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1.
潮间带水沙多层位同步测量系统应用的初步研究   总被引:2,自引:0,他引:2  
利用水压、光电转换原理研制成的多层位水沙同步测量系统(WCT系统)不仅可测量潮间带水位随时间的变化系列、同一层位的浊度及流速,还可以同步观测这些参数在潮间带水流剖面不同层位上的变化。野外对比试验表明,WCT系统获得的流速值与直读式流速仪的测量结果基本一致,平均相对误差为14.52%;悬沙传感器经野外现场率定获得悬沙浓度,平均相对误差为21.96%,精度比室内率定提高—倍以上。悬沙粒径是影响悬沙浓度测量精度的主要因素。此外,自然环境(如海水温盐度)的变化及仪器本身的特性也可能影响到测量结果。因此,WCT系统在潮间带的水位、流速和悬沙浓度的观测和边界层研究方面有相当潜力。  相似文献   

2.
用ADCP进行走航式悬沙浓度测量的初步研究   总被引:32,自引:5,他引:27  
用DR300型宽幅ADCP在胶洲湾口站进行了走航工断面观测。观测期间悬沙浓度小于40mg/L,悬沙粒度分布曲线具有双峰特征,调查船航速为2 ̄3m/s。用水样过滤法率定相应的ADCP声学信号,获得池计算悬沙浓度的半经验公式及悬沙浓度剖面分布数据,分析结果即使在悬沙浓度较低,悬沙分选性较差,船速较高等不利于ADCP观测的现场条件下,测量误差与光透式浊度计的误差相当。因此,在走航状态和低悬沙浓度条件下  相似文献   

3.
声学多普勒流速剖面仪ADP不仅可以测量流速,其记录的声强信号还包含有泥沙浓度的信息,为探讨ADP测悬沙浓度的可行性,本文根据长江口区现场六点法测得的悬沙浓度,对输出信号进行标定,反演获得悬沙浓度。结果表明在500kHz的工作频率下,计算出的悬沙浓度在中上层水体平均误差较小(25%~38%),但要用ADP测整个垂直剖面的悬沙浓度还有待做进一步试验研究。  相似文献   

4.
浅海悬沙浓度观测方法的对比研究   总被引:4,自引:0,他引:4  
在动力和沉积条件复杂的浅海海域获取水-体的悬沙浓度有多种方法,目前较先进的主要是声学和光学浊度测量方法,但均需通过现场采集水样进行浊度标定;水样的分析方法主要有抽滤法和沉淀干燥法。根据2010年3—4月在厦门九龙江口获取的光学(OBS、LISST-100X)和声学(ADCP、ADP和ADV)浊度数据,以及现场同步水样,对这两种获取悬沙浓度的方法进行了比较;2011年2—3月在长江口北支获取水样,分别使用抽滤法和沉淀干燥法获取悬沙浓度数据进行比对分析。结果表明,声学和光学方法都具有较高的精度,在同一观测层位,光学与声学仪器的相对误差均较小;由于声波在水体中传播距离较远,声学方法可获得沿水深的整个剖面的信息,因而比光学仪器具有更高的空间分辨率和测量范围。对比发现,抽滤法获得的悬沙浓度数值略低于沉淀干燥法获得的结果,可能与沉淀干燥法难以洗净盐分有关。  相似文献   

5.
OBS浊度标定与悬沙浓度误差分析   总被引:2,自引:0,他引:2  
利用光学后向散射浊度计OBS-3A,在长江河口南槽进行大小潮周期连续观测。利用OBS室内和现场浊度标定,计算不同潮时OBS观测悬沙浓度相对误差,并对影响其观测精度因素进行分析。主要结果有:(1)现场OBS标定R值比室内标定偏低,但也在0.8以上;(2)大潮平均相对误差值变化比小潮大,在悬沙浓度低于1.5kg/m3条件下,大小潮悬沙浓度平均相对误差都在15%以下;(3)悬沙粒径大小是影响OBS观测精度的主要因素,生物、泥沙颜色、水色和水中气泡等因素也对观测结果产生一定影响。  相似文献   

