对流热的英文
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"对流热"怎么读用"对流热"造句
英文翻译手机版
- advection heat
- convection heat
- convection of heat
- "对流"英文翻译 convection; convection curre ...
- "层流热对流" 英文翻译 : laminar heat convection
- "对流热传" 英文翻译 : convection heat transfer
- "对流热传递" 英文翻译 : convection heat transfer; convective heat transfer
- "对流热点火" 英文翻译 : convective heating ignition
- "对流热交换" 英文翻译 : convective heat exchange; convective heat transfer
- "对流热流" 英文翻译 : convection heat flow; convective heat flow
- "对流热流量" 英文翻译 : convective heat flow
- "对流热前缘" 英文翻译 : convective heat front
- "对流热源" 英文翻译 : source of conductive heating
- "对流热阻" 英文翻译 : thermal convection resistance
- "对流热交换器" 英文翻译 : counterflow heat exchanger
- "对流热传递系数" 英文翻译 : convective heat transfer coefficient
- "对流热交换系数" 英文翻译 : convective heat exchange coefficient
- "对流" 英文翻译 : [物理学][气象学] convection; convection current◇对流定律 law of convection; 对流放电 [电子学] convective discharge; electric wind; static breeze; 对流活动 [气象学] convective activity; 对流加热器 convection heater; 对流加速度 convective acceleration; 对流冷却 [工业] convection cooling; 对流平衡 convective equilibrium; 对流气流 [气象学] convection [convective] current; 对流区域 convective region; 对流热交换 convective heat exchange; 对流散热器 convector (heated) radiator; 对流选矿法 countercurrent treatment; 对流云 [气象学] convective cloud; 对流运输 cross haul of traffic (相向运输)
- "层流热通量" 英文翻译 : laminar heat flux
- "低电流热子" 英文翻译 : low-current heater
- "乱流热传送" 英文翻译 : turbulent heat transfer
- "平流热效" 英文翻译 : advection of heat
- "氢流热处理" 英文翻译 : hydryzing
- "热流热通量" 英文翻译 : heat flow
- "日本河流热" 英文翻译 : japanese river fever
- "弱电流热丝" 英文翻译 : low-current heater
- "湍流热传导" 英文翻译 : turbulent heat conduction
- "紊流热传导" 英文翻译 : eddy heat conduction; turbulent conduction
例句与用法
- Nitrogen screen , rare factive gas and nuclear heat are the mainly compos it ion
其中稀薄气体对流热、辐射热和核沉积热是热负荷的重要组成部分。 - Clothing and equipment for protection against heat - test method for convective heat resistance using a hot air circulating oven
防热服及设备.用热空气循环炉测试耐对流热的试验方法 - The convective heat of molten magma in the upper 10 km of the continental crust represents a significant geothermal energy resource
大陆地壳10公里深度以内熔岩中的对流热是一种重要的地热能资源。 - So when the underfloor air supply system is been used in engineering , different supply air speed will be adopted on the basis of different heat intensity of upside and low side of room . so to economize energy
所以工程上采用地板送风时,应根据房间上下部热源强度的不同,采用不同的送风速度,从而减少对流热转移负荷,在工程上达到最大的节能。 - Between glass - cover board and endothermic board , honeycomb is placed , which can eliminate heat loss caused by air natural convection and greatly reduce heat loss caused by radiation , and hence a better transfer heat efficiency
而在透明玻璃盖板和吸热板之间放置蜂窝结构,基本上能消除吸收表面和盖板之间的空气自然对流热损失,并可大大降低辐射损失,显著提高集热器的热转换效率。 - In this paper , using phoenics software to compute and analyze the variety rule of the convecting transfer heat at the basis of computing and analyzing the temperature and velocity field of one underfloor supply air room with a focus hot source , and concluding that the number of the hot source and the supply air outlet > the intensity of the hot source and the volume of supply air will influence convecting transfer heat , and obtained its correlativity formula
本文针对一下部有集中热源的地板送风空调小室,利用phoenics软件,在计算分析小室内气流的速度场及温度场的基础上,对对流热转移量的变化规律做了计算分析,最后得出对于下送风小室的对流热转移量与热源的个数、送风口个数、热源强度、送风量等因素有关,并且得出了其相关关系式。 - As the return of flow is being , one side the heat gain of higher zone will be lead back , on the other hand , the heat has been transmitted to upside also will return , so the heat gain will incr ease . the methods of using numerical simulating has been used to analyze the factors influecing convecting transfer heat in this paper
实际运行时由于空气的回返,一方面会把上部的得热带回工作区,另一方面也会把下部已传送上去的热量又带回,从而增加了下部的得热量,本文就影响对流热转移量的因素利用数值模拟的方法做了一初步的研究。 - At the same time , i discover that the number of the return air inlet has a little influecing and it can be neglected . when there is hot resource at upperside of the room , the hot jet and supply air jet together affecting . at the same lower part heat intensity , a utmost wind speed exist , the supply air speed lower , the more heat intensity on the upside , the less convecting transfer heat , whereas
对于上部有热源的条件下,则其对流热转移量的变化关系是由热射流与送风冷射流共同作用影响的,在下部热源强度相同的条件下,存在一极限风速,在该风速以下,上部热源强度越大,则对流热转移量越小,反之在该风速以上,上部热源强度越大,则对流热移量越大。
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