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source positioning中文什么意思

發(fā)音:   用"source positioning"造句
  • 源位置控制
  • source:    n. 1.源頭,水源,源泉。 2.根源,本源;來源。 3 ...
  • position:    n. 1.位置;方位;地點(diǎn)。 2.處境,情況;狀態(tài),形勢(shì) ...
  • positioning:    安放工程; 把…放在適當(dāng)?shù)奈恢? 編輯定位尺寸; 變換位置; 調(diào)位; 定位;位置調(diào)整; 配置; 市場(chǎng)定位; 體位保持; 位置蝶; 位置控制;定位
  • source in:    源盤
  • the source:    舉報(bào)人
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例句與用法

  1. The bound control is updated when the data source value changes , or the data source position changes
    當(dāng)數(shù)據(jù)源值發(fā)生更改或數(shù)據(jù)源位置發(fā)生更改時(shí),將更新綁定控件。
  2. The source position not encompassed in a plane is indispensable to the exact reconstruction and the data redundancy is produced in the exact reconstruction , thus the complexity of the scanning system is increased and the speed of reconstruction is decreased
    精確重建的源點(diǎn)軌跡不在同一平面上且有大量的冗余數(shù)據(jù),這樣就增加了掃描系統(tǒng)的復(fù)雜性并降低了重建速度。
  3. Numerical simulation by cfd was carried out to understand the hot current behavior in a tunnel with longitudinal ventilation . it becomes clear that fire source modeling is very important because the hot current behavior is strongly affected by the fire source position and is sensitive to methods in the modeling of the fire source . the flame area which has developed from the fire source is an area of chemical reaction caused by combustion . even if grids in the vicinity of the fire source are made fine , it was difficult to simulate the heat generation area with consideration to this chemical reaction through using a method for setting the heat release rate simply on the fire source surface . therefore , we proposed a method adopting the knowledge on flame shape under the longitudinal ventilation and incorporating it into numerical simulation and it showed a good agreement with the experimental results . it was shown through experiments in a tunnel with longitudinal ventilation that the hot current developed toward the tunnel center downwind from the fire source near a wall . the cause was investigated by numerical simulation and it became clear from the results that the spiral air by the fire plume created a vortex in the crevice between the wall and the plume
    運(yùn)用cfd進(jìn)行數(shù)字模擬,以了解縱向通風(fēng)隧道內(nèi)熱煙氣流的特性.通過模擬發(fā)現(xiàn)對(duì)火源進(jìn)行模擬非常重要,熱煙氣流特性受火源位置的影響很大,并且對(duì)火源模擬方法很敏感.火源生成的火焰區(qū)是燃燒引起的化學(xué)反應(yīng)區(qū)域.即使火源附近的木垛排列完好,也很難在考慮這些化學(xué)反應(yīng)條件下模擬熱生成區(qū)域.建議考慮縱向通風(fēng)隧道內(nèi)火焰形狀并對(duì)它進(jìn)行數(shù)字模擬.模擬結(jié)果與試驗(yàn)結(jié)果非常吻合.試驗(yàn)證明,在縱向通風(fēng)隧道內(nèi),熱煙氣流從靠近墻體火源處順風(fēng)向隧道中心蔓延.數(shù)字模擬結(jié)果發(fā)現(xiàn),火災(zāi)羽流造成的螺旋上升空氣會(huì)在墻體和羽流之間形成一個(gè)渦流區(qū)
  4. Abstract : numerical simulation by cfd was carried out to understand the hot current behavior in a tunnel with longitudinal ventilation . it becomes clear that fire source modeling is very important because the hot current behavior is strongly affected by the fire source position and is sensitive to methods in the modeling of the fire source . the flame area which has developed from the fire source is an area of chemical reaction caused by combustion . even if grids in the vicinity of the fire source are made fine , it was difficult to simulate the heat generation area with consideration to this chemical reaction through using a method for setting the heat release rate simply on the fire source surface . therefore , we proposed a method adopting the knowledge on flame shape under the longitudinal ventilation and incorporating it into numerical simulation and it showed a good agreement with the experimental results . it was shown through experiments in a tunnel with longitudinal ventilation that the hot current developed toward the tunnel center downwind from the fire source near a wall . the cause was investigated by numerical simulation and it became clear from the results that the spiral air by the fire plume created a vortex in the crevice between the wall and the plume
    文摘:運(yùn)用cfd進(jìn)行數(shù)字模擬,以了解縱向通風(fēng)隧道內(nèi)熱煙氣流的特性.通過模擬發(fā)現(xiàn)對(duì)火源進(jìn)行模擬非常重要,熱煙氣流特性受火源位置的影響很大,并且對(duì)火源模擬方法很敏感.火源生成的火焰區(qū)是燃燒引起的化學(xué)反應(yīng)區(qū)域.即使火源附近的木垛排列完好,也很難在考慮這些化學(xué)反應(yīng)條件下模擬熱生成區(qū)域.建議考慮縱向通風(fēng)隧道內(nèi)火焰形狀并對(duì)它進(jìn)行數(shù)字模擬.模擬結(jié)果與試驗(yàn)結(jié)果非常吻合.試驗(yàn)證明,在縱向通風(fēng)隧道內(nèi),熱煙氣流從靠近墻體火源處順風(fēng)向隧道中心蔓延.數(shù)字模擬結(jié)果發(fā)現(xiàn),火災(zāi)羽流造成的螺旋上升空氣會(huì)在墻體和羽流之間形成一個(gè)渦流區(qū)

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