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1.
Numerical Investigation of Boundary-Layer Evolution and Nocturnal Low-Level Jets: Local versus Non-Local PBL Schemes 总被引:3,自引:0,他引:3
Kesu Zhang Huiting Mao Kevin Civerolo Stephen Berman Jia-Yeong Ku S. Trivikrama Rao Bruce Doddridge C. Russell Philbrick Richard Clark 《Environmental Fluid Mechanics》2001,1(2):171-208
Numerical simulations of the evolution of the planetary boundary layer (PBL) and nocturnal low-level jets (LLJ) have been carried out using MM5 (version 3.3) with four-dimensional data assimilation (FDDA) for a high pollution episode in the northeastern United States during July 15–20, 1999. In this paper, we assess the impact of different parameterizations on the PBL evolution with two schemes: the Blackadar PBL, a hybrid local (stable regime) and non-local (convective regime) mixing scheme; and the Gayno–Seaman PBL, a turbulent kinetic energy (TKE)-based eddy diffusion scheme. No FDDA was applied within the PBL to evaluate the ability of the two schemes to reproduce the PBL structure and its temporal variation. The restriction of the application of FDDA to the atmosphere above the PBL or the lowest 8 model levels, whichever is higher, has significantly improved the predicted strength and timing of the LLJ during the night. A systematic analysis of the PBL evolution has been performed for the primary meteorological fields (temperature, specific humidity, horizontal winds) and for the derived parameters such as the PBL height, virtual potential temperature, relative humidity, and cloud cover fraction. There are substantial differences between the PBL structures and evolutions simulated by these two different schemes. The model results were compared with independent observations (that were not used in FDDA) measured by aircraft, RASS and wind profiler, lidar, and tethered balloon platforms during the summer of 1999 as part of the NorthEast Oxidant and Particle Study (NE-OPS). The observations tend to support the non-local mixing mechanism better than the layer-to-layer eddy diffusion in the convective PBL. 相似文献
2.
通过室内培养和田间试验测定了冬季休闲、种麦和淹水处理水稻生长期CH4的产生潜力、氧化潜力及其排放通量,以探讨冬季土地管理对后续稻季CH4产生、氧化和排放的影响。结果表明:休闲与种麦处理间CH4产生潜力无显著差异(P>0.05),但2者均显著低于淹水处理(P<0.05);各处理间CH4氧化潜力无显著差异(P>0.05),土壤中NH4+-N含量可能是较冬季土地管理更为重要的影响CH4氧化潜力的因素;休闲处理CH4平均排放通量显著高于种麦处理(P<0.05),但2者均显著低于淹水处理(P<0.05)。冬季持续淹水稻田CH4产生潜力显著高于冬季排水稻田是其CH4排放量远高于冬季排水稻田的原因。冬季土地管理对稻季CH4排放的影响主要受CH4产生潜力而非CH4氧化潜力的限制。 相似文献
3.
通过室内培养和田间试验测定了冬季休闲、种麦和淹水处理水稻生长期CH4的产生潜力、氧化潜力及其排放通量,以探讨冬季土地管理对后续稻季CH4产生、氧化和排放的影响。结果表明:休闲与种麦处理间CH4产生潜力无显著差异(P〉0.05),但2者均显著低于淹水处理(P〈0.05);各处理间CH4氧化潜力无显著差异(P〉0.05),土壤中NH4^+-N含量可能是较冬季土地管理更为重要的影响CH4氧化潜力的因素;休闲处理CH4平均排放通量显著高于种麦处理(P〈0.05),但2者均显著低于淹水处理(P〈0.05)。冬季持续淹水稻田CH4产生潜力显著高于冬季排水稻田是其CH4排放量远高于冬季排水稻田的原因。冬季土地管理对稻季CH4排放的影响主要受CH4产生潜力而非CH4氧化潜力的限制。 相似文献
4.
Anna Wramneby Benjamin Smith Snke Zaehle Martin T. Sykes 《Ecological modelling》2008,216(3-4):277-290
Dynamic vegetation models are useful tools for analysing terrestrial ecosystem processes and their interactions with climate through variations in carbon and water exchange. Long-term changes in structure and composition (vegetation dynamics) caused by altered competitive strength between plant functional types (PFTs) are attracting increasing attention as controls on ecosystem functioning and potential feedbacks to climate. Imperfect process knowledge and limited observational data restrict the possibility to parameterise these processes adequately and potentially contribute to uncertainty in model results. This study addresses uncertainty among parameters scaling vegetation dynamic processes in a process-based ecosystem model, LPJ-GUESS, designed for regional-scale studies, with the objective to assess the extent to which this uncertainty propagates to additional uncertainty in the tree community structure (in terms of the tree functional types present and their relative abundance) and thus to ecosystem functioning (carbon storage and fluxes). The results clearly indicate that the uncertainties in parameterisation can lead to a shift in competitive balance, most strikingly among deciduous tree PFTs, with dominance of either shade-tolerant or shade-intolerant PFTs being possible, depending on the choice of plausible parameter values. Despite this uncertainty, our results indicate that the resulting effect on ecosystem functioning is low. Since the vegetation dynamics in LPJ-GUESS are representative for the more complex Earth system models now being applied within ecosystem and climate research, we assume that our findings will be of general relevance. We suggest that, in terms of carbon storage and fluxes, the heavier parameterisation requirement of the processes involved does not widen the overall uncertainty in model predictions. 相似文献
5.
Toby Mitchell Lesley A. Alton Craig R. White Craig E. Franklin 《Conservation biology》2012,26(6):1112-1120
Global increases in ultraviolet‐B radiation (UVBR) associated with stratospheric ozone depletion are potentially contributing to the decline of numerous amphibian species around the world. Exposure to UVBR alone reduces survival and induces a range of sublethal effects in embryonic and larval amphibians. When additional environmental stressors are present, UVBR can have compounding negative effects. Thus, examination of the effects of UVBR in the absence of other stressors may substantially underestimate its potential to affect amphibians in natural habitats. We examined the independent and interactive effects of increased UVBR and high conspecific density would have embryonic and larval striped marsh frogs (Limnodynastes peronii). We exposed individuals to a factorial combination of low and high UVBR levels and low, medium, and high densities of striped marsh frog tadpoles. The response variables were time to hatching, hatching success, posthatch survival, burst‐swimming performance of tadpoles (maximum instantaneous swim speed following an escape response), and size and morphology of tadpoles. Consistent with results of previous studies, we found that exposure to UVBR alone increased the time to hatching of embryos and reduced the burst‐swimming performance and size of tadpoles. Similarly, increasing conspecific density increased the time to hatching of embryos and reduced the size of tadpoles, but had no effect on burst‐swimming performance. The negative effect of UVBR on tadpole size was not apparent at high densities of tadpoles. This result suggests that tadpoles living at higher densities may invest relatively less energy in growth and thus have more energy to repair UVBR‐induced damage. Lower densities of conspecifics increased the negative effects of UVBR on developing amphibians. Thus, low‐density populations, which may include declining populations, may be particularly susceptible to the detrimental effects of increased UVBR and thus may be driven toward extinction faster than might be expected on the basis of results from single‐factor studies. Relaciones entre la Densidad Conespecífica y los Efectos de la Radiación Ultravioleta‐B sobre el Tamaño de Renacuajos de Limnodynastes peronei 相似文献