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1.
为解决煤化工业中节流阀突扩口高速气固两相流对管壁材质的冲蚀磨损问题,利用基于激波管原理驱动的气固两相流冲蚀实验装置,试验研究冲击角度、温度对煤化工管材(10#、AISI304)的冲蚀磨损规律。研究结果表明:10#、AISI304管材的冲蚀率将随着冲击角度的增加而先增大后减小;室温下,10#、AISI 304钢的最大冲蚀率均出现在15°~30°区间;随着温度的升高,10#的最大冲蚀率出现在30°~45°区间,AISI304最大冲蚀率出现在30°。10#在30°,45°冲击角度下冲蚀磨损率会随温度上升显著上升,在15°冲击角度下冲蚀磨损率反而会随温度上升而下降。AISI 304在15°,30°,45°冲击角度下,冲蚀磨损率均会随温度上升而上升;在特定条件下,10#管材的冲蚀性能将优于AISI304。  相似文献   

2.
为研究温度对板式橡胶支座连续梁桥抗震性能的影响,以1座两联3×30 m的预应力混凝土连续箱梁为对象,考虑极端温度对桥墩本构关系和橡胶支座力学特性的影响,运用MIDAS/Civil有限元软件对桥梁地震响应进行研究。通过对地震作用时不同温度工况下桥墩墩底弯矩、墩顶位移和支座位移的地震响应分析,得到极端温度对板式橡胶支座连续梁桥地震响应的影响规律。研究结果表明:与常温工况相比,极端温度引起支座刚度、桥墩混凝土材料参数的改变,使地震作用下极端低温工况桥墩内力和位移响应最大增大35.65%和24.78%,极端高温状态支座位移最大增大15.31%;温度变化对橡胶支座力学参数的影响会导致桥墩和上部结构连接刚度发生改变,导致桥墩和支座地震响应变化显著,使桥墩内力和位移响应均与温度呈负相关,支座位移与温度呈正相关;根据现行规范计算的极端低温时桥墩墩底弯矩偏小,极端高温时桥墩弯矩偏大,设计中应予重视;极端低温导致支座和桥墩刚度增大,会使交接墩地震响应较其他桥墩更显著,在设计中应着重关注。  相似文献   

3.
为了研制以硅酸盐/铝酸盐水泥、生石灰、生石膏为主的PC-CAS基封孔材料,采用正交试验优化材料配比、开展膨胀力研究,并用扫描电镜观测料-煤胶结形貌。研究结果表明:材料的最优配比为A2B2C4,其具备优良的流动性、强度及致密性,造浆量达2 100 mL/kg;PC-CAS基材料具有显著的膨胀性,其膨胀力随时间先增大而后趋于稳定,并且该膨胀力随着径向约束的提高而增大;相比于FP材料,PC-CAS基材料产生的膨胀力能够显著降低材料-煤岩界面的空隙并在一定程度上压密煤体内部的裂隙;该材料产生的膨胀力可压密封孔段围岩、提高封孔质量,并为后期“二次注浆”提供保压条件。工业试验结果表明,采用PC-CAS基材料进行封孔可显著改善抽采效果,将原有平均浓度10.11%提升至20.08%。  相似文献   

4.
为降低瓦斯抽采漏气,开发了1种具备后期膨胀的二次膨胀材料(DE),以水泥基材料为对比样,利用自制的膨胀力测试装置,以XRD和SEM分别表征其膨胀力及微观结构。研究结果表明:相比水泥基材料,DE材料的膨胀力明显,并表现出显著的时间效应,且DE材料的膨胀力随约束刚度增大而增大;水化1 d时, DE材料较水泥基材料生成更多的钙矾石(AFt)晶体;随着DE材料水化,AFt晶体不断增多,且水化7 d后AFt晶体发生延迟膨胀,这是引起DE材料后期膨胀的主要因素;工程应用表明DE材料可提高瓦斯抽采浓度及纯量,有效改善抽采效果。  相似文献   

