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1.
激光粒度仪测试结果及其与沉降法、筛析法的比较   总被引:33,自引:5,他引:33  
程鹏  高抒  李徐生 《沉积学报》2001,19(3):449-455
分析了Cilas 940L激光粒度仪的测试结果,并与沉降法、筛析法进行了比较。激光粒度仪测试结果的重复性较好,测量精度较高。对于玻璃珠样品,激光粒度仪和筛析法测试结果十分接近,对于天然沉积物,激光粒度仪测定的平均粒径偏粗,分选偏差。和沉降法相比,激光粒度仪测定的粘土组份 (<8%)的含量为沉降法的 46.7%~ 70.5 %,平均为 6 0 %,测定的平均粒径较沉降法偏粗,分选偏差。造成激光粒度仪与沉降法、筛析法之间差异的原因主要在于这些测试方法原理的不同和天然沉积物不规则的形状。  相似文献   

2.
联用筛析法与激光法进行粒度接序分析的界点选择   总被引:1,自引:0,他引:1  
冷伟  范代读 《沉积学报》2014,32(3):478-484
筛析法、激光法和图像法是三种常用的粒度分析方法,但由于测试原理的不同,三种测试方法有不同的适用性。筛析法和图像法能够精确测量砂质颗粒的粒径,但不适用于泥质细颗粒(<0.063 mm)的粒径测量;相反,激光法无法准确测量中粗砂粒级颗粒(2~0.21 mm),但能高精度测量较细沉积物粒径。分选较差的天然沉积物粒径分布范围较广,需要综合运用筛析法-激光法进行接序粒度测试。通常选用2 mm为界点开展接序粒度分析,但因激光法在测量中粗砂颗粒时误差较大,易导致接序粒度分析结果准确性不高。建议以0.21 mm为分界点开展接序粒度分析,分别避开筛析法和激光法测量精度不高的粒级区间,可使测试结果的准确性得到有效的提高。  相似文献   

3.
以新型快速成像及处理技术为基础的动态图像法可为单个样品快速建立百万至上亿个颗粒的图像及粒度、粒形参数数据库,可直观表现天然沉积物的海量颗粒的大小和形状信息,但目前对其与激光法测试结果之间的异同尚缺乏深入理解。本文对采自山东半岛黄岛地区黄海沿岸3处海滩共190个样品进行动态图像粒度分析,通过等效投影面积径(等积径)计算均值粒径、分选系数、偏度、峰度等粒度参数,并与激光法测试结果进行对比。结果表明:1)现代海滩沉积物图像法统计粒径比激光法稍粗,但二者之间的差异较之细粒沉积物较多的类型(如冲洪积物)而言已经很小;2)现代海滩沉积物图像法粒度分析较之激光法分选更优,偏度和峰度均更小;3)图像法和激光法粒度分析结果在沉积环境判别中具有相近的功能,但图像法对沉积环境和动力条件的响应更为敏感。这些认识为动态图像粒度分析技术的应用推广和资料解释提供了新的理论与技术支持。  相似文献   

4.
沉积物粒度分析方法的比较   总被引:5,自引:0,他引:5  
冉敬  杜谷  潘忠习 《岩矿测试》2011,30(6):669-676
近年来激光粒度分析法在沉积物粒度分析方面的应用得到了进一步扩展。本文利用美国麦克奇公司生产的S3500型激光粒度分析仪开展沉积物粒度分析方法实验,研究表明:S3500型仪器较优的样品用量约为0.2 g;稀释过程会影响样品的粒度分布;样品分取方式会带来不同的随机误差。与薄片图像法和筛析法两种传统粒度分析方法获得的粒度分布参数比较表明:激光法测得的平均粒径较薄片图像法和筛析法偏细;激光法和筛析法的峰度相关性较好。采用Malvern 2000和Micro S3500两种激光粒度分析仪测量结果的比较表明:Malvern 2000测得的平均粒径较Micro S3500测得的平均粒径偏细,但二者的相关性很好(r=0.9574),研究认为这两种粒度仪的测试结果会给岩石粒度定名带来差异。由于各种粒度分析方法存在差异和局限性,在实际工作中粒度分析应尽可能建立在同一测量体系上,以便资料对比。  相似文献   

