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991.
992.
对地下水水源地进行保护区划分将提高地下水的安全保障程度。岩溶水型水源地由于含水层的非均质、各向异性的特点,难以合理准确的划分水源地保护区。以济南市曹楼水源地为研究对象,在充分收集和分析水源地水文水质、地形地貌等资料的基础上,采用组合法划定水源地保护区,结合地形地质条件对保护区范围进行修正,保护水源地免受污染。利用组合法划分的水源地保护区加强了对上游补给区,尤其是地下水主径流带的保护,划分结果更符合实际。利用该方法能提高对水源地主要补给区的保护,保障地下水的可持续开发利用,为水源地的保护提供科学的依据和参考。 相似文献
993.
994.
塔北隆起的轮西地区具有以裂缝、溶蚀裂缝和溶洞为主的下奥陶统潜山储集体,且继承型古隆起一直成为油气运移和聚集的指向区,因此具有较为优选的成藏地质条件。海西晚期是轮西地区稠油藏的主要成藏期,海西末期石炭-二叠系地层遭受强烈剥蚀使海西晚期聚集的奥陶系潜山原油降解,成为重质稠油油藏,并不受印支晚期至喜马拉雅期运动的影响。印支晚期之后Ⅰ级断裂活动停滞,使轮西地区奥陶系潜山以稠油为主的油藏基本上未受晚期油气充注的影响。对轮西奥陶系潜山油藏研究得到的重要启示是:应加强塔里木盆地克拉通地区早期成藏勘探潜力的认识。 相似文献
995.
Study of vibrating foundations considering soil-pile-structure interaction for practical applications 总被引:1,自引:0,他引:1
Yingcai Han 《地震工程与工程振动(英文版)》2008,7(3):321-327
An investigation of soil-pile-structure interaction is carried out, based on a large reciprocating compressor installed on an elevated concrete foundation (table top structure). A practical method is described for the dynamic analysis, and compared with a 3D finite element (FE) model. Two commercial software packages are used for dynamic analysis considering the soilpile-structure interaction (SPSI). Stiffness and damping of the pile foundation are generated from a computer program, and then input into the FE model. To examine the SPSI thoroughly, three cases for the soil, piles and superstructure are considered and compared. In the first case, the interaction is fully taken into account, that is, both the superstructure and soil-pile system are flexible. In the second case, the superstructure is flexible but fixed to a rigid base, with no deformation in the base (no SSI). In the third case, the dynamic soil-pile interaction is taken into account, but the table top structure is assumed to be rigid. From the comparison beteen the results of these three cases some conclusions are made, which could be helpful for engineering practice. 相似文献
996.
997.
Development of a GPGPU-parallelized hybrid finite-discrete element method for modeling rock fracture
Daisuke Fukuda Mojtaba Mohammadnejad Hongyuan Liu Sevda Dehkhoda Andrew Chan Sang-Ho Cho Gyeong-Jo Min Haoyu Han Jun-ichi Kodama Yoshiaki Fujii 《国际地质力学数值与分析法杂志》2019,43(10):1797-1824
The hybrid finite-discrete element method (FDEM) is widely used for engineering applications, which, however, is computationally expensive and needs further development, especially when rock fracture process is modeled. This study aims to further develop a sequential hybrid FDEM code formerly proposed by the authors and parallelize it using compute unified device architecture (CUDA) C/C++ on the basis of a general-purpose graphics processing unit (GPGPU) for rock engineering applications. Because the contact detection algorithm in the sequential code is not suitable for GPGPU parallelization, a different contact detection algorithm is implemented in the GPGPU-parallelized hybrid FDEM. Moreover, a number of new features are implemented in the hybrid FDEM code, including the local damping technique for efficient geostatic stress analysis, contact damping, contact friction, and the absorbing boundary. Then, a number of simulations with both quasi-static and dynamic loading conditions are conducted using the GPGPU-parallelized hybrid FDEM, and the obtained results are compared both quantitatively and qualitatively with those from either theoretical analysis or the literature to calibrate the implementations. Finally, the speed-up performance of the hybrid FDEM is discussed in terms of its performance on various GPGPU accelerators and a comparison with the sequential code, which reveals that the GPGPU-parallelized hybrid FDEM can run more than 128 times faster than the sequential code if it is run on appropriate GPGPU accelerators, such as the Quadro GP100. It is concluded that the GPGPU-parallelized hybrid FDEM developed in this study is a valuable and powerful numerical tool for rock engineering applications. 相似文献
998.
999.
文章根据我区铁矿原料供给紧张的情况及梧州地区铁矿资源赋存的特点,从开发利用现状分析存在问题,提出搞好资源开发与管理的几点建议 相似文献
1000.
The bright Ca ii H2v
and K2v
grains, which are intermittently present in the interiors of network cells in quiet-Sun areas, should provide important diagnostics of the dynamical interaction between the quiet photosphere and the chromosphere above it, but their nature has so far eluded identification. We review the extensive observational literature on these grains and on related phenomena. We resolve various contradictions, connect hitherto unconnected observations, distill new constraints and relate signatures in the measurement domain to signatures in the Fourier domain. We then review interpretations and simulation efforts, adding computations of our own to illustrate modeling options. We conclude that the grains are a hydrodynamical phenomenon in which magnetic fields do not play a major role. The grains are due to interference between a pervasive standing oscillation with about a 180 s periodicity and an 8 Mm horizontal wavelength in the chromosphere and the wave trains of the evanescent p-mode interference pattern in the upper photosphere. The roles of short-period waves, shock formation and granular piston excitation and the issue of long-lived patterning remain open; we suggest avenues for further research. 相似文献