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排序方式: 共有18条查询结果,搜索用时 15 毫秒
1.
通过对现有浮升烟流穿透模型的分析,考虑了非均匀层结大气对烟流抬升的影响,提出了一个较为合理的穿透模型,区域性火电厂实例计算结果表明它是有效的.因此,该模型为大型火电厂环境影响评价提供了一种估算浮升烟流穿透过程的实用方法.  相似文献   
2.
ABSTRACT: Forced artificial mixing of temperature-stratified ponds, or small lakes or reservoirs, by liquid jets can enhance water quality and can also be energy efficient. Based on previous studies of jet mixing mechanics of stratified water bodies, a conceptual design approach is presented. The main “operational” and “system” design parameters are considered in the proposed method. Using minimization of a total cost estimate as a criterion, an iterative method for the selection of the number and size of the jets is developed and illustrated.  相似文献   
3.
在前人实验数据误差分析的基础上,基于空间热及污染物分布相关理论,采用数值模拟方法,对不同浮射流强度下热及污染物分布过渡区进行研究。研究表明,浮射流强度较低(如373 K)时,污染物分布过渡区将增厚,部分污染物由于扩散作用将与热出现明显分离现象,扩散至建筑下部空间,影响工艺及人员健康。  相似文献   
4.
受限空间烟气运动的盐水模拟原理   总被引:5,自引:0,他引:5  
考虑烟气的浮力作用,合理地选取流场的特征参数,将烟气运动和盐水运动的基本方程无量纲化,分析两者之间的相似性,得到4个定性相似准则,其中Re数是最主要的相似准则.并举例说明缩尺的盐水模拟实验可以满足相似准则。  相似文献   
5.
An integral model for the plane buoyant jet dynamics resulting from the interaction of multiple buoyant jet effluxes spaced along a diffuser line is considered as an extension of the round jet formulation that was proposed in Part I. The receiving fluid is given by an unbounded ambient environment with uniform density or stable density stratification and under stagnant or steady sheared current conditions. Applications for this situation are primarily for submerged multiport diffusers for discharges of liquid effluents into ambient water bodies, but also for multiple cooling tower plumes and building air-conditioning. The CorJet model formulation describes the conservation of mass, momentum, buoyancy and scalar quantities in the turbulent jet flow in the plane jet geometry. It employs an entrainment closure approach that distinguishes between the separate contributions of transverse shear and of internal instability mechanisms, and contains a quadratic law turbulent pressure force mechanism. But the model formulation also includes several significant three-dimensional effects that distinguish actual diffuser installations in the water environment. These relate to local merging processes from the individual multiple jets, to overall finite length effects affecting the plume geometry, and to bottom proximity effects given by a “leakage factor” that measures the combined affect of port height and spacing in allowing the ambient flow to pass through the diffuser line in order to provide sufficient entrainment flow for the mixing downstream from the diffuser. The model is validated in several stages: First, comparison with experimental data for the asymptotic, self-similar stages of plane buoyant jet flows, i.e. the plane pure jet, the pure plume, the pure wake, the advected line puff, and the advected line thermal, support the choice of the turbulent closure coefficients contained in the entrainment formulation. Second, comparison with data for many types of non-equilibrium flows with a plane geometry support the proposed functional form of the entrainment relationship, and also the role of the pressure force in the jet deflection dynamics. Third, the observed behavior of the merging process from different types of multiport diffuser discharges in both stagnant and flowing ambient conditions and with stratification appears well predicted with the CorJet formulation. Fourth, a number of spatial limits of applicability, relating to terminal layer formation in stratification or transition to passive diffusion in a turbulent ambient shear flow, have been proposed. In sum, the CorJet integral model appears to provide a mechanistically sound, accurate and reliable representation of complex buoyant jet mixing processes, provided the condition of an unbounded receiving fluid is satisfied.  相似文献   
6.
