(数量数量)increases,and the reactor is“supercritical(超临界的超临界的).”Early nuclear weapons involved the use of such masses,in which the rapid growth of neutrons and resulting fission heat caused a violent explosion(爆炸爆炸).14.2 MULTIPLICATION FACTORS(增殖因子增殖因子)The be
8、havior of neutrons in a nuclear reactor can be understood through analogy(类推类推)with populations of living organisms(生物体生物体),for example,of human beings.There are two ways to look at changes in numbers of people:as individuals and as a group.A person is born and throughout life has various chances of
9、 fatal(致命致命的的)illness or accident.On average the life expectancy(期望值期望值)at birth might be 75 years,according to statistical data(统计数据统计数据).接上页(P200第三段第六行中)An individual may die without an heir(后嗣后嗣),with one,or with many.If on average there is exactly 1,the population is constant.From the other view
10、point,if the rates of birth and death are the same in a group of people,the population is again steady(稳定的稳定的).If there are more births than deaths by 1%per year,the population will grow accordingly.This approach(方法方法)emphasizes the competition of process rates.P200 倒数第二段The same ideas apply to neut
11、rons in a multiplying assembly.We can focus(聚焦聚焦,集中集中)attention on a typical neutron that was born in fission,and has various chances of dropping out of(不参与不参与)the cycle because of leakage and absorption in other materials besides fuel.we can compare the reaction rates for the processes of neutron a
12、bsorption,fission,and leakage to see if the number of neutrons is increasing,steady,or decreasing.Each of the methods has its merits(优点优点)for purposes of discussion,analysis,and calculation.P202 第二段The fractions of absorbed neutrons that form U-236 and that cause fission,respectively,are the ratios
13、of the cross section for capture c and fission f to that for absorption a.The average number of neutrons produced by fission is .Now let be the combination f/a,and note that it is the number of neutrons per absorption in uranium.Thus letting L be the fraction not escaping by leakage,k=L.P203 第一行The
14、system is critical if k=l,or L=l.Measurements show that L is around 2.2 for fast neutrons,thus L must be l/2.2=0.45,which says that as many as 45%of the neutrons must remain in the sphere,while no more than 55%escape through its boundary(边界边界).14.3 NEUTRON FLUX AND REACTOR POWER (中子通量和反应堆功率中子通量和反应堆功
15、率)The power developed by a reactor is a quantity of great interest for practical reasons.Power is related to the neutron population,and also to the mass of fissile material present.First,let us look at a typical cubic centimeter of the reactor,containing N fuel nuclei,each with cross section for fis
16、sion f at the typical neutron energy of the reactor,corresponding to neutron speed v.Suppose that there are n neutrons in the volume.接上页(P205第七行)The rate at which the fission reaction occurs is thus Rf=nvN f fissions per second.If each fission produces an energy w,then the power per unit volume is p
17、=wRf.For the whole reactor,of volume V,the rate of production of thermal energy is P=pV.If we have an average flux=nv and a total number of fuel atoms NT=NV,the total reactor power is seen to beP=NT f w.P205 第二段第五行The power developed by most familiar devices is closely related to fuel consumption(消耗
18、量消耗量).In a reactor,it is necessary to add fuel very infrequently because of the very large energy yield per pound,and the fuel content remains essentially constant.From the formula relating power,flux,and fuel,we see that the power can be readily raised or lowered by changing the flux.By manipulatio
19、n(操作操作)of control rods(控制棒控制棒),the neutron population is allowed to increase or decrease to the proper level.14.4 REACTOR TYPES(反应堆类型反应堆类型)Although the only requirement for a neutron chain reaction is a sufficient amount of a fissile element,many combinations of materials and arrangements can be use
20、d to construct an operable nuclear reactor.Several different types or concepts have been devised(设计设计)and tested over the period since 1942,when the first reactor started operation,(a)PurposeThe majority of reactors in operation or under construction have as purpose the generation of large blocks of
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