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王船山的“体”概念--对宋明道学“道体”论的重构 被引量:2
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作者 吴震 《社会科学战线》 北大核心 2024年第2期34-49,共16页
宋明道学的“道体”被认为是与“今所谓本体意同”的真正本体论。程颐始以“道体”来解释“子在川上曰”,并以“与道为体”论述“道体”,朱子认为其“体”字为“体质”义,而非体用之体,即非体用论意义上与“用”相对的“本体”义。与此... 宋明道学的“道体”被认为是与“今所谓本体意同”的真正本体论。程颐始以“道体”来解释“子在川上曰”,并以“与道为体”论述“道体”,朱子认为其“体”字为“体质”义,而非体用之体,即非体用论意义上与“用”相对的“本体”义。与此相应,朱子认为《中庸》“体物不遗”的体物也不过是“物之体”的意思。王船山延续了程朱的道体论,亦强调“体”即形体义。然船山基于其气学立场,认为道体无非是道之体,强调“道体自流行于天下”这一宇宙论形态的道体流行观。对船山而言,道之体即阴阳,也就是阴阳为道之体,故道与阴阳(器)构成了世界的整体结构。然而道与器并非分属形上形下,亦非两种“异体”,相反,道器构成“交与为体”的一体关系。重要的是,在道器结构中,器为基体,道为属性,因而只可说“道者器之道”,却不能说器者“道之器”。这是由于世界的实在性唯在于“器”,故曰“天下惟器”。总之,船山哲学通过对宋明道学“道体”论的重新诠释,建构了“形形皆有”“体用胥有”的气实在论,而这一理论特质印证了张岱年所说的中国哲学本体论肯定“万有众象同属实在”的论断。 展开更多
关键词 物不遗 道体流行 交与为 气实在论
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New application notion of pipeline transport——integrated in industry solid waste innocuous and efficient disposition 被引量:5
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作者 陈洁 赵学义 +4 位作者 王星 潘越 张娜 吴钰晶 吴淼 《Journal of Coal Science & Engineering(China)》 2006年第2期75-79,共5页
In order to solve transport problems of industry solid,firstly,a new applicationnotion of pipeline transport was presented,that is to say,combining pretreatment andtransport with disposal techniques of industry solid ... In order to solve transport problems of industry solid,firstly,a new applicationnotion of pipeline transport was presented,that is to say,combining pretreatment andtransport with disposal techniques of industry solid waste.Secondly,the integrated dis-posal and transport system for industry solid waste was introduced,in particular,the oper-ating principles,equipment set-up,key technology and technical parameters.Next,thispaper illustrated the application of this integrated system.Such as it can transport coalsludge with sufficiently high solids content(about 72%~77%)and high apparent viscosity(about 1 000~3 000 Pa.s)directly by pipeline having no use for water and addition agent.Generally,the transport distance is about 1 000 m.This system has been successfullyused in innocuous disposition and efficient utilization of other industrial byproducts or solidwastes,such as city sludge and paper making waste.The integrated system causes nopollution to the environment for its complete seal and realizes protecting the environment,conserving the energy,promoting the development of cycling economic.Finally,the paperdiscussed the research works that were needed for studying such pipeline transport sys-tem and narrates the relevant condition and application status. 展开更多
关键词 pipeline transport industry solid waste circulating fluidized bed boiler in- nocuous disposition rheologic behaviors pipeline transport properties
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Experimental study on the characteristics of ventilated cavitation around an underwater navigating body influenced by turbulent drag-reducing additives 被引量:2
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作者 JIANG ChenXing LI FengChen 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2015年第9期76-85,共10页
In this study, a new control strategy for turbulent drag reduction involving ventilated cavitation is proposed. The configurational and hydrodynamic characteristics of ventilated cavities influenced by turbulent drag-... In this study, a new control strategy for turbulent drag reduction involving ventilated cavitation is proposed. The configurational and hydrodynamic characteristics of ventilated cavities influenced by turbulent drag-reducing additives were experimentally studied in water tunnel. The test model was fixed in the water tunnel by a strut in the aft-part. Aqueous solutions of CTAC/Na Sal(cetyltrimethyl ammonium chloride/sodium salicylate) with weight concentrations of 100, 200, 400 and 600 ppm(part per million), respectively, were injected into the ventilated air cavity from the edge of the cavitator with accurate control by an injection pump. The cavity configurations were recorded by a high-speed CCD camera. The hydrodynamic characteristics of the test model were measured by a six-component balance. Experimental results show that, within the presently tested cases, the lengths of cavity influenced by drag-reducing solution are smaller than normal condition(ventilated cavity) in water, but the asymmetry of the cavity is improved. The drag resisted by the test model is reduced dramatically(the maximum drag reduction can reach to 80%) and the re-entrant jet is more complex after the CTAC solution is injected into the cavity. Turbulent drag-reducing additives have the potential in enhancement of supercavitating asymmetry and further drag reduction. 展开更多
关键词 ventilated cavity water tunnel drag-reducing additives SURFACTANT
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