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1.
推导陈垃圾在滚筒筛中的运动方程并求数值解,按最大位置角将陈垃圾运动模式划分成滚落、抛落、圆周运动,给出不同筛筒转速、半径、动摩擦因数下的运动模式判别云图. 滚筒筛试验结果显示,陈垃圾运动的最大位置角随转速的升高先增大后不变,转速超过50 r/min后垃圾进行圆周运动. 陈垃圾滚筒筛的筛分效率随转速增大呈先升后降的趋势,随抛落差的增大呈持续上升的趋势,随着原料水的质量分数的增加呈下降的趋势. 基于试验结果,给出滚筒筛最优转速取值云图,在实际工程中可根据垃圾动摩擦因数及滚筒半径选择最优转速,同时减小水的质量分数以提高筛分效率.  相似文献   
2.
Spindle speed variation (SSV) is one of the effective methods which suppresses regenerative chatter. However, regenerative chatter can grow even if SSV is applied. In the previous work, the chatter growth characteristics in SSV were clarified. The chatter frequency changes proportionally to the varying spindle speed, and it causes the change of the magnitude of the dynamic compliance. Hence, chatter can be suppressed through SSV since the dynamic compliance usually reduces as the chatter frequency changes. A greater compliance reduction can be obtained by a higher rate of spindle speeds in two consecutive revolutions at the same angular position, i.e., acceleration rate. From the investigations in the previous work, limitation of the conventionally utilized SSV profiles is found as follows: the acceleration rate always fluctuates with speed variation and the chatter vibration grows where the acceleration rate is insufficient for suppression, and hence suppressing chatter in all sections of SSV is difficult. In this paper, a new SSV profile with a constant acceleration rate, namely CAR-SSV, is proposed to overcome the limitation of chatter stability improvement by utilizing conventional SSV profiles. The magnitude of the acceleration rate is kept constant to realize the chatter suppression effect throughout the cutting process. Through time-domain simulation and cutting experiments, the chatter stability of CAR-SSV is investigated based on the previously introduced chatter stability evaluation indices. Influence of the parameters of CAR-SSV on the stability is investigated, and an appropriate strategy for setting SSV parameters to achieve higher stability is discussed. In addition, in order to verify the effectiveness of the proposed profile, the stabilities of conventional SSV profiles and CAR-SSV are compared through time-domain simulations and cutting experiments.  相似文献   
3.
Surface patterning is a recent promising approach to promote performance of pressure-driven membranes in water treatment and desalination. Nevertheless, knowledge about foulant deposition mechanisms, especially at early stage of filtration, is still lacking. The applicability of particle imaging velocimetry to study fluid characteristics atop surface patterned thin-film composite membranes was investigated at different operating conditions. This work is an important first step toward reliable understanding of the impacts of topographical membrane surface modification on hydrodynamic conditions and foulant deposition mechanisms.  相似文献   
4.
Soybean oil hydrogenation alters the linolenic acid molecule to prevent the oil from becoming rancid, however, health reports have indicated trans-fat caused by hydrogenation, is not generally regarded as safe. Typical soybeans contain approximately 80 g kg−1 to 120 g kg−1 linolenic acid and 240 g kg−1 of oleic acid. In an effort to accommodate the need for high-quality oil, the United Soybean Board introduced an industry standard for a high oleic acid greater than 750 g kg−1 and linolenic acid less than 30 g kg−1 oil. By combing mutations in the soybean plant at four loci, FAD2-1A and FAD2-1B, oleate desaturase genes and FAD3A and FAD3C, linoleate desaturase genes, and seed oil will not require hydrogenation to prevent oxidation and produce high-quality oil. In 2017 and 2018, a study comparing four near-isogenic lines across multiple Tennessee locations was performed to identify agronomic traits associated with mutations in FAD3A and FAD3C loci, while holding FAD2-1A and FAD2-1B constant in the mutant (high oleic) state. Soybean lines were assessed for yield and oil quality based on mutations at FAD2-1 and FAD3 loci. Variations of wild-type and mutant genotypes were compared at FAD3A and FAD3C loci. Analysis using a generalized linear mixed model in SAS 9.4, indicated no yield drag or other negative agronomic traits associated with the high oleic and low linolenic acid genotype. All four mutations of fad2-1A, fad2-1B, fad3A, and fad3C were determined as necessary to produce a soybean with the new industry standard (>750 g kg−1 oleic and <30 g kg−1 linolenic acid) in a maturity group-IV-Late cultivar for Tennessee growers.  相似文献   
5.
Evaporative phase transitions are widely present in industrial production and daily life such as thin film processes and crystal growth. The evaporation of the liquid layer and the thermocapillary convection affect each other and restrict each other, making the energy transfer mechanism of the evaporation interface very complicated. To understand the evaporation characteristics of water in its low-pressure pure vapor environment, a series of experimental studies were carried out on the temperature distributions and evaporating rate of water evaporation in the annular pool. The cylinder temperature of the annular liquid pool is controlled between 3℃ and 15℃, and the evaporation environment pressure ranges from 394 Pa to 1467 Pa, when the temperature measurement starts, the depth of water is 10 mm. The results show that the temperature of the vapor side on the liquid-vapor interface is higher than that of the liquid side and there is an obvious temperature jump across the vapor-liquid interface. With the decrease of the pressure ratio, the evaporation rate increases, and the interface temperature jump is enlarged. Meanwhile, with the increase of the distance from the cylinder, the local evaporation rate decreases, thus, the temperature jump decreases. At the same pressure ratio, as the cylinder temperature increases, the heat flux from vapor side decreases, the temperature jump decreases at all measurement points. Within the experimental controlled parameters, the maximum temperature jump obtained in the measurements is 2.56℃. Due to the coupling effect of evaporation cooling and thermocapillary convection, there is a uniform temperature layer with a thickness of about 2 mm under the evaporation interface. The thickness of the uniform temperature layer near the cylinder is always larger than that in the middle of the evaporation interface. In the uniform temperature layer, the thermocapillary convection induced by radial temperature gradient transfers heat from the cylinder to the liquid-vapor interface to compensate for the latent heat of evaporation. Below the uniform temperature layer, the temperature rises rapidly due to heat conduction and buoyancy convection.  相似文献   
6.
