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- 与 parameter 相关的网络例句 [注:此内容来源于网络,仅供参考]
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In this paper, taking one 1900t/h supercritical pressure once—through boiler installed in East boiler company as subject investigated, analyzing the structure and characteristic of unit, from the mechanism of units, based on the law of quality conservation, energy conservation and momentum conservation, having Lagrange fluid particle tracing idea in hydrodynamics field application in analyzing of unit operational characteristic, author build up the nonlinear distributed parameter general dynamic mathematical model of single-phase heating surface or diphase heating surface in the steam-water system for supercritical pressure once—through boiler, which is suitable numerical calculation and simulation for large scale disturbance and full working conditions change, and enough materializing distributed characteristic of thermodynamic parameter in process and time lag characteristic of energy transportation in tache. The transient responses curve of the system main variables under several disturbance are computed by Computer Simulation for the model, and theoretical analysis shows that the simulation results are reasonable.
本文以东方锅炉集团公司的一台1900 t /h超临界压力直流锅炉为研究对象,在分析机组结构和特性的基础上,从机组的工作机理出发,以质量、能量、动量守恒定律为依据,将流体力学领域中的Lagrange流体质点追踪思想用于机组运行特性的分析上,建立了适用于超临界压力直流锅炉汽水系统单相、双相受热面的非线性分布参数通用动态数学模型,该模型适合于大扰动全工况变化的数值仿真计算,充分体现了过程热力参数的分布特性和环节中能量输送过程的时滞特性,并对模型通过计算机仿真得出各种扰动下系统主要变量的响应曲线,从理论上分析了仿真结果的合理性。
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The paper studies the basic theory and application of multi parameter inversion through inputting for seismic data, outputting for parameter of logging, and it analyses the effect with the geotectonic engineering example.
本文介绍了BP神经网络以地震数据为输人,测井参数为输出的多井多参数非线性反演的基本理论基础和实施策略,并结合具体的岩土工程实例,说明BP神经网络在工程中取得了很好的应用效果。
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The paper studies the basic theory and application of multi parameter inversion through inputting for seismic data,outputting for parameter of logging, and it analyses the effect with the geotectonic engineering example.
本文介绍了BP神经网络以地震数据为输入,测井参数为输出的多井多参数非线性反演的基本理论基础和实施策略,并结合具体的岩土工程实例,说明BP神经网络在工程中取得了很好的应用效果。
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In the dehydrogenation process of HD process, the temperature set at 580℃ and pressure set at 100Pa is a perfect parameter, it can make the magnet to have high magnetic performance. In the HDDR process experiment, the paper contrast four HDDR process such as C-HDDR V-HDDR V-HD-S-DR and d-HDDR by the anisotropy and magnetic performance of ternary NdFeB magnetic material. The results show that adjusting the parameter of the d-HDDR process can make the anisotropy and magnetic performance of ternary NdFeB magnetic powders to catch up with the hexahydric NdFeBCoZrGa magnetic powders. At the end the paper discusses the betterment of the equipment which produces ternary NdFeB magnetic with the d-HDDR process.
和580℃的脱氢温度相搭配的脱氢气压选择在100Pa左右是理想的工艺参数,这样的搭配使得最终烧结磁体综合磁性能优异;在HDDR制粉工艺实验中,本文对比了C-HDDR、V-HDDR、V-HD-S-DR和d-HDDR四种HDDR工艺对于三元NdFeB合金各向异性和磁性能的影响,得出结论:通过发展d-HDDR工艺,调整工艺参数和控制水平,可以使三元NdFeB合金磁粉的性能达到或接近六元NdFeBCoZrGa合金磁粉的水平,在文章末尾,还对配合使用d-HDDR工艺设备的改造进行了分析。
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In conventional indirected parameter estimate, such as Weighted Least Square Method, the changing activity of the injected radiotracer is conventionally measured through multiple consecutive PET image reconstructions. The image of the radioactivity distribution in each frame is reconstructed independently and the whole set of frames is then used to estimate the distribution of the physiological parameter of interest by the application of an appropriate pharmacokinetic model to the time radioactivity curve either of appropriately selected functional regions or of each image element.
传统的间接参数估计方法如加权最小二乘参数估计方法(Weighted Least SquareMethod,WLS),需要首先从测量数据重建出PET动态放射性活度图像,然后在这些时间上连续的重建图像应用适当的动力学模型上估计感兴趣的生理参数,然而PET重建图像中往往含有极大的噪声,这些噪声将影响参数估计的准确性。
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In the process of the evaluation we got the mathematical relation between correlative parameter β, Interceptive parameter δ, and the factor M~2, using coherent beam passing diaphragm, with a numerical calculation and diagram by MATLAB.
在估算与评价过程中,利用了部分相干光通过硬边光阑的理论模型估算M~2因子,得出了光束的相干参量β和光束截断参量δ与M~2因子的具体关系式,并利用MATLAB对其进行数值计算,最后图示出它们之间的关系。
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Duffing equation has parameter and initial value sensitivity. It can generate chaotic state by adjusting the parameter and initial value, and it also can generate intermissive chaotic state, if the ideal signal and the measured signal applied to the system simultaneously. The actual measured signal can be measured by using this state.
Duffing方程具有参数敏感性和初值敏感性,通过调节Duffing方程的参数和初值可以产生混沌现象,且被测信号和理想信号如果共同作用在Duffing方程上,可以产生有规律间歇混沌现象,利用这种现象就可以实现周期信号的频率测量。
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Third,establish is based on the cofficiency parameter to estimate two or two or more of the resin intersolubility (upper and lower its parameter cannot be greater than 1.5) and substrate adhesion of.
其三是依据溶解度参数,可以估计两种或两种以上的树脂的互溶性(其参数上下不能大于1.5)与承印物的附着性。
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Of conclusion leukaemia patient outside configuration of week blood white blood cell and structural change can pass VCS parameter to determine mensurably, if partial parameter is neuter distributinging breadth of bead cell volume, lymphocyte is average bulk is leukaemia the sieve is checked, diagnosed new index.
结论白血病患者的外周血白细胞形态和结构变化可以通过VCS参数定量地测定,部分参数如中性粒细胞体积分布宽度、淋巴细胞平均体积是白血病筛查、诊断的新指标。
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Methods The Mesic respiratory system model was established based on Simulink platform. The least-square algorithm was then used to do the static and dynamic parameter identification with theoretical data, clinical data and clinical fitting data. Finally, the validation of the parameter identification was performed by the clinical data.
在Simulink平台下构建集总参数呼吸系统仿真模型,采用最小二乘法,分别用理论数据、实测数据和实测拟合数据对模型进行静态阶段和动态阶段的参数辨识,并由实测数据验证辨识参数。
- 推荐网络例句
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According to the clear water experiment, aeration performance of the new equipment is good with high total oxygen transfer coefficient and oxygen utilization ratio.
曝气设备的动力效率在叶轮转速为120rpm~150rpm时取得最大值,此时氧利用率和充氧能力也具有较高值。
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The environmental stability of that world - including its crushing pressures and icy darkness - means that some of its most famous inhabitants have survived for eons as evolutionary throwbacks, their bodies undergoing little change.
稳定的海底环境─包括能把人压扁的压力和冰冷的黑暗─意谓海底某些最知名的栖居生物已以演化返祖的样态活了万世,形体几无变化。
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When I was in school, the rabbi explained everythingin the Bible two different ways.
当我上学的时候,老师解释《圣经》用两种不同的方法。