Nepean河Bents盆地冲刷池的形态和分层

L. Turner, W. Erskine
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引用次数: 1

摘要

本特斯盆地冲刷池是尼皮安河河床上的一个大洞,尼皮安河流经下游的拉普斯通构造复合体和本特斯Bsin砂岩峡谷。冲刷池表面积17500m²,容积157400m³,平均深度9.0m,最大深度22.8m,呈椭圆形锥形。虽然容量流入比仅为0.00054,并且表明池容量相对于年平均流量非常小,但冲刷池在长达12个月的时间内没有被冲洗。热分层是在1996年1月中旬至3月间测量的,此时温跃层通常在10米深度。在分层时,表面和底部之间的温度差在9.6和14.7之间。由于热分层,计算了2kg/m³的密度差。1996年1月至4月间测量了氧分层,当时氧层在7米至12米的深度之间变化。缺氧情况通常记录在氧层以下。由于沉积物结合磷的释放,氧分层导致总磷浓度大幅增加。阳离子浓度不随深度变化。1996年3月6日至7日的数据记录证明,热分层和氧分层整个晚上都持续存在。在1996年1月中旬至3月/ 4月间记录了分层现象,因为气候和水文条件不能产生足够的湍流来混合,从而使冲刷池分层。政府机构目前对尼皮安河的水质监测项目存在缺陷,因为它们没有对整个水柱取样,只对地表水取样。因此,这些节目对夏季的现状进行了有偏见的评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Morphometry and stratification of the Bents Basin scour pool, Nepean River, NSW
The Bents Basin scour pool is a large hole eroded into the bed of the Nepean River where it flows through the Lapstone Structural Complex at the downstream and of the Bents Bsin sandstone gorge. The scour pool has a surface area of 17500m², a volume of 157400m³, a mean depth of 9.0m, a maximum depth of 22.8m and is an oval-shaped cone. While the capacity-inflow ration is only 0.00054 and indicated that pool volume is very small in relation to the mean annual flow, the scour pool is not flushed for time period of up to 12 months long. Thermal stratification was measured between Mid-January and March 1996 when the thermocline was usually at a depth of 10m. Temperature differences of between 9.6 and 14.7C were measured between the surface and the bottom at times of stratification. Density differences of 2kg/m³ were calculated as a result of thermal stratification. Oxygen stratification was measured between January and April 1996 when the oxycline varied between depths of 7 and 12m. Anoxic conditions were usually recorded below the oxycline. Oxygen stratification resulted in a large increase in total phosphorus concentrations, due to the release of sediment-bound phosphorus. Cation concentration did not vary with depth. Datalogging on 6-7 March 1996 proved that both thermal and oxygen stratification persisted throughout the night. Stratification was recorded between mid-January and March/April 1996 because climatic and hydrologic conditions were not capable of generating sufficient turbulence to mix and hence destratify the scour pool. Current water quality monitoring programs on the Nepean River by government agencies are flawed because they do not sample the whole water column, only surface waters. As a result, these programs present a biased assessment of current conditions during summer.
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