1) seismic profile analysis
地震剖面分析
1.
The field profile observation,indoor geological profile analysis,seismic profile analysis and the fission-track dating were used to study the formation age of dustpan fault depression.
利用野外剖面观察、室内地质剖面分析、地震剖面分析以及裂变径迹年代学等方法对鲁西隆起和济阳坳陷箕状断陷的形成时代进行了探讨。
2) seismic tomographic profile
地震层析剖面
1.
By using four seismic tomographic profiles of nearly 8 000 km long across the Qinghai-Tibet Plateau, we obtained the crustal and mantle velocity images and seismic wave anisotropy over the depth down to 400 km, which revealed significant characteristics of the crust and mantle structure in the region.
通过横穿青藏高原近 80 0 0km长的 4条天然地震层析剖面 ,获得 4 0 0km深度以上的地壳和地幔速度图像及地震波各向异性 ,揭示了青藏高原 4 0 0km深度范围内的地壳和地幔结构特征。
3) seismic profile
地震剖面
1.
Geological interpretation of the seismic profile in Tarim Basin and tectonic evolution of this area
塔里木盆地地震剖面地质解释及其构造演化
2.
Demarcating through-well seismic profile with diplog is one of the important ways to improve the quality of seismic interpretation.
地层倾角测井标定过井地震剖面是提高地震成果质量的重要途径之一。
3.
In seismic description,it often traced geologic horizon in seismic profile and reflected the geologic information on corresponding seismic horizon.
在地震解释中,常常在地震剖面上追踪地质层位,并且将地质信息映射到相应的地震层位上,有时追踪某一地震层位的波峰,有时是波谷,多数时候都没能精确地确定地质层位的位置。
4) seismic section
地震剖面
1.
Fault analysis and fault correlation in seismic section;
地震剖面上的断层分析及相关意义
2.
Lithology prediction of 2-D seismic section by neural net work technique;
用神经网络预测二维地震剖面的地层岩性
3.
Application research of digital image processing method for improving signal to noise ratio of seismic section image;
利用数字图像处理技术提高地震剖面图像信噪比
5) texture profile analysis
质地剖面分析
1.
The effects of soy,sugar,salt on the texture characteristics of steamed pork bacon with rice powder were studied by the method of texture profile analysis.
采用质地剖面分析法(TPA,texture profile analysis)研究了酱油、白糖、食盐对粉蒸肉质构的影响,结果表明:带皮肥肉和瘦肉的硬度和耐嚼性随着酱油的增加而增加,无皮肥肉的弹性、凝聚性和回复性变化较大;白糖对带皮肥肉的硬度、弹性、回复性和瘦肉的耐嚼性影响显著;食盐对带皮肥肉的硬度和回复性、无皮肥肉的弹性和回复性影响不显著。
2.
Tissue structure and rheological properties of foot and visceral muscles of both raw and heated turban shell with different times(5,20 and 60 min) were investigated,texture profile analysis was experimentized,which would provide a theoretical foundation for the development of the produce of turban shell and optimizing the technological process.
研究了海螺不同部位的肌肉在鲜活和加热(100℃)过程中组织构造及其流变学特性的变化,并进行了质地剖面分析(TPA),为海螺深加工制品的开发及加工工艺的优化提供了依据。
3.
Tissue structure and rheological properties of both raw and heated turban shell foot with different time(5,20,60 min) were investigated,and texture profile analysis and sensory evaluation were experimented,which would provide theoretic basis and scientific gist for opening up the production of turban shell foot and optimizing process.
研究了鲜活和不同加热条件下(5、20、60 m in)海螺足部的组织构造及其流变学特性的变化,并进行了质地剖面分析(TPA)和感官评定试验,为海螺深加工制品的开发及加工工艺的优化提供理论基础和科学依据。
6) seism facies section
地震相剖面
补充资料:剖面分析
分子式:
CAS号:
性质:系指分析样品中杂质的剖面分布特征,一般可采用离子束分析、全反射X射线荧光分析、同步辐射X射线分析、冷中子活化分析以及瞬发辐射分析等。现已可测定杂质在样品中的三维分布特征。
CAS号:
性质:系指分析样品中杂质的剖面分布特征,一般可采用离子束分析、全反射X射线荧光分析、同步辐射X射线分析、冷中子活化分析以及瞬发辐射分析等。现已可测定杂质在样品中的三维分布特征。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条