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基于可变循环的气体发动机Tier Ⅲ排放方案展望 被引量:2
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作者 王民 于洪亮 +1 位作者 温苗苗 张凌 《柴油机》 2019年第2期31-35,50,共6页
根据远洋船舶航行特点,构想了一种基于可变热力循环,使气体发动机能够兼具高压气体发动机和低压气体发动机优点的TierⅢ排放方案。希望通过天然气预混合、可变压缩比、引燃优化、燃烧速率控制、空燃比控制等技术的组合应用,实现均质稀... 根据远洋船舶航行特点,构想了一种基于可变热力循环,使气体发动机能够兼具高压气体发动机和低压气体发动机优点的TierⅢ排放方案。希望通过天然气预混合、可变压缩比、引燃优化、燃烧速率控制、空燃比控制等技术的组合应用,实现均质稀薄燃烧,降低NOx排放,使高压气体发动机在不使用EGR和后处理技术的情况下,达到IMOTierⅢ标准。 展开更多
关键词 可变热力循环 气体发动机 均质稀薄燃烧 氮氧化物
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Parameter fitting of constitutive model and FEM analysis of solder joint thermal cycle reliability for lead-free solder Sn-3.5Ag 被引量:1
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作者 周萍 胡炳亭 +1 位作者 周孑民 杨莺 《Journal of Central South University》 SCIE EI CAS 2009年第3期339-343,共5页
The experimental tests of tensile for lead-flee solder Sn-3.5Ag were performed for the general work temperatures range from 11 to 90 ℃ and strain rate range from 5 × 10^-5 to 2 × 10^-2s^-1, and its stress--... The experimental tests of tensile for lead-flee solder Sn-3.5Ag were performed for the general work temperatures range from 11 to 90 ℃ and strain rate range from 5 × 10^-5 to 2 × 10^-2s^-1, and its stress--strain curves were compared to those of solder Sn-37Pb. The parameters in Anand model for solder Sn-3.5Ag were fitted based on experimental data and nonlinear fitting method, and its validity was checked by means of experimental data. Furthermore, the Anand model was used in the FEM analysis to evaluate solder joint thermal cycle reliability. The results show that solder Sn-3.5Ag has a better creep resistance than solder Sn-37Pb. The maximum stress is located at the upper right comer of the outmost solder joint from the symmetric center, and thermal fatigue life is predicted to be 3.796 × 10^4 cycles under the calculated conditions. 展开更多
关键词 lead free solder Sn-3.5Ag alloy Sn-37Pb alloy constitutive model TENSILE FEM analysis thermal cycle reliability
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An effective thermodynamic transformation analysis method for actual irreversible cycle 被引量:5
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作者 CHEN ZeShao XIE WenHai +2 位作者 HU Peng JIA Lei SHI Min 《Science China(Technological Sciences)》 SCIE EI CAS 2013年第9期2188-2193,共6页
An effective thermodynamic transformation analysis method was proposed in this study. According to the phenomenon of ex- ergy consumption always coupling with heat transfer process, the effective thermodynamic tempera... An effective thermodynamic transformation analysis method was proposed in this study. According to the phenomenon of ex- ergy consumption always coupling with heat transfer process, the effective thermodynamic temperatures were defined, then the actual power cycle or refrigeration/heat pump cycle was transformed into the equivalent reversible Carnot or reverse Carnot cycles for thermodynamic analysis. The derived effective thermodynamic temperature of the hot reservoir of the equivalent reverse Camot cycle is the basis of the proposed method. The combined diagram of TR-h and TR-q was adopted for the analy- sis of the system performance and the exergy consumption, which takes advantage of the visual expression of the heat/work exchange and the enthalpy change, and is convenient for the calculation of the coefficient of performance and exergy con- sumptions. Take a heat pump water heater with refrigerant of R22 for example, the proposed method was systematically intro- duced, and the fitting formulas of the effective thermodynamic temperatures were given as demonstration. The results show that the proposed method has advantage and well application foreground in the performance simulation and estimation under the variable working conditions. 展开更多
关键词 irreversible thermodynamic cycle effective thermodynamic transformation analysis effective thermodynamic temper-ature heat pump water heater exergy analysis
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