共查询到19条相似文献,搜索用时 203 毫秒
1.
2.
柴油机尿素SCR氨分布均匀性的试验与模拟优化 总被引:2,自引:0,他引:2
在发动机排气温度300℃、排气流量400kg/h的条件下,测量了尿素SCR催化剂载体前端面的NH3浓度分布。测试结果表明:载体前端面NH3浓度分布均匀性较差,NH3浓度最大值约是最小值的6倍,试验NH3分布均匀性指数仅为0.791。为了提高NH3的分布均匀性,采用CFD软件建立了该SCR系统的流动以及尿素水溶液的喷雾、热解和水解反应等模型,并研究了混合器对NH3浓度分布的影响。模拟结果表明:尿素水溶液喷射后,部分液滴发生撞壁,在排气管直管段大部分液滴集中沿管壁方向运动,进入进口多孔管后液滴分散开,但整体液滴分布不均匀。安装混合器能够使NH3分布均匀性指数和NOx转化效率提高约10%。 相似文献
3.
4.
使用商业钒基SCR催化转化器和某国Ⅳ重型柴油机,在AVL发动机台架上对3种国产车用尿素进行了相互替代性试验,研究中考虑了不同尿素对SCR催化转换器的起燃特性、动态响应、NOx转化率和NH3泄漏等性能的影响。试验排气温度为160~440℃,n(NOx)∶n(NH3)(物质的量之比)从0.8变化到1.2。研究发现:相同条件下3种尿素对SCR系统起燃温度基本没有影响,ESC和ETC循环NOx转化率都在70%以上,同时对其他常规气态排放和NH3泄漏没有明显影响,可以互相替代使用;相同条件下,单位体积尿素溶液中尿素含量越高,SCR系统动态响应越快,ESC和ETC循环NOx转化率越高。 相似文献
5.
6.
通过建立SCR系统数值模型,对柴油机SCR系统尿素水溶液喷雾分解和催化剂表面的化学反应过程进行模拟。结合台架试验,研究了喷嘴喷射角度α、催化器扩张角β和混合器及其安装位置等因素对SCR系统NO_x转化率、NH_3分布均匀性和液膜质量等的影响规律。结果表明:喷射角度和催化器扩张角的影响规律比较复杂,须根据具体情况选定;加装混合器后,可产生明显的排气旋流,有效延长UWS液滴的运动轨迹,促进其与排气的良好混合,明显提高SCR系统NO_x的转化率,它安装于喷嘴下游100~200mm处较为合理。 相似文献
7.
8.
柴油机尿素 SCR 反应特性的试验研究 总被引:2,自引:1,他引:1
利用可独立控制尿素喷射量的SCR系统,通过柴油机台架试验,研究了钒基催化剂温度和空速对SCR催化还原反应NOx 转化效率和反应速率的影响,以及尿素喷嘴安装位置对转化效率的影响。结果表明:NOx 转化率随着氨氮比(NH3与NOx 物质的量之比)的升高而逐渐升高,由于尿素水解和热解不完全等因素,氨氮比上升到2时NOx 转化率才可达到最大;NOx 转化率随着催化剂温度升高而升高,到400℃时基本趋于稳定,NOx 转化率随空速升高略有下降;SCR反应速率随温度的升高而升高,随空速的变化不明显;相同氨氮比时,尿素喷嘴与催化剂的距离增加,有利于NOx 转化率的升高。 相似文献
9.
中冷后进气温度是影响选择性催化还原(SCR)转化效率的重要因素。文章以一台某厂家重型柴油机为研究对象,在发动机台架测试系统上运行世界统一瞬态循环(WHTC)工况,通过全流稀释采样系统(CVS)检测排气中原机NOX排放值以及SCR催化器后的NOX排放值。结果表明,当排气温度为42~62℃时,提高中冷后进气温度能够有效提高增压中冷柴油机的排气温度,但也使得原始排气中的NOX排放值增大;排气温度的提升使得SCR的转化效率得以提升,但由于原始排气中NOX排放值的增大,SCR的转化效率呈现先增大后减少的趋势。 相似文献
10.
SCR系统尿素喷雾特性影响因素的CFD仿真分析 总被引:1,自引:0,他引:1
利用AVL Fire三维商用仿真软件对SCR系统尿素喷雾特性的影响因素进行了模拟计算,考察的因素包括工况、尿素喷射压力、尿素水溶液的温度及喷嘴的安装角度。结果表明:喷雾形态受来流影响较大,喷雾的速度及贯穿距离随排气流量增加,排气流量越小,排气温度(SCR喷嘴处排气温度)越高,越利于喷雾液滴的蒸发和热解;喷射压力对液滴的喷雾形态影响不大,但对NH3的浓度场分布影响较大,喷射压力越高,NH3的生成效率越低;尿素溶液温度对喷雾形态及NH3的转化影响不大;喷嘴安装角增大利于喷雾液滴蒸发和热解。 相似文献
11.
