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61.
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St. 《Journal of pest science》1930,6(8):96
Ohne Zusammenfassung 相似文献
65.
St 《Journal of pest science》1929,5(4):52-52
Ohne Zusammenfassung 相似文献
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G. Stöhr v. Holleben 《European Journal of Forest Research》1973,92(1):297-311
Ohne Zusammenfassung
Diese Untersuchungen wurden von der Arbeitsgemeinschaft Deutscher Waldbesitzerverb?nde in dankenswerter Weise finanziell gef?rdert. 相似文献
69.
Jürg Andreas Stückelberger Hans Rudolf Heinimann Edouard Charles Burlet 《European Journal of Forest Research》2006,125(4):377-390
Cost estimation is probably the most decisive factor in the process of computer-aided, preliminary planning for low-volume road networks. However, the cost of construction is normally assumed to be route-independent for a specific project area, resulting in sub-optimal layouts. This is especially true for mountainous terrain and in areas with unstable subsoil. Here, we present a model for more accurately estimating spatial variability in road life-cycle costs, based on terrain surface properties as well as geological properties of the subsoil. This parametric model incorporates four structural components: embankment, retaining structures, pavement, and drainage and stream-crossing structures. It is linked to a geo-database that allows users to derive location-specific parameter values as input. In applying this model, we have demonstrated that variability in costs ranges widely for mountainous areas, with the most expensive construction being approximately five times greater there than on more favorable sites. This variability strongly affects the optimal layout of a road network. First, when location-specific slope gradients are considered, costs are reduced by about 17% from those calculated via currently available engineering practices; when both slope gradient and geotechnical formations are included, those costs are decreased by about 20%. Second, the length of the road network is increased by about 4% and 10% respectively, compared with current practices. 相似文献
70.
A NMR study of water distribution in hardwoods at several equilibrium moisture contents 总被引:1,自引:0,他引:1
The water state of one tropical (Robinia coccinea) and two temperate (Acer saccharum and Fagus grandifolia) hardwoods was determined at different equilibrium moisture contents (EMC) during desorption at 25°C. NMR technique was used
to separate different components of water in wood. The species studied presented different structures, which were apparent
on the spin–spin relaxation T2 values. Three different water components were separated: slow T2 (liquid water in vessel elements), medium T2 (liquid water in fiber and parenchyma elements) and fast T2 (bound or cell wall water). The NMR results showed that even at equilibrated conditions a region exists where loss of liquid
water and bound water takes place simultaneously. This region will vary according to the wood structure. Finally, liquid water
was present at EMC lower than the fiber saturation point, which contradicts the concept of this point when considered as a
bulk property of wood. 相似文献