| 1. | These numerical equalities would not exist if any ordinary engine cycle were reversed . 如果将任一普通热机的循环方向反向,那么以上这些相等数量是不存在的。 |
| 2. | The engine cycle during which this process occurs 压缩周期上述机器压缩过程的周期 |
| 3. | Research on heat transfer inevitable exergy loss in heat engine cycle 热力循环温差传热不可避免损失研究 |
| 4. | An ecological optimization criterion for a gas stirling engine cycle 气体斯特林热机循环的生态学优化研究 |
| 5. | Ecological optimization for universal endoreversible heat engine cycle 普适内可逆热机循环模型及其生态学优化 |
| 6. | Friction effects on performance of dual compression internal combustion engine cycle 摩擦对双压内燃机循环性能的影响 |
| 7. | Performance analysis for irreversible combined heat engine cycle with supplemental combustion 补燃型不可逆联合循环热机的性能分析 |
| 8. | The thermal efficiecy of traditional heat engine cycle with the low temperature is very low 从热力学原理看,传统中低温热源模式热力循环的热功转换率很低。 |
| 9. | The carnot cycle can be thought of as the most efficient heat engine cycle allowed by physical laws 该卡诺循环可以被看作是最有效的热力循环所允许的物理规律。 |
| 10. | Performance analysis for a combined carnot and rankine heat engine cycle with heat resistance , heat leakage and supplemental combustion 热漏和补燃的卡诺和朗肯联合热机循环性能分析 |