Scopri come la simulazione multifisica viene utilizzata per ricerca e sviluppo
In questa sezione troverete i lavori presentati alle Conferenze mondiali COMSOL. Le presentazioni descrivono ricerche e prodotti innovativi progettati con COMSOL Multiphysics da colleghi di tutto il mondo. I temi delle ricerche presentate abbracciano un'ampia gamma di settori produttivi e aree applicative, in ambito elettrico, meccanico, fluidodinamico e chimico. Lo strumento di Ricerca Rapida vi permetterà di trovare le presentazioni che si riferiscono all'area di vostro interesse.
Visualizza gli articoli presentati alla COMSOL Conference 2020
Temperature changes in the body have been recognized as an indicator of illness for centuries and localized temperature variations due to inflammatory or ischemic events are common in a great variety of diseases. In the case of cancerous breast tumors the increased cell growth rate ... Per saperne di più
Increased demand for high power electronics has required increasingly more efficient thermal management techniques. Simple cold plates using tubes or channels are frequently used to cool high power components but restrictions on size, weight, and power have restricted their ... Per saperne di più
储氢合金的PCT曲线和氢化动力学性能是描述合金储氢性能的重要标准,目前对合金的PCT曲线测试一般采用体积法,对合金氢化反应动力学的研究一般采用等容差压法。但在实际生产过程中,储氢合金通常是在恒定氢气流速的情况下工作的,所以研究合金在恒定氢气流速条件下的吸氢动力学性能很有必要。与实验相比,采用数值模拟预报合金的吸放氢性能节省了大量的时间和成本,具有突出优势。目前金属Pd及其合金被广泛应用于储氢及氢气纯化等领域,我们通过COMSOL软件建模,构建Pd吸氢热力学与动力学特性模型,选用传热、流体流动、域常微分等物理场模块建立了Pd在恒定氢气流速下吸氢动力学的计算模型 ... Per saperne di più
Abstract: The electric field and temperature are the two important factors that influence the fiber diameters and properties in the melt electrospinning process. It is commonly known that the polymer jet behavior is governed by the electric field within spinning area. In the present ... Per saperne di più
由于异种金属的热物理性能存在较大差异,在焊接过程中极易形成金属间化合物,这给两种材料的焊接造成了一定的困难。因此,针对钢/铝异种金属焊接存在的难点,建立了基于COMSOL软件的激光-TIG复合热源焊三维瞬态熔池数值分析模型。利用所建模型对不同焊接条件下的激光-TIG复合热源焊熔池形貌和温度场进行模拟计算,分别探讨了激光功率、电弧电流及焊接速度对复合焊焊接温度场的影响规律。 Per saperne di più
煤炭地下气化就是将处于地下的煤炭直接进行有控制的燃烧,通过对煤的热作用及化学作用产生可燃气体的过程。煤炭地下气化过程中,随着气化工作面的扩展,燃空区范围不断扩大,煤层顶板产生裂隙甚至发生冒落,对地下气化稳定运行造成不确定影响。相较于常规井工开采造成的顶板垮落,气化过程会产生大量热,顶板在煤层温度场高温作用下因热膨胀产生热应力,改变顶板内热应力的分布,同时温度会对顶板岩石的抗压强度、抗折强度、比热容、导热系数等造成影响。研究随着燃空区的逐渐扩展,顶板在温度影响下的应力场分布,对研究煤炭地下气化过程中的顶板冒落规律有重要意义。 ... Per saperne di più
基于COMSOL仿真射频消融的热传导问题研究 程家幸1 吴浪2 1.东南大学工程力学系,南京210096 2.南昌大学抚州医学院,抚州344100 摘要:在临床医学中,肿瘤的治疗方法不仅有传统的手术治疗,现如今消融术也是一种对早期乳头状肿瘤以及某些原发性不可切除的肿瘤早期阶段较好的医疗手段[1]。在本案例中,利用COMSOL Multipyhsics软件平台构建了一个具有20个“钩子”的电极,通过传热接口仿真电极加热使温度传导到周围组织以杀死细胞。其中,比较已存在的射频消融仿真案例[2] ... Per saperne di più
Abstract: Gifford-McMahon (GM) refrigerator based on gas expansion effect can provide a cooling temperature below 4.2 K, which is widely used to cool superconducting magnets for applications such as magnetic resonance imaging and to provide low temperature environment for condensed ... Per saperne di più
Vapor-compression technology has been the dominant refrigeration technology for decades, due to its scalability, relatively compact size, high reliability, and other attributes. However, the refrigerants used in vapor-compression equipment have detrimental effects on the global ... Per saperne di più
纳米磁流体具有高靶向性和可控性,在药物靶向释放,磁分离以及微流控领域中引起广泛关注。磁流体是在基础流体如水、乙二醇等溶液中分散直径小于 20 nm 的磁性粒子,其作为一种新型的高传热性能的能量输送媒介,在其应用过程中传热性能是不可忽略的。国内外许多学者对磁性流体流动与强化换热机理进行了许多研究,取得了大量的研究成果。磁流体由于具有磁性和流动性,在外加磁场作用下,利用磁场调控能够有效增强换热效果。基于此本文在稳态条件下,利用磁场、流体和传热多物理场耦合方式,针对二维通道内磁性流体进行数值仿真计算,通过设置不同磁体组合、纳米流体体积分数和磁场强度研究磁流体的传热性能。 Per saperne di più