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1.
《防务技术》2022,18(10):1875-1885
This study numerically simulated and investigated the flow field characteristics of a typical dual-pulse solid rocket motor with a soft pulse separation device through thermal insulation ablation under high-temperature dual-pulse erosion. The ablation rate of ethylene -propylene-diene monomer (EPDM) insulator was measured after the experiment. Experimental results were analyzed through scanning electron microscopy and microcomputed tomography. The ablation mechanism of the EPDM insulator under the operation conditions of a dual-pulse solid rocket motor was evaluated by analyzing the results. The results reveal that the internal flow field of the motor with a soft pulse separation device is uniform. The original charred layer existing on the EPDM insulator surface in the first pulse combustor is the decisive factor affecting the final ablation rate of the dual-pulse motor during the second pulse operation, and the ablation characteristic region is easily formed with the exfoliation of the charred layer. The ablation rate difference of the insulator increases with gas velocity.  相似文献   

2.
Some ablation experiments of Ethylene-Propylene-Diene Monomer(EPDM)insulator were carried out in quasi-static low temperature gas environment,gas-phase environment,two-phase environment with Al2O3 grain and high concentration Al2O3 grain gas environments.Their charring ablation rate,thickness,surface morphology and main ingredient of the charring layer were analyzed.The experiment results show that the main influent factors for the charring ablation rate are the gas temperature,grain concentration and state of grain impact;the main influent factors for the charring layer thickness are the gas velocity and environment pressure;and the process of SiO2 migrating in the charring layer occur commonly in different gas environments.They provide a foundation for the ablation mechanism research and modeling of EPDM insulator.  相似文献   

3.
在单凹腔燃烧室中引入侧壁激波,为研究燃烧室内部流动特性,采用纳米粒子平面激光散射技术和粒子图像测速技术对全尺寸玻璃燃烧室模型进行流场观测,获得了冷态流场展向和法向的瞬态灰度图及平均速度场。实验结果表明:在远壁面区域,凹腔内部速度与密度都较低;引入侧壁激波后,近壁面区域凹腔与主流的质量与动量交换增强,速度与密度升高;受到侧壁激波影响,燃烧室底壁边界层不再均匀,凹腔中后部产生大规模低速区,具有明显三维特性。  相似文献   

4.
通过平板凹槽喷气减阻模型试验,研究了航速和气流量等因素对平板气层减阻规律的影响,并利用水下摄像系统对不同凹槽构型内的气层形态进行了观测。试验结果表明:不喷气时凹槽的存在会使平板的阻力增加;喷气可以有效减小平板阻力,存在饱和气流量;饱和气流量随着槽深的增加而减小,饱和气流量下平板的绝对减阻率随航速的增加而降低;设置凹槽构型是保持平板下表面气层稳定性的有效措施,合适的凹槽构型可以明显改善平板底部喷气流场,提高平板喷气减阻效果;在Fr为0.119时,饱和气流量下平板的绝对减阻率可以达到40%以上。  相似文献   

5.
对粉末燃料冲压发动机预燃室内镁粉尘云燃烧过程进行了研究,建立了镁粉尘云的一维层流预混燃烧模型。研究表明,镁粉尘云层流火焰传播很稳定,燃烧过程中火焰结构基本不变,燃烧区很薄,而预热区厚度约是燃烧区的2-3倍。粉尘云中镁颗粒的蒸发和气相镁与氧气的均相反应是产生火焰的直接原因,也是火焰得以传播的关键。预热区气相温度升高主要靠燃烧区气体的导热和扩散过来的气相镁与氧气反应释放热量,而预热区颗粒相温度升高主要靠气相对其对流传热。分析了各参数对粉尘云燃烧的影响,颗粒相对浓度对粉尘云燃烧的影响比较复杂,在浓度较低的情况下,增大颗粒相对浓度有利于粉尘云快速燃烧;而在浓度较高的情况下,增大颗粒相对浓度则不利于粉尘云快速燃烧。随颗粒粒径的增加,火焰传播速度减小,火焰温度升高,预热区厚度增大。火焰传播速度和火焰温度随粉尘云初温增加线性增长,预热区厚度随粉尘云初温增加抛物线增长。数值模拟与文献中试验结果的变化趋势相一致。  相似文献   