晋城寺河井区煤矿采空区煤层气地面抽采关键技术研究   总被引:2,自引:0,他引:2  
随着煤层气勘探的不断深入,煤矿采空区煤层气已成为煤矿区煤层气重要资源之一。基于晋城矿区寺河井区煤矿采空区分布特征,通过地质分析、采空区煤层气成分、浓度试验和资源量模型计算等方法系统研究了煤矿采空区煤层气资源条件及地面抽采关键技术,揭示了采空区煤层气赋存规律,给出了不同赋存状态下煤层气资源量计算模型和方法,探索了煤矿采空区煤层气地面抽采关键技术。研究表明,煤矿采空区煤层气来源于煤柱及残留煤层、邻近未采煤层和围岩中的游离气和吸附气。根据吸附气和游离气资源量计算模型计算寺河井区煤层气总资源为213.016×108m3,其中游离气资源为0.102×108m3,吸附气资源为212.914×108m3。采煤方法和采空区密闭性对采空区煤层气的来源和富集程度有重要影响。针对采空区上部岩体裂隙发育特征,将采空区煤层气抽采井身结构由二开优化为三开结构,实现了二开固井封闭断裂带上部含水层,三开下入割缝套管护壁,有效解决了采空区上部含水层涌水对钻井井身稳定性影响及抽采效果等问题。在此基础上,研发了潜孔锤+压缩空气(氮气)钻井工艺,用氮气取代空气作为循环介质,形成了安全揭露含气断裂带钻井工艺技术,为采空区煤层气安全抽采探索了有效途径。  相似文献   
7.
为改善豌豆分离蛋白应用特性,扩大其在食品工业的应用。该文采用研磨干法处理豌豆分离蛋白,研究其持水性、持油性、泡沫特性、乳化性能、凝胶性能等应用特性变化;并根据研磨后豌豆分离蛋白结构特征,分析研磨对应用特性的影响机理。结果表明:研磨对豌豆分离蛋白形态结构及亲水性基团产生了显著影响,进而影响了豌豆分离蛋白应用特性。研磨时间为7.5 min时,持水性提高了37.4%,起泡性提高了20.83%,且持油性、乳化性和凝胶性为最佳;亲水性也得到了明显改善。  相似文献   
8.
频率特性分析在工程应用中具有重要的作用,在电路分析、模拟电子技术、信号与系统、自动控制理论等相关课程中都涉及到相关章节内容,在不同课程中如何根据工程应用和学生学习阶段把握具体的讲解内容和讲解方式非常重要。本文从频率特性的求解方法和具体物理意义角度开展在不同课程中讲解的方法,从时域和频域角度分别讨论其物理意义和具体的分析方法。通过渐进深化的教学过程和教学方法不断提高学生的知识掌握和应用技能,提高学生的工程意识、工程素质和工程创新能力,强化学生对于频率特性课程知识的综合应用能力。  相似文献   
9.
大庆长垣喇萨杏油田经多年开发,已进入水驱、聚驱、三元复合驱并存阶段。注入溶液改变了储层的物理性质,地层水矿化度、含油饱和度、孔隙结构以及岩石润湿性等都会发生变化,不同的驱替方式导致了不同的储层地质特征。油层水淹后,电阻率、自然电位、微电极幅度差等测井响应的变化规律也不同。本文利用大庆油田丰富的密闭取芯检查井资料,系统的研究了化学驱后水淹层地质特征及测井响应特征分析,对提高水淹层测井解释的精度奠定了基础。  相似文献   
10.
深层页岩储层是页岩气勘探开发的重要接替领域。针对四川盆地及周缘龙马溪组一段深层页岩,系统开展了X-衍射全岩(XRD)、总有机碳(TOC)、大薄片及氩离子抛光大片成像研究。结果表明,相对于浅层页岩,深层页岩储层具有高硅质和低TOC含量、低粉砂纹层含量、高孔隙度和更有效的孔隙网络特征。由浅层至深层,页岩硅质含量由30%增至62%。相应地,碳酸盐含量由32%降至14.3%,粘土矿物含量由33%降至7.8%,TOC含量由7.1%降至4.25%。深层页岩储层发育条带状粉砂纹理,与浅层页岩相比,其粉砂纹层含量减少、单层厚度减薄。黑色页岩发育有机孔、无机孔和微裂缝,由浅层至深层,页岩总面孔率由1.6%增至10.8%,有机孔和无机孔均明显增加,且微裂缝占比由1%增至12%。深层页岩储层有机孔、无机孔和微裂缝相互连通,形成有效的孔隙网络。深层高硅质含量、高孔隙度和更有效的孔隙网络与生物成因硅有关,低TOC含量与远离物源有关,低粉砂纹层含量与水深较大有关。生物成因硅在成岩过程中可形成大量有机孔、无机孔和微裂缝,且其可有效保存孔隙。有机质的生成受营养物质供给影响,远离物源区营养供给较少。粉砂纹层主要由碳酸盐矿物组成,深层不利于碳酸盐的形成。  相似文献   
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