Numerical simulations of the evolution of the planetary boundary layer (PBL) and nocturnal low-level jets (LLJ) have been carried out using MM5 (version 3.3) with four-dimensional data assimilation (FDDA) for a high pollution episode in the northeastern United States during July 15–20, 1999. In this paper, we assess the impact of different parameterizations on the PBL evolution with two schemes: the Blackadar PBL, a hybrid local (stable regime) and non-local (convective regime) mixing scheme; and the Gayno–Seaman PBL, a turbulent kinetic energy (TKE)-based eddy diffusion scheme. No FDDA was applied within the PBL to evaluate the ability of the two schemes to reproduce the PBL structure and its temporal variation. The restriction of the application of FDDA to the atmosphere above the PBL or the lowest 8 model levels, whichever is higher, has significantly improved the predicted strength and timing of the LLJ during the night. A systematic analysis of the PBL evolution has been performed for the primary meteorological fields (temperature, specific humidity, horizontal winds) and for the derived parameters such as the PBL height, virtual potential temperature, relative humidity, and cloud cover fraction. There are substantial differences between the PBL structures and evolutions simulated by these two different schemes. The model results were compared with independent observations (that were not used in FDDA) measured by aircraft, RASS and wind profiler, lidar, and tethered balloon platforms during the summer of 1999 as part of the NorthEast Oxidant and Particle Study (NE-OPS). The observations tend to support the non-local mixing mechanism better than the layer-to-layer eddy diffusion in the convective PBL.  相似文献   
7.
各种热电、核电厂排出的热污(废)水在直接进入环境流体之前,以多孔口浮射流的形式释放污水并确保污水在排污口快速混合非常重要。精确的了解和预测多孔浮射流的特性与混合状况有很重要的意义。针对同向流动环境中多圆形孔口热水排放的情况,采用雷诺应力模型进行数值模拟,得到了不同流速比和不同射流温度下的流场和温度场、浮射流的轨迹线、轴线上温度和速度的衰减规律,并且分析了不同孔间距、流速比和射流温度对流场中流速和温度的影响。  相似文献   
8.
浮力羽流低风速的多点实时测量   总被引:1,自引:0,他引:1  
作者发展了一种浮力羽流低风速的多点实时测量技术。测头端部安装耐热玻璃小球,直径0.8mm,球内装有热电偶和加热电阻丝,测头将风速转换为热电偶的电势。每支测头必须经过专用校准热风洞的单支校验。使用巡回检测系统记录多个测头的电位,得到流场各点风速的统计平均值,实现了低风速场的多点实时测量。本测量系统对火灾科学、环境科学和气象学的实验研究和实地观测是很有用的测量技术。  相似文献   
9.
浮射流上方排风罩的捕集效率分析及优化设计   总被引:1,自引:1,他引:0  
《环境工程》2015,33(1):90-94
局部排风罩是控制工业建筑中浮射流携带的污染物的最有效手段,但由于建筑内部结构或者工艺条件限制造成罩口尺寸小于污染源尺寸,导致排风罩的控制效果降低。针对该问题,采用数值分析方法研究了浮射流在空间受限条件下流场的变化规律,提出了比增大排风量提高捕集效率更加节能的方法,给出了在排风罩吸气作用下挡板对捕集效率的影响规律。研究发现:合理地设置挡板可使排风罩的捕集效率大幅提高,并且捕集效率随无因次挡板长度增加而增大,同时挡板的作用可以减小由排风罩高度增加所产生捕集效率降低趋势的影响。  相似文献   
10.
双气体射流作用下燃煤可吸入颗粒团聚研究   总被引:2,自引:1,他引:1  
大气中的可吸入颗粒物对有机体危害很大,已经成为世界范围内重要的大气污染源。在可吸入颗粒团聚室内引入双射流,通过双气体射流在团聚室内形成大小不同尺度涡旋,促进流场可吸入颗粒团聚。实验结果表明:10μm以下的可吸入颗粒在单射流作用下减少了21.9%,在双射流作用下减少了58.0%。异侧双射流的团聚清除率高于同侧双射流的清除效率,异侧双射流管间距增加更有利于可吸入颗粒的团聚。双射流管出口Re增加,颗粒质量清除率增大;但不同粒径颗粒的单级团聚效率则与粒径密切相关。颗粒的质量清除率随着主气流与射流流量比增大呈现逐渐减小的趋势。  相似文献   
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