5.
孙焕  李元洲 《火灾科学》2015,24(3):129-135
基于竖井的烟囱效应原理,利用小尺寸实验台开展了一系列实验,通过改变油盘的尺寸,对竖井内的烟气温度、压力、速度以及通风口处的压力、气流速度进行测量,研究了火源功率对房间利用竖井进行负压控烟效果的影响。实验结果表明:一方面随着火源功率的增大,室内温度升高,热烟气形成的热压增大,使烟气向外膨胀;另一方面,竖井底部的烟气温度升高,竖井底部的负压值增大,烟囱效应增强,排烟速度增大,新鲜空气补入的速度增大,逐渐抑制住烟气从通风口向外溢出,达到了负压控烟的效果。  相似文献   

6.
吴振坤  颜东升  尤飞 《火灾科学》2007,16(3):180-184
利用热解分析、热电偶束和ISO9705房屋/墙角等实验装置测试了彩钢板中聚苯乙烯泡沫(EPS)芯材的热解特性和水平方向的温度分布及整体板材的燃烧特性,结合某乳液公司冷库火灾事故原因调查,分析评价了EPS泡沫夹芯板的潜在和实际火灾危险性,证实了EPS芯材内部的燃烧和热传播为火灾蔓延的主要原因.  相似文献   

7.
为研究夹石对矿体力学变形特性的影响,选用全精炼的工业石蜡作为夹石模拟材料,并与水泥和矿粉进行配比制样。通过表壁裂纹扩展、微观成像、表壁应变值变化、整体加载压缩变形、磁感应强度变化、红外温度测量共同表征夹石试样在加载过程中的力学变形特征,厘清夹石矿岩的破坏特点。同时提出了一种数值模拟夹石的方法,进行不同夹石含量矿岩的安全系数、最大主应力及不同监测点处应变值的变化监测。试验结果表明:存在夹石的试样在加载过程中表壁出现较多裂纹条数,且以短裂纹为主,分布区域较广;表壁纵向应变变化较平稳,而横向应变存在阶梯型变化;红外温度测量并无恒定的变化幅度,存在升降的起伏变化;磁感应强度值变化存在上升下降型、下降平稳型、下降上升型的变化特点。数值模拟结果表明:夹石的存在弱化了矿岩的整体强度,这与相似模拟结果具有一致性。同时不同的夹石强度对矿岩的整体稳定性影响不一样。当试样的整体稳定性与夹石的物理性质有关,夹石强度是矿石强度50%左右时,彼此接触严丝合缝,夹石存在及含量的多少产生的影响不大;如果夹石强度只是矿石强度的2%时,相应的测点起伏变化较大;如果试样完整性不好,存在较多微观空区,空区附近的相应测点的应变值变化起伏较大。  相似文献   

8.
为研究取芯管取芯过程中压力与温度对损失瓦斯量的影响,以及t法的偏差,利用自主研发的取芯管取芯过程模拟测试装置,基于模拟试验的相似性,开展不同加热功率下取芯过程模拟试验与室温(30 ℃)对比,以及变温条件下不同吸附压力取芯过程模拟试验。结果表明:前30 min煤芯瓦斯解吸曲线符合Qt=a+b/[1+(t/t0)c]。吸附压力一定时,取芯过程模拟测试的煤芯瓦斯解吸率均大于室温下的对比测试,3~16 min(退钻过程)温度对损失量的影响大于0~3 min(取芯过程);随着加热功率的增加,煤芯瓦斯解吸量增大,煤芯损失瓦斯量的模拟值亦增大;t法推算值与模拟值的绝对误差随加热功率的增大而增大,相对误差在65.08%~70.79%;加热功率一定时,随着吸附压力的增加,煤芯瓦斯解吸量愈大,煤芯损失瓦斯量t法推算值增大,模拟值亦增大;t法推算值与模拟值的绝对误差随吸附压力的增大而增大,相对误差在68.21%~72.13%。  相似文献   

9.
为研究氟橡胶O形圈在集输油环境中的老化行为特征,以长庆油田使用的氟橡胶O形圈(位于非金属复合管连接接头处)为研究对象,采用宏观与微观相结合的方法,通过挂片实验分析氟橡胶O形圈在不同介质(采出油,采出水)、温度(25,50 ℃)、压力条件(0.1,4,6 MPa)下老化后的形貌、质量、拉伸性能及硬度。结果表明:采出油、采出水均能引起O形圈发生溶胀,从而降低O形圈的强度、韧性、硬度;采出水引起的溶胀显著高于采出油更易导致O形圈表面产生坑洞缺陷;渗透速率随温度升高而急剧增加,压力对渗透速率的影响不明显;硬度降低较小,最大降幅为4.17%。结合现场服役813 d的密封圈SEM形貌,证实集输介质渗透会引起氟橡胶圈溶胀、导致表面产生坑洞等缺陷。  相似文献   

