Adaptation of focused beam reflectance measurement to in-situ particle sizing in estuaries and coastal waters

被引:56
作者
Law, DJ
Bale, AJ
Jones, SE
机构
[1] NERC, CCMS PLYMOUTH MARINE LAB, PLYMOUTH PL1 3DH, DEVON, ENGLAND
[2] UNIV WALES, SCH OCEAN SCI, MENAI BRIDGE LL59 5EY, GWYNEDD, WALES
基金
英国自然环境研究理事会;
关键词
in-situ; particle; size; flocculation; aggregate; estuaries;
D O I
10.1016/S0025-3227(97)00021-2
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Recent advances in focused beam reflectance technology have resulted in new instruments with the potential for particle size determination in natural waters. A commercially manufactured instrument based upon this principle has been adapted to allow the size distribution of suspended particulate matter ir, estuaries and coastal waters to be determined in-situ. After calibration, the standard instrument has been shown to be capable of providing accurate, undisturbed particle size distribution data over a wide range of particle concentrations (10 mg l(-1)-50 g l(-1)), irrespective of current speed and, to a large extent, particle composition and density. Data obtained with the in-situ instrument in the Humber Estuary have revealed large temporal and spatial variations in the size distribution of suspended particles over a tidal cycle. Particle sizes were largest near the bed during periods of slack water where median diameters exceeded 500 mu m. This was attributed to the sedimentation of large aggregates. Rapid reductions in median particle size coincided with periods of strong tidal current acceleration after low water slack current. At maximum current velocity on the flood tide, mobilisation of sediment from the bed gave rise to larger particles in the water column. Multiple regression analysis indicated that a combination of current velocity and particle concentration provides the best predictor of particle size. (C) 1997 Elsevier Science B.V.
引用
收藏
页码:47 / 59
页数:13
相关论文
共 20 条
[11]   COAGULATION AND TRANSPORT OF SEDIMENTS IN THE GIRONDE ESTUARY [J].
GIBBS, RJ ;
TSHUDY, DM ;
KONWAR, L ;
MARTIN, JM .
SEDIMENTOLOGY, 1989, 36 (06) :987-999
[12]   SAMPLING OF MINERAL FLOCS USING NISKIN BOTTLES [J].
GIBBS, RJ ;
KONWAR, LN .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 1983, 17 (06) :374-375
[13]  
JOHNSON RG, 1974, J MAR RES, V32, P313
[14]   CHARACTERISTICS OF SUSPENDED PARTICLES AT AN 11-HOUR ANCHOR STATION IN SAN-FRANCISCO BAY, CALIFORNIA [J].
KRANCK, K ;
MILLIGAN, TG .
JOURNAL OF GEOPHYSICAL RESEARCH-OCEANS, 1992, 97 (C7) :11373-11382
[15]  
MCCABE JC, 1992, COAST ENG, P3178
[16]   SIZE DISTRIBUTION OF PARTICLES IN OCEAN [J].
SHELDON, RW ;
SUTCLIFFE, WH ;
PRAKASH, A .
LIMNOLOGY AND OCEANOGRAPHY, 1972, 17 (03) :327-+
[17]   SETTLING VELOCITIES OF MUD AGGREGATES IN THE OOSTERSCHELDE TIDAL BASIN (THE NETHERLANDS), DETERMINED BY A SUBMERSIBLE VIDEO SYSTEM [J].
TENBRINKE, WBM .
ESTUARINE COASTAL AND SHELF SCIENCE, 1994, 39 (06) :549-564
[18]  
*UNESCO, 1988, RIV INP OC SYST STAT
[19]   THE DETERMINATION OF THE SIZES AND SETTLING VELOCITIES OF ESTUARINE FLOCS BY AN UNDERWATER VIDEO SYSTEM [J].
VANLEUSSEN, W ;
CORNELISSE, JM .
NETHERLANDS JOURNAL OF SEA RESEARCH, 1993, 31 (03) :231-241
[20]  
WILLIAMS RA, 1997, IN PRESS POWDER TECH