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| 1 | Biological couplings: Classification and characteristic rules显示文摘The phenomena that biological functions originate from biological coupling are the important biological foundation of multiple bionics and the significant discoveries in the bionic fields. In this paper, the basic concepts related to biological coupling are introduced from the bionic viewpoint. Constitution, classification and characteristic rules of biological coupling are illuminated, the general modes of biological coupling studies are analyzed, and the prospects of multi-coupling bionics are predicted. | REN LuQuan LIANG YunHong | 2009 | Science China(Technological Sciences)2009,52,10: | 32 |
| 2 | Biological couplings: Function, characteristics and implementation mode显示文摘Through rigorous natural selection, biological organisms have evolved exceptional functions highly adaptable to their living environments. Biological organisms can achieve a variety of biological functions efficiently by using the synergic actions of two or more different parts of the body, or the coupling effects of multiple factors, and demonstrate optimal adaptations to the living environment. In this paper, the function, characteristics and types of biological couplings are analyzed, the implementation mechanism and mode of biological coupling functions are revealed from the bionic viewpoint. Finally, the technological prospects of the bionic implementation of biological coupling function are predicted. | REN LuQuan & LIANG YunHong Key Laboratory of Bionic Engineering of Ministry of Education, School of Biological and Agricultural Engineering, Jilin University, Changchun 130025, China | 2010 | Science China(Technological Sciences)2010,53,2: | 23 |
| 3 | 生物耦合功能特性及其实现模式显示文摘生物在大自然优胜劣汰的法则下,进化出与自身生长和生存环境高度适应的功能特性.生物通过两个或两个以上不同部分的协同作用或不同因素的耦合作用有效地实现生物的各种功能,充分展现其对生境的最佳适应性.本文从仿生学角度,分析了生物耦合功能、特性及其类别,初步揭示了生物耦合功能实现的机制与模式,最后。 | 任露泉 梁云虹 | 2010 | 中国科学:技术科学2010,40,3: | 13 |
| 4 | 生物耦合及其分类学与特征规律研究显示文摘生物功能源自生物耦合作用的现象,是多元仿生的重要生物学基础,也是仿生学领域的重要发现.从仿生学角度,提出了生物耦合相关的基本概念,阐释了生物耦合的构成、分类及其特征规律,分析了生物耦合研究的一般模式,并展望了多元耦合仿生的前景. | 任露泉 梁云虹 | 2010 | 中国科学(E辑)2010,40,1: | 12 |
| 5 | Preliminary studies on the basic factors of bionics显示文摘The bionic consciousness,idea,and practice opened a unique path for the progress of mankind,the development of the society,and the innovation of science and technology from the subconscious bionic activities of the ancient humans to the significant bionic designs in modern engineering.Nowadays,driven by the practical demand of human beings,bionics becomes an important factor for the sustainable development of technology.A lot of new and outstanding innovations have been produced through the effective interactions between bionics,technology,and demand.The stronger the interactions,the greater the innovation success would be.In this article,the basic factors such as the connotation,characteristics,and interactions of bionic demands,bionic models,bionic simulations,and bionic products were explained,which are the indispensable basic knowledge for improving the ability of innovation especially for the original one,realizing the design and innovation of new technology and manufacturing for better bionic products. | REN LuQuan LIANG YunHong | 2014 | Science China(Technological Sciences)2014,57,3: | 10 |
| 6 | A Biological Coupling Extension Model and Coupling Element Identification显示文摘Extenics is a newly developed interdisciplinary subject combining mathematics, philosophy and engineering. It providesuseful formalized qualitative tools and quantitative tools for solving contradictory problems. In this paper, extension theory isintroduced briefly and the primary applications of this theory and methods in bionic engineering research are discussed. Theextension model of biological coupling functional system is established. In order to identify the primary and secondary sequencingof coupling elements, the Extension Analytic Hierarchy Process (EAHP) was adopted to analyze the contribution ofeach coupling element to the coupling functional system. Thus, the influence weight factor of each coupling element can bedetermined, so as to provide a new approach for solving primary and secondary sequencing problem of coupling elements in aquantitative way, and facilitate the subsequent bionic coupling study. | Zhi-hui Qian~1,Yun Hong~(1,2),Cheng-yu Xu~1,Lu-quan Ren~1,1.Key Laboratory of Engineering Bionics (Ministry of Education),Jilin University,Changchun 130022,P.R.China2.The School of Management,Changchun Institute of Technology,Changchun 130021,P.R.China | 2009 | Journal of Bionic Engineering2009,6,2: | 7 |
| 7 | Multifaceted Bioinspiration for Improving the Shaft Resistance of Deep Foundations显示文摘This paper describes the bioinspiration process to derive design concepts for new deep foundation systems that have greater axial capacity per unit volume of pile material compared to conventional deep foundations.The study led to bioinspired ideas that provide greater load capacity by increasing the pile shaft resistance.The bioinspiration approach used problem-solving strategies to define the problem and transfer strategies from biology to geotechnical engineering.The bioinspiration considered the load transfer mechanism of hydroskeletons and the anchorage of the earthworm,razor clam,kelp,and lateral roots of plants.The biostrategies that were transferred to the engineering domain included a flexible but incompressible core,passive behaviour against external loading,a longitudinally split shell that allows expansion for anchorage,and lateral root-type or setae-type anchoring elements.The concepts of three bioinspired deep foundation systems were proposed and described.The advantage of this approach was illustrated with two examples of the new laterally expansive pile in drained sand under axial compression.The finite element analysis of these examples showed that the new laterally expansive pile can provide considerably greater load capacity compared to a conventional cylindrical pile due to the increased lateral confining pressure developed along the expanded pile core. | Seyed Ali Aleali Paola Bandini Craig Michael Newtson | 2020 | Journal of Bionic Engineering2020,17,5: | 2 |
| 8 | 新型景观生态污水处理系统研究进展显示文摘针对传统污水处理工艺、污水生态处理系统存在的问题,总结了新型景观生态污水处理系统的原理及优点,展望了新型景观生态污水处理系统的应用前景,阐明了今后新型景观生态污水处理系统研究的主要构想与方向,以期促进新型景观生态污水处理系统的发展和应用。 | 陈忠 陈薇 詹佳钧 赵宇翔 林惠文 卓然 范功端 | 2017 | 市政技术2017,35,6: | 2 |