10.
Sound field parameters are predicted with numerical methods in sound control systems, in acoustic designs of building and in sound field simulations. Those methods define the acoustic properties of surfaces, such as sound absorption coefficients or acoustic impedance, to determine boundary conditions. Several in situ measurement techniques were developed; one of them uses 2 microphones to measure direct and reflected sound over a planar test surface. Another approach is used in the inverse boundary elements method, in which estimating acoustic impedance of a surface is expressed as an inverse boundary problem. The boundary values can be found from multipoint sound pressure measurements in the interior of a room. This method can be applied to arbitrarily-shaped surfaces. This investigation is part of a research programme on using inverse methods in industrial room acoustics.  相似文献   

11.
为了深入探究矿井下伴生硫化物对煤自燃及着火燃烧特性的影响,向原煤中添加不同量的含硫物配制4种不同含硫量的煤样,通过TG实验、DSC测试和XRD分析,研究伴生硫化物对煤自燃及着火燃烧特性的影响规律;基于Coats-Redfern法计算煤中掺加不同伴生硫化物时煤燃烧阶段的活化能。研究结果表明:随着煤中掺比伴生硫化物的增多,煤的特征温度相应减小,而吸氧量、可燃和稳燃指数相应增大,原煤中混入伴生硫化物后更易自燃;随着煤中掺比伴生硫化物的增多,煤燃烧阶段的活化能降低,煤更易着火燃烧;伴生硫化物的主要成分为水绿矾、叶绿矾,这些物质在常温下遇水和氧气能够发生化学循环反应,反应放热促使了煤更易自燃;伴生硫化物在温度高于200℃以后整体表现为放热,在温度为565℃时达到放热峰值,这使得煤燃烧阶段的活化能降低,煤更易燃烧。  相似文献   

12.
基于现有的埋地管道缺陷自漏磁场计算方法把缺陷处的磁荷假设为均匀分布,对于计算结果与实际检测存在较大误差的问题,通过采用ANSYS软件对管道缺陷进行有限元分析,根据材料力磁关系和磁荷理论,提出1种考虑磁荷实际分布的缺陷自漏磁场计算方法,并将该计算方法应用在某埋地管道磁记忆检测中。研究结果表明:该方法计算结果与实际值之间的峰值相对误差为6.9%,相对于现有方法16.4%的相对误差,准确度更高。研究结果有助于在管道磁记忆检测中,提高管道缺陷量化的准确性,对埋地管道缺陷非开挖识别与剩余寿命评价有重要意义。  相似文献   

13.
通过试验测量燃烧区温度的变化过程,研究了超细微粒灭火剂在单室火灾模型下与4种不同类型火焰的相互作用、灭火时间和效果。结果表明,超细微粒灭火剂具有较好的全淹没灭火能力。当1 000g超细微粒灭火剂施放后,位于微粒灭火剂流动路径上的无遮挡火焰(中央火和角落火)能够被迅速扑灭,灭火时间分别为3.9 s和7.2 s;对于火源功率较小的顶棚火,由于火羽流及热泳力的作用,微粒灭火剂能迅速扩散到顶棚,从而能在短时间内将其扑灭,灭火时间约6.3 s;对于遮挡火,其灭火时间较长,约14.3 s。微粒灭火剂浓度对灭火时间有较大影响。当微粒灭火剂的喷射质量为500 g时,虽然中央火、角落火和遮挡火均能被扑灭,但灭火时间都较喷射1 000 g灭火剂时有较长的延长,灭火时间分别为8.1 s,13.9 s和22.2 s。对于需要灭火剂微粒扩散较远距离后灭火的顶棚火,虽然灭火剂在热羽流和热泳力作用下能扩散到顶棚,但因浓度太低,同时由于其他3处火焰熄灭后,灭火室内的氧气消耗速率降低,从而使顶棚火得到足够的氧气,燃烧反应进一步加强,温度反而逐渐升高,不足以将其熄灭。  相似文献   

