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161.
五孔测针标定曲线数学模型的计算机控制   总被引:1,自引:0,他引:1  
由于三维流场测试工作及计算量繁重 ,采用传感技术实现三维流场的自动测试 ,计算机选出最优拟合曲线与实测数据相比较 ,因而达到测试三维流场风流目的。利用回归分析原理 ,将感压元件五孔测针的一系列标定曲线建立了相应的数学模型 ,采用MATLAB语言 ,实现了对标定曲线的拟合 ,用PLOT函数实现了对拟合标定曲线的自动绘制。同时考虑高次多项式 (拟合次数n >10 )易出现振荡的特点 ,故在拟合次数n从 1~ 10可能拟合多项式中 ,选出最优多项式。通过数学模型的应用实现了由计算机控制 ,从而为有效利用传感技术对三维流场的自动化测试提供了可能性。  相似文献   
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163.
Venting is an effective way to prevent harmful dust explosions, but the existing prediction methods are imprecise and are suitable only for applications with low activation pressures. A new method is proposed for predicting pressures based on an analysis of energy losses at high activation pressures and verified by aluminum dust explosion experiments. Compared with the experimental results, the results of the new model are relatively stable under working conditions with different activation pressures and venting areas. Based on the analysis of energy losses, the changes in the energy loss rate, temperature, and venting velocity during venting are found to be asynchronous. The thermal energy loss, which accounts for over 80 percent of the total, is expected to be larger than the kinetic energy loss. The thermal energy loss rate changes rapidly during venting, while the kinetic energy loss rate remains relatively stable. The new model is more accurate than the NFPA68 standard, which fails to consider the thermal energy loss. Neglecting the thermal energy loss may result in an underestimation of the pressure reduction; this error increases with decreasing activation pressure.  相似文献   
164.
The Leung method proposed by the Design Institute of Emergency Relief Systems (DIERS) is widely used in the design of relief systems involving two-phase flow. However, this method is not always suitable for all the situations. The calculating results may be unacceptably large, especially under high overpressure. To aid selection of appropriate vent sizing methods, a typical vapor system experiment (esterification of methanol-acetic and anhydride) was conducted by the vent sizing unit (VSU) of accelerating rate calorimeter (ARC). Seven different stationary methods were used to calculate the venting size under overpressure of 10%, 20%, 50%, 100% and 200%. Through the systematic comparison of different methods, a conservatism order of stationary methods was summarized as well as the selecting principles for these methods were discussed. Process simulation was also applied to investigate the relationship between reactor temperature/pressure and its relief size, which could be used in the prediction of vent size in vapor system conveniently without complex calculating procedure.  相似文献   
165.
In order to figure out the principles of acoustic leak detection for natural gas pipelines, a study on the leak-acoustics generation mechanism is carried out. The aero-acoustics generation mechanism is analyzed and when leakage occurs the wave equations of sonic sources are developed. The leak-acoustics generated by the quadrupole and dipole sonic sources are then simulated to obtain the laws of the acoustic characteristics. The simulation data are compared with the experimental data to verify the simulation accuracy under variable operating conditions. The results show that the quadrupoles and the dipoles generated by turbulent fluctuations cause leak-acoustics; the main component of pressure perturbations acquired by the dynamic pressure sensor is acoustic perturbations; both the simulation method and the experimental method can be applied to study the leak-acoustics generation mechanism of natural gas pipelines.  相似文献   
166.
Based on FLUENT simulation software, the laws of transmission of flame and pressure wave in pipeline gas explosion were studied. It turned out that, the maximum pressure value of the explosion point is not the maximum value of the whole explosion process; the maximum pressure value of the pressure wave lowers firstly near the explosion point, then rises to a peak, and then drops gradually; two waves divide the space in the pipeline into three sections during the gas explosion transmission. The result is basically consistent between numerical simulation and experiment, and the conclusion from the simulation provides theoretical basis for research on explosion-proof and suppression devices for underground gas pipeline, as well as for technical regulations of installation.  相似文献   
167.
结合国际权威法规AsME最新要求,研讨承压设备焊缝超声检测使用相控阵(PA)技术的重要条件和方法要领,突出该技术的工程应用实际和装置选项须知。旨在为国内承压设备推广应用PA技术、制定相应行业标准和刷新、升级UT人员的操作技能,提供有用借鉴。  相似文献   
168.
压力容器的本质安全直接关系石油化工等行业的HSE本质,而HSE核心理念的风险管理又决定着压力容器的本质安全。结合锅炉水预热器腐蚀泄漏的案例,对压力容器的本质安全与HSE的风险管理从设计、制造到使用管理全程进行了分析解读,认为压力容器的本质安全取决于设计、制造直至使用管理全过程风险管理的践行,由此给出了合理化建议。  相似文献   
169.
许用应力的选取是强度计算的前提,TP2高效管由于加工工艺特点造成其许用应力选取与其热处理状态有关,本文通过试验对轧丝后的高效管的拉伸试验和硬度进行测试,讨论翅片加工工艺对强度和硬度的影响,并讨论了同一根TP2管材不同热处理状态的许用应力如何选取,并提出对铜合金材料,笔者认为其许用应力采用强度极限除以安全系数更加合理。  相似文献   
170.
压力容器制造监督检验不仅仅要对技术资料、检验与试验报告进行审查,对结果进行见证(如射线底片、压力试验等),还要对影响容器本质安全的生产制造过程进行有效的检查、监督与控制。本文讨论了压力容器制造过程质量控制及监督检验工作中发现的一些常见问题,结合《压力容器监督检验规则》(TSG R7004-2013)的相关要求,提出了一些解决方法和改进建议。  相似文献   
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