dynamic adj. 1.動力的,動力學(xué)的;力學(xué)(上)的;動(態(tài))的;起動的。 2.有力的,有生氣的;能動的;(工作)效率高的。 3.【音樂】力度;強弱法的。 4.【醫(yī)學(xué)】機能(上)的。 5.【哲學(xué)】動力論的,力本論的。 a dynamic personality 活躍的性格。 a dynamic atmosphere 生氣勃勃的景象。 a dynamic population 動態(tài)人口。 n. 〔限指 dynamic〕 (原)動力;動態(tài)。 adv. -ally
Experiments and numerical simulation of dynamic cool - down process of stainless steel plate in liquid nitrogen bath 液氮浴中不銹鋼板動態(tài)冷卻過程試驗及模擬分析
In conclusion , dynamic cooling is effective in protecting the epidermis and papillary dermis , while achieving deep tissue photocoagulation during nd : yag laser illumination 因此,在銣雅鉻激光對深部組織造成光凝療效的同時噴射冷卻系統(tǒng)可有效的保護表皮。
In conclusion , dynamic cooling is effective in protecting the epidermis and papillary dermis , while achieving deep tissue photocoagulation during nd : yag laser illumination 因此,在銣雅鉻雷射對深部組織造成光凝療效的同時噴射冷卻系統(tǒng)可有效的保護表皮。
Nd : yag laser illumination resulted in deep ( up to 1 . 0 0 . 2 mm ) tissue photocoagulation , while dynamic cooling preserved the overlying epidermis and papillary dermis 本實驗結(jié)果顯示,銣雅鉻雷射可造成1 . 0 0 . 2豪米深度的組織破壞同時噴射冷卻仍可保持表皮之完整無傷。
The purpose of our study is to examine the effectiveness of dynamic cooling in protecting superficial tissue structures during continuous nd : yag laser illumination of in vivo and ex vivo models for hemangiomas 因此,吾人設(shè)計出在毫秒間噴射式冷卻系統(tǒng)配合激光的照射將局部表皮冷卻下來。
The purpose of our study is to examine the effectiveness of dynamic cooling in protecting superficial tissue structures during continuous nd : yag laser illumination of in vivo and ex vivo models for hemangiomas 因此,吾人設(shè)計出在毫秒間噴射式冷卻系統(tǒng)配合雷射的照射將局部表皮冷卻下來。
To facilitates the analysis , this paper adopts the computer simulation methods which consist of detailed dynamic cooling load calculations , system simulations and heavy statistics 為進行快速有效的分析、驗證,本文借助計算機模擬的方法,這主要涉及到詳細(xì)的空調(diào)動態(tài)負(fù)荷計算和系統(tǒng)模擬計算以及大量的計算結(jié)果統(tǒng)計。
The object of study of the thesis is a stock exchange . its load of air conditioning system is typical . through building model , theory analysis and in contrast with the experiment result study the dynamic cooling load of air conditioning system in the stock exchange 本文即以空調(diào)負(fù)荷有特點的證券營業(yè)部為研究對象,通過建立模型,理論計算分析,最后與實驗結(jié)果對比分析,研究其空調(diào)動態(tài)負(fù)荷。
First , build the building model and air conditioning dynamic cooling load analysis model of the stock exchange in the basis of the experiment . second , calculate the air conditioning dynamic cooling load in summer ( april to october ) hourly by software simulation , obtain the maximum cooling load daily , the minimum cooling load daily , the proportion of each cooling load occupying the total cooling load and cooling load time frequence , analyse them by using twin load curves . last , contrast theoretical calculations with test results , analyse them and prove the model proper 首先,以實驗為基礎(chǔ)建立了證券營業(yè)部的建筑模型及空調(diào)動態(tài)冷負(fù)荷分析模型;其次,通過逐時逐日計算出了其夏季( 4月? 10月)空調(diào)動態(tài)冷負(fù)荷、各分項冷負(fù)荷在空調(diào)總冷負(fù)荷中所占的比例及空調(diào)冷負(fù)荷時間頻數(shù),并運用雙負(fù)荷曲線法對每日最大冷負(fù)荷與每日最小冷負(fù)荷進行分析;最后,與實測數(shù)據(jù)進行對比,二者曲線基本符合,效果良好,證明所建模型適當(dāng)。
It is a good try of this technique in biological field . 3 . according to the theoretical analysis of the effect of dynamic cooling caused by energy exchange between coi and na molecules , levenberg - marquardt algorithm for fitting nonlinear functions is applied to calculating the concentrations of multi - component gas mixture containing coa gas 通過對含有co _ 2的多成分氣體光聲信號激發(fā)機理的分析,應(yīng)用levenberg - marquardt擬合算法直接求解非線性方程組,有效的解決了因光聲信號位相改變使線性計算方法失效的問題。