14.
针对我国低渗透性煤层增透困难的现状,研发了可控超临界二氧化碳气爆发生装 置,对不同强度的模拟煤体进行了不同温压条件下的超临界CO2气爆实验,结合孔内窥 镜观测和外观测量手段,对爆后宏观裂隙数目和长度等爆破响应信息进行统计分析。结 果表明:气爆裂纹起裂所需的最小爆破压力与介质的抗拉强度呈指数式增长的关系,主 要是固体材料在动力载荷作用下强度增大引起的;超临界二氧化碳气爆后产生宏观裂隙 的数目和累计长度与爆破压力满足Logistic函数关系,是裂隙面积超线性增加所消耗能 量也超线性增加的结果;超临界CO2对温压条件敏感,爆破有降温作用,是良好的物理 爆破原料,使用超临界二氧化碳作为爆破原料的爆破效果优于空气爆破效果。  相似文献   

15.
This paper contains tension and stress-rupture test data on sample railroad tank-car steels at room temperature and temperatures between 500 and 720 °C. The paper describes the test facility, applicable standards, and procedures that were followed during the tests of tension and stress rupture. The paper also contains a simple correlation for the data and gives examples of how it can be used to predict tank failure times when exposed to fire heating.The stress-rupture testing was conducted at constant load (tensile force) conditions. A sample was heated to a specified temperature and the load was applied. The time to failure was then recorded. This testing was needed due to a general lack of available data for the high-temperature stress rupture of tank-car steels. These data are needed for the purposes of predicting tank failure when tank-cars are exposed to heating by fire. The steel samples were obtained from a recent train derailment in Ontario, Canada, and the steel samples included both new and older steels. Samples were cut in both the hoop and longitudinal directions to see if the stress-rupture properties were isotropic.Excellent data were obtained with very little data scatter in each sample. The results show that stress-rupture properties vary from sample to sample. Some older steels were as good as new steels, and some were not. However, all samples were nearly isotropic when it came to high-temperature stress rupture.  相似文献   

16.
以工业废弃物粉煤灰和当地粘土为主要原料,十二烷基苯磺酸钠为发泡剂,采用发泡注浆法制备轻质莫来石耐火材料,研究了烧结温度对耐火材料晶相的影响以及发泡剂的种类、添加量和浆料固含量对轻质耐火材料常温物理性能的影响。结果表明,适当的烧结温度可改善耐火材料的晶相,同时对制品的孔隙率也有一定影响。选择适宜的发泡剂及添加量,在一定的浆料固含量范围内,可以制备容重小,孔隙率高,导热系数小,机械强度适中的轻质耐火材料。  相似文献   

17.
Objectives: The ultimate goal of this research is to reduce thoracic injuries due to traffic crashes, especially in the elderly. The specific objective is to develop and validate a full-body finite element model under 2 distinct settings that account for factors relevant for thoracic fragility of elderly: one setting representative of an average size male and one representative of an average size Japanese elderly male.

Methods: A new thorax finite element model was developed from medical images of a 71-year-old average Japanese male elderly size (161cm, 60 kg) postmortem human subject (PMHS). The model was validated at component and assembled levels against original series of published test data obtained from the same elderly specimen. The model was completed with extremities and head of a model previously developed. The rib cage and the thoracic flesh materials were assigned age-dependent properties and the model geometry was scaled up to simulate a 50th percentile male. Thereafter, the model was validated against existing biomechanical data for younger and elderly subjects, including hub-to-thorax impacts and frontal impact sled PMHS test data. Finally, a parametric study was conducted with the new models to understand the effect of size and aging factors on thoracic response and risk of rib fractures.

Results: The model behaved in agreement with tabletop test experiments in intact, denuded, and eviscerated tissue conditions. In frontal impact sled conditions, the model showed good 3-dimensional head and spine kinematics, as well as rib cage multipoint deflections. When properties representative of an aging person were simulated, both the rib cage deformation and the predicted number of rib fractures increased. The effects of age factors such as rib cortical thickness, mechanical properties, and failure thresholds on the model responses were consistent with the literature. Aged and thereby softened flesh reduced load transfer between ribs; the coupling of the rib cage was reduced. Aged costal cartilage increased the severity of the diagonal belt loading sustained by the lower loaded rib cage.

