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景观破碎化对动物适合度的影响研究综述 被引量:3
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作者 扎史其 格玛江初 《林业调查规划》 2013年第6期27-30,共4页
景观破碎化是生物多样性下降的主要原因之一,景观破碎化已成为保护生物学和生态学的中心问题之一。通常以岛屿生物地理学、异质种群生物学和景观生态学的理论来解释景观破碎化的生态学效应。以往研究表明,生境破碎化对动物适合度造成严... 景观破碎化是生物多样性下降的主要原因之一,景观破碎化已成为保护生物学和生态学的中心问题之一。通常以岛屿生物地理学、异质种群生物学和景观生态学的理论来解释景观破碎化的生态学效应。以往研究表明,生境破碎化对动物适合度造成严重影响。文章通过综合文献,论述景观破碎化对动物适合度的影响,分析影响动物适合度的各项指标,包括物种生存能力,繁殖能力和子代存活能力。同时探讨研究中存在的问题,为物种的保护提出建议,并指出今后研究的主要方法、亟待解决的问题和研究热点。 展开更多
关键词 景观生态学 景观破碎化 动物适合度 物种保护
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Vibration control of pedestrian-bridge vertical dynamic coupling interaction based on biodynamic model 被引量:2
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作者 朱前坤 李宏男 +1 位作者 南娜娜 杜永峰 《Journal of Southeast University(English Edition)》 EI CAS 2017年第2期209-215,共7页
The human-induced vertical vibration serviceability of low-frequency and lightweight footbridges is studied based on the moving mass-spring-damper(MMSD) biodynamic model, and the mass damper(TMD) with different op... The human-induced vertical vibration serviceability of low-frequency and lightweight footbridges is studied based on the moving mass-spring-damper(MMSD) biodynamic model, and the mass damper(TMD) with different optimal model parameters being used to control the vertical vibration.First, the MMSD biodynamic model is employed to simulate the pedestrians, and the time-varying control equations of the vertical dynamic coupling system of the pedestrian-bridgeTMD are established with the consideration of pedestrianbridge dynamic interaction; and the equations are solved by using the Runge-Kutta-Felhberg integral method with variable step size. Secondly, the footbridge dynamic response is calculated under the model of pedestrian-structure dynamic interaction and the model of moving load when the pedestrian pace frequency is consistent with the natural frequency of footbridge. Finally, a comparative study and analysis are made on the control effects of the vertical dynamic coupling system in different optimal models of the TMD. The calculation results show that the pedestrian-bridge dynamic interaction cannot be ignored when the vertical human-induced vibration serviceability of low-frequency and light-weight footbridge is evaluated. The TMD can effectively reduce the vibration under the resonance of pedestrian-bridge, and TMD parameters are recommended for the determination by the Warburton optimization model. 展开更多
关键词 FOOTBRIDGE vibration serviceability biodynamic dynamic coupling system vibration control
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