| 1. | Thermal response time 铠装热电偶响应时间 |
| 2. | Thermal response time 热响应时间 |
| 3. | The model of thermal response of liquefied petroleum gas tanks partially exposed to jet fire 液化石油气储罐在喷射火焰作用下的热响应模型 |
| 4. | Standard test method for determining the dynamic thermal response of direct thermal imaging products - atlantek method 测定直接热成像产品的动态热敏感性的测试方法 |
| 5. | Standard test method for determining the dynamic thermal response of thermal mass transfer ribbon products - atlantek method 测定热质量传递带状产品的动态导热性的标准试验方法. atlantek方法 |
| 6. | The model is solved with the finite difference method , the simulation software is organized to simulate the transient thermal response of the front region of projectile wing such as those launched by electrothermal chemical guns 采用有限差分法进行数值求解,并编制了较为通用的仿真软件,用于模拟诸如由电热化学炮发射的高超声速穿甲弹弹翼前缘的瞬时热效应。 |
| 7. | The thermal control design of space camera by means of cad / cae / cat technology is described , technical problems on thermal optics of space camera , thermal control temperature index , thermal response and thermal control design are also discussed in this paper 摘要阐述了运用cad / cae / cat现代技术手段进行空间遥感相机热设计的技术路线,探讨了某空间遥感相机热光学性能、热控指标、空间环境下的热响应及热设计等技术问题。 |
| 8. | The paper simulate the transient thermal response of projectile wing according to the simulation software , and discuss the ablation characteristic when the projectile wing is in different initial velocity , in different wing shape , in different atmosphere condition and in different material condition 本文通过仿真软件模拟了弹翼的瞬时烧蚀外形,并详细讨论了不同初速、不同翼形、不同气象条件及不同材料条件下的烧蚀特性。 |
| 9. | The space optical remote sensor are subject to complicated space thermal loads , the calculation of the thermal response are performed in this paper by the method of fem and some thermal control method are taken , so the temperature ' s distribution of the sensor are well improved 摘要空间光学遥感器的工作平台为空间微小卫星,它在轨运行期间受到各种空间热环境激扰的作用,本文利用有限元法对空间光学遥感器进行了空间热环境下温度响应的分析求解,并进一步采取热控措施使仪器的温度梯度满足要求。 |
| 10. | This paper aims at the characteristics of thermal response of lpg vesse1 under high temperatue , conjoining the project of " study on transportation safety early - wdring system of lpg dangerous goods " supported by transportation departinen of china and the project of " mechanism study and numerical simulation of the explosion of lpg vessel " supported by science foundation of hubei province . the interdisciplinary research has been done among temperature field distribution of lpg vessel under flame surroundings , intensity calculation , crack propagation predication and mechanism of explosive accident , etc . three parts are analyzed and discussed 本文针对高温环境下液化气压力容器的热响应特性问题,结合交通部重点科技项目“液化气体类危险品运输安全预警系统的研究”和湖北省自然科学基金项目“液化气容器爆炸机理研究及数值模拟” ,对在火焰包围下的液化气压力容器的温度场分布、强度计算、裂纹扩展预测以及爆炸事故机理等方面开展了多学科的交叉研究。 |