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cooling相关的网络例句

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与 cooling 相关的网络例句 [注:此内容来源于网络,仅供参考]

Carlos CAROSS commonly used air-conditioning modules from the basic cooling capacity 18KW to 200KW, with a single module and dual cooling system cooling system module.

卡洛斯CAROSS空调的常用基本模块从18KW到200KW制冷量,有单制冷系统模块和双制冷系统模块。

Dimensionless equation of air flow resistance is functional relation of Euler number, Reynolds number and Prandtl number, is set up after experimental data is analyzed Air resistance through cooling coil is conveniently computed , fan of the new cooling tower is correctly selected and suitable distance of among cooling tubes is designed by the dimensionless equation.

建立了空气流动阻力的准则方程,即欧拉数Eu与雷诺数Re、普朗特数Pr之间的函数关系。利用这个准则方程可以方便地计算空气流经冷却盘管的阻力,合理地选配封闭式冷却塔所用风机和设计冷却盘管的管间距。

Dryer evaporator, heat expansion valve and control box, etc, and choosing packaged imported cooling compressor, famous brand controlling parts, and choosing packaged imported cooling compressor, famous brand controlling parts, and choosing packaged imported cooling compressor, famous brand controlling parts, and condenser used advanced B10 high efficient heat transmitting pipe, and can protect ship swing from flow-stop.

压缩机选用原装德国或美国进口制冷压缩机;冷凝器选用抗腐蚀能力强的海水型专用壳管式冷凝器,冷疑器铜管材质为B10,壳体为A3碳钢,管板、端盖为碳钢加防腐环氧树脂涂层,并且端盖内装有防腐锌块;关键电气控制元件选用进口名牌产品;电控箱内有冷冻水和超低温冰点控制,制冷系统有压力控制和超温泄放装置,有电机过热和电流电压保护措施。

Deformation greatly promoted carbonitride isothermal precipitation and made C-curve shift leftwards. The position and shape of C-curve depended on the content of Nb and N to a great extent, C-curve shifted leftwards a little when N content increased and its nose temperature was raised with Nb content increased. 3 when cooling rate increased, start temperature and finish temperature of continuous cooling precipitation decreased, full precipitation became difficult to take place, the volume fraction of carbonitride precipitation decreased, molar fraction of Nb and C dissolved in austenite increased, and the precipitation grain was further refined. Deformation shorten precipitation start time during continuous cooling, raised precipitation start temperature, accelerated precipitation kinetics of carbonitrides.

计算表明:1在Fe—Nb—C系统中,随着温度的降低,析出相的平衡体积分数增加,溶解在奥氏体中的Nb、C的摩尔分数降低,析出相中C和Nb的原子分数的比值v增加;2变形大大促进了碳氮化物的等温析出,使C曲线左移,Nb和N的含量与C曲线的位置和形状有一定的关系,N含量的增加,使C曲线略有左移,而Nb的含量的增加使得C曲线的鼻子区上移;3随着冷却速率的增大,连续冷却析出的开始温度和结束温度均有所降低,并且析出变得越来越不充分,析出相体积分数明显减小,溶解在奥氏体中Nb和C的摩尔分数增大,析出相粒子被明显细化,变形大大缩短了CCP过程碳氮化物析出的开始时间,提高了析出的开始温度,促进了析出动力学。

It was shown that deresination of crude montan wax depends mainly on the wax concentration in benzene solution, cooling rate, final cooling temperature and addition of seeds erc,of which wax concentration and final cooling temperature were the most important.

考察了粗褐煤蜡脱树脂的主要影响因素—含蜡苯溶液的浓度、冷却速率和最终

Pyrology ; chip cooling technique ; review ; chip package ; enhanced heat transfer ; gas cooling ; liquid cooling ; solid refrigeration

热工学;芯片冷却技术;综述;芯片封装;强化换热;气冷;液冷;固体制冷

A new method was proposed to maximize the effective figure of thermoelectric cooling device through introducing micro scale cooling at its hot end. A theoretical model was established to characterize such operational behaviors. Parametric studies were performed to test the effects of using various possible ways to improve the cooling capability.

提出一种借助于在热电冷却器热端引入微尺度冷却,以提高其制冷性能参数的新方法,并建立了相应的理论模型来刻画该过程,并在此基础上对各类有助于提高制冷性能的潜在途径进行了参数化研究。

Holds that the air volume under the wet cooling condition should be taken as an assessment criterion in stead of that when dry cooling, that the fin pitch of the coil pipe should be optimised to keep proper cooling capacity, and that the number of water passages should be doubled to reduce the resistance within the limits stipulated in the standard and to improve the heat transfer conditions.

认为应以湿工况风量作为对风机盘管机组的考核标准,应合理确定盘管肋片的片间距以保证表冷器的供冷量,应改进水路结构,降低水阻力。

By regulating the pressure, volume of liquid and gas and the cooling time, the cooling system can present an effect of progressive regulation in cooling capability.

在生产中,可通过调节喷雾参数(水和空气的压力、流量及喷雾时间)的方法,在淬火过程中实现对冷却速度的调节。

Thermal comfort and indoor air quality requirements are presented; the contents cover the following topics:(1) Concept of air-conditioning,(2) Thermal principle,(3) Psychrometry and wetted-surface heat transfer,(4) Heating and cooling-load calculations,(5) Air-conditioning systems,(6) Fan and duct system,(7) Pumps and piping,(8) Cooling and dehumidifying coils,(9) Air-conditioning controls,(10) Absorption refrigeration,(11) Heat pump,(12) Cooling towers and evaporative condensers.

课程大纲本课程将介绍空调工程与系统设计,藉由湿空气线图讨论空气调节之过程,分析人体舒适与空气品质之需求,及各种空调设备系统之设计,内容涵盖如下:(1)空调的概念(2)热原理(3)湿空气与湿表面热传(4)加热与冷却负荷估算(5)空调系统(6)风扇与风管系统(7)泵与管路配置(8)冷却与除湿盘管(9)空调自动控制(10)吸收式冷冻系统(11)热泵(12)冷却水塔与蒸发式冷却。

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Cooling
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