首页> 外文期刊>Energy >An assessment of the biodiesel low-temperature combustion engine under transient cycles using single-cylinder engine experiment and cycle simulation
【24h】

An assessment of the biodiesel low-temperature combustion engine under transient cycles using single-cylinder engine experiment and cycle simulation

机译:使用单缸发动机实验和循环仿真评估瞬态循环下的生物柴油低温内燃机

获取原文
获取原文并翻译 | 示例
           

摘要

An operational strategy was developed to implement LTC (low-temperature combustion) with 50% biodiesel blended fuel (B50), named B-LTC, and evaluated under a combination of a single-cylinder engine experiment and a cycle simulation. The fuel consumption, regulated emissions, and exhaust gas temperature maps were constructed from experiments in a single-cylinder diesel engine at the speed range between 1000 and 1600 rev/min. A dataset of pumping and friction of a 6-cylinder diesel engine was employed to construct a 6000-cm(3) B-LTC engine from the SCRE (single-cylinder research engine) experimental results. The engine maps of the virtual 6-cylinder B-LTC engine were then input into a zero dimensional (0-D) model for the transient-cycle simulation. The cycle simulation was performed under the two representative transient cycles, namely the WHTC (worldwide harmonized transient cycle) and the NRTC (non-road transient cycle). The WHTC simulation estimated the engine-out CSNOX (cycle specific NO.) of 0.94 g/kWh, which was lowered to 0.30 g/k Wh by the SCR (selective catalytic reduction), while CSFC (cycle-specific fuel consumption) and cycle-specific soot (CSsoot) were 310 g/kWh and 0.01 g/kWh, respectively. The NRTC simulation results also showed that the engine-out CSsoot emission was 0.01 g/kWh. The urea-dosing SCR model reduced CSNOX from 0.99 g/kWh to 0.25 g/kWh. The CSFC was 274 g/kWh in the NRTC simulation. (C) 2015 Elsevier Ltd. All rights reserved.
机译:制定了一种操作策略以使用50%的生物柴油混合燃料(B50)实施LTC(低温燃烧),命名为B-LTC,并在单缸发动机实验和循环仿真的组合下进行了评估。根据单缸柴油机在1000至1600转/分钟的转速范围内的实验,绘制了燃油消耗量,受控排放量和废气温度图。 6缸柴油发动机的泵送和摩擦数据集被用于从SCRE(单缸研究发动机)实验结果中构建一个6000-cm(3)B-LTC发动机。然后将虚拟6缸B-LTC发动机的发动机图输入到零维(0-D)模型中以进行瞬态循环仿真。在两个有代表性的瞬态周期下执行周期模拟,即WHTC(全球协调瞬态周期)和NRTC(非道路瞬态周期)。 WHTC模拟估计发动机排出的CSNOX(循环比NO。)为0.94 g / kWh,通过SCR(选择性催化还原)降低到0.30 g / k Wh,而CSFC(循环比燃料消耗)和循环特定烟灰(CSsoot)分别为310 g / kWh和0.01 g / kWh。 NRTC模拟结果还显示,发动机输出的CSsoot排放量为0.01 g / kWh。尿素定量SCR模型将CSNOX从0.99 g / kWh降低到0.25 g / kWh。在NRTC模拟中,CSFC为274 g / kWh。 (C)2015 Elsevier Ltd.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号