5.
对沉积颗粒大小、形态特征的量化和解释,是沉积动力条件分析和古地理重建的重要内容之一.图像法作为粒度分析的标准,长期受制于样本量小、效率低等困难.基于动态图像法的新型粒度粒形分析系统可在几分钟内获取多达n×107个颗粒的形状和大小信息,为沉积环境重建和动力条件分析提供了新的机会.本文基于两组样品(青藏高原的湖滩砂和黄河中游的河流砂)的动态图像粒度粒形数据,定量分析和对比了湖滩与河流两种环境沉积颗粒的粒度、粒形特征及其异同.结果表明,样品组成颗粒的球度与均值粒度之间整体上存在明显的反相关,球度-粒度曲线可大致划分为斜率不等的三段:占据颗粒绝大多数的中段(C.S.)球度适中,斜率最小;细端(F.T.)球度大,斜率也大;粗端(C.T)球度小,斜率小且不稳定.结合天然沉积颗粒的形状和密度特征,本文认为这些不同斜率的段落可能源于沉积颗粒密度效应和形状效应导致的粒度分异.对比研究表明,湖滩砂与河流砂在粒形-粒度曲线形态与分段特征方面均存在明显差异,两组样品在不同粒形参数(球度—长宽比—凹凸度)三角图和不同球度分段所对应颗粒体积百分比(C.T.-C.S.-F.T.)三角图中均能完全分离.这些事实表明基于动态图像分析的粒度粒形分析可望成为一种潜在的第四纪环境重建工具,在环境研究中有助于对天然沉积物物源特征以及风化、侵蚀、搬运和堆积过程的认识和理解.  相似文献   

6.
钙质碳酸盐碎屑是热带海滩沉积物的重要组成部分,其物理特性与海滩中的石英颗粒差异明显。对海南岛东部文昌铜鼓角两侧海湾海滩砂样采用除钙和不除钙两种预处理方法,使用Mastersizer 2000激光粒度仪和筛析法进行粒度分析,结果表明:除钙以后粒度频率曲线主体朝细偏,但在粒度频率曲线细尾(4~9)会新增一小峰;去钙前后粒度参数存在明显的线性相关,平均粒径、分选系数和偏态的相关系数依次降低;粒度参数的组合变化以“平均粒径变细、分选系数变好、偏态朝细偏”为主,但仍存在其他的组合变化;在对类似于铜鼓岭周边环境的海滩进行沉积物粒度分析及动力环境研究时,需要了解钙质碎屑含量和颗粒组成。  相似文献   

7.
仝长亮  高抒 《沉积学报》2008,26(1):46-53
激光粒度仪的广泛应用带来了与历史数据的对比问题,因此需要建立激光粒度仪与早期分析结果之间的关系。根据江苏海岸潮滩沉积物样品的激光粒度仪和移液管-筛析法分析,对粒度参数、粒度组分等进行了对比,对两种方法的差异进行了分析。结果表明,对于江苏潮滩沉积物粒度参数中平均粒径的激光粒度仪与移液管-筛析分析结果之间有良好的线性关系;筛分法测得的粗颗粒物质较激光法偏少,而移液管法法测得的细颗粒物质较激光法偏多;将样品分类之后再进行两种方法所获粒度参数的回归分析,相关性得以提高,说明不同粒度组成的沉积物对分析结果的对比有不同的影响。两种方法之间的换算关系不仅与研究区域有关,而且与沉积物本身的粒度组成有关。  相似文献   

8.
激光粒度仪的广泛应用带来了与历史数据的对比问题,因此需要建立激光粒度仪与早期分析结果之间的关系。根据江苏海岸潮滩沉积物样品的激光粒度仪和移液管—筛析法分析,对粒度参数、粒度组分等进行了对比,对两种方法的差异进行了分析。结果表明,对于江苏潮滩沉积物粒度参数中平均粒径的激光粒度仪与移液管—筛析分析结果之间有良好的线性关系;筛分法测得的粗颗粒物质较激光法偏少,而移液管法法测得的细颗粒物质较激光法偏多;将样品分类之后再进行两种方法所获粒度参数的回归分析,相关性得以提高,说明不同粒度组成的沉积物对分析结果的对比有不同的影响。两种方法之间的换算关系不仅与研究区域有关,而且与沉积物本身的粒度组成有关。  相似文献   