6.
近底层悬沙时空变化对于理解河口冲淤变化有着至关重要的作用。然而,长期以来河口近底层水体悬沙浓度的连续变化大都是基于单点观测数据或水样处理获取。基于此,本研究利用光学仪器边界层悬浮物剖面测量仪(Argus Surface Meter Ⅳ,ASM-Ⅳ)获得长江口南槽近底层进行连续10 d的实测数据,探讨ASM-Ⅳ仪器监测悬沙浓度精度的有效性。结果表明:(1)传统仪器布设方法所获取的数据,相对误差高于基于ASM-Ⅳ所测误差,在大、中及小潮期间的平均误差值分别为24. 15%、17. 31%和16. 18%;越靠近底部河床,相对误差从距底52 cm向下随距底距离的减小而逐渐增大;(2)对于近底层单宽悬沙通量测量结果而言,传统测量仪器布设方法所测量数值一般偏小;(3)大潮时期近底层1 m内的水体悬沙分布均匀,分层不明显;在中、小潮时期,与近底层1 m内平均悬沙浓度相差最大的点皆位于距底20~50 cm附近。因而,近底层悬沙浓度测量时间在大潮时期或越靠近底层,利用ASM-Ⅳ监测近底层悬沙浓度值更为准确。中、小潮时期利用单点或采集水样测量时,选取0. 8H层水体悬沙浓度代替近底层悬沙浓度较最底部水体悬沙浓度更为准确。  相似文献   

7.
近底层悬沙时空变化对于理解河口冲淤变化有着至关重要的作用。然而,长期以来河口近底层水体悬沙浓度的连续变化大都是基于单点观测数据或水样处理获取。基于此,本研究利用光学仪器边界层悬浮物剖面测量仪(Argus Surface Meter IV,ASM-IV)获得长江口南槽近底层进行连续10 d的实测数据,探讨ASM-IV仪器监测悬沙浓度精度的有效性。结果表明:(1)传统仪器布设方法所获取的数据,相对误差高于基于ASM-IV所测误差,在大、中及小潮期间的平均误差值分别为24.15%、17.31%和16.18%;越靠近底部河床,相对误差从距底52 cm向下随距底距离的减小而逐渐增大;(2)对于近底层单宽悬沙通量测量结果而言,传统测量仪器布设方法所测量数值一般偏小;(3)大潮时期近底层1 m内的水体悬沙分布均匀,分层不明显;在中、小潮时期,与近底层1 m内平均悬沙浓度相差最大的点皆位于距底20~50 cm附近。因而,近底层悬沙浓度测量时间在大潮时期或越靠近底层,利用ASM-IV监测近底层悬沙浓度值更为准确。中、小潮时期利用单点或采集水样测量时,选取0.8H层水体悬沙浓度代替近底层悬沙浓度较最底部水体悬沙浓度更为准确。  相似文献   

8.
长江口枯季悬沙粒度与浓度之间的关系   总被引:4,自引:0,他引:4  
2003和2004年枯季在长江口采集水样并作水文观测,对所获水样进行过滤和粒度分析,以计算悬沙浓度和悬沙粒度分布。结果表明,2003年11月小潮期间,悬沙中值粒径与悬沙浓度存在着显著的指数关系,在大潮期间没有显著关系;在2004年2月小湖期间,两者之间没有显著关系,但在大潮期间存在着显著的指数关系。枯季水体悬沙以粉砂组份为主,并且随着向口外的推移,细颗粒组份逐渐增加,但在拦门沙最大浑浊带附近,由于絮凝作用,沉积物粒度变幅较大,可产生粒径粗化的现象。小潮期间,砂含量较低,但与悬沙浓度之间有显著相关关系;大潮期间,悬沙粒径粗化,但砂含量与悬沙浓度之间的关系不显著。上述分布趋势与沉积物来源、当地的水动力条件和絮凝作用等因素有密切关系。  相似文献   

9.
海底浮泥层动态变化是研究海底沉积物输运及地形地貌演变的重要内容。针对浮泥层关键特征参数(悬浮泥沙浓度、上下界面),目前国际上主要采用声学和光学仪器进行观测,但不同仪器受限于观测原理,适用范围存在一定的局限性。通过潮滩试验,模拟浮泥层动态变化过程,对比不同仪器观测悬浮泥沙浓度和海床界面高程的效果。结果显示,在较低悬浮泥沙浓度(10 g/L)情况下,高密度悬沙浓度剖面仪ASM、声学多普勒流速仪ADV与声学多普勒流速剖面仪ADP均能完成悬浮泥沙浓度的观测要求,声学蚀积仪AA400与ASM均能得到准确的海床高程。在悬沙浓度较高的情况下(20 g/L),声波衰减显著,ADP相对于ASM的误差最高可达30.95%,难以准确测量水体悬沙浓度;随着悬沙浓度的升高(30 g/L),AA400无法得到连续有效的海床界面位置,ASM也超出测量量程,因此,30 g/L的悬沙浓度可作为风暴过程中高浓度浮泥层形成的标志。在现场复杂海况下开展海底浮泥层动态变化研究需要多种仪器相互配合。  相似文献   

