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论庄存与的《周官》学——以庄氏考补《冬官》为中心
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作者 宋化玉 《中国典籍与文化》 CSSCI 北大核心 2021年第4期44-54,共11页
《周官》是庄存与经学研究的重要对象,他重视《周官》与其尊崇周公密切相关。庄存与特别重视《周官》中的《冬官》部分,他考查儒家原典,对《冬官》进行了补遗。庄氏明确了冬官系统中以大司空为首的主要官员的职责,并以此为中心,阐述了... 《周官》是庄存与经学研究的重要对象,他重视《周官》与其尊崇周公密切相关。庄存与特别重视《周官》中的《冬官》部分,他考查儒家原典,对《冬官》进行了补遗。庄氏明确了冬官系统中以大司空为首的主要官员的职责,并以此为中心,阐述了许多王国法度;他将《周官》设官分职的根本原则融合到所补的《冬官》之中,并借此表达若干政治理想。庄氏的《周官》学在其宗族后学之中未能很好地流传,当时主流学界对此的评价也以负面居多,这与当时以考据为尚的学林风气有关。但从学术史上来看,庄氏考补《冬官》的努力值得认可。庄氏的《周官》学具有经世致用的特点,有许多现实关怀。这种以考补典制表达政治理想的思路,启迪了凌曙、魏源等人。庄氏的《周官》学和《春秋》学体用相关、相辅相成,是其经学体系中不可分割的一部分。 展开更多
关键词 庄存与 《周官》学 周官 冬官
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Optimal Performance Characteristics of Subcritical Simple Irreversible Organic Rankine Cycle 被引量:6
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作者 CHEN Weijian FENG Huijun +1 位作者 CHEN Lingen XIA Shaojun 《Journal of Thermal Science》 SCIE EI CAS CSCD 2018年第6期555-562,共8页
Based on the theory of finite time thermodynamics, a subcritical simple irreversible organic Rankine cycle(SSIORC) model considering heat transfer loss and internal irreversible losses is established in this paper. Th... Based on the theory of finite time thermodynamics, a subcritical simple irreversible organic Rankine cycle(SSIORC) model considering heat transfer loss and internal irreversible losses is established in this paper. The total heat transfer surface area is taken as a constraint, and R245fa is adopted as working fluid of the cycle in the performance optimization. The evaporator heat transfer surface area and mass flow rate of the working fluid are optimized to obtain the maximum power output and thermal efficiency of the SSIORC, respectively. In addition, the influences of the internal irreversibilities on the optimal performances are also investigated. The results show that when the evaporator heat transfer surface area is varied, the relationship between power output and thermal efficiency is a loop-shaped curve, and there exist maximum power output and thermal efficiency points, respectively. However, the two maximum points are very close to each other. When the mass flow rate of the working fluid is varied, the relationship between power output and thermal efficiency is a parabolic-like curve. With the decreases of expander and pump irreversible losses, the performances of the irreversible SSORC are close to those of the endoreversible SSORC with the only loss of heat transfer loss. 展开更多
关键词 finite time thermodynamics organic Rankine cycle irreversible cycles thermal efficiency power output
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