6.
采用先驱体转化法制备了三维石英纤维增强氮化物基复合材料(3D SiO2f/Si3N4-BN),用等离子射流烧蚀方法研究了复合材料的烧蚀性能,运用扫描电镜及能谱仪对烧蚀表面微观形貌进行了观察和分析。结果表明氮化物基复合材料在高压高热流等离子体烧蚀下线烧蚀率为0.91mm/s,石英纤维熔融并被吹除带走了大量的热量,熔融层抑制了基体的机械剥蚀。基体由于强度高、升华温度高,延缓了熔融层的吹除,表明氮化物基复合材料是一种良好的耐高温烧蚀透波材料。  相似文献   

7.
通气空泡的非对称介质分布将影响其水动力特性,继而影响空泡稳定控制,目前对其流动特性的认识较为局限.为揭示非对称通气空泡的流动机理,基于循环水洞实验及数值仿真开展了多相流场特性研究.结果 表明:非对称流动导致空泡形成非对称沾湿区,依据流动介质的不同,非对称沾湿区可分为透明气相区、水气混合区及沾湿区.水气混合边界由底端母线...  相似文献   

8.
某火炮多次射击后,其抽气装置出现比较严重的烧蚀与腐蚀现象。基于抽气装置结构原理,建立抽气装置工作过程数值模型,计算抽气装置压力和温度等工作环境参数,进而分析抽气装置烧蚀腐蚀机理,为抽气装置的正确使用及防蚀和抗蚀研究提供理论依据。  相似文献   

9.
悬浮固相颗粒对储集层基质孔隙的堵塞规律研究   总被引:1,自引:0,他引:1  
应用胜利油区8个不同区块的岩心及注入水,采用岩心流动实验手段,研究了注入水中悬浮颗粒对储层孔隙的堵塞特征,发现悬浮颗粒对储层的堵塞特征表现为孔隙逐步堵塞和迅速堵塞两种类型;悬浮颗粒浓度低且孔径与粒径的比值较大时易形成孔隙避步堵塞;悬浮颗粒浓度大或孔径与粒径的比值较小时易形成迅速堵塞;悬浮颗粒对储层的堵塞程度、堵塞类型是颗粒浓度、颗粒粒径与储层孔喉匹配综合作用的结果;迅速堵塞特征的初始堵塞效果主要取决于孔径与粒径的匹配关系,最终堵塞效果主要与注入水中的颗粒浓度有关;高浓度的小颗粒对孔隙基质的堵塞特征表现为迅速堵塞。  相似文献   

10.
The mechanical, thermal and ablation properties of carbon phenolic (C-Ph) composites (Type-I) rein-forced with different weight percentages of organo-modified montmorillonite (o-MMT) nanoclay have been studied experimentally. Ball milling was used to disperse different weight (wt) percentages (0, 1,2,4,6 wt.%) of nanoclay into phenolic resin. Viscosity changes to resin due to nanoclay was studied. On the other hand, nanoclay added phenolic matrix composites (Type-II) were prepared to study the dispersion of nanoclay in phenolic matrix by small angle X-ray scattering and thermal stability changes to the matrix by thermogravimetric analyser (TGA). This data was used to understand the mechanical, thermal and ablation properties of Type-I composites. Inter laminar shear strength (ILSS), flexural strength and flexural modulus of Type I composites increased by about 29%, 12%and 7%respectively at 2 wt.% addition of nanoclay beyond which these properties decreased. This was attributed to reduced fiber volume fraction (%Vf) of Type-I composites due to nanoclay addition at such high loadings. Mass ablation rate of Type-I composites was evaluated using oxy acetylene torch test at low heat flux (125 W/cm2) and high heat flux levels (500 W/cm2). Mass ablation rates have increased at both flux levels marginally up to 2 wt.% addition of nanoclay beyond which it has increased significantly. This is in contrast to increased thermal stability observed for Type-I and Type-Ⅱ composites up to 2 wt.%addition of nanoclay. Increased ablation rates due to nanoclay addition was attributed to higher insulation effi-ciency of nanolcay, which accumulates more heat energy in limited area behind the ablation front and self-propagating ablation mechanisms triggered by thermal decomposition of organic part of nanoclay.  相似文献   

11.
在电枢静止条件下建立了简单轨道发射器及块状电枢的三维有限元模型。利用ANSYS模拟得到了轨道及电枢内的瞬态电流密度分布。结果显示,在通电过程中电流趋向轨道内侧表面,并在电枢尾部与轨道接触处集中,电流线聚集是造成轨道和电枢之间放电烧蚀的最主要原因。同时得到的还有轨道发射器周围空间的瞬态磁场分布,其结果表明,感应磁场主要集中分布在靠近电枢尾部一侧的两轨道间,并向后延续到约等于4倍口径的长度,电枢所在的位置正好是磁场激增区域。  相似文献   

