工程热力学(英文版)第六单元ppt课件.ppt
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1、,Chap6 Summary-1,1,Why we need 2nd Law? All processes satisfy 1st Law; Satisfying 1st does not ensure the process can actually occur,Heat Engines,Refrigerator, Heat Pump,Introduction to 2nd Law,Refrigerators/heat pump: The devices drive heat Q transfer from TL to TH,Thermal energy Reservoir,Receive
2、heat QH from a high temperature source,The work input to the refrigerator/heat pump,Heat QL absorbed from refrigerated space TL,A process has direction,Energy has quality and quantity,Heat Source,Heat Sink,Convert part QH to work Wnet,out,Reject waste heat QL to a low temperature sink,Heat engine,2n
3、d law, Kelvin-Planck Statement: It is impossible for any device that operates on a cycle to receive heat from a single reservoir and produce a net amount of work. No heat engine can have =100%,Heat QH rejected to high temperature TH,Refrigerator wants QL,Heat pump wants QH,COP,2nd law, Clausius Stat
4、ement: Heat does not, of its own volition, transfer from a cold medium to a warmer one. (热不能自发地、不付代价地从低温物体传到高温物体),Chap6 Summary-2,2,A process can be reversed without leaving any trace on the surroundings.,Carnot Cycle,Carnot RefrigeratorCarnot Heat Pump,Reversible Processes,The heat engine operates
5、on the reversible Carnot Cycle,The best known reversible cycle; four reversible processes,Carnot heat engine,Carnot Principle 1: Given TL and TH, th,irrev th,rev,System,Surroundings,Internal Rev,External Rev,Why need Rev,Irreversible: heat transfer,Isothermal expansion,Isothermal Compression,Adiabat
6、ic compression,Reversed Carnot Cycle,Carnot refrigerator /heat pump,Carnot Principle 2: Given TL and TH, th,all rev = th,rev,Carnot Heat Engine,The refrigerator / heat pump operates on a reversible Carnot Cycle,Adiabatic expansion,6-6 reversible and irreversible processes,The second law of thermodyn
7、amics states that: no heat engine can have an efficiency of 100 percent. ? What is the highest efficiency that a heat engine can have?To answer this question, we need to define an idealized processReversible process.,3,6-6 reversible and irreversible processes,A reversible process (可逆过程) is defined
8、as a process that can be reversed without leaving any trace on the surroundings. System returned to initial statesSurroundings returned to initial statesThis is possible only if the net heat and net work exchange between the system and the surroundings is zero for the combined (original and reverse)
9、 processProcesses that are not reversible called irreversible processes.,4,6-6 reversible and irreversible processes,It should be pointed out that: A system can be restored to its initial state following a process, regardless of whether the process is reversible or irreversible. But for reversible p
10、rocesses: this restoration is made without leaving any net change on the surroundings. While for irreversible processes: the surroundings usually do some work on the system and therefore does not return to their original state.,5,6-6 reversible and irreversible processes,Reversible processesInternal
11、ly reversible(内部可逆): no irreversibilities occur within the boundary of the system during the process. Like the quasi-equilibrium process is an example. Externally reversible (外部可逆): no irreversibilities occur outside the system boundary during the process.,6,6-6 reversible and irreversible processes
12、,Reversible processes do not occur in nature. They are idealizations of actual processes. All the processes occurring in nature are irreversible. The possibility of finding a perfect mate is no higher than the possibility of finding a perfect (reversible) process.But we need reversible processes:Eas
13、y to analyze: a serious of equilibrium states during a processAct as idealized models (theoretical limits) to be compared by actual processes.,7,6-7 The Carnot Cycle (卡诺循环),Carnot cycle(卡诺循环) is the best known reversible cycle. Composed of four reversible processes: Two isothermal processesTwo adiab
14、atic processesFirst proposed in 1824 by Sadi CarnotCarnot cycle can be executed either in a closed or a steady flow system. The theoretical heat engine operates on a Carnot cycle is Carnot heat engine(卡诺热机).,8,6-7 The Carnot Cycle (卡诺循环),Consider a closed system that consists of a gas contained in a
15、n adiabatic piston-cylinder device.The four reversible processes are:,9,Process 1-2: isothermal expansion(等温膨胀)Process 2-3: adiabatic expansion(绝热膨胀)Process 3-4: isothermal compression (等温压缩)Process 4-1: adiabatic compression(绝热压缩),6-7 The Carnot Cycle (卡诺循环),Reversible isothermal expansion(可逆等温膨胀):
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