10.
在金塘水道西口门2006年冬季和2007年夏季大、小潮期间应用美国RDI公司生产的300 kHz声学多普勒流速剖面仪(ADCP)进行25 h的走航式断面观测,同步采集水样过滤获得悬沙浓度.实测断面流速、流向表明:落潮时流向为东南向,涨潮时分两股,靠近北仑为西南向,靠近金塘岛为西北向;夏季大潮最大流速为260 cm/s,大于冬季大潮;观测期间断面悬沙浓度为0.4~1.5 g/L,冬季大于夏季约0.3~0.5 g/L;ADCP后向散射强度冬季大于夏季约5 dB.应用实测CTD数据进行声吸收系数校正,通过计算,断面后向散射强度分布趋势基本不变.后向散射强度与悬沙浓度成正比,与水深成正比,垂向分布与潮时有关,冬季小潮水深增大时,后向散射强度反而减小.回归ADCP后向散射强度与水样悬沙浓度之间半经验半理论统计关系,发现冬季不成线性关系,夏季成线性关系,且相关性较好,相关系数为0.7,说明夏季较高浓度下后向散射强度可以表示悬沙浓度的大小.夏季大、小潮期间高分辨率的悬沙浓度断面数据分析表明,反演后的悬沙浓度值与流速成正比;近岸悬沙浓度大于断面中部;涨急和落急时同一水深高低含沙量值错落分布,涨憩和落憩则分层明显;大潮悬沙浓度大于小潮流约0.05 g/L.断面两端点反演后的悬沙浓度与实测值比较,呈现半日潮含沙量双峰特征,夏季大潮反演后的悬沙浓度与实测值分布一致,实测值大于0.9 g/L时,两者量值相差大,小潮则拟合很好.因此,应用走航式ADCP测量高悬沙浓度是可行的,它可大大提高测量效率,为获取现场悬沙浓度提供了一种新方法.  相似文献   

11.
悬沙的ADCP估测方法   总被引:6,自引:1,他引:6  
ADCP估测悬沙含量是基于声波的背散射强度正比于悬沙浓度的理论。在实际测验中,由于多种因素干扰,ADCP所得到的背散射强度与悬沙浓度之间存在着不定的非线性关系。同传统的回归方法比较,BP网络模型方法可以使含沙估测精度有较大的提高。  相似文献   

12.
The purpose of the present contribution is to explore the technique to use Acoustic Doppler Current Pro- filers (ADCPs) for suspended sediment flux measurements, which may be applied to coastal embayment environments such as estuaries and tidal inlets for sediment exchange and budget studies. Based on tidal cycle measurements from the entrance of ]iaozhou Bay, Shandong Peninsula, eastern China, statistical rela- tionships between the suspended sediment concentration (SSC) and ADCP echo intensity output are estab- lished. Echo intensity data obtained during an ADCP survey along two cross-sections during a spring tidal phase were transformed into SSC data. The ADCP current velocity and SSC data were then used to calculate the flux of fine-grained sediment. The results show that net sediment transport at the entrance is directed towards the open sea, with an order of magnitude of 103 t per spring tidal cycle; hence, although Jiaozhou Bay is a low SSC environment, the tidally induced suspended sediment transport can be intense.  相似文献   

13.
A pair of self-contained acoustic Doppler current profilers (SC-ADCPs) operating with different frequencies were moored on a muddy sea bottom at about 20 m depth in the Bay of Vilaine off the French Atlantic coast. With their acoustic beams oriented upwards, the SC-ADCPs ensonified most of the water column. The results of several months of in situ recorded echo intensity data spanning 2 years (2003 to 2004) from the dual-frequency ADCPs are presented in this paper. The aim was to estimate suspended particle mass concentration and mean size. A concentration index CI is proposed for the estimation of particle concentration. Based on theory the CI—unlike the volume backscatter strength—does not depend on particle size. Compared with in situ optical data, the CI shows reasonable precision but not increased with respect to that of the highest-frequency backscatter strength. Concerning the mean particle size, despite a lack of quantitative validation with optical particle-size measurements, the method yielded a qualitative discrimination of mineral (small) and organic (large) particles. This supports the potential of dual-frequency ADCPs to quantitatively determine particle size. A cross-calibration of the transducers of each ADCP shows that a specific component of the precision of the backscatter strength measured by ADCP depends on the acoustic frequency, the cell thickness and the ensemble integration time. Based on these results, the use of two ADCPs operating with distinctly different frequencies (two octaves apart) or a single dual-frequency ADCP is recommended.  相似文献   

14.
ADCP对悬浮沉积物浓度的测量及其误差分析研究   总被引:6,自引:0,他引:6  
为实时、连续地测量海水中悬浮沉积物,利用声学多普勒海流剖面仪(ADCP),可以在测流的同时,测量海洋悬浮沉积物浓度。描述了利用后散射强度,估计悬浮沉积物浓度的原理。在现场测试中,利用采水器采集水样,通过水样分析并结合声信号的衰减特征对AI)CP的测量结果进行修正。作者还结合现场测试结果,对这一测量方法的精度进行了分析。现场实验表明,经公式校正后,ADCP测得的后散射强度与实测水样所获得的悬浮沉积物浓度之间有很好的相关性,相关系数达0.88,由此证明,此测量方法具有很好的实用价值和应用前景。  相似文献   