12.
土壤滑坡或土壤冲蚀造成一段埋地管道成为悬空。管道悬空严重影响埋地输油管道的安全运行。基于双参数模型地基理论,把悬空管道设定为弹性地基梁,考虑轴向力、内压、内流、外流和土壤刚度系数等因素的作用,建立管道与土壤相互作用的力学模型,计算悬空管道的临界长度评估其安全性。根据管道边界条件和失效模式的不同,分析上述各因素对悬空管道临界长度的影响,进而对悬空管道的屈服失效、屈曲失效、共振和疲劳失效进行安全评估。结论对埋地管道的合理设计、土壤刚度的处理、管道安全性的提高具有工程实际意义。  相似文献   

13.
《防务技术》2020,16(1):43-49
The temperature difference between the exposed surface of an underground silo and the surrounding soil surface is significant, which means a silo can be easily found by infrared detection. We designed an infrared camouflage cloak consisting of an imitative layer and an insulation layer for the silos. The imitative layer is used to imitate the thermal response of the soil to the surrounding environment. The insulation layer is used to weaken the impact of the internal temperature field of the silo on the lower boundary of the imitative layer. A silo model including surrounding soil and a soil model without silo were established, and the influences of the material and thickness of each layer on the infrared camouflage effect were analyzed. The results show that when using a silicone rubber containing alumina powder with a volume fraction of 3.18% as the imitative material, its thermal inertia is in consistent with that of the soil. Meanwhile, it was found that the thickness of the imitative layer doesn’t need to be greater than its thermal penetration depth to achieve the infrared camouflage, and the absence of the insulation layer will cause hot spots on the silo surface in winter to weaken the camouflage effect. The optimized thicknesses of the imitative layer and the insulation layer are 22 cm and 4 cm respectively. The simulations indicate that with the application of the cloak, the maximum value of the absolute values of the temperature differences between the average temperatures of the silo surface and the surrounding soil surface temperatures drops from 1.59 °C to 0.31 °C in summer and from 1.92 °C to 0.21 °C in winter. This designed cloak can achieve an all-weather and full-time passive infrared camouflage.  相似文献   

14.
弯管稀相气力输送CFD-DEM法数值模拟   总被引:2,自引:0,他引:2       下载免费PDF全文
利用CFD-DEM方法对稀相气固两相流在带有弯管的气力输送管道内的流动特性数值模拟。通过CFD求解连续气相流场,使用DEM求解离散颗粒相运动及受力,为提高仿真速度,模型忽略了空隙度对气相的影响。仿真结果显示了颗粒在弯管内形成颗粒绳及在垂直管道内颗粒绳分散的过程,并获取了颗粒-颗粒、颗粒-壁面的碰撞信息。对比弯管上下两部分的碰撞情况,颗粒及壁面在弯管下半部分受到的撞击和磨损更严重。通过对气力输送各类工作参数的研究发现,其对管道内气固两相流的流动特性和碰撞情况有着不同程度的影响。气流速度对颗粒绳分散影响甚微,但对弯管内颗粒碰撞强度有明显影响。随着颗粒质量流量的增加,形成的颗粒绳更紧凑、分散速度更慢,并在弯管中形成了阻碍颗粒-壁面碰撞的防护层。弯径比的增加也能加强颗粒绳的紧凑度,减缓颗粒绳的分散速度。  相似文献   

15.
防御弹道导弹逐渐受到世界各国的重视,扩大拦截窗口是重要的发展趋势之一。平流层飞艇有可能通过艇载激光武器或者中继反射地基激光两种方式拦截自由段弹道导弹,为评估这两种方式的拦截效果和可行性,本文分析了平流层飞艇搭载高能激光武器的可能性以及中继反射作战方式的特点,建立了激光烧蚀模型,采用数值计算方法对激光的烧蚀效果进行了研究,结果表明平流层飞艇部署位置应距离导弹发射点800~1000km,平流层中继激光飞艇能够在短时间内引爆弹头,艇载激光武器采用烧蚀弹头防热层的方法同样可以达到拦截弹道导弹的目的。  相似文献   

