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1.
在煤层增透方面,穿层水力扩孔冲出煤量主要依据经验以及遵循“能冲尽冲”的原则,致使串孔现象严重,针对这一问题,采用理论分析、数值模拟结合工程试验的方法,阐明了串孔致因机理和串孔前后扩孔孔硐内负压损失分布特征,构建了考虑吸附膨胀应力和Klinkenberg效应的扩孔孔硐附近煤体瓦斯流动流-固耦合数学模型,利用Comsol软件,模拟了不同冲煤量下扩孔孔硐附近煤体所受应力分布和煤体渗透率的变化情况。研究结果表明:随着煤体不断被冲出,孔硐有效抽采半径相对变化率呈现衰减趋势;扩孔孔硐附近最大主应力呈现先急剧减小再增大,然后降低直至原始应力大小的趋势;渗透率的变化趋势与最大主应力恰好相反;扩孔孔硐周围煤体渗透率的增加主要受煤体的径向位移所控制,孔硐周围煤体大幅径向位移会产生串孔现象,渗透率虽得到大幅度提高,但瓦斯抽采效果和安全采掘很难保证,需要厘定出水力扩孔合理冲出煤量。  相似文献   
2.
针对定量确定合理钻孔间距困难问题,基于损伤力学和多场耦合理论,建立了水力压裂和瓦斯抽采的煤层流固耦合模型,包括和水运移场、应力场以及孔隙度、渗透率演化方程,并采用Comsol联合Matlab求解,研究了不同钻孔间距时压裂和抽采过程中煤层弹模、损伤值、渗透率、瓦斯压力、抽采量和压裂贯通时间的变化规律。结果表明:耦合模型可较准确地模拟煤层水力压裂和瓦斯抽采过程;压裂贯通时间与钻孔间距呈指数增长关系;在马堡煤矿,当钻孔间距为4~8 m时,压裂损伤区在抽采孔贯通,渗透率呈“n”型曲线,瓦斯抽采后,瓦斯压力迅速下降,抽采有效区随间距的增加而增大;当钻孔间距为9~12 m时,压裂损伤区未贯通,煤层渗透率呈“m”型曲线,抽采有效区随间距的增加而减小,与间距4~8 m相比,瓦斯抽采量较小。  相似文献   
3.
We investigate the sensitivity of phosphorus loading (mass/time) in an urban stream to variations in climate using nondimensional sensitivity, known as elasticity, methods commonly used by economists and hydrologists. Previous analyses have used bivariate elasticity methods to represent the general relationship between nutrient loading and a variable of interest, but such bivariate relations cannot reflect the complex multivariate nonlinear relationships inherent among nutrients, precipitation, temperature, and streamflow. Using fixed‐effect multivariate regression methods, we obtain two phosphorus models (nonparametric and parametric) for an urban stream with high explanatory power that can both estimate phosphorus loads and the elasticity of phosphorus loading to changes in precipitation, temperature, and streamflow. A case study demonstrates total phosphorus loading depends significantly on season, rainfall, combined sewer overflow events, and flow rate, yet the elasticity of total phosphorus to all these factors remains relatively constant throughout the year. The elasticity estimates reported here can be used to examine how nutrient loads may change under future climate conditions.  相似文献   
4.
Objective: To conduct near-side moving deformable barrier (MDB) and pole tests with postmortem human subjects (PMHS) in full-scale modern vehicles, document and score injuries, and examine the potential for angled chest loading in these tests to serve as a data set for dummy biofidelity evaluations and computational modeling.

