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Influence of Spacing on the Thermal Efficiency of a Dual-Monolithic Catalytic Converter During Warmup

机译:间隔对双整体催化转化器热机热效率的影响

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A one-dimensional monolithic catalyst model was used to evaluate the effect of space between two bricks on the thermal efficiency of a dual-monolithic catalytic converter with a Palladium-only (Pd-only) catalyst and a Palladium/Rhodium (Pd/Rh) catalyst butted together, and which are, in turn, mounted on a commercial vehicle equipped with a 2-L, four-cylinder spark ignition (SI) engine. Prior to the numerical investigation of the converter, tuning of the preexponential factor and activation energy of each reaction for each catalyst was performed to achieve acceptable agreement with experimental data under typical operating condition of automobile application. Two higher cell density 600 cpsi/4 mil substrates were used for faster light-off and improved warm-up performance of the catalytic converter, and the two monoliths have been connected without a space between them. As a result of the constriction of the monoliths, a slight temperature decrease occurred at the substrate interface due to thermal contact resistance. Therefore, to examine the heat transfer mechanism throughout the conforming rough surfaces, the thermal joint conductance between adjacent monoliths was determined using existing theory and correlation. The adequacy of the theory and correlation for thermal joint conductance was elucidated by analyzing heat transfer across the joint. Additionally, parametric investigations were performed to examine how the apparent contact pressure and mass flow rate of the exhaust gas affects the overall temperature drop across the joint. Over a wide range of operating conditions, temperature drop across the interface in the dual-catalyst converter with an air-gap is smaller than that without an air-gap. The relatively large temperature drop across the interface occurs especially during the early warmup period with a lower mass flow rate, that is, under conditions of cold-start and warmup at idle.
机译:使用一维整体催化剂模型来评估两块砖之间的空间对具有仅钯(仅钯)催化剂和钯/铑(Pd / Rh)的双整体催化转化器的热效率的影响催化剂对接在一起,然后将其安装在配备2升四缸火花点火(SI)发动机的商用车上。在对转炉进行数值研究之前,对每种催化剂的每个反应的预指数因子和活化能进行调节,以在汽车应用的典型运行条件下与实验数据达成可接受的一致性。使用了两个较高的单元密度600 cpsi / 4 mil的基板,以更快地起燃并改善了催化转化器的预热性能,并且两个整料之间没有空间连接。由于整体结构的收缩,由于热接触电阻,在基板界面处发生了轻微的温度下降。因此,为了检查整个贴合粗糙表面的传热机理,使用现有理论和相关性确定了相邻整料之间的热结合传导率。通过分析跨接点的热传递,阐明了热接点传导理论和相关性的充分性。此外,进行了参数研究,以检查排气的表观接触压力和质量流量如何影响整个接头的整体温度下降。在宽范围的工作条件下,具有气隙的双催化剂转化器中整个界面的温度下降要小于没有气隙的情况。尤其是在预热阶段,质量流量较低的情况下,即在冷启动和怠速预热的条件下,会在界面上出现相对较大的温度下降。

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