热机英语怎么说

admin2024年11月22日中英词典4760

本文为您带来热机的英文翻译,包括热机用英语怎么说,热机用英语怎么说,热机的英语造句,热机的英文原声例

本文为您带来热机的英文翻译,包括热机用英语怎么说热机用英语怎么说热机的英语造句热机的英文原声例句热机的相关英语短语等内容。

热机的英文翻译,热机的英语怎么说?

  • heat engine ; heat machine

热机的英语网络释义

热机(heat engine)是将热能转换成动能的机械。基本上原理是"工作流体高温时膨胀作正功,工作流体较低温时作负功被压缩。

... 热损失,热耗thermal loss 热机thermal machine 热中子通量的麦克斯韦分布thermal Maxwell flux distribution ...

... internal agent 内因 internal combustion engine 热机 international biological program = ibp国际生物科学研究规划[ 为生物科学基本意见的国际民间社团,1964-1978年] ...

热机的汉英大词典

热机[rè jī]

  • {热} {物} heat engine; heat machine
  • 短语:
    • 热机循环 engine cycle

热机的英语短语

  • 卡诺热机carnot heat engine;Carnot Engine

  • 热机械分析仪TMA;High Temperature Thermal Dilatometer

  • 热机械分析TMA;thermomechanical analysis;dynamic mechanical analysis;thermomechanicalanalysisTMA

  • 热机械控制工艺TMCP

  • 热机效率[热]efficiency of heat engine

  • 鞋面蒸湿加热机vamp heating humidifier

  • 热机械检测仪TMA

  • 电热机器electric heating appliance;electric heating apparatus

  • 动态热机械法[热]dynamic thermomechanometry;DMTA

热机的英文例句

记住这个热机是反向运行的,我们把热量向上传输。

Remember this engine is running backward, and we're pumping heat up.

再来看看,不可逆热机的效率。

So now let's look at the efficiency of our irreversible engine.

让我们推广卡诺热机的结果。

So generalize our Carnot engine results.

这是另一台,利用可逆过程工作的热机

So this is some other engine that runs using reversible processes.

这个热机,叫做卡诺热机

So, the engine that I'm going to illustrate is called a Carnot engine.

白天机器应该开着,以避免长时间热机

The machine should be left on during the day to avoid long warm-up times.

在这边,我们画出一个热机,是卡诺热机

And on this side, we're going to write out an engine, and we're going to say this is a Carnot engine.

启动与产量损失,如预器或设置更改。

Start up and yield losses = "warming up" machines or getting settings just right

热机是指把热能转变为机械功的一种发动机。

By heat engine people mean an engine converting heat energy into mechanical work.

运用声子导制对导热变化机理进行了分析。

The variation in heat conduction is analyzed using phonon heat conduction mechanism.

在一个真实的热机里,当然,你可以达到可逆极限。

In a real engine, of course, you can approach the reversible limit.

叙述了远红外辐射性材料的性质及辐射加理。

The article discussed the nature of far infrared radiant material and its radian mechanism.

毕竟,我们利用,右边产生的功,来驱动左边的热机

After all, we're taking the output work that we get from the right, and using it all to drive the left.

根据热力学第二定律,一个热机发电可以从这个温差。

According to the second law of thermodynamics, a heat engine can generate power from this temperature difference.

请记住这个热机是反过来运行的,我们把热量向上传输。

Remember this one's running backward, we're pumping heat up.

提出了地球大气太阳能—风能转换的双热机并联模型。

The twin engine model for the wind system of the earths atmosphere is presented.

超声作用的物理机制有制、机械机制和空化机制。

The physical mechanisms of ultrasound are thermal mechanism, mechanical mechanism and cavitation mechanism.

太原一电厂300MW供组性能在线监测系统的开发。

On-line performance monitoring system for 300MW heat-supply unit in Taiyuan NO.

内燃机是一种热机,燃料在其被称为燃烧室的密封空间内燃烧。

The internal combustion engine is a heat engine in which the burning of a fuel occurs in a confined space called a combustion chamber.

热机系统、传动系统进行了优化设计,增强了整机的可靠性能。

Optimizing the heat engine system and transmission system improve the reliability of the engine.

未来的研究重点是流动换理以及影响流动换热机理的因素。

The research focal point in the future lies in flow and heat transfer mechanism and effects of baffle.

柴油机不能利用燃料的全部化学能,任何别的热机也做不到这一点。

A diesel engine can not utilize all the chemical energy of the fuel nor can any other heat engine.

介绍了薄型太阳热反射隔热涂料的配方、工艺、性能和隔理。

Formulation, process, performances and mechanism of the thin solar-reflection thermal insulating paint are introduced.

柴油机不能利用燃料的全部化学能,任何别的热机也做不到这一点。

A diesel engine can not utilize all the chemical energy of the fuel, nor can any other heat engine.

并对变速箱局部机构粘性剪切发理和热源热流分配进行了探讨。

The frictional heat generation and heat flow distribution of some parts of the gearbox are investigated.

本文介绍了热机械过程控制的冶金原理,基本物理要素和过程参数。

This paper presents the metallurgical principle of thermomechanical process control, basic physical elements and process parameters.

每天早晨起来擦车,打黄油,然后预子,除此都没有机会摸设备。

Every morning clean, beat butter, then preheating machine, in addition to have no chance to touch device.

分析了翅片管的传理,重点介绍了双金属轧制翅片管的应用情况。

The mechanism of heat transfer is analyzed. The application situation of bimetal rolled fintube is recommended emphatically.

