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1)  narrow band model
窄谱带模型
1.
The purpose of this dissertation is to study the application of narrow band model on.
研究了窄谱带模型在气体辐射中的运用,根据气体介质的物理性质,计算了对应各个波长段的辐射强度和穿透率。
2.
The purpose of this dissertation is to study the application of narrow band model on gas radiation.
本文的目的是研究窄谱带模型在气体辐射中的应用。
2)  narrow band parameters
窄谱带模型参数
3)  narrowband model
窄带模型
4)  CWNBCK
合并宽窄谱带K分布模型
1.
In this dissertation ,a new model named Combined Wide and Narrow Band CK (CWNBCK)which is based on SNBCK is developed .
本文提出了一种新的基于SNBCK模型基础上的合并宽窄谱带K分布模型—CWNBCK,对于重要谱带、谱带重叠严重的区域以及需要知道详细的光谱数据的谱带,采用SNBCK模型,能够满足其计算精度;而对于其他的谱带以及只需要知道总的辐射换热量的谱带,采用合并后的宽带K分布模型,在满足其计算精度的基础上能够提高计算效率。
5)  band model
谱带模型
1.
As the thermal radiation of coating surface on Low E glass is strongly influenced by its spectrum, the nongray band model in diffusing enclosure was used to numerically simulate the surface radiative characteristics of Low E glass in combination with the glass properties of absorptivity and transmissivity.
采用漫射封闭腔内非灰谱带模型 ,并结合玻璃吸收和透射的性质 ,对Low E玻璃镀膜侧表面的热辐射特性进行了数值模拟研究 。
2.
Bearing in mind the imperfections of computational model for Non gray gases radiation properties, the modification of a revised band model is proposed to take into consideration, the effect of wavelength, temperature, total pressure and ingredients of gases mixture, and Line broadening degree and index band parameters are presented to justify the computer code.
针对目前气体辐射特性计算模型存在的不完善因素 ,本文通过考虑波长、温度、总压以及气体成份对总辐射特性的影响 ,提出用谱线增宽程度和指数宽带参数对现有的混合气体谱带模型进行修正 。
6)  spectral band model
谱带模型
1.
By using the finite volume method and the spectral band model, the coupled radiative-conductive heat transfer is numerically simulated in an absorbing, emitting, scattering and non-gray medium.
将有限体积法与谱带模型结合 ,求解了吸收、散射性非灰介质内的耦合换热 。
2.
The combined radiation-conduction heat transfer in the cylindrical semi-transparent medium is simulated by using finite volume method and spectral band model.
将谱带模型与有限体积解法相结合;求吸收、发射、散射性非灰介质圆柱体内辐射传递方程。
补充资料:胎圈过窄、子口窄、圈窄等
分子式:
CAS号:

性质:又称胎圈过窄、子口窄、圈窄等。轮胎工业中指两胎圈宽度不一致的现象。

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