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- Using the paramegentic salt restricted to the Curie law as the working substance,a general model of magnetic Brayton refrigeration cycle is established. 基于统计力学的性质推导出了顺磁系统的热力学关系,并构建了以满足居里定律的顺磁材料为工作物质的一般磁布雷顿制冷循环模型。
- By using numerical calculation,several important performance characteristic curves were generated. The influence of the quantum degeneracy,irreversibility and regeneration on the performance of a Bose Brayton refrigeration cycle was analyzed. 通过数值计算获得了循环的一些重要的性能特性曲线,分析了循环的不可逆性和回热特性对玻色布雷顿制冷机性能的影响。
- Based on the irreversible Brayton refrigeration cycle model, the satisfied equation about the optimal relation between the cooling rate and the coefficient of performance is derived. 基于不可逆布雷顿制冷循环模型,导出循环制冷率和性能系数之间优化关系所应满足的方程,利用数值解,研究内不可逆性和传热不可逆性对优化性能的影响。
- magnetic Brayton refrigeration cycle 磁布雷顿制冷循环
- The results obtained here will be helpful to further understand the difference and connection between the classical and quantum Brayton refrigeration cycles. 得到的结果有助于进一步了解经典布雷顿制冷循环和量子布雷顿制冷循环之间的区别和联系 .
- Performance Optimum Analysis of A Magnetic Brayton Refrigeration Cycle 磁布雷顿制冷循环性能的优化分析
- THE OPTIMIZATION ON THE PERFORMANCE OF IRREVERSIBLE BRAYTON REFRIGERATION CYCLE 不可逆布雷顿制冷循环的性能优化
- Optimization on Performance of Regenerative Brayton Refrigeration Cycle 回热式布雷顿制冷循环的性能优化
- THE INFLUENCE OF THE QUANTUM DEGENERACY OF A BOSE GAS ON THE PERFORMANCE OF AN IRREVERSIBLE BRAYTON REFRIGERATION CYCLE 玻色气体的量子简并性对不可逆布雷顿制冷循环性能的影响
- Performance characteristics of an irreversible regenerative Brayton refrigeration cycle working with an ideal Bose gas 不可逆回热式玻色布雷顿制冷循环性能分析
- THE PERFORMANCE ANALYSIS OF A BRAYTON REFRIGERATION CYCLE WORKING WITH A FERMI GAS 费米气体布雷顿制冷循环的性能分析
- FINITE TIME THERMODYNAMIC CHARACTERISTIES OF A REGENERATED BRAYTON REFRIGERATION CYCLE 一类回热式布雷顿制冷循环的有限时间热力学性能
- Performance Analysis for a Real Regenerated Brayton Refrigeration Cycle with Constant-Temperature Heat Reservoirs 恒温热源实际回热式布雷顿制冷循环性能分析
- Brayton refrigeration cycle 布雷顿制冷循环
- Magnetic field is supplied by an electromagnet.Reciprocating movement and Brayton magnetic refrigeration cycle are adopted. 此系统利用电磁体提供磁场,采用往复运动方式,实现布雷顿循环。
- Focus:Energy analysis and calculation on vapor compression refrigeration cycle. 重点:蒸气压缩制冷循环的能量分析与计算。
- This constant push and pull adjustment for the balance as long as refrigeration cycle continue. 如此不断的进行推拉调整平衡,只要制冷循环继续下去。
- Great ability that adsorbent adsorb adsorbate was led to evaporation of adsorbate liquid,which adsorption refrigeration cycle are realized. 利用吸附剂对吸附质的强烈吸附能力 ,可以促使吸附质液体蒸发 ,从而实现吸附制冷循环。
- The DMC-PID control algorithm is to supply references to the research of auto-control system of the mixed absorption refrigeration cycle. 该文提出的预测智能PID控制算法对吸收式制冷系统的自动控制系统的研发具有一定的实用价值。
- The performance analysis of a real regenerated Brayton refrigerator is carried out by using finite-time thermodynamic method in this paper. 用有限时间热力学方法分析了变温热源条件下实际闭式中冷回热布雷顿循环的性能,导出了无因次功率及效率的解析式。