15.
A comprehensive acoustic retrieval algorithm to investigate suspended sediment is presented with the combined validations of Acoustic Doppler Current Profiler (ADCP) and Optical Backscattering Sensor (OBS) monitoring along seven cross-channel sections in the high-turbidity North Passage of the Changjiang Estuary, China. The realistic water conditions, horizontal and vertical salinities, and grain size of the suspended sediment are considered in the retrieval algorithm. Relations between net volume scattering of sound attenuation (Sv) due to sediments and ADCP echo intensity (E) were obtained with reasonable accuracy after applying the linear regression method. In the river mouth, an intensive vertical stratification and horizontal inhomogeneity were found, with a higher concentration of sediment in the North Passage and a lower concentration in the North Channel and South Passage. Additionally, The North Passage is characterized by higher sediment concentration in the middle region and lower concentration in the entrance and outlet areas. The maximum sediment flux rate, occurred in the middle region, could reach 6.3×105 and 1.5×105 t/h during the spring and neap tide, respectively. Retrieved sediment fluxes in the middle region are significantly larger than that in the upstream and downstream region. This strong sediment imbalance along the main channel indicates potential secondary sediment supply from southern Jiuduansha Shoals.  相似文献   

16.
长江口悬沙动力特征与输运模式   总被引:5,自引:0,他引:5  
本项研究用ADCP在长江河口进行高频、高分辨率三维流速和声学浊度的定点观测,通过对定点站位潮周期内的悬沙浓度、流速和盐度的分析,计算悬沙输运率;悬沙输运机制分析表明平流作用、斯托克斯漂移效应在悬沙输运中占据主导地位.此外,从河口内向河口外,潮周期内的水动力特征与悬沙净输运具有明显的地域性差异,主要表现在悬沙输送的贡献因子、盐度的垂向混合和分布特征、垂向流速等方面.在拦门沙下游和口外地区,悬沙均向西、北方向输送,而拦门沙上游则向东、南方向输送.这种悬沙输运格局,对于长江口拦门沙及附近最大浑浊带的形成有着重要的作用.  相似文献   

17.
A new broadband acoustic Doppler current profiler (ADCP) is described, with a useful range comparable to that of a commercially available narrowband (incoherent) system of the same acoustic frequency, but having enhanced performance. The extra performance may be traded off among (1) reduced velocity variance, (2) reduced averaging time, and (3) finer depth resolution. This improvement permits the observation of phenomena with smaller time and space scales than is now possible with available ADCPs. An expression predicting r.m.s. velocity error in terms of system parameters and the measured acoustic data is given and is shown to be consistent with the independently measured velocity error among redundant beams. Two major sources of bias error in incoherent ADCPs are shown to be much reduced for the broadband system. Field data demonstrating the improved performance over the existing incoherent ADCP are shown for cases of both strong and weak shear  相似文献   

18.
Acoustic Doppler Current Profilers (ADCP), designed for measuring velocity profiles, are widely used for the estimation of suspended sediment concentration from acoustic backscatter strength, but its application to estuarine environments requires further refinement. In this study, we examined the inversion capability of two ADCPs with 600 and 1200 kHz in three Korean estuaries: the supra-macrotidal Han River Estuary (HRE), microtidal Nakdong River Estuary (NRE), and anthropogenically altered macrotidal Yeongsan River Estuary (YRE). In particular, we examined the relative importance of the sound attenuations due to water (αw) and sediment (αs) in response to sediment characteristics (size and concentration) as well as changing salinity and temperature. The inverted concentration was compared with reference concentrations obtained either from water samples or Optical Backscatter Sensors. In NRE and YRE, where suspended sediment concentrations were less than 0.2 g/l, the acoustic inversion performed poorly only with αs (r = 0.20 and 0.38 for NRE and YRE, respectively), but well with αw (r = 0.66 and 0.42 for NRE and YRE, respectively). Thus, it is important to accurately constrain αw in low-concentration estuarine environments. However, we did not find that the varying αw performed considerably better than the constant αw. On the other hand, the acoustic inversion was poorest at HRE regardless of αw and αs (r = 0.71 and mean relative error = 45%). The large discrepancy appears to result from the poorly constrained, spatially and temporally varying sediment characteristics (grain size, density and concentration) due to non-local sediment transport in the macrotidal HRE.  相似文献   

19.
60m船用多功能ADCP悬浮沙浓度测量及比测数据分析   总被引:2,自引:0,他引:2  
本文简述了60m船用多功能ADCP悬浮泥沙测量的理论依据,并详细分析了正样长江徐六级水文站附近水域悬浮沙比测试验情况和结果。  相似文献   

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