16.
《防务技术》2020,16(1):201-207
Three different kinds of PELE (the penetrator with lateral efficiency) were launched by ballistic artillery to impact the multi-layer spaced metal target plates. The impact velocities of the projectiles were measured by the velocity measuring system. The damage degree and process of each layer of target plate impacted by the three kinds of projectiles were analyzed. The experimental results show that all the three kinds of projectiles have the effect of expanding holes on the multi-layer spaced metal target plates. For the normal structure PELE(without layered) with tungsten alloy jacket and the radial layered PELE with tungsten alloy jacket, the diameters of holes on the second layer of plates are 3.36 times and 3.76 times of the diameter of the projectile, respectively. For radial layered PELE with W/Zr-based amorphous composite jacket, due to the large number of tungsten wires dispersed after the impact, the diameter of the holes on the four-layer spaced plates can reach 2.4 times, 3.04 times, 5.36 times and 2.68 times of the diameter of the projectile. Besides, the normal structure PELE with tungsten alloy jacket and the radial layered PELE whit tungsten alloy jacket formed a large number of fragments impact marks on the third target plate. Although the number of fragments penetrating the third target plate is not as large as that of the normal structure PELE, the area of dispersion of fragments impact craters on the third target plate is larger by the radial layered PELE. The radial layered PELE with W/Zr-based amorphous composite jacket released a lot of heat energy due to the impact of the matrix material, and formed a large area of ablation marks on the last three target plates.  相似文献   

17.
数值模拟存在碳-酚醛材料烧蚀的高超声速再入流场,分析烧蚀和热解对流场热化学参数、电子数密度分布等的影响。采用19组元双温度的热化学模型,耦合热化学非平衡流Navier-Stokes方程组和烧蚀壁面边界条件,进行定常烧蚀流场求解;通过对比无烧蚀、非催化和辐射平衡壁温条件下的流场分析烧蚀的影响;讨论了壁面处碳-酚醛材料热解产物化学组成的确定方法,研究了不同热解率的影响。以RAM-C球锥的两个典型飞行条件(速度7.65km/s、高度61km和71km)为代表的研究表明:最主要的烧蚀热解产物是CO、H2、H,烧蚀产物和烧蚀的影响均局限于边界层内;烧蚀使原子和离子组元含量下降,当离子组元含量峰值出现在边界层内时,烧蚀使电子数密度峰值下降;随热解率增加烧蚀影响程度增强,烧蚀在后身区影响范围大于头部区,随飞行高度增加烧蚀影响范围扩大。  相似文献   

18.
利用Ls—DYNA软件对钨合金长杆弹垂直侵彻单层和双层横向运动钢板进行了数值计算。通过分析长杆弹的塑性变形、速度降、动能降和横向速度,得到了单层和双层板横向运动速度与影响长杆弹侵彻能力因素的关系。仿真结果表明:随着运动板速度的增加,运动板对长杆弹的侵蚀加剧,长杆弹的速度降、动能降增大;运动板相同速度下,虽然单层板的冲击能使长杆弹获得较大横向速度,但双层板比单层板对长杆弹的干扰效果更明显。  相似文献   

19.
针对相对静止气氛下单颗粒硼的着火过程展开了系统研究,考虑硼颗粒周围径向气相流动以及硼颗粒与周围环境间的传热和传质过程,建立了一维硼颗粒着火模型。分析了硼颗粒在实现着火和未能实现着火两种典型情形下的颗粒相、气相组分参数以及颗粒外表面上Stefan流的变化规律,并对其成因展开了分析。研究表明,在实现着火和未能实现着火两种典型情形下,硼颗粒外表面的Stefan流都会经历先由周围空间流向颗粒表面,而后变为由颗粒表面流向周围空间的过程;考虑颗粒外表面处气相Stefan流作用后,硼颗粒的着火延迟时间减少,且压力越大,影响越大。  相似文献   

20.
基于Zwart-Gerber-Belamri空化模型,采用动网格和复合网格技术,提出了一种复杂外形潜射导弹出水过程中空化流数值计算方法。对头肩部、舵面及突起物的空化生成、演化及影响因素进行了分析。结果表明,出水过程初期空化数降低使附体空泡迅速扩大,随后空泡脱落与振荡的影响将更为显著;肩部在15m/s出水时产生空化并随速度上升而迅速增长, - 攻角时肩空化非对称性显现;舵面空化受出水速度影响较小, 攻角以下时空化面积小于全舵面积的10%,但攻角超过 后空化面积迅速增长至50%以上;减小突起物尺寸有利于避免空化产生,突起物空化受攻角影响较小,但在高速下可诱导临近弹体产生空化。  相似文献   

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