Suppr超能文献

过渡条件下铝合金活塞传热特性的实验与模拟研究

Experimental and simulation study on heat transfer characteristics of aluminium alloy piston under transition conditions.

作者信息

Liu Yang, Lei Jilin, Wang Dongfang, Deng Xiwen, Wen Jun, Wen Zhigao

机构信息

Yunnan Key Laboratory of Internal Combustion Engines, Kunming University of Science and Technology, Kunming, 650500, People's Republic of China.

Yunnan Key Laboratory of Plateau Emission of Internal Combustion Engines, Kunming Yunnei Power CO., LTD, Kunming, 650200, People's Republic of China.

出版信息

Sci Rep. 2022 Jun 3;12(1):9262. doi: 10.1038/s41598-022-13357-0.

Abstract

In order to explore the thermal load change of the diesel engine piston under transitional conditions, and the influence of the position of cooling gallery on the heat transfer characteristics of the piston. An off-road high-pressure common-rail diesel engine is chosen as the research object. The sequence coupling method is used to establish the fluid-solid coupling heat transfer simulation model of the piston-gallery under the transition conditions of cold start, urgent acceleration and rapid deceleration. The Pareto optimization algorithm is introduced to optimize the position of the cooling gallery to reduce the maximum temperature and maximum thermal stress of the piston. The results show that the maximum temperature of the piston can be reduced by reducing the distance between the cooling gallery and the throat area under the maximum torque condition, and that the maximum thermal stress of the piston can be reduced by reducing the distance between the cooling gallery and the throat area or by increasing the distance between the cooling gallery and the ring area. Compared with the original design, the maximum temperature of Design A decreases by 1.28 °C while the maximum thermal stress decreases by 2.07 MPa. The maximum temperature and maximum thermal stress of Design B decreases by 0.22 °C and 0.5 MPa, respectively. The maximum thermal stress of Design C decreases by 2.67 MPa when the maximum temperature increases by 1.15 °C. The maximum change in temperature of the three typical designs and the original design of the piston throat under cold start, urgent acceleration and rapid deceleration conditions reached 207.29 °C, 136.78 °C and 9.89 °C, and the maximum change of thermal stress reached 8.62 MPa, 20.43 MPa, 4.08 MPa, respectively. The maximum change in temperature of the piston first ring groove under cold start, urgent acceleration and rapid deceleration conditions reached 172.00 °C, 83.52 °C and 7.36 °C, and the maximum change in thermal stress reached 22.96 MPa, 43.10 MPa, 5.72 MPa, respectively. The conclusions obtained can provide boundary conditions for further study of the thermal load change law of the same type of pistons, and also provide a theoretical basis for diesel engine piston structure optimization and the performance improvement.

摘要

为了探究柴油机活塞在过渡工况下的热负荷变化,以及冷却油道位置对活塞传热特性的影响。选取一款越野高压共轨柴油机作为研究对象。采用顺序耦合方法,建立了冷启动、急加速和急减速过渡工况下活塞 - 油道的流固耦合传热仿真模型。引入帕累托优化算法对冷却油道位置进行优化,以降低活塞的最高温度和最大热应力。结果表明,在最大扭矩工况下,减小冷却油道与喉口区域之间的距离可降低活塞的最高温度;减小冷却油道与喉口区域之间的距离或增大冷却油道与活塞环区域之间的距离可降低活塞的最大热应力。与原设计相比,设计A的最高温度降低了1.28℃,最大热应力降低了2.07MPa。设计B的最高温度和最大热应力分别降低了0.22℃和0.5MPa。设计C的最大热应力降低了2.67MPa,而最高温度升高了1.15℃。在冷启动、急加速和急减速工况下,三种典型设计与原设计的活塞喉口处的最高温度最大变化量分别达到207.29℃、136.78℃和9.89℃,热应力最大变化量分别达到8.62MPa、20.43MPa、4.08MPa。在冷启动、急加速和急减速工况下,活塞第一道环槽处的最高温度最大变化量分别达到172.00℃、83.52℃和7.36℃,热应力最大变化量分别达到22.96MPa、43.10MPa、5.72MPa。所得结论可为进一步研究同类活塞热负荷变化规律提供边界条件,也为柴油机活塞结构优化和性能提升提供理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/55a3/9166715/a5891c66fc4d/41598_2022_13357_Fig1_HTML.jpg

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验