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1)  calorific intensity
产热强度
1.
Computational model for internal calorific intensity of gangue heaps
矸石山内部产热强度的计算模型
2)  production intensity
生产强度
1.
The production intensity was raised.
通过改进工艺流程,科学确定加热面积的配比,合理选择采盐泵等技术改进措施,提高了生产强度,满足了高气压的生产条件,延长了洗效周期,减少了设备的腐蚀,提高了成品碱的质量,满足了生产联二脲的要求并降低了汽耗和电耗,年可节约110万元。
3)  entropy generation intensity
熵产强度
1.
The concept of entropy generation intensity is introduced,the calculating formula which is applicable to thermal entrance region and full development of region is given.
引入了熵产强度的概念 ,给出了对热进口段和充分发展段都适用的熵产强度计算式 ,讨论了由流阻引起的熵产强度和由温差引起的熵产强度及有关参数对总熵产强度的影响 ,并为换热器的优化设计提供理论依
4)  Dust-producing strength
产尘强度
5)  Heat flow strength
热流强度
1.
It has been applied to the quantitative analysis of the relationships between the heat flow strength and the thicknesses of hearth wall and slag skull.
建立了高炉炉缸传热的数学模型,这一模型可精确地分析热流强度与炉墙及渣皮厚度之间的定量关系。
6)  Thermal strength
热强度
1.
It indicates that the former two make both cold and thermal strength decreasigng,while simple substance(C) improves the thermal property of coke for both simple and blending coal.
结果表明 ,无机酸 ( A)和氧化物 ( B)使焦炭冷热强度均下降 ,单质 ( C)加入煤中炼焦 ,无论对单种煤或是配煤 ,均能明显改善焦炭热性质 ,且在所研究的范围内 ,随着加入量的增大 ,热性质改善增大 ;对焦炭热性质越差的焦炭 ,单质 ( C)对其改善的程度越
2.
Through the test analysis carried out for quality of coke and coal of 6 m coke Oven,the influencing factor of thermal strength was discussed,the results show that the type of coke oven,the mode of coke extinguishing,time of coking and granularity of coal are the important factors influencing the thermal property of coke.
通过对6 m生产焦炉焦炭质量及对应配煤质量的分析,探讨了焦炭热强度的主要影响因素,试验结果显示焦炉炉型、干熄焦、结焦时间及配煤细度等对焦炭热强度都有不同程度的影响,6 m焦炉较4。
3.
The contradiction between constantly pursuing higher coke thermal strength and shortage of coking coal resources has been aggravated, directly threatening the sustainable development and survival of blast furnace technology.
不断追求高的焦炭热强度与炼焦煤资源短缺的矛盾在不断加剧,直接威胁到高炉工艺的可持续发展和生存。
补充资料:表光合强度(见光合强度)


表光合强度(见光合强度)
forecast of sowing or transplanting time

b iaoguanghe qiangdu表光合强度见光合强度
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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