9.
分析沉积物的粒度组成是沉积环境和古地理研究的重要内容。作为粒度分析标准方法的图像法,其发展和应用一度受制于耗时长和样本量较小等实际困难。目前,新的动态图像法粒度粒形获取技术可在几分钟内获取10~7~10~8个颗粒的大小和形状,为图像法的广泛应用提供了新的机会。本文对采自河流和湖滩的共34个松散砂样分别用图像法和激光衍射法进行了粒度测试和对比,分别就图像法测试所需的最少样本量及图像法和激光衍射法粒度测试结果的差异进行了探讨。通过改变样本量大小观察粒度参数计算结果的变化,认为河流和湖滩砂样最小样本量不少于30000和10000时,测试结果基本能代表完整样品的粒度分布(均值粒径标准偏差≤0.015)。通过比较图像法和激光衍射法测试结果中各粒级含量和粒度参数的差异,认为两种方法对粉砂级的测试结果有很大差异,无可对比性;对细砂级、中砂级和粗砂级的测试结果相关关系显著。两种方法得到的均值粒径有很好的相关性,可以互相转换,分选系数、偏度和峰态的相关性弱,无可比性。本文的研究结果可为图像法的应用提供一定的参考。  相似文献   

10.
激光法粒度筛析校正研究   总被引:1,自引:0,他引:1  
激光法和筛析法分析作为两种最常见的用于沉积地质粒度分析的方法,其间的数据转换校正是在数据对比、数据对接时经常遇到且无法回避的问题。为此设计了两个实验,实验一对比了窄粒度范围样品两种分析方法的分析结果,统计分析了筛析法比激光法偏大的幅度,并提出一个校正方法;实验二对不同磨圆程度的样品进行分析,研究了磨圆度与两种分析方法差异程度之间的相关关系,认为实验一提出的校正方法适合一般条件下的天然沉积物粒度分析校正。文章又以实例展示了所提出的校正方法的校正效果并讨论了激光粒度法存在的问题。激光粒度分析法用于天然沉积物粒度分析时,结果常见明显的光滑化、正态化、双峰合并现象,扭曲了真实的粒度分布。文章认为实际样品具体情况远远复杂于米氏理论的设定条件,样品条件参数并未全部带入计算过程,所以激光法粒度求解是不精确的。更好的数据校正方法有待于激光粒度仪的软件、硬件改进。激光法合理的用于天然沉积物粒度分析还有一些问题需要讨论。  相似文献   

11.
砂土颗粒级配是影响砂土工程性质的重要参数之一,传统的颗分试验方法由于试验原理不同而具有不同的适用范 围。为更加方便、准确地获取砂土颗粒级配,提出了一种基于数字图像处理技术来获取SEM照片中的砂颗粒粒径参数及级 配特征的新方法。将准备好的砂土样品打磨成薄片放在扫描电镜下拍照,然后利用Photoshop软件对照片进行拼接,并采用 自主研发的SMAS数字图像分析系统对拼接好的照片进行定量分析处理,获取样品的微观结构参数,将获得的“土颗粒等 效直径”和“土颗粒面积”分别等效为实际土颗粒粒径和土颗粒质量,进而换算得到砂土的颗粒级配曲线;然后将通过数 字图像技术获得的砂土颗粒级配曲线与通过传统筛分法和激光粒度分析法得到的颗粒级配曲线进行对比,验证了提出的数 字图像处理方法的有效性和可靠性,同时分析了两种方法之间存在的差异及其原因,并对数字图像处理方法和传统颗分方 法各自的优缺点进行了讨论。  相似文献   

12.
砂土颗粒级配是影响砂土工程性质的重要参数之一,传统的颗分试验方法由于试验原理不同而具有不同的适用范 围。为更加方便、准确地获取砂土颗粒级配,提出了一种基于数字图像处理技术来获取SEM照片中的砂颗粒粒径参数及级 配特征的新方法。将准备好的砂土样品打磨成薄片放在扫描电镜下拍照,然后利用Photoshop软件对照片进行拼接,并采用 自主研发的SMAS数字图像分析系统对拼接好的照片进行定量分析处理,获取样品的微观结构参数,将获得的“土颗粒等 效直径”和“土颗粒面积”分别等效为实际土颗粒粒径和土颗粒质量,进而换算得到砂土的颗粒级配曲线;然后将通过数 字图像技术获得的砂土颗粒级配曲线与通过传统筛分法和激光粒度分析法得到的颗粒级配曲线进行对比,验证了提出的数 字图像处理方法的有效性和可靠性,同时分析了两种方法之间存在的差异及其原因,并对数字图像处理方法和传统颗分方 法各自的优缺点进行了讨论。  相似文献   

