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Analysis and FDTD Modeling of the Influences of Microwave Electromagnetic Waves on Human Biological Systems 被引量:1
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作者 Anthony Bassesuka Sandoka Nzao 《Open Journal of Applied Sciences》 2022年第6期912-929,共18页
The interactions of electromagnetic waves with the human body are complex and depend on several factors related to the characteristics of the incident wave, including its frequency, its intensity, the polarization of ... The interactions of electromagnetic waves with the human body are complex and depend on several factors related to the characteristics of the incident wave, including its frequency, its intensity, the polarization of the tissue encountered, the geometry of the tissue and its electromagnetic properties. That’s to say, the dielectric permittivity, the conductivity and the type of coupling between the field and the exposed body. A biological system irradiated by an electromagnetic wave is traversed by induced currents of non-negligible density;the water molecules present in the biological tissues exposed to the electromagnetic field will begin to oscillate at the frequency of the incident wave, thus creating internal friction responsible for the heating of the irradiated tissues. This heating will be all the more important as the tissues are rich in water. This article presents the establishment from a mathematical and numerical analysis explaining the phenomena of interaction and consequences between electromagnetic waves and health. Since the total electric field in the biological system is unknown, that is why it can be determined by the Finite Difference Time Domain FDTD method to assess the electromagnetic power distribution in the biological system under study. For this purpose, the detailed on the mechanisms of interaction of microwave electromagnetic waves with the human body have been presented. Mathematical analysis using Maxwell’s equations as well as bio-heat equations is the basis of this study for a consistent result. Therefore, a thermal model of biological tissues based on an electrical analogy has been developed. By the principle of duality, an electrical model in the dielectric form of a multilayered human tissue was used in order to obtain a corresponding thermal model. This thermal model made it possible to evaluate the temperature profile of biological tissues during exposure to electromagnetic waves. The simulation results obtained from computer tools show that the temperature in the biological tissue is a linear function of the duration of exposure to microwave electromagnetic waves. 展开更多
关键词 Human biological Systems Microwaves COUPLING SAR Thermal effects Non-Thermal effects The FDTD Method Maxwell’s equations bio-heat equation Electrical model Thermal model
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考虑热解热的大颗粒煤热解过程计算模拟 被引量:1
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作者 于宏志 吕文朝 +1 位作者 徐庶民 过明道 《燃烧科学与技术》 EI CAS CSCD 1998年第3期270-275,共6页
流化床中大颗粒煤的热解与粉煤炉中粉煤的热解有很大差别,其过程由煤粒内部的传热和化学动力学联合控制,除必须考虑热解热效应对热解过程的影响外,还应考虑温度对热解动力学的影响。本文应用双方程化学动力学模型,考虑了热解热效应... 流化床中大颗粒煤的热解与粉煤炉中粉煤的热解有很大差别,其过程由煤粒内部的传热和化学动力学联合控制,除必须考虑热解热效应对热解过程的影响外,还应考虑温度对热解动力学的影响。本文应用双方程化学动力学模型,考虑了热解热效应,对流化床大颗粒煤的热解规律进行计算模拟,并与实验结果比较,取得较好结果。 展开更多
关键词 热解 热效应 双方程模型 流化床 大颗粒煤
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航天器用低温多层隔热性能计算方程 被引量:3
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作者 张暘 赵剑锋 +5 位作者 韩崇巍 张宁莉 宁博 杜卓林 赵欣 赵啟伟 《中国空间科学技术》 EI CSCD 北大核心 2021年第2期63-70,共8页