一个是我们已经学过的卡诺热机,另一个是任何一个其它可逆热机

One is our Carnot engine as we've seen it, and the other is just any other reversible engine.

一个是我们已经学过的卡诺热机,另一个是任何一个其它可逆热机

One is our Carnot engine as we've seen it, and the other is just any other reversible engine.

热机的原声例句

And on this side, we're going to write out an engine, and we're going to say this is a Carnot engine.

在这边,我们画出一个热机,是卡诺热机

So, what I want to do is make a new engine which really just consists of two engines, side by side.

我们先构造一个,由两个热机组成的热机,并排排列。

So, the total work that we can get out must be zero, out of the whole sum of them.

因此,我们可以从这两个热机,得到的总功,一定是零。

So, the engine that I'm going to illustrate is called a Carnot engine.

这个热机,叫做卡诺热机

Now I want to just assume that in some way they're different.

现在我们假设,这两个热机在某些方面是不同的。

That's the work that the system is doing to the environment. I'm doing work to the environment. The work is negative, which means that work is being done to the environment.

功的大小,就是矩形的面积,这样我们就实现了一台热机,冷却,加热,加热,冷却,系统回到了初态。

So what this says is the efficiency of any reversible engine T1 has to be one minus T2 over T1.

这就是说,任何可逆热机的效率都是,负T2除以。

One is our Carnot engine as we've seen it, and the other is just any other reversible engine.

一个是我们已经学过的卡诺热机,另一个是任何一个其它可逆热机

After all,we're taking the output work that we get from the right, and using it all to drive the left.

毕竟,我们利用,右边产生的功,来驱动左边的热机

So now let's look at the efficiency of our irreversible engine.

再来看看,不可逆热机的效率。

So in other words, this engine is running less efficiently than my Carnot engine.

也就是说,这个热机的效率,比卡诺热机低。

We could, write the work that we generate -w that comes out as negative w.

热机相连,热机运行做功。

So this is some other engine that runs using reversible processes.

这是另一台,利用可逆过程工作的热机

OK, so here is just an engine like what we've already seen, and I'm going to specify that this is a Carnot engine which is to say all the results that we just derived hold for this case.

这一个热机,跟我们以前见过的差不多,我们把它确定为,卡诺热机,所以我们之前得到的结果都对它适用。

Let's just take our reversible engine and modify it a little bit.

我们就拿可逆热机为研究对象,并对它进行一点修改。

We've formulated one particular kind of engine, and seen how we can analyze what it does, come up with relations that seem of value for efficiency and other quantities.

这是一个很典型的热机,我们来分析它是怎么工作的,然后得到效率和其它一些,有用物理量之间的关系。

It's not a result that's specific to the one cycle that we put up.

这不是某一个,特定热机的结果。

As we expected, it's less than one, and of course if we build an engine, we want it to be as high as possible, as close to one as possible.

就像预先期待的一样,效率小于一,当然如果我们建造一台热机,我们希望效率越高越好,尽可能接近一。

Remember this one's running backward, we're pumping heat up.

请记住这个热机是反过来运行的,我们把热量向上传输。

In a real engine, of course, you can approach the reversible limit.

在一个真实的热机里,当然,你可以达到可逆极限。

So generalize our Carnot engine results.

让我们推广卡诺热机的结果。

What you've built is an engine. You cool, you heat, you heat, you cool, you get back to the same place, but you've just done work to the environment.

这就是热机,我们用燃料或者热源加热,然后把它,与大气接触让它冷却。

We're building up to entropy and to engines, Carnot cycles, etcetera.

我们要研究,熵,热机,卡洛循环等概念。

And side by side, we're going to run another engine.

与它并列的,有另一台热机

So it's going to be the case for any irreversible engine.

这对所有不可逆热机都成立。

So use work out of right-hand side to run left-hand backward.

利用右边输出的功,来驱动左边的热机反方向运行。

And you know, you could have a reversible engine with lots and lots of steps, but you could always break them down into some sequence of adiabatic and isothermal steps.

你们知道,我们可以设计一个由,很多很多个,循环步骤的热机,但是总可以把它分割成,一系列的绝热,和等温过程。

So you know, what the second law is doing, in other words, it's putting these restrictions on how well or how effectively we can convert heat into work in the case of the engine, or work into heat extracted in the case of a refrigerator.

你们知道,在热机中,热力学第二定律的作用,换句话说,就是给热量,转化为功的效率,施加限制,或在制冷剂中,对抽取热量,进行限制。

Now what I want to do is put up a specific example of the cycle that can be undertaken inside here in an engine, and we can just calculate from what you've already seen of thermodynamics.

现在我想做的是,举一个例子,来具体说明热机内部的循环过程,同时我们可以利用热力学定律进行计算,看看热力学参量发生了什么变化。

we can run the engine backward and build a refrigerator, if you've got your lecture notes from last period your 8-9, well, they're labeled 8-9 lecture notes, I made an attempt to define something which was a little bit misguided.

现在我们可以把热机倒过来,制作一台制冷机,如果你们拿出上节课的笔记,也就是8-9节,好的,他们在8-9节,当时我试着,定义了一些,有些误导你们的物理量。

热机的网络释义

热机 热机是指各种利用内能做功的机械。是将燃料的化学能转化成内能再转化成机械能的机器动力机械的一类,如蒸汽机、汽轮机、燃气轮机、内燃机、喷气发动机。 热机通常以气体作为工质(传递能量的媒介物质叫工质),利用气体受热膨胀对外做功。热能的来源主要有燃料燃烧产生的热能、原子能、太阳能和地热等。

以上关于热机的英语翻译来自英汉大词典,希望对您学习热机的英语有帮助。