13.
Laser diffraction is now widely used for particle size distribution analysis of sediments and soils. The technique can be very precise, and offers advantages of speed and cost over many other methods when used to analyse mixtures of sand, silt and clay. This study presents the results of an experimental investigation that examined the sensitivity of the Beckman-Coulter LS230 instrument to mixtures of different grain populations and differences in particle shape. The instrument was found to have high sensitivity to coarse particles in a finer matrix (detection threshold 1–2%), but much lower sensitivity to finer particles in a coarser mixture (detection threshold 12–17%). Experiments using near-spherical ballotini showed that laser analysis provides very similar values to dry sieving for the mean, median and mode, but for a range of natural sand samples values for the mean, median and mode were offset by 8–21%, with an average of ca 15%, compared with sieving. Analysis using a Beckman-Coulter RapidVUE instrument, which provides both size and shape information, provided support for the hypothesis that the differences between laser analysis and sieving are partly attributable to the effects of particle shape. However, an additional factor is the way in which the laser software interprets the optical diffraction data. The software predicts a high degree of log-normality in the size distribution, such that highly skewed, truncated or bimodal samples are poorly represented. Experiments using sieved fractions of ballotini indicated that, even with near-perfectly spherical particles, the particle size distribution predicted by the laser software includes a relatively large percentage of particles outside the sieve class limits.  相似文献   

14.
Summary. The operation of a digital image analysis system in a limestone quarry is described. The calibration of the system, required in order to obtain moderately reliable fragmentation values, is done from muckpile sieving data by tuning the image analysis software settings so that the fragmentation curve obtained matches as close as possible the sieving. The sieving data have also been used to extend the fragment size distribution curves measured to sizes below the system’s optical resolution and to process the results in terms of fragmented rock, discounting the material coming from a loose overburden (natural fines) that is cast together with the fragmented rock. Automatic and manual operation modes of the image analysis are compared. The total fragmentation of a blast is obtained from the analysis of twenty photographs; a criterion for the elimination of outlier photographs has been adopted using a robust statistic. The limitations of the measurement system due to sampling, image processing and fines corrections are discussed and the errors estimated whenever possible. An analysis of consistency of the results based on the known amount of natural fines is made. Blasts with large differences in the amount of fines require a differentiated treatment, as the fine sizes tend to be the more underestimated in the image analysis as they become more abundant; this has been accomplished by means of a variable fines adjustment factor. Despite of the unavoidable errors and the large dispersion always associated with large-scale rock blasting data, the system is sensitive to relative changes in fragmentation.  相似文献   

15.
Grain size is a fundamental property of sediments and is commonly used to describe sedimentary facies and classify sedimentary environments. Among the various conventional techniques utilized to determine grain‐size frequency distributions, sieving is the most widely applied procedure. The accuracy of such analyses is, among other factors, strongly dependent on the sieving time. However, despite a substantial amount of research in this field, optimal sieving times for different types of sediments have, to date, not been established. In this article, the influence of sieving time on grain‐size analyses of medium‐grained microtidal and mesotidal beach and dune sands has been determined. To assess the precision of important textural parameters, such as median grain size, sorting, skewness and kurtosis, an error analysis was carried out for different sieving times (2, 5, 10, 15 and 20 minutes). After calibrating the analytical and sampling methodologies, significant deviations were registered when sieving time was less than 10 minutes. However, such deviations were very small and grain‐size distributions remained almost identical for sieving times of 10 minutes and longer, relative errors being as low as 0% in some cases.  相似文献   

