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1)  greenhouse environment simulation
温室环境仿真
2)  simulation environment
仿真环境
1.
The study of modeling and simulation environment in the C~4ISR system;
C~4ISR系统的建模方法与仿真环境研究
2.
Research on Simulation Environment of Intelligent Traffic Line Control System Based on Agent Technology;
基于Agent技术的智能交通线控系统仿真环境研究
3.
Simulation Environment of Distributed Discrete Event Simulation Based on Simulation Bus;
基于仿真总线的分布离散事件仿真环境
3)  environment simulation
环境仿真
1.
Application of 3D Image Reconstruction Techniques of Two-Dimensional in the Battlefield Environment Simulation
二维图像的三维重建技术在战场环境仿真中的应用
2.
At present,radar electromagnetic environment simulation is a fundamental work in designing and evaluating the performance spaceborne radar reconnaissance system.
雷达电磁环境仿真是设计和评定星载雷达侦察系统技战指标的基础。
3.
Design of an environment simulation system (ESS) for drilling & culling devices working in ultradeep well is discussed in this paper, on the basis of developing an in-well environment simulation system for deep well of oil field.
结合油田深井井下仿真环境系统的研制,对超深井钻采设备环境仿真系统设计进行了讨论。
4)  greenhouse environment
温室环境
1.
Current situation on greenhouse environment control system modes in China;
中国温室环境控制硬件系统研究进展
2.
Application of Bluetooth technology in greenhouse environment. monitor and control;
蓝牙技术在温室环境检测与控制系统中的应用
3.
Development of a portable measure instrument for greenhouse environment parameters;
便携式温室环境参数测量仪的研制
5)  MMS simulation setting
MMS仿真环境
1.
Features of MMS are introduced based on MMS simulation setting,and the real time capable module and non real time capable module are compared from principle.
介绍了MMS特点,基于MMS仿真环境,从原理上比较了实时和非实时模块的差异。
6)  proteus simulation environment
Proteus仿真环境
1.
This paper introduces the principle of measurement on mold-filling velocity of lost foam and the model for micro-controller system under proteus simulation environment.
介绍了消失模铸造充型速度测试的原理,在Proteus仿真环境下建立单片机系统电路模型,实现了消失模铸造液态金属充型速度测试过程的虚拟仿真。
补充资料:温室效应和温室气体
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性质:一些微量气体对太阳的短波辐射无阻碍,但对长波辐射有强烈的吸收,若其吸收带落在7~13微米的红外大气窗口内,则吸收的能量将引起大气的增温。温室气体主要有CO2、H2O、CH4、N2O、O3、CFCs等约30余种。当地表因被辐射加热又以红外辐射的形式向空间散发的能量被大气中的温室 气体吸收而使大气增温,产生温室效应。大气中本来就有CO2、H2O等温室气体,但如果温室气体的种类及其含量因人为活动在大气中增加时,温室效应将增加,从而导致地球的平均气温上升,这将造成全球性的危害。

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