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排序方式: 共有14条查询结果,搜索用时 15 毫秒
1.
紊动水体大气复氧系数研究进展   总被引:2,自引:0,他引:2  
简述了影响水体中溶解氧浓度的大气复氧速率的主要因素,系统分析了自1924年以来国内外对紊动水体复氧系数的理论和实验和发展过程及其研究成果,对其中存在问题进行了分析探讨,认为目前众多的复氧理论和公式大多不能直接用于天然河流,要通过复氧实验确定复氧系数,并对今后这一领域的研究进行了展望。  相似文献   
2.
ABSTRACT: A method to evaluate the effect of hydropower development on downstream dissolved oxygen (DO) is presented for a low head dam. Water, previously aerated during release over spillways and under gates, is diverted through the hydropower facility without further aeration. The oxygen transfer that occurs as a result of air entrainment at the various release points of a dam is measured. Oxygen transfer efficiencies are calculated and incorporated into an oxygen transfer model to predict average release DO concentrations. This model is used to systematically determine the effect of hydropower operation on downstream DO. Operational alternatives are investigated and a simple operational guide is developed to mitigate the effects of hydropower operation. Combinations of reduced generation and optimal releases from the dam allow the hydropower facility to operate within DO standards.  相似文献   
3.
水库底层低温低氧水从坝体下泄或渗漏,可能对下游生态产生不利影响。通过对湖北温峡水库下游温峡河225 km河段的野外试验,测量溶解氧、水温等指标的日变化和沿程变化,开展复氧试验研究阶梯深潭结构和沙洲对溶解氧的影响,并取样分析大型底栖无脊椎动物的沿程分布。结果表明,流速对水温与溶解氧日变化规律无明显影响。试验河段水温和溶解氧恢复很快,经过17 km的河段,水温从123℃升高至300℃,且溶解氧饱和度基本达到饱和。河宽对水温恢复起重要作用,对溶解氧影响较小,对复氧速度基本无影响。流量通过改变淹没程度影响阶梯深潭的复氧能力。溶解氧在沙洲下游存在横向分布,滞水区溶解氧高于左右汊道。溶解氧是水库下游水生态的控制因素,物种多样性随溶解氧的升高而增加  相似文献   
4.
人工曝气复氧整治污染河流   总被引:16,自引:0,他引:16  
向受到严重有机污染的河流充入溶解氧可以有效消除水体的黑臭,改善水质和恢复生态平衡。文章总结了纯氧增氧系统、鼓风机———微孔布气管曝气系统、叶轮吸气推流式曝气器和水下射流曝气设备等多种使用于河道人工曝气复氧的技术;并列举大量国内外的相关工程实例说明这些技术在实践中的有效性。  相似文献   
5.
The equilibrium-perturb technique was used in the flume reaeration experiment.The interfacial mass transfer coefficients of DO were obtained by implementation of the oxyge-flux theory in the study.The turbulency characteristics of the flow field were investigated by numerical simulation approach.The expression of interfacial mass transfer coefficient related with velocity and turbulence kinetic energy was built.Examination with the experimental datum of different cases showed the validation of the expression.  相似文献   
6.
Atmospheric reaeration is a natural mechanism of oxygen transfer from the atmosphere to a water body. In practice, stream water quality models are developed with reaeration coefficients (K2) estimated by predictive equations. This leads to uncertainties in modeling analysis because these equations are empirical in nature and may yield greatly different K2 values for the same stream. Values of K2 may be adjusted in model calibration, but unfortunately, values of other model parameters are no less easy to identify and require adjustment in model calibration as well. Therefore, validity of a stream model would be enhanced significantly if K2 could be determined directly and reliably. In this research, values of K2 in the Canandaiqua Outlet in Central New York have been measured by using a gas tracer method. A successful modeling analysis was conducted using these K2 values. As a result, effluent limitations of several waste water discharges into the Outlet were established. It was concluded that field measurements of reaeration rate would improve modeling results significantly, and that the gas tracer method can be easily incorporated into intensive water quality surveys normally required for stream modeling.  相似文献   
7.
人工快速渗滤系统的运行方式对复氧效果的影响   总被引:1,自引:0,他引:1  
本文通过在CRI系统现场系统中湿干比,水力负荷周期和增加通气管对复氧效果的研究,发现在湿干比1∶6时,CRI系统对与复氧有关的指标CODCr、NH3-N的去除率较高,系统复氧效果较好;通过缩短系统水力负荷周期,加大系统淹水、落干频率,可以加大系统的复氧量,提高系统的复氧效率,CODCr和NH3-N的去除效果均有所提高;增加通气管对CRI系统复氧效果不明显。  相似文献   
8.
为探究河流复氧规律及其机制,研制出改变河道局部水流流速的深控型水平推流曝气装置,并使用该装置在天津市外环河中进行原位试验,探究人为扰动对河流复氧系数的影响.试验结果表明,装置工作时纵向流速提高至40cm/s,最大增幅22倍;水体溶解氧浓度提高0.6~1.7mg/L,约10%.研究发现,经典的Owens等5组河流复氧系数经验公式均低估了扰动下的复氧系数,试验均值约为49.5d-1,是理论值的10~100倍,即河流复氧在人为扰动下发生激增现象.分析成因表明,湍流动能与河流复氧系数显著正相关,区别于自然流动,人为扰动提升了水体纵向和垂向湍流动能,加速了中下层水体溶解氧扩散,提高了复氧率,进而发生了复氧激增现象.研究成果为提升城市河流水质的水力学方法提供了科学依据.  相似文献   
9.
王琼  李乃稳  王月  李龙国 《环境工程》2016,34(11):49-54
跌坎作为连接水流上下游的主要措施,水流在跌落过程中其溶解氧迅速增加。以水体氧亏率为指标,研究多级跌坎水流流态为自由跌落水流时的水体复氧过程和机理,结果表明:可将水流自跌坎跌落至下一级跌坎上的整个区域分成水舌空中跌落区(I)、回水区(II)、冲击与水跃区(III)和水流平顺区(Ⅳ),水舌空中跌落区和冲击与水跃区为复氧的主要区域,水体在空中与大气充分接触以及水流流动过程中的自掺气是水体复氧的主要途径;水流流经跌坎时的氧亏率随着单级跌坎高度、多级跌坎级数、跌坎总坡度和流量的增加而增加,与水流紊动程度呈正相关,随着跌坎雷诺数的增大而增加。  相似文献   
10.
The effects of waterfall-induced turbulence on the dissolved oxygen concentration of the Passaic River (New Jersey) at two mostly natural waterfalls were observed during a five-month period encompassing high to low temperature and flow. A parameter defined by past investigators as the “deficit ratio” was found to be useful for mathematically describing the results. The Great Falls system showed the deficit ratio to be an inverse function of temperature for all events, with good correlation. A relationship was developed for the Little Falls system under low flow showing the deficit ratio to likewise be an inverse function of temperature and a power function of flow.  相似文献   
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