16.
To this day, deterministic physical models capable of explaining the evolution of grain-size distributions in the course of transport are still lacking. For this reason, various attributes of particle frequency distributions, in particular curve shapes and textural parameters, have for many decades been investigated for potential information about transport behaviour and size-sorting processes of sediments in numerous environments. Such approaches are essentially conceptual and hence rely heavily on the validity of the assumptions on which they are based. A factor which has to date been largely ignored in this context, is the fact that different methods of grain-size analysis (e. g. sieving, laser absorption and diffraction, settling velocity measurements), when applied to the same sample material, produce variable curve shapes, and hence incongruous textural data. This is illustrated by selected examples showing the differences between sieving and settling results, conversion of settling velocities into equivalent settling diameters (psi-phi-transformations), and the influences of particle shape, particle density, and water temperature. It is demonstrated that particle-size distributions are not only method-dependent but also dependent on the adopted post-processing procedure. As a result, only frequency curves generated by the same method and subsequently processed by identical computational procedures can be meaningfully compared. Furthermore, the computation of textural parameters from bi- or multimodal size distributions produces spurious results which are unrelated to the processes leading to the mixing of different size populations frequently observed in nature. In such cases, only the decomposition of such distributions into individual populations and the spatial comparison of such populations makes any sense. Because a physical explanation for the generation of size distributions is lacking, a particular curve shape of a grain-size population has no meaning on its own. Only a systematic comparison of progressively changing curve shapes (and associated textural parameters) of sediments collected on a closely spaced grid can yield data suitable for sediment trend analysis.  相似文献   

17.
大位移剪切下钙质砂破碎演化特性   总被引:1,自引:0,他引:1  
为了揭示钙质砂在大位移剪切作用下的破碎及形状演化规律,对南海钙质砂进行了系列不同剪切位移下的环剪试验。首先,利用筛分和激光粒度分析获取试验后的颗粒粒径分布,分析颗粒分布变化情况;其次,通过粒径分布对破碎进行定量分析;最后,运用图像处理技术计算颗粒圆度和扁平度,分析了颗粒形状的变化情况。试验结果表明,在不同的竖向压力下,颗粒会达到不同的稳定级配,但达到稳定所需的剪切位移相同;经历大位移剪切后,出现粒径为0.01~0.075 mm钙质砂破碎严重的现象;随剪切位移的增加,颗粒的圆度和扁平度减小。针对细小颗粒破碎严重的现象,修正了相对破碎率;修正后的相对破碎率能考虑粒径为0.01~0.075 mm颗粒发生的破碎。剪切后的钙质砂颗粒更为规则,整体轮廓趋于圆形、表面更光滑。  相似文献   

18.
Most techniques for estimating settling velocities of natural particles have been developed for siliciclastic sediments. Therefore, to understand how these techniques apply to bioclastic environments, measured settling velocities of bioclastic sedimentary deposits sampled from a nearshore fringing reef in Western Australia were compared with settling velocities calculated using results from several common grain‐size analysis techniques (sieve, laser diffraction and image analysis) and established models. The effects of sediment density and shape were also examined using a range of density values and three different models of settling velocity. Sediment density was found to have a significant effect on calculated settling velocity, causing a range in normalized root‐mean‐square error of up to 28%, depending upon settling velocity model and grain‐size method. Accounting for particle shape reduced errors in predicted settling velocity by 3% to 6% and removed any velocity‐dependent bias, which is particularly important for the fastest settling fractions. When shape was accounted for and measured density was used, normalized root‐mean‐square errors were 4%, 10% and 18% for laser diffraction, sieve and image analysis, respectively. The results of this study show that established models of settling velocity that account for particle shape can be used to estimate settling velocity of irregularly shaped, sand‐sized bioclastic sediments from sieve, laser diffraction, or image analysis‐derived measures of grain size with a limited amount of error. Collectively, these findings will allow for grain‐size data measured with different methods to be accurately converted to settling velocity for comparison. This will facilitate greater understanding of the hydraulic properties of bioclastic sediment which can help to increase our general knowledge of sediment dynamics in these environments.  相似文献   

19.
动态图像法、镜下测量法在地下沉积岩粒度分析中的应用研究较为薄弱。对塔里木轮南地区X100井三叠系水下分流河道12块砂岩样品分别采用以上两种方法进行粒度测试,将所测得的各组分含量、粒度曲线及粒度参数进行对比分析,并对镜下测量法粒度结果开展校正研究,以使这两种方法在今后能更广泛地运用于粒度分析。研究结果表明:相较于镜下测量法,动态图像法检测粗组分含量偏大而细组分含量偏小,黏土—粉砂组分和中砂组分是两种方法产生差异的分界线。检测颗粒数目的悬殊和岩石类型是两种方法存在差异的主要原因,测试方法的量程、测量原理和颗粒形状也会造成一定的影响。基于岩性的镜下测量法粒度结果校正,使两种方法的细砂—粗砂组分含量、粒径参数的相关系数从0.25~0.80提高到0.88~0.95,达到了校正基本目的,其准确性得到有效的提高。  相似文献   

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