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331.
张颖华 《灾害学》2002,17(1):70-75
旱灾是清代前期湖南的主要自然灾害之一。它严重破坏了农业生产的季节性,并直接或间接的引发了社会性的饥荒。而在当时湖南的各种抗旱方式中,合理性与消极性并存。就这些抗旱方式的整体而言,其技术含量在传统农业社会中已达到了相对的饱和程度。  相似文献   
332.
对塑性松软煤体进行水力挠动较难取得理想的瓦斯增浓提效效果,为克服该措施的局限性,使松软煤层有效卸压增透,可将挠动对象转移至煤层顶板砂岩.基于对顶板砂岩水力挠动裂隙发育、延展及煤层卸压增透机理分析,在试验矿井的松软煤层及顶板砂岩中分别施工钻孔进行水力挠动试验,同时采用多级指标对措施后的瓦斯抽采效果进行考察.结果表明:水力...  相似文献   
333.
In the deep high stress coal and rock mass, the efficiency of the ordinary blasting method is constantly affected by the high pressure. This study investigates the shaped blasting technology with increased blasting efficiency, develops a mechanical model for coal crack expansion during shaped blasting, and examines the force-energy action of energy-gathering jets during coal splitting. The established model was combined with experiments and simulations to reveal the damage and evolution of cracks in coal and rock masses. Experiments demonstrate that shaped blasting can create an energy-gathering jet that causes a directional fracture in the test block. The peak of compressive strain in the energy-gathering direction is 1.12 times greater than that of ordinary blasting, and the static action period of the explosive gas is prolonged by 1.3 μs according to the stress curve. Moreover, the peak pressure strain increased 3.2 times, and the pull strain peak increased 3.92 times. The damage amount was represented by the resistivity and ultrasonic wave speed, and shaped blasting causes 1.2 and 1.5 times greater damage than ordinary blasting. The research results provide technical methods for safe and rapid penetration blasting in deep high-ground stressed coal mines.  相似文献   
334.
The process of oil and gas processing plant is complex, the types of pressure vessels are rich, and the functions are critical. However, the working medium is mostly untreated medium, and the hazard factors are complex, which poses a threat to the safe production of oil and gas processing plant. Based on PDCA cycle, this paper establishes a six-step links of integrity management for sustainable improvement of pressure vessels. The typical failure modes of pressure vessels are determined, and the fishbone diagram of risk factors under each failure mode is compiled. Risk quantification and classification of pressure vessels based on failure modes (RBFM) is innovatively proposed. Avoiding incalculable failure frequency index, the process quantification of failure possibility is formed according to the development of hazard factors. A failure consequence calculation model based on the leakage affected area was established. Combined with the failure probability level and risk level, the hierarchical inspection strategy for pressure vessels under different failure modes is established. Finally, the method is applied to the natural gas separator of H processing plant. The research results show that RBFM proposed in this paper can meet the requirements for rapid and accurate risk assessment of pressure vessels in oil and gas processing plant. This paper establishes a safe production barrier for the pressure vessel and improves the intrinsic safety of the equipment.  相似文献   
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