航天器常用有效发射率表征多层的隔热性能,其经验值范围为0.02~0.04,经验值仅与多层单元数有关,不随温度变化。有效发射率经验值的适用条件是多层的热面温度约-10℃~50℃,多层的冷面不照太阳。使用条件偏离得越多,有效发射率的经验值导... 航天器常用有效发射率表征多层的隔热性能,其经验值范围为0.02~0.04,经验值仅与多层单元数有关,不随温度变化。有效发射率经验值的适用条件是多层的热面温度约-10℃~50℃,多层的冷面不照太阳。使用条件偏离得越多,有效发射率的经验值导致的计算偏差就越大。针对该问题,提出采用辐射项加导热项的混合传热模型,取代传统的纯辐射模型,并给出了方程中导热项系数和辐射项系数的计算方法。以国产10单元多层为例,给出了方程系数的详细计算过程,该系数已用于工程实际。用多种工况验证了该方程的准确性,并阐述了纯辐射模型导致较大偏差的问题根源。采用混合传热模型使高温/低温区的计算偏差从20℃降低至5℃。混合传热模型比纯辐射模型更适于描述多层的传热过程。最后,研究了选取多层隔热性能热平衡试验工况的原则。 展开更多
关键词 多层 隔热性能计算方程 纯辐射模型 有效发射率 混合传热模型 导热项 辐射项
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合肥市地表温度与植被覆盖度的关系研究 被引量:2
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作者 方刚 陈健宇 +1 位作者 芮广军 邓大保 《河南工程学院学报(自然科学版)》 2021年第3期22-26,32,共6页
以合肥市为研究区,以Landsat 8影像为数据源,运用像元二分法和大气校正法研究了2020年合肥市地表温度与植被覆盖度的关系。结果表明:地表温度与植被覆盖度为负相关关系。合肥市郊区植被覆盖度每增加0.1,地表温度下降0.39℃;城区植被覆... 以合肥市为研究区,以Landsat 8影像为数据源,运用像元二分法和大气校正法研究了2020年合肥市地表温度与植被覆盖度的关系。结果表明:地表温度与植被覆盖度为负相关关系。合肥市郊区植被覆盖度每增加0.1,地表温度下降0.39℃;城区植被覆盖度每增加0.1,地表温度下降0.6℃。 展开更多
关键词 热岛效应 植被覆盖度 合肥市 像元二分法(DPM) 大气校正法(RTE)
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The assessment of time dependent flow of Williamson fluid with radiative blood flow against a wedge 被引量:1
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作者 K.Subbarayudu S.Suneetha P.Bala Anki Reddy 《Propulsion and Power Research》 SCIE 2020年第1期87-99,共13页
The present pagination reports both Brownian diffusion and thermophoresis aspects subject to magneto hydrodynamic Williamson fluid model.Assuming the flow is unsteady and blood is treated as Williamson fluid over a we... The present pagination reports both Brownian diffusion and thermophoresis aspects subject to magneto hydrodynamic Williamson fluid model.Assuming the flow is unsteady and blood is treated as Williamson fluid over a wedge with radiation.The governing equations are transformed into ordinary differential equations by using similarity variables.The analytical solutions of the transformed governing equations are obtained by using the RK 4th order method along with shooting technique solver.The effects of various physical parameters such as Hartmann number,local Weissenberg number,radiation parameter,unsteadiness parameter,Prandtl number,Lewis number,Brownian diffusion,thermophoresis,wedge angle parameter,moving wedge parameter,on velocity,temperature,concentration,skin friction,heat transfer rate and mass transfer rate have been discussed in detail.The velocity and temperature profile deprives for larger We and an opposite trend is observed for concentration.The radiation parameter is propositional to temperature and a counter behaviour is observed for Pr. 展开更多
关键词 The present pagination reports both Brownian diffusion and thermophoresis aspects subject to magneto hydrodynamic WILLIAMSON fluid model. Assuming the flow IS unsteady and blood IS treated as WILLIAMSON fluid over a WEDGE with radiation. The governing equationS are transformed into ordinary differential equationS by using similarity variables. The analytical solutions of the transformed governing equationS are obtained by using the RK 4th order method along with shooting technique solver. The effects of various physical parameters such as Hartmann NUMBER local Weissenberg NUMBER radiation PARAMETER unsteadiness PARAMETER Prandtl NUMBER Lewis NUMBER Brownian diffusion thermophoresis WEDGE angle PARAMETER moving WEDGE PARAMETER on velocity temperature concentration skin friction heat transfer rate and mass transfer rate have been discussed in detail. The velocity and temperature profile deprives for larger We and an opposite trend IS observed for concentration. The radiation PARAMETER IS propositional to temperature and a counter behaviour IS observed for Pr.
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