step loading造句
例句與造句
- Neural network model for rheology of rock and soil under step loading
分級加載下巖土流變的神經(jīng)網(wǎng)絡(luò)模型 - The step load is a good way to determine the number of users at which this occurs
單步負(fù)載是確定發(fā)生上述情況時(shí)的用戶數(shù)的好方法。 - Step load change
負(fù)荷階躍 - Dislocation distribution function of the edges of an axially symmetric crack subjected to unit - step loads
軸對稱裂紋表面受階躍載荷的位錯(cuò)分布函數(shù) - Elastic - plastic dynamic response mechanism of a variable cross - section cantilever beam subjected to step load
階躍載荷作用下變截面懸臂梁的彈塑性響應(yīng)模式 - It's difficult to find step loading in a sentence. 用step loading造句挺難的
- The step load pattern is used to specify a user load that increases with time up to a defined maximum user load
單步負(fù)載模式單步負(fù)載模式用于指定隨時(shí)間不斷增加到定義的最大用戶負(fù)載的用戶負(fù)載。 - For example , set the start and maximum user counts for the step load pattern . after you choose the load pattern , click next
選擇了負(fù)載模式之后,單擊“下一步”可前進(jìn)到“負(fù)載測試向?qū)А钡摹拔谋窘M合”頁。 - With the stepping load , you also have to monitor agent resources closely to make sure that the agents can generate the desired load
使用單步負(fù)載時(shí),還必須密切監(jiān)視代理資源,以確保代理能夠生成所需的負(fù)載。 - Under the integral control mode , the same simulation results are got with the difference integral and differential coefficient when the step load happens
在積分控制工作方式下,取不同的積分、微分系數(shù),在負(fù)載階躍變化時(shí)得到了與模擬控制相同的仿真波形。 - From the beginning construction of the raft foundation to sealing roof during the overall construction procedure , the representative seven step loads are selected to apply to the simulating models
計(jì)算時(shí)重點(diǎn)選取了從筏板施工開始至主樓結(jié)構(gòu)封頂?shù)娜^程中具有代表性7次荷載進(jìn)行模擬。 - The advantages and disadvantages of current - mode control technique is analyzed and studied intently . according to these , the small signal model of phase - shifted full - bridge converter in continuous current is built . by using matlab tools , the simulations of response of output voltage due to the step load are given
本文重點(diǎn)分析了電流型控制的優(yōu)缺點(diǎn),在此基礎(chǔ)上,建立了電流連續(xù)時(shí)全橋移相zvspwmdc - dc變換器閉環(huán)小信號模型,得到了負(fù)載階躍擾動(dòng)時(shí)輸出電壓的仿真波形。 - Used the metering - out control system in which the hydraulic cylinder was the executive element as research object in this thesis , the experimental research about the effect on the pressure p1 , p2 of the hydraulic cylinder chambers when series - connecting throttle valve or governor valve on the return oil - line under the step load changing have made
本文以單出桿液壓缸為執(zhí)行元件的出口節(jié)流調(diào)速系統(tǒng)為研究對象,在其回路上分別串接節(jié)流閥和調(diào)速閥,當(dāng)負(fù)載發(fā)生階躍變化時(shí),對液壓缸兩腔壓力p _ 1 、 p _ 2的影響進(jìn)行了試驗(yàn)研究。 - Through experimental research , the calculation formula that the pressure highly - adjusted capacity of two cylinder chambers varied with the change of step load and the formula about hydraulic elements main parameter ( rated pressure ) were both made , which had important valuation in selecting the main parameter about this hydraulic system
通過試驗(yàn)研究得出了出口節(jié)流調(diào)速系統(tǒng)中液壓缸兩腔壓力超調(diào)量隨負(fù)載變化的計(jì)算公式以及出口節(jié)流調(diào)速系統(tǒng)中液壓元件主參數(shù)(額定壓力)計(jì)算公式,有利于正確選擇系統(tǒng)的元件及主參數(shù)。 - When the governing valve was series - connected on the return oil - line in the metering - out control system , under the same flow area and the same adjusted pressure of relief valve , with the incremental quantity of step load , the pressure highly - adjusted capacity of the hydraulic cylinder chamber with piston - rod increased , meanwhile , it ' s time of rise , time to peak and the governing time all increased . at the same time , the pressure highly - adjusted capacity of the hydraulic cylinder chamber without piston - rod increased
當(dāng)出口節(jié)流調(diào)速系統(tǒng)的回油路上串接調(diào)速閥時(shí),隨階躍負(fù)載的增加,在相同流量閥開度、相同溢流閥調(diào)節(jié)壓力的情況下,液壓缸有桿腔壓力p _ 2 ( t )的超調(diào)量是增加的,上升時(shí)間、峰值時(shí)間以及調(diào)整時(shí)間也是增加的;液壓缸無桿腔壓力p _ 1 ( t )的超調(diào)量是增加的。 - The result shows that the potential difference between the upper side and bottom side of the cantilever sample present the biphasic pulse when it is under step load , the result also shows the potential between the upper side and bottom side of the four point bending beam adds with the frequency of load , but the phase difference changes opposite from the potential
結(jié)果表明流動(dòng)電位差在躍階載荷作用下存在雙脈沖現(xiàn)象,而在受交變載荷時(shí)其值隨載荷頻率的增加而增加并趨于平緩,其相位差則與電位差的變化剛好相反,這與gross和salzstein等的結(jié)果一致。
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