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Models that link ecological responses to hydrologic changes are important for assessing the effects of flow regulation on aquatic and riparian ecosystems. Based on the Recruitment Box Model, a graphical model used to prescribe environmental flows for cottonwood (Populus spp.) recruitment, we designed a simulation model to represent the influence of river flow dynamics on seedling recruitment of riparian pioneer woody plants. The model simulates the influence of temporal patterns of river stage on dispersal, germination, initial recruitment and over‐winter survival of first‐year seedlings of riparian pioneer shrubs and trees. We used the model to simulate seedling recruitment patterns for five species (Acer saccharinum, Betula nigra, Populus deltoides, Salix nigra and Salix exigua) on the Wisconsin River (Wisconsin, USA) under three flow scenarios: historic (1935–2002), simulated natural (1915–1975) and simulated regulated flows (1915–1975). Simulation results agreed well with field‐observed relative differences among years (1997–2000) in seedling densities for the five focal species. Simulated successful recruitment years were highly synchronous among species, but species differed in their sensitivity to flows at different times during the growing season, consistent with among‐species differences in seed dispersal timing. Comparison of simulated natural and regulated flows for 1915–1975 showed that flow regulation decreased monthly flow variability, increased late summer to winter baseflow and reduced the magnitude of spring peaks. Simulated recruitment and over‐winter survival of tree seedlings of all species was enhanced under the regulated flow scenario, likely due to increased summer baseflow and reductions in peak flood magnitude. Our analyses show the utility of extending the Recruitment Box Model to include multiple species of riparian shrubs and trees, and the effects of post‐colonization flows on their recruitment success. However, some key functional relationships between flow patterns and woody seedling demography (e.g. shear stress thresholds for seedling mortality) have not been adequately quantified and merit further study. Copyright © 2006 John Wiley & Sons, Ltd.  相似文献   
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Steve Woolgar 《电信纪事》2002,57(3-4):159-179
The importance of rigorous research into the actual impact of the new Information and Communication Technologies (icts) on society in general cannot be overemphasised. The answer to questions concerning the precise effect ofiCTs on interpersonal relations, communication, social inclusion and exclusion, trust and identity are now central to discussion in both commercial and business fora. This paper examines the concept of the “virtual society“ in the light of the findings of the ESRC (Economic and Social Research Council) Virtual Society? Programme (1997–2002). The paper describes the need to rethink the actual approaches used in researching this area of social science at the same time as performing the analyses themselves. The author also highlights the requirement for future research to examine actual on the ground experiences. How are new technologies actually used and by whom? In addition, the author utilises his overview of this large body of research to put forward a useful guide for predicting the use of ICTs in practice. These “5 rules of virtuality” serve as pointers to the experiences that may be encountered in the development and implementation of new technologies.  相似文献   
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采用WiMedia UWB标准的越来越多 WiMedia通用无线电平台是实现传输速率高达480Mb/s(更高的传输速率正在开发中)无线个人局域网(WPAN)的基础。这个平台并不局限于某一类应用,而是允许同时存在不同的协议适配层,如图1所示。WiMedia规范既规定了一些如无线USB之间相互通信的应用,也规定其他不相互通信的接口同时存在的应用。  相似文献   
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The draft Long-Term 2 Enhanced Surface Water Treatment Rule (LT2ESWTR) contains Cryptosporidium log-inactivation CT tables (ozone-in-water concentration [residual], “C” times contact time, T). Depending on water temperature, Cryptosporidium CT values that are listed are 15 to 25 times greater than CT values for equivalent Giardia log-inactivation credit. The elevated operating dose required for Cryptosporidium log-inactivation credit has the potential to increase disinfection by-product (DBP) formation (e.g., bromate). Calculating CT value accurately will minimize ozone dose, which will decrease operating cost and lower DBP formation, and at the same time maintain disinfection protection through implementation of scientifically based safety factors. Various methods are available for calculating CT value. The method chosen depends largely on the available information concerning ozone residual characteristics and hydrodynamic features of the ozone contactor, plus local regulatory requirements. Four methods are discussed in this paper. Each method can be used to calculate Giardia, virus, and Cryptosporidium log-inactivation credit.  相似文献   
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