1) thermal conductivity temperature difference
热导恒温差
2) constant temperature difference
恒温差
1.
The sensor is operated in the mode of constant temperature difference(CTD),which is realised by PID.
设计了一种利用C8051单片机的二维风速风向测试系统,通过PID控制使传感器工作在恒温差模式,可以测试风速和风向。
2.
The oscillation occurred in the constant temperature difference(CTD) control circuit of CMOS thermal flow sensors is analyzed.
分析了恒温差控制模式在CMOS热流量风速计中遇到的振荡问题。
3) constant temperature heating
恒温加热
1.
Firstly analysis was made on the problems and reasons which were easily taken place when the bottling machine was operated at low temperature, and on this basis, constant temperature heating solution was raised.
分析了灌装机在低温状态使用时易出现的问题以及原因,在此基础上提出恒温加热的解决方案。
2.
When reaching the set temperature,the pressure cooker is in the state of intermittent or constant temperature heating so as to guarantee of safety of the pressure cooker and save electricity.
到达设定温度时,压力锅处于断续、恒温加热状态,此时即可以保证压力锅处于安全压力状态,又可以达到省电目的;到达设定时间,压力锅处于保温状态。
4) constant-temperature heating wires
恒温热丝
1.
Based on the idea that the air-conditioner should set and control the radiating rate of the skin directly in a comfortable temperature,the constant-temperature heating wires,which is adjust to animal heat,controlled by heating wires constant-temperature circuits is introduced as intelligent sensor for air-conditioner,instead of traditional temperature sensor adopted by air-conditioner.
基于理想的空调器应当能够在舒适的体表温度下直接设定并控制皮肤散热速度的理念,提出了用热丝恒温电路控制的与正常体温相接近的恒温热丝,作为空调智能传感器以取代普通空调温度传感器。
5) isothermal heat resource
恒温热源
1.
This paper explains the thermodynamic concepts of "reversible cycle and irreversible cycle" , "isothermal heat resource" and "heat resource of changeable temperature" .
本文论述了可逆循环与不可逆循环以及恒温热源与变温热源的不同热力学概念,从而论证了“顾氏循环”的热效率比卡诺循环为高,或者“顾氏循环”的制冷系数比逆卡诺循环为高的结论是不能成立的。
6) heat transfer with constant temperature
恒温传热
补充资料:差差
1.犹参差。不齐貌。
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