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| 1 | Temperature-dependent development of diamondback moth, Plutella xylostella (Lepidoptera: Plutellidae) on two brassicaceous host plants显示文摘在 Plutella xylostella (Linnaeus ) 的发展的温度的效果(鳞翅目:Plutellidae ) ,在八经常的温度(10, 15, 20, 25, 28, 30, 32.5 和 35 度 C ) 被评估,与 65% 的相对湿度和 14:10 的一个光周期(L : D ) 二寄植物上的小时,花椰菜, Brassica oleracea var。botrytis 和卷心菜, Brassica oleracea var。capitata。低温度阀值被估计是 7.06 度 C 和 7.84 度 C,热常数是为 P 的 263.74 和 261.58 个户外每日平均温度之单位。花椰菜和卷心菜上的 xylostella 分别地,使用线性模型。数据被适合到各种各样的非线性的温度依赖者模型,并且低并且为开发的高温阀值,以及最适温度,被估计了。从文学的选择的标准被用来评估模型并且为 P 选择最合适的方程。每寄植物上的 xylostella 开发。决定性地,线性并且 Briere-2 模型为对 P 的温度依赖者开发的描述被推荐。二寄植物上的 xylostella。 | ALI GOLIZADEH KARIM KAMALI YAGHOUB FATHIPOUR HABIB ABBASIPOUR | 2007 | Insect Science2007,14,4: | 6 |
| 2 | Biological traits and life table parameters of variegated lady beetle, Hippodamia variegata (Coleoptera: Coccinellidae) on three aphid species显示文摘 | Ali Golizadeh Vahid Jafari-Behi | 2012 | Applied Entomology and Zoology2012,,3: | 1 |
| 3 | Experimental investigation of a latent heat thermal energy storage unit encapsulated with molten salt/metal foam composite seeded with nanoparticles显示文摘Molten salt has been widely used in latent heat thermal energy storage(LHTES)system,which can be incorporated into hybrid photovoltaic/thermal solar system to accommodate the built environment.Solar salt(60 wt.%NaNO 3 and 40 wt.%KNO 3)was employed as the phase change materials(PCMs)in this study,and both aluminum oxide(Al_(2)O_(3))nanopowder and metal foam were used to improve the properties of pure solar salt.The synthesis of the salt/metal foam composites seeded with Al_(2)O_(3)nanopowder were performed with the two-step and impregnation methods,and the composite PCMs were characterized morphologically and thermally.Then pure solar salt,the salt/2 wt.%Al_(2)O_(3)nanopowder and salt/copper foam composite seeded with 2 wt.%Al_(2)O_(3)nanopowder were encapsulated in a pilot test rig,respectively,where a heater of 380.0 W was located in the center of the LHTES unit.The charging and discharging processes of the LHTES unit were conducted extensively,whereas the heating temperatures were controlled at 240℃,260℃and 280℃respectively.Temperature evolutions at radial,angular and axial positions were recorded,and the time-durations and volumetric mean powers during the charging and discharging processes were obtained and calculated subsequently.The results show that physical bonding between Al_(2)O_(3)nanopowder and nitrate molecule has been formed from the morphological pictures together with XRD and FTIR curves.Slight changes are found between the melting/freezing phase change temperatures of the salt/metal foam composites seeded with Al_(2)O_(3)nanopowder and those of pure solar salt,and the specific heats of the salt/Al_(2)O_(3)nanopowder composite slightly increase with the addition of Al_(2)O_(3)nanopowder.The time-duration of the charging process for the salt/copper foam composite seeded with Al_(2)O_(3)nanopowder at the heating temperature of 240℃can be reduced by about 74.0%,compared to that of pure solar salt,indicating that the heat transfer characteristics of the LHTES unit encapsulated with the salt/copper foam composite seeded with Al_(2)O_(3)nanopowder can be enhanced significantly.Consequently,the mean volumetric powers of the charging process were distinctly enhanced,e.g.,the volumetric mean power of heat storage can reach 110.76 kW/m 3,compared to 31.94 kW/m 3 of pure solar salt.However,the additive has little effect on the volumetric mean power of heat retrieval because of the domination of natural air cooling. | Xin Xiao Hongwei Jia Dongsheng Wen Yousef Golizadeh Akhlaghi Ali Badiei | 2023 | Energy and Built Environment2023,4,1: | 0 |
| 4 | Estimating temperature-dependent developmental rates of potato tuberworm, Phthorimaea operculella (Lepidoptera: Gelechiidae)显示文摘土豆 tuberworm, Phthorimaea operculella (Zeller )( 鳞翅目:Gelechiidae ) ,是土豆的最破坏的害虫,茄属 tuberosum L。(Solanaceae ) ,在地和储藏室状况里的热带、副热带的区域。当模特儿温度依赖者开发能在预报害虫的出现和人口动力学是有用的。为这个害虫的出版发展参数为许多原因极大地变化。我们决定了 P 的温度依赖者开发。在七经常的温度的 operculella (16, 20, 24, 28, 32, 34 和 36 湥 t?? | Ali Golizadeh Myron P. Zalucki | 2012 | Insect Science2012,19,5: | 0 |