Methods: Two PMHS (outboard left front and rear seat occupants) for MDB and one PMHS (outboard left front seat occupant) for pole tests were used. Both tests used sedan-type vehicles from same manufacturer with side airbags. Pretest x-ray and computed tomography (CT) images were obtained. Three-point belt-restrained surrogates were positioned in respective outboard seats. Accelerometers were secured to T1, T6, and T12 spines; sternum and pelvis; seat tracks; floor; center of gravity; and MDB. Load cells were used on the pole. Biomechanical data were gathered at 20 kHz. Outboard and inboard high-speed cameras were used for kinematics. X-rays and CT images were taken and autopsy was done following the test. The Abbreviated Injury Scale (AIS) 2005 scoring scheme was used to score injuries.

Results: MDB test: male (front seat) and female (rear seat) PMHS occupant demographics: 52 and 57 years, 177 and 166 cm stature, 78 and 65 kg total body mass. Demographics of the PMHS occupant in the pole test: male, 26 years, 179 cm stature, and 84 kg total body mass. Front seat PMHS in MDB test: 6 near-side rib fractures (AIS = 3): 160–265 mm vertically from suprasternal notch and 40–80 mm circumferentially from center of sternum. Left rear seat PMHS responded with multiple bilateral rib fractures: 9 on the near side and 5 on the contralateral side (AIS = 3). One rib fractured twice. On the near and contralateral sides, fractures were 30–210 and 20–105 mm vertically from the suprasternal notch and 90–200 and 55–135 mm circumferentially from the center of sternum. A fracture of the left intertrochanteric crest occurred (AIS = 3). Pole test PMHS had one near-side third rib fracture. Thoracic accelerations of the 2 occupants were different in the MDB test. Though both occupants sustained positive and negative x-accelerations to the sternum, peak magnitudes and relative changes were greater for the rear than the front seat occupant. Magnitudes of the thoracic and sternum accelerations were lower in the pole test.

Conclusions: This is the first study to use PMHS occupants in MDB and pole tests in the same recent model year vehicles with side airbag and head curtain restraints. Injuries to the unilateral thorax for the front seat PMHS in contrast to the bilateral thorax and hip for the rear seat occupant in the MDB test indicate the effects of impact on the seating location and restraint system. Posterolateral locations of fractures to the front seat PMHS are attributed to constrained kinematics of occupant interaction with torso side airbag restraint system. Angled loading to the rear seat occupant from coupled sagittal and coronal accelerations of the sternum representing anterior thorax loading contributed to bilateral fractures. Inward bending initiated by the distal femur complex resulting in adduction of ipsilateral lower extremity resulted in intertrochanteric fracture to the rear seat occupant. These results serve as a data set for evaluating the biofidelity of the WorldSID and federalized side impact dummies and assist in validating human body computational models, which are increasingly used in crashworthiness studies.  相似文献   
5.
采动影响下含瓦斯煤岩的损伤变形是一个极其复杂的非线性过程,单纯依靠传统经典弹塑性力学无法准确分析其破坏机理。针对此情况,通过试验研究了不同初始围压条件下含瓦斯煤岩的损伤变形特征,并分析了损伤变形与能量演化规律之间的内在联系。研究表明:初始围压越高,煤样破坏时强度越大,脆性破坏特征越明显,瓦斯流量急剧增加幅度越大,煤样破坏时积累的总能量和弹性应变能越多,且初始围压与弹性能之间满足对数函数关系。采用累积耗散能定义了煤岩损伤变量,并分析了不同阶段损伤与渗透率之间的演化关系。  相似文献   
6.
Objective: A novel anthropomorphic test device (ATD) representative of the 50th percentile male soldier is being developed to predict injuries to a vehicle occupant during an underbody blast (UBB). The main objective of this study was to develop and validate a finite element (FE) model of the ATD lower limb outfitted with a military combat boot and to insert the validated lower limb into a model of the full ATD and simulate vertical loading experiments.

Methods: A Belleville desert combat boot model was assigned contacts and material properties based on previous experiments. The boot model was fit to a previously developed model of the barefoot ATD. Validation was performed through 6 matched pair component tests conducted on the Vertically Accelerated Loads Transfer System (VALTS). The load transfer capabilities of the FE model were assessed along with the force-mitigating properties of the boot. The booted lower limb subassembly was then incorporated into a whole-body model of the ATD. Two whole-body VALTS experiments were simulated to evaluate lower limb performance in the whole body.

