It is convenient to adopt the control volume illustrated in fig. 2-1 . 采用如圖21所示的控制容積是很方便的。
Systematic use of cell - matrix control volumes 細胞母質(zhì)控制體積的系統(tǒng)化操作。
It is convenient to adopt the control volume illustrated in fig . 2 - 1 采用如圖2 ? 1所示的控制容積是很方便的。
It is convenient to adopt the control volume illustrated in fig . 2 - 1 采用如圖2 1所示的控制容積是很方便的。
The discrete equation was deduced by control volume integral method , and realized by numerical method 用控制容積積分法導(dǎo)出了離散方程,并用數(shù)值方法進行了求解。
Adjust brightness , control volume , set auto off timer and select vibrate mode on your palm 調(diào)整亮度,控制音量,設(shè)置定時自動關(guān)閉和選擇震動模式。單鍵切換所配置的主題和設(shè)置。
The combined simulation matrix of a finite number of primitive parts is deduced by the finite difference control volume conservation method and interaction principle , based on the fundamental physical laws 通過控制容積法及相互作用原理,導(dǎo)出了空調(diào)元件有窮組合的模擬計算矩陣。
A numerical model , based on the control volume method , is developed for the freezing and melting of the ice - on - coil thermal storage tank . the model is able to simulate both charging and discharging modes 建立了不完全凍結(jié)方式的導(dǎo)熱塑料蓄冰盤管的結(jié)冰和融冰過程的數(shù)學(xué)模型,該模型能夠較好地模擬蓄冰盤管的結(jié)冰和融冰過程。
The primary research can be listed as follows . in this thesis , a control volume method was employed to model the microstructure of 3 - d braided performs produced by the four - step 1 1 square braiding process and their reinforced composite materials 主要的研究內(nèi)容包括以下幾個方面:系統(tǒng)地研究了采用四步法1 1方型編織工藝編織的預(yù)成形件及其增強的復(fù)合材料的細觀結(jié)構(gòu)。
In the discrete process the mostly used method , the control volume method , is used . in the study of gas - particle flows numerical simulation , the gemchip arithmetic is often adopted . but it cannot be used directly in the investigation of clean room because of the low volume occupancy ( its volume fraction orde r is 10 - 10 below ) 采用控制體積法對氣粒多相流的控制方程進行離散,在gemchip算法基礎(chǔ)上,由于室內(nèi)懸浮顆粒的體積分數(shù)數(shù)量級在10 ~ ( - 10 )以下,無法直接求解,在研究中通過直接求解顆粒數(shù)密度,不直接求解顆粒的體積分數(shù)對離散方程進行了求解。
In fluid mechanics and thermodynamics, a control volume is a mathematical abstraction employed in the process of creating mathematical models of physical processes. In an inertial frame of reference, it is a volume fixed in space or moving with constant velocity through which the fluid (gas or liquid) flows.