补偿深度

  • 网络the compensation depth;ccd
补偿深度补偿深度
  1. 斑节对虾塘平均补偿深度(B)和平均透明度(P)之比(B/P)与通常鱼池所具有的比值(1.5~2.5)相比偏低,为1.42±0.53。

    The ratio ( B / P ) of mean compensation depth ( B ) to mean transparency ( P ) in Giant tiger prawn pond , 1.42 ± 0.53 , was lower than that in fishpond ( 1.5 ~ 2.5 ) .

  2. 根据翼足类的深度分布确定东海现代文石补偿深度在约600m水深处。

    According to the depth distribution of pteropod abundance the modern aragonite compensation depth was determined at some 600 m water depth in ECS .

  3. 钙质沉积物分布在碳酸钙补偿深度(CCD)界面以浅区。

    Calcareous sediments distributed in the calcium carbonate dissolution belt above CCD boundary .

  4. 弧前复理石至少可细分为三个巨层序,从宽阔而切割较深的粗粒水道充填物开始,而以半远洋泥灰岩(沉积于碳酸盐补偿深度CCD之上)和黑色页岩告终。

    The forearc flysch may be subdivided into at least three mega-sequences , which begin with wide and relatively deeply cut , coarse-grained channel fills and end with hemipelagic marls ( deposited above the CCD ) and dark shales .

  5. 方解石的饱和面1630m,溶跃面3000m,补偿深度4600m,文石饱和面435m,补偿深度1000m。

    The saturation horizon and compensation depth of aragonite are 435m and 1000m .

  6. 碳酸盐补偿深度(C.C.D)及溶跃面是海洋学中两个重要界线。

    Carbonate compensation depth ( C.C.D. ) and lysocline are two important boundaries in oceanography .

  7. 碳酸盐补偿深度也是南部的较深,南部为3600m上下,而北部在3400m上下。

    The CCD is 3 600 m deep in the southern area , and 3 400 m deep in the northern one .

  8. 海洋碳酸钙溶解跃面及补偿深度的研究

    A study of the calcium carbonate lysocline and compensation depth in the oceans

  9. 光补偿深度与透明度呈显著线性相关;

    Light compenstation depth was obviously correlative to transparency ;

  10. 补偿深度平均为1.13±0.35米。

    The compensation depth averages 1.13 ± 0.3m .

  11. 滇池光照强度的垂直分布与沉水植物的光补偿深度

    Vertical Distribution of Light Intensity and Light Compensation Depth of Submerged Macrophyte in Lake Dianchi

  12. 深海碳酸钙补偿深度及溶跃面

    Deep-sea carbonate compensation depth and lysocline

  13. 南海东北部海区碳酸钙的饱和面、溶跃面和补偿深度

    Carbonate compensation depth , saturation horizon and lysocline in the northeast region of South China Sea

  14. 干季,光补偿深度较高。湿季,补偿深度较低。

    The depth of light compensatory point is higher during dry season , and lower during monsoon season .

  15. 亚洲中部地区岩石圈均衡补偿深度和弹性板模型反演结果分析

    Equilibrium compensation depth and inversion analyses for elastic slab model of the lithosphere in the Central Asian region

  16. 深入分析了水体光补偿深度、沉床悬挂深度与沉水植物恢复之间的关系,提出了生态补偿区的概念;

    3 , Interrelation of light compensation depth , hanging depth of GSB and submerged macrophytes revegetation were discussed in this article .

  17. 简要叙述了岩石圈均衡补偿深度和弹性板复合补偿的理论与方法;

    In this article , we relate the theory with the methods of the equilibrium compensation depth of the lithosphere and compound compensation of elastic slab .

  18. Ⅰ层内钙质超微化石的缺失可能与白垩纪末期碳酸盐补偿深度的骤然变化有关。

    The absence of calcareous nannofossils in layer ⅰ may be related to the abrupt changes of carbonate compensation depth ( CCD ) in the late Cretaceous .

  19. 求出了亚洲中部地区岩石圈均衡的最佳补偿深度为75km,通过线性反演得到该区岩石圈弹性板复合补偿模型的基本参数。

    Then we get the best lithospheric equilibrium compensation depth of 75 km in the Central Asian Region and the basic parameters of the lithospheric elastic slab in this region by linear inversion .

  20. 结果表明,沙棘与柠条深层土壤均存在不同程度的旱化现象,沙棘林在季节性土壤水分补偿深度和对深层低土壤水分的利用能力方面要强于柠条林。

    The results showed that there existed dry soil layer in the stands . The seasonal compensation depth of soil water in Hippophae rhamnoides stand was deeper and its water use capability was better than those of C.

  21. 该文对二维图像和三维图像序列进行实验,结果表明通过此算法能够补偿由于深度变化所带来的模糊,从而将模糊图像复原。

    This paper analyzes the capability of the EM algorithm with two-dimension images restoration and three-dimension serial images restoration , and its performance shows that the algorithm can compensate the blur of image by the depth variant image model .

  22. 井约束速度补偿叠后深度偏移处理方法应用研究

    Application of Poststack Depth Migration Treating Method of Well Constraining Velocity Compensation

  23. 在一定程度上能够补偿测井曲线深度不同产生的误差;④在继承传统曲线基础上,利用了其它曲线资料对渗透层(包括薄层或夹层)进行识别等。

    @ Compensation for the depth errors to a certain extent ④ Identification of the permeable zones ( including thin beds and interbeds ) from other logs .

  24. 用数据场差分替代原数据场,计算三维数据场的动态调节因子,通过模拟补偿图像的深度感和真实感,动态地调节图像质量。

    The algorithm calculates the dynamic adjustor of3D data field to adjust the image quality dynamically by simulating and compensating the realistic effect and depth effect of the rendering image .

  25. 为此,研究一种在深度方向上采用声线跟踪技术进行补偿以提高海底深度测量精度的方法。

    In this paper a method is proposed for improving the measurement precision of bathymetry by utilizing ray tracing in the depth direction .

  26. 报道了滇池15个监测断面透明度和不同水深的光照强度,以及借助于沉水植物群落昼夜光补偿点所得到的沉水植物光补偿深度。

    Studies were made on the transparency , the vertical distribution of light intensities and the light compensation depth of submerged macrophyte at the 15 monitoring sections in Lake Dianchi .

  27. 对DVR控制电压跌落的策略进行了分析,结果表明在使用最小能量补偿法时,这种方法能可靠补偿线路深度、长时间的电压跌落。

    The control strategy of DVR for voltage sag is analyzed , and the minimal energy compensation method is found to be reliable and effective for deep and long-duration voltage sages .