Results: The lower limb model accurately predicted axial loads measured at heel, tibia, and knee load cells during matched pair component tests. Forces in booted simulations were compared to unbooted simulations and an amount of mitigation similar to that of experiments was observed. In a whole-body loading environment, the model kinematics match those recorded in experiments. The shape and magnitude of experimental force–time curves were accurately predicted by the model. Correlation between the experiments and simulations was backed up by high objective rating scores for all experiments.

Conclusion: The booted lower limb model is accurate in its ability to articulate and transfer loads similar to the physical dummy in simulated underbody loading experiments. The performance of the model leads to the recommendation to use it appropriately as an alternative to costly ATD experiments.  相似文献   

7.
为了提高管网地震监测点布局的准确性和合理性,基于管网微观水力计算模型和动态分级法,提出供水管网震后流量监测点的动态分级优化布局模型。首先,利用管网微观水力计算模型计算管段流量的影响系数,构建管段的影响系数矩阵,并利用信息熵确定管段权重;其次,标准化处理影响系数矩阵,通过聚类迭代提出供水管网地震流量监测点优化布局的动态分级方法,对供水管网震后流量监测点进行优化布置分级评定;最后,根据工程实例进行方法实践,结果表明:供水管网中的管线分类较为科学合理,地震监测点在供水管网上分布也比较均匀,而且该模型在一定程度上消除了人为因素的影响,保障了震时管网的监控效果和日常建设的合理性。  相似文献   
8.
为了研究循环载荷下的煤体裂隙演化特征,在不同应力水平和不同频率条件下分别进行煤样破坏力学及声发射试验。结果表明:应力-应变曲线呈疏-密-疏的变化特征,对应的振铃数柱状图呈U型;上限应力点的应变值、累积能量、撞击计数均随循环次数增加而上升,曲线呈倒S型;煤裂隙演化经历了原始裂隙闭合、新生裂隙稳定发育和裂纹贯穿破坏等3个不同阶段;循环载荷的应力水平和加载频率对煤体疲劳寿命的影响具有差异性,对煤体裂隙演化和破坏模式均有明显影响。  相似文献   
9.
为研究堆载大小对原水管道受力变形的影响,采用量纲分析法得出模型试验相似比,并根据相似比进行模型箱的设计、管道材料的选取和重塑土的配制,研究不同工况下管道的受力特征。试验结果表明:整体上管道端部应力大于管中央应力,管轴向应力大于管环向应力。在中心加载下,管端应力值较管中央处大,前者增长速度更快,而后者增长速度较慢。在偏心荷载作用下,靠近荷载的管端应力最大,而管中央应力最小;尤其在偏载6 kPa作用下,管端下表面轴向应力达到595 kPa,而管中央处仅有64 kPa,管端受边界约束作用明显,管道呈弯曲变形。  相似文献   
10.
为防治冲击地压危害,减小人员伤亡与经济损失,采用数值计算方法建立吸能让位防冲液压支架与围岩协同作用体系模型,计算支架和围岩组合体系在静载和冲击载荷作用下的受力状态。结果表明:静载条件下,受煤层影响巷道右侧拱肩位置应力值与塑性应变相对最大,此处最易发生破坏;吸能装置在静载条件下没有发生压缩变形,表明吸能装置不会影响支架正常工作;竖向冲击荷载条件下,受煤层结构影响巷道右侧拱肩处等效塑性应变值增大相对比较明显,吸能防冲支架中间液压柱与右侧液压柱水平位移变化相对最明显;冲击地压发生过程中,支架与围岩间相互作用力变化较大,总体可分为振动段、平稳段、上升段、波动段4个阶段。  相似文献   
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