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1)  thermal maladjustment
热失调
1.
Taking biaxial collimator for typical example, its operational principle, thermal maladjustment links and maladjustment optical principle are described.
以双轴平行光管为典型实例,论述其工作原理、热失调环节和热失调光学原理。
2)  Heating system maladjustment
供热失调
3)  thermodynamic imbalance
热力失调
1.
Byanlyzing the effect of hydraulic misadjustment an d temperature drop of water supplied on thermodynamic imbalance,two feasible op t ions in designing outdoor heating networks:It is iuggeeted that the same distanc e system of heating and the mixing system of heating are proposed.
通过分析水力失调、供水温降对热力失调的影响,提出了两种可行的供暖外网设计方案:同程式系统和混合式系统。
2.
The thermodynamic imbalance phenomenon caused by hydraulic imbalance as well as caused by heating quality regulating is studied.
研究了供热系统水力失调导致的热力失调,以及集中质调节导致的热力失调现象。
4)  photothermal detuning
光热失调
1.
A pulsed laser photothermal detuning technique,in which the temperature induced spectral shifts of optical coatings are used to measure photothermal signal,is presented.
将脉冲激光作为加热光引入光热失调测量技术中,提出了脉冲激光光热失调测量技术,介绍了其基本原理,分析了脉冲激光光热失调测量技术用于测量光学薄膜微弱吸收的可行性。
5)  thermal misadjustment of consumer heating system
热用户热力失调
6)  vertical thermal imbalance
垂直热力失调
1.
This paper analyzes the influence of high designed heating load on the indoor heating system and reaches a conclusion that high designed heating load is beneficial to eliminating vertical thermal imbalance.
分析了设计热负荷偏大对室内供暖系统的影响,得出设计热负荷偏大对单管系统克服垂直热力失调是有利的结论;经分析设计热负荷偏大对管网及热源的影响,得出仅靠加大室内设计热负荷达不到良好供暖的结果,相反,加大室内设计热负荷会导致个别用户供暖效果更差。
补充资料:负温度系数热敏电阻陶瓷(见热敏陶瓷)


负温度系数热敏电阻陶瓷(见热敏陶瓷)
thermo-sensitive ceramics with negative temperature coefficient

负温度系数热敏电阻陶瓷thermo一sensitiveeeramies with negative temperature eoeffieient在某一特定温度范围,电阻率随温度的升高而明显减小的热敏陶瓷。简称NTC陶瓷。
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