Conclusions: When age-specific parameters were implemented in a finite element (FE) model of the thorax, the rib cage kinematics and thorax injury risk increased. When the effect of size was isolated, 2 factors, in addition to rib material properties, were found to be important: flesh and costal cartilage properties. These 2 were identified to affect rib cage deformation mechanisms and may potentially increase the risk of rib fractures.  相似文献   

18.
Sensitivity and severity parameters are critical for risk assessment and safety management of dust explosions. In this paper, to reveal the effects of material thermal characteristics on dust explosions parameters during monobasic alcohols dust explosions, three long chain monobasic alcohols, being solid at room temperature and similar in physical–chemical properties, were chosen to carry out experiments in different functional test apparatus according to the internationally accepted ASTM standards. As a result, it was found that the material thermal characteristics strongly affected these basic explosive parameters. On the one hand, for the sensitivity parameters, Minimum Ignition Temperature, Minimum Ignition Energy and Electrical Resistivity were the highest in the Eicosanol dust cloud, while Minimum Explosible Concentration in this cloud was the lowest. On the other hand, for severity parameters, Maximum Explosion Pressure in Eicosanol dust cloud always maintained the highest values as varying the dust concentrations. In contrast, Deflagration Index showed a complex trend.  相似文献   

19.
用化学共沉淀法制备磁性碳纳米管,然后以聚合氯化铝(PAC)通过微波法修饰得到磁性聚合氯化铝碳纳米管复合材料,并用以去除水中的腐殖酸(HA),对复合材料的组成与结构进行了表征,考察了不同微波制备条件下复合材料去除HA的效果,研究了吸附工艺中HA去除的影响因素,对复合材料同步去除HA和浊度的可行性进行了探讨。能谱、X-射线衍射及红外光谱分析表明,PAC和磁性物质Fe3O4、γ-Fe2O3成功负载于碳纳米管上。PAC修饰显著提高了磁性碳纳米管对HA的去除率。在微波功率600 W及微波时间6 min条件下得到的复合材料去除HA的效果最佳,去除率达99.15%。当HA初始质量浓度小于25 mg/L时,HA去除率较高,但高于25 mg/L后吸附量变化不大而去除率下降;HA去除率随材料投加量增大而增大,但大于0.5 g/L后基本不变;在酸性与中性条件下HA去除率较高,在碱性条件下急剧下降;对于初始质量浓度为20 mg/L的HA溶液,吸附前5 min的HA去除速率很快,90 min时达到吸附平衡,平衡吸附量为39.48 mg/g;温度对去除HA没有影响。控制适当的条件,可同步去除HA和浊度,去除率同步达95%以上。  相似文献   

20.
Objective: The aim of this study was to investigate the possible effects of age-related intracranial changes on the potential outcome of diffuse axonal injuries and acute subdural hematoma under rotational head loading.

Methods: A simulation-based parametric study was conducted using an updated and validated finite element model of a rat head. The validation included a comparison of predicted brain cortex sliding with respect to the skull. Further, model material properties were modified to account for aging; predicted tissue strains were compared with experimental data in which groups of rats in 2 different lifecycle stages, young adult and mature adult, were subjected to rotational trauma. For the parameter study, 2 age-dependent factors—brain volume and region-specific brain material properties—were implemented into the model. The models young adult and old age were subjected to several injurious and subinjurious sagittal plane rotational acceleration levels.

Results: Sequential analysis of the simulated trauma progression indicates that an increase in acute subdural hematoma injury risk indicator occurs at an early stage of the trauma, whereas an increase in diffuse axonal injury risk indicators occurs at a later stage. Tissue stiffening from young adult to mature adult rats produced an increase in strain-based thresholds accompanied by a wider spread of strain distribution toward the rear part of the brain, consistent with rotational trauma experiments with young adult and mature adult rats. Young adult to old age brain tissue softening and brain atrophy resulted in an increase in diffuse axonal injuries and acute subdural hematoma injury risk indicators, respectively.

Conclusions: The findings presented in this study suggest that age-specific injury thresholds should be developed to enable the development of superior restraint systems for the elderly. The findings also motivate other further studies on age-dependency of head trauma.  相似文献   

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