首页
外语
计算机
考研
公务员
职业资格
财经
工程
司法
医学
专升本
自考
实用职业技能
登录
外语
The Important Role Virtual Reality Plays in the Life of Engineers A) With the rapid development of science and technology,
The Important Role Virtual Reality Plays in the Life of Engineers A) With the rapid development of science and technology,
admin
2023-01-30
19
问题
The Important Role Virtual Reality Plays in the Life of Engineers
A) With the rapid development of science and technology, more and more new concepts appear in our life. Virtual reality has long been at the forefront of overhyped (吹捧过度的) technologies. Sure, it’s a cool party trick to play a video game in VR, but no one can actually utilize the technology in their daily life... right?
B) Virtual reality, or VR, along with augmented reality, AR, and mixed reality, MR, is growing more prominent in the use within a variety of industries, from video games to art, and even to engineering. More mainstream VR devices and platforms are helping normalize the technology, like the Oculus Rift and PlayStation. However, it’s important to understand that uses of these alternate reality spaces don’t just stop at the functions of that specific hardware or software.
C) VR has a growing presence in the engineering community. Particularly in the automotive design space, VR can be utilized to mold and sculpt models of automobiles or even interact with a final designed car to make sure the ergonomics (人体工程学) and feel are as desired. To understand AR, VR&MR technology applications within engineering, first, we need to take a look at their capabilities.
D) Virtual reality is a fully immersive technology. You dawn your goggles and are in a completely computer-focused and computer-genera ted landscape. Augmented reality takes one step back and mixes in real-life elements. Mixed reality makes a connection between the digital space in VR or AR into the real world. For example, MR would allow you to look us through AR goggles and change a virtual dial hovering in front of you that would then change the lighting in the room. VR is all virtual, AR is virtual and physical, and MR connects the virtual and the physical.
E) Now that we understand the basics of these technologies and how they apply to the world around us, both digital and physical, we can begin drawing connections to how they might affect the life and work of engineers.
F) Designing in terms of engineering used to be a fairly 2D process. Designs were limited to what you could accurately represent and depict on paper by hand. With Computer-Aided Design (CAD), the ability of engineers to design more complex things has become prominent. With 3D printing, the design to prototype phase has also been shortened. However, additive manufacturing, or 3D printing, isn’t a quick process in terms of the design process. Additive manufacturing assemblies of parts or even full designs can be complex and time-consuming for engineers. It would be far easier to make a few clicks in CAD, put on a headset, and view your design in front of you.
G) Computer-Aided Design software today can help engineers instantly visualize a component, assembly, or design in a real-life-like seeming space. While the incredible rendering technology of modern CAD solutions helps, being able to interact with an object pseudo-physically is the next step (before additive manufacturing a prototype, of course). VR ultimately can help reduce any probability that the design moves further along in the design process than it should. It offers quick, simple, and easy design validation.
H) Most major CAD software providers already offer VR connections in their tools. Rendering programs like Autodesk 3DS Max allow your designs to be viewed in VR with a few clicks.
I) Companies like General Motors are utilizing augmented reality to improve the design of safety-oriented parts on their vehicles. Alongside simulation-based CAD tools like generative design, augmented reality allows GM engineers to render crash scenes or impact loads on their parts, giving them insight into where they might need to beef up their design or perhaps if they need to relocate essential automobile components.
J) On the assembly front, several manufacturers like Boeing are training their manufacturing staff utilizing AR and VR training environments. These environments allow the engineers to toggle (切换) and manipulate often large and cumbersome parts with ease, of course, all in a digital— but real feeling—space.
K) On the quality assurance front, augmented reality allows Q/A supervisors to wear AR rigs to overlay an image of complete assemblies or parts onto the real-life part in front of them. This is a quick and effective way to reference back to the original design files and quickly check tolerances.
L) At the end of the day, virtual reality in the engineering design and validation space is still a new technology that is waiting on mainstream engineering adoption. While big companies are implementing the technologies where they can, we still need time and use-cases to see where AR and VR fit into the most practical of uses in the modern design engineer’s workflow.
M) I will make one closing call out to the use of VR for mechanical engineers. Imagine how easy it would be to demonstrate what you do at work when a friend or a family member asks when you have a VR headset at your fingertips. Just have them pop on the headset and let them interact with your model or design. Rather than making them stare at a boring CAD model, showing off your design in VR takes your "coolness" to the next level.
N) For most mechanical engineers, we might design something like a part for an HVAC system or a component for a tractor, neither of which are inherