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71.
为研究输气管线在敷设过程中对生态环境的影响,通过定量的预测八屋至长春的输气管线在施工期对管线所经过区域的土壤环境、农业生产、动植物生态环境产生的影响,对输气管线敷设可能引起生态环境的改变进行了分析。结果表明:输气管线在敷设过程中虽然对区域土壤环境有所影响,从而对当地的农业生产造成一定影响,但这些影响主要集中在施工期,且施工期的影响是暂时的,可恢复的,对管线所经过区域的生态环境影响不明显,生态系统仍具有相对的稳定性。  相似文献   
72.
在进行城市集中供热的直埋式供热管线施工中,必须有效解决其对地下水的污染,对地表环境和市容市貌、声环境的影响问题。  相似文献   
73.
在简要介绍管道防腐过程中粉尘的产生及其危害的基础上,采用LEC评价法和马尔柯夫链预测法对粉尘危害进行了安全评价,并提出了具体的防治措施,以保护操作人员的身体健康,确保生产的正常运行。  相似文献   
74.
简述了长输管道泄漏检测技术的进展情况,介绍了4种泄漏检测技术原理,并对比分析了各种技术的特点和应用范围,为管道的安全运行管理和维护决策提供了技术参考。  相似文献   
75.
西部管道工程HSE一体化绩效管理应用研究   总被引:1,自引:0,他引:1  
分析了我国管道工程项目HSE绩效管理存在问题,运用绩效管理理论,结合“PMT(业主)+PMC(监理)+EPC(施工总承包方)”一体化模式及西部管道工程,阐述了HSE一体化绩效管理体系的建立及应用情况。  相似文献   
76.
To solve the problems of the difficulty in early leakage monitoring and larger positioning error for urban hazardous chemicals pipelines, the optimized method based on the improved Inverse Transient Analysis (ITA) and Ant Lion Optimizer (ALO) was proposed. Firstly, based on the obtained experiment's results of leakage of natural gas in the non-metallic pipeline, the segment classification method was incorporated into the pressure gradient calculation. The modified method can adapt to the multi-node characteristics of urban pipe networks and help to obtain the preliminary positioning calculation results after optimization. Then the calculation results were embedded in the ITA calculation model. The input parameters of the gas pipeline such as boundary conditions, leakage rate and friction coefficient were used to establish the characteristic linear equations. Then the objective function of the least-squares criterion was defined, and the improved ITA model suitable for leakage detection of urban natural gas pipeline networks was constructed. Finally, the ALO was used to optimize the calculation process of the improved ITA model, and iteratively optimize the optimal friction coefficient and its corresponding minimum objective function (OF) value. As a result, a more precise location of the leakage source was calculated. The validation of the modified method is conducted by comparing the calculated values with the experiment's results. The results show that the method can accurately predict the location where the pipeline leakage occurs. The minimum error is 3.17%. Compared with the traditional ITA, this method not only accelerates the convergence speed of the objective function, but also improves the accuracy of location calculation.  相似文献   
77.
It is urgent to explore effective suppression methods for gas fires and explosions to ensure the safe utilizations of combustible gases in industrial processes. In this work, experiments are performed to study the effect of spherical ceramic pellets on premixed methane-air flame propagation in a closed duct. High-speed schlieren photography and pressure transducers are used to record the flame propagation and pressure transient, respectively. Behaviors of the flame propagating through a section of the duct filled with ceramic pellets in mixtures at different equivalence ratios are scrutinized. Three different diameters of pellets are considered in the experiments. The result shows that the flame can be quenched in the case with a smaller pellet diameter (3 mm) for a wide range of equivalence ratios from fuel-lean to fuel-rich mixture. For larger pellet diameter (5 or 10 mm), flame extinction occurs in fuel-rich mixtures (e.g. Φ = 1.1, 1.2). For the cases of flame surviving through the pellets bed, the pellets show a significant influence on the flame structure and behavior. The flame propagation depends on the porosity and the mean void diameter of the porous media in the pellets bed. Small void diameter is beneficial to flame quenching, while large porosity can accelerate the flame propagation. The pressure dynamics evolution is closely related to the interaction of flame with the pellets, and it depends on whether the flame quenches in the pellets bed. Overall, d = 3 mm ceramic pellets display the best suppression effect on flame propagation and pressure buildup in this study. The results of this study are of great significance to guide the safety design of spherical suppression materials in engineering applications for process safety researchers and engineers.  相似文献   
78.
为了准确地检测城市燃气管道泄漏,提出了一种基于广义概念的管道泄漏检测定位方法。声发射技术对于管道泄漏的检测、定位是一个极好的工具,但由于泄漏源的传播容易受到周围背景噪声以及复杂工况的影响,其定位误差较大。基于时延估计的互相关信号处理方法被广泛用于管道泄漏检测定位,但由于泄漏应力波传播通道的动态特性,使得源信号在传播过程中会产生波形变化,给互相关函数峰值位置的确定带来困难。由此引入广义相关分析方法,通过对信号进行前置滤波,在一定程度上减少了传播通道动态特性因素对泄漏点定位的不利影响,得到了更为准确的时延估值。在此基础上,通过模拟实验,编写Matlab神经网络代码,构造GRNN模型,进一步预测定位。结果表明,GRNN预测的声发射检测值、互相关定位值以及广义相关定位值,相比之前定位精度分别得到提高,其中基于广义相关的延时估计方法定位最为精确,将该方法用于工程实际中,可以更加精确地定位出泄漏点。  相似文献   
79.
The development of carbon capture and storage (CCS) brings challenges for safety issues regarding carbon dioxide (CO2) transmission pipelines. Once a pipeline is punctured or full-bore ruptured, the leaked CO2 is hazardous to personnel and the environment. Small-scale devices were established with the aim of studying the release and dispersion behaviour of gas and liquid CO2 from a punctured underground pipeline. A sandbox was built to simulate the underground conditions. The parameters of the sand used in the experiments were tested. CO2 concentrations on the ground and temperatures around the release orifice in the sand were analysed. The results indicate that in the CO2 gas release experiments, the CO2 concentration on the sand surface decreases with increasing horizontal distance in the form of a power function. CO2 concentrations in upward release are slightly larger than those in horizontal release at the same location but are obviously bigger than values in downward release. The temperature-drop region is much smaller than that in air. A frozen ice ball can be generated near the release orifice during the gas phase of the CO2-release process. In the liquid phase of CO2-release experiments, a large amount of dry ice is generated near the release orifice. Dry ice can only be generated in the area close to the release orifice, especially in the near-field area.  相似文献   
80.
清洁生产在油气长输管道施工领域涉及较少,观念和方法还未完全推广。油气长输管道施工企业与传统生产型企业有许多不同之处,以某企业清洁生产审核为例,就如何通过清洁生产审核挖掘清洁生产潜力来做探索性、建议性的研究。实践证明,该企业清洁生产机会的突破口为柴油消耗,通过柴油消耗平衡图的建立和重点耗油设备运行状况的调查,找到了降低柴油消耗的清洁生产方案,使企业达到了“节能、降耗、减污、增效”的目的。  相似文献   
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