In this study, NOx conversion characteristics of a urea selective catalytic reduction (SCR) system equipped on a heavy-duty diesel engine were evaluated through engine dynamometer bench tests over a scheduled world harmonized transient cycle (WHTC). Also, based on transient SCR simulations, the thermal management strategy to improve SCR NOx conversion efficiency was investigated. As a result, it was found that a selective increase in exhaust temperature at low temperature period would be a useful measure to increase SCR efficiency on WHTC mode. From the baseline SCR efficiency of around 98 % on WHTC mode, the current simulation results have shown that around 99 % level of SCR efficiency would be achievable by increasing exhaust temperatures with modifying diesel exhaust fluid (DEF) dosage. Another valuable contribution of this study is that the design guidelines for controlling exhaust temperature and DEF injection to obtain a target NOx conversion efficiency are presented for SCR systems of heavy-duty diesel engines on transient operating conditions. 相似文献
12.
商用车柴油机多采用DOC+SCR的后处理系统来满足国Ⅳ、国Ⅴ排放标准的要求,而不同类型SCR的催化特性对最终污染物排放影响也不同。试验获取了一支铜基分子筛型SCR,基于1台2.8L柴油机和一支钒基SCR,运行了车用柴油机稳态循环(ESC)和瞬态排放循环(ETC),研究并分析了其对柴油机污染物的减排特性。结果表明,相较于钒基SCR,运行ETC循环时分子筛型SCR对发动机NOx和PM排放的减排效率分别提升19%和33%;分子筛型SCR对NOx的低温转化效率更高,且由于对排气流量不敏感,在高空速工况下其转化效率显著高于钒基SCR;分子筛型SCR对颗粒物个数的减排效率弱于钒基SCR,达7%以上,容易将大质量颗粒物分解为小质量颗粒物;两种SCR均对CO和HC具有一定的减排效果,减排率可达20%左右。 相似文献
13.
14.
排放法规的日趋严格,柴油机尾气后处理器SCR作为处理NOX排放物的一种有效手段,吸引了越来越多的目光的关注。柴油机尾气后处理器SCR内部的气体流动状况及尿素喷射效果与其使用效率以及柴油机的动力性和经济性都有很大的影响。文章通过建立三维SCR流动和喷雾计算模型,计算得出SCR内部压力、流场分布以及尿素喷射雾化分布情况。通过本次仿真,找到内部影响SCR工作效率的关键设计因素,从而更好的优化产品设计,满足性能及一致性的要求。结果表明:柴油机尾气后处理器SCR内部孔道的分布对于性能有一定的影响,需要通过生产进行控制从而满足尾气后处理的效率及产品一致性要求。 相似文献
15.
16.
Joonsoo Han Junho Lee Youngtaig Oh Gyubaek Cho Hongsuk Kim 《International Journal of Automotive Technology》2017,18(6):951-957
Urea-SCR systems have been widely used in diesel vehicles according to the strengthened NOx (Nitrogen Oxides) emission standard. The NOx removal efficiencies of the latest well optimized urea-SCR system are above 90 % at moderate exhaust gas temperature of 250 ~ 450 °C. However, a large amount of NOx is emitted from diesel vehicles at cold start or urban driving conditions, when the exhaust gas temperature is not high enough for SCR catalyst activation. Although many researchs have been stuied to improve NOx conversion efficiency at these low temperature conditions, it is still one of important technical issues. In this study, the effect of UWS injection at low exhaust gas temperature conditions is studied. This study uses a 3.4 L diesel engine equipped with a commertial urea SCR system. As a result, it is found that about 5 % of NOx removal efficiency is improved in the NRTC test when UWS injection starts at the SCR inlet temperature of 150 °C compared to 200 °C. It is also found that urea deposits can be formed on the wall of exhaust pipe, when the local wall temperature is lower than temperature of urea decomposition. 相似文献
17.
针对柴油机满足国Ⅳ排放标准需要,探讨柴油机尾气净化的2种可选技术途径。得出SCR技术适合我国市场发展结论。并介绍国Ⅳ柴油机压缩空气辅助喷射SCR系统的组成及工作原理。 相似文献
18.
J. Lucas M. A. Houghton I. G. Masheter 《International Journal of Automotive Technology》2012,13(6):853-860
A system has been researched over the past 3 years for reducing the exhaust pollutants from diesel engines for light commercial vehicles. The system researched achieves Euro 6 standards for reduction of polluting gases (CO, HC, PM, NO). It consists of 4 main sections: 1. A heater and heat exchanger (HE); 2. A CO/HC oxidising catalyst (D°C); 3. Pt catalyst on a diesel particulate filter (DPF); 4. A NO reducing reaction (SCR) within the DPF. The system operates as follows. The exhaust gas contains oxidising gases, namely both O2 and NO2. The levels of CO and HC are oxidised by O2 to CO2 for temperatures above 200°C. Carbon (PM) is oxidised to CO2 by NO2 but requires a temperature above 250°C. The operating exhaust temperature of 300°C is ideal for the removal of NO by using the Pt catalyst and the CO generated within the DPF. The heater is required to be able to raise the exhaust temperature at any time to 300°C in order to optimise the performance of the system, since diesel engine exhaust temperatures vary between 160°C (slow speeds) to 350°C (high speeds). Considerable heat is required (??3 kW) to maintain the exhaust gas for a 2l engine at 300°C for engine idle conditions. Therefore a heat exchanger is required to re-circulate the input heat and thereby reduce the maximum power consumption to a maximum of 500W over the engine full operating test cycle. This energy is supplied by the engine battery and alternator. Experimental results have been obtained for the exhaust from a Kubota diesel engine and the reductions in exhaust emissions of 83% (CO/ HC), 58% (NOx) and 99% (PM) were obtained. The PM was continuously cleaned so that there was no build up of back pressure. 相似文献