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叙述了新研制成功的以8751单片机为主体的23位光轴角度编码器电路的原理,电路接口和程度实现,23位编码器的分辨率为0' ,155.同时它能以度,分,秒为单位显示望远镜的指向(高度,方位)显示精度为1'。新的23位编码器电路结构简洁,性能可靠,完全达到了事先的设计要求并已正常用在激光测路仪上。 相似文献
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Modeling sediment transport depends on several parameters, such as suspended sediment concentration (SSC), shear stress, and settling velocity. To assess the ability of Pulse-Coherent Acoustic Doppler Profiling (PC-ADP) to non-intrusively quantify spatial and temporal SSC and settling velocity at seabed, a field experiment was conducted in the Beibu Gulf (Tonkin Gulf), in the South China Sea. The spatial profiles and temporal variations in SSC at 1 m above bottom were derived from PC-ADP acoustic backscatter intensity determinations after being calibrated with the optical backscatter sensor (OBS) measurements at the same elevation. The PC-ADP and OBS results agreed well. The temporal settling velocity obtained from Rouse profiles agreed well with the Soulsby formula based on size information by LISST (laser in situ scattering and transmissometry). Tides and tidal currents are diurnal in the gulf. SSC increased with increasing ebb and flood flow, and it rapidly decreased with the increase of distance from the seabed. The maximum SSC at 0.16 m and 1.3 m above bottom reached 816 mg/L and 490 mg/L during spring tides, respectively. The sediments consisted of mineral particles 23-162 μm in diameter and 0.05-2.04 cm/s in settling velocity. Generally, both the SSC and settling velocity followed variations in the bottom friction. Results suggest that PC-ADP is able to provide reasonable SSC and settling velocity measurements of both profiles and time series for a long study period. 相似文献
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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
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现场粒径分析仪与ADCP同步测量悬浮沉积物浓度的粒径修正方法 总被引:10,自引:2,他引:8
利用后散射强度(ABS)估计悬浮沉积物浓度原理,根据Rayleigh散射理论,给出了利用现场粒径分析仪与声学多普勒流速剖面仪(ADCP)同步测量悬浮沉积物浓度的粒径修正方法,并推导出了一种新的、用于对ABS进行粒径修正的等效粒径计算公式(9)。利用这一公式并结合LISST-100所测的粒径分布信息,可以对ADCP所测的ABS进行粒径修正,其修正方法见式(10)。结合利物浦湾和Anglesey周边海域的现场采样、测量及其分析结果,对上述粒径修正方法进行了验证。分析结果表明,采用上述公式进行粒径修正后,ADCP测量悬浮沉积物浓度的精度有较大程度的提高,线性拟合的相关系数从0.65-0.71提高到0.78-0.88。 相似文献
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作者采用浊度计和声学多普勒流速剖面仪(ADCP)在近海区域连续、定点观测的应用中,利用浊度与悬沙浓度之间良好的线性关系,对潮汐半月周期内的浊度和ADCP后向散射声强数据进行相关性分析,讨论了小、中、大潮期间利用ADCP后向散射声强反演悬沙浓度的可靠性,反演过程中综合考虑了声学近场非球面扩散和本底噪声的影响。结果表明,在实验海域中,小潮情况下,各水层内悬浮泥沙成分较为稳定,ADCP后向散射声强与浊度变化相关性较高,达到0.91;而在大潮情况下,ADCP后向散射声强与浊度变化的相关性降低,悬沙浓度及成分容易在海流的影响下发生变化。 相似文献