期刊文献+
共找到6篇文章
< 1 >
每页显示 20 50 100
精密机械热动态过程的矩阵模型研究
1
作者 傅建中 陈子辰 《电子机械工程》 1996年第3期32-36,共5页
本文对精密机械热动态过程提出一种矩阵形式的模型化方法,模型的建立是在原始分布参数模型的空间离散化近似基础上,通过辨识矩阵模型中的参数获得.仿真与实验均表明,该矩阵模型能较为满意地描述热动态过程,从而为精密机械热动态过... 本文对精密机械热动态过程提出一种矩阵形式的模型化方法,模型的建立是在原始分布参数模型的空间离散化近似基础上,通过辨识矩阵模型中的参数获得.仿真与实验均表明,该矩阵模型能较为满意地描述热动态过程,从而为精密机械热动态过程控制提供了一种可行的模型。 展开更多
关键词 热动态过程 矩阵模型 数学模型 精密机械
下载PDF
基于现场数据与主元分析热工动态过程研究 被引量:4
2
作者 张小桃 王爱军 倪维斗 《汽轮机技术》 北大核心 2007年第4期253-255,共3页
根据机组的运行机理,确定引起主要监控变量变化的相关过程变量,采集相关过程的运行数据;建立输入数据矩阵,并进行主元分析和多变量统计计算,确定了在热工动态过程中引起主要监控变量变化的主导因素。所提出的确定主导因素的方法可以进... 根据机组的运行机理,确定引起主要监控变量变化的相关过程变量,采集相关过程的运行数据;建立输入数据矩阵,并进行主元分析和多变量统计计算,确定了在热工动态过程中引起主要监控变量变化的主导因素。所提出的确定主导因素的方法可以进一步应用于热工过程动态建模和故障诊断。 展开更多
关键词 现场数据 动态过程 主元分析 主导因素
下载PDF
基于线性回归的架空导线热路模型集总参数辨识 被引量:1
3
作者 柳亚芳 应展烽 +2 位作者 张旭东 冯凯 吴军基 《南京理工大学学报》 EI CAS CSCD 北大核心 2015年第3期335-341,共7页
为提高架空导线热路模型计算精度,设计了架空导线温升实验平台。在自然对流条件下,对不同载流时LGJ-240和LJG-400导线的热动态过程进行了实测。提出了基于线性回归分析的架空导线热路模型集总参数辨识方法,建立了热路参数与电流之间的... 为提高架空导线热路模型计算精度,设计了架空导线温升实验平台。在自然对流条件下,对不同载流时LGJ-240和LJG-400导线的热动态过程进行了实测。提出了基于线性回归分析的架空导线热路模型集总参数辨识方法,建立了热路参数与电流之间的函数关系。辨识结果表明:架空导线等效热阻与传统计算值较为接近,且随着电流的增加呈减小趋势;等效热容与传统计算值差异明显,不随电流单调变化,更具随机性;利用辨识方法得到的热容和热阻求解架空导线热路模型响应,误差小于1.28%,精度明显高于传统方法。 展开更多
关键词 线性回归 架空导线 路模型 温升实验平台 热动态过程
下载PDF
透光型围护结构对建筑能耗的影响 被引量:3
4
作者 邓可祥 谢华 《新型建筑材料》 北大核心 2008年第12期67-69,共3页
目前玻璃窗、玻璃幕墙等透光型围护结构占建筑外表面的比例不断增大,成为建筑本体能耗的主要因素。这类围护结构具有较为复杂的动态热过程,而且不同气候分区对这类围护结构节能性能的要求有所不同。所以,需科学考虑透光型围护结构对建... 目前玻璃窗、玻璃幕墙等透光型围护结构占建筑外表面的比例不断增大,成为建筑本体能耗的主要因素。这类围护结构具有较为复杂的动态热过程,而且不同气候分区对这类围护结构节能性能的要求有所不同。所以,需科学考虑透光型围护结构对建筑能耗的影响。从透光型围护结构的动态热过程、窗墙比、玻璃性能、窗框、遮阳设施等方面论述了其对建筑能耗的影响,提出了降低透光型围护结构建筑能耗的途径。 展开更多
关键词 透光型围护结构 动态过程 透过体系 建筑能耗
下载PDF
Dynamic simulation on effect of flame arrangement on thermal process of regenerative reheating furnace 被引量:5
5
作者 欧俭平 马爱纯 +2 位作者 詹树华 周孑民 萧泽强 《Journal of Central South University of Technology》 EI 2007年第2期243-247,共5页
By analyzing the characteristics of combustion and billet heating process, a 3-D transient computer fluid dynamic simulation system based on commercial software CFX4.3 and some self-programmed codes were developed to ... By analyzing the characteristics of combustion and billet heating process, a 3-D transient computer fluid dynamic simulation system based on commercial software CFX4.3 and some self-programmed codes were developed to simulate the thermal process in a continuous heating furnace using high temperature air combustion technology. The effects of different switching modes on injection entrancement of multi burners, combustion and billet heating process in furnace were analyzed numerically, and the computational results were compared with on-site measurement, which verified the practicability of this numerical simulation system. The results indicate that the flow pattern and distribution of temperature in regenerative reheating furnace with partial same-side-switching combustion mode are favorable to satisfy the high quality requirements of reheating, in which the terminal heating temperature of billets is more than 1 460 K and the temperature difference between two nodes is not more than 10 K. But since the surface average temperature of billets apart fi'om heating zone is only about 1 350 K and continued heating is needed in soaking zone, the design and operation of current state are still needed to be optimized to improve the temperature schedule of billet heating. The distribution of velocity and temperature in regenerative reheating furnace with same-side-switching combustion mode cannot satisfy the even and fast heating process. The terminal heating temperature of billets is lower than that of the former case by 30 K. The distribution of flow and temperature can be improved by using cross-switching combustion mode, whose terminal temperature of billets is about 1 470 K with small temperature difference within 10 K. 展开更多
关键词 high temperature air combustion reheating furnace switched combustion numerical simulation
下载PDF
Pattern Dynamics of Thermal-environment Effect During Urbanization:A Case Study in Shenzhen City,China 被引量:2
6
作者 XIE Miaomiao WANG Yanglin +1 位作者 FU Meichen ZHANG Dingxuan 《Chinese Geographical Science》 SCIE CSCD 2013年第1期101-112,共12页
The thermal-environment effect exists in the field of rapid urbanization. It has adverse effects on the urban atmosphere, re- gional climate, energy consumption, and public health. Shenzhen, a representative of rapidl... The thermal-environment effect exists in the field of rapid urbanization. It has adverse effects on the urban atmosphere, re- gional climate, energy consumption, and public health. Shenzhen, a representative of rapidly urbanizing cities in China, was selected as a case for pattern dynamics analysis of the thermal environment. The surface temperature was acquired from the thermal infrared data of Landsat TM and ETM+ images in 1986, 1995, and 2005 by Jim6nez-Mufioz and Sobrino's generalized single-channel method, which was used in assessing the distribution and spatial patterns of the thermal environment. The relative thermal environment curve (RTC) was combined with Moran's I analysis to assess the pattern dynamics of the thermal environment in different urbanization periods. Moran's I index and the RTC represent a process of aggregation-fragmentation-aggregation, which shows the aggregation pattern of a decrease during the rapid urbanization period and then an increase during the steady urbanization period. High-temperature areas gradually ex- panded to a uniform and scattered distribution in the rapid urbanization period; while the high thermal-environment effect was gradually transformed into a steady spatial pattern in the stable urbanization period. To characterize the increasing development in this multiple- center city, we chose profiles along an urban-development axis. The results suggest that heat islands have expanded from internal urban to external urban areas. Four profiles were obtained showing differences in shape due to spatial differences in the process of development. 展开更多
关键词 thermal environment spatial pattern remote sensing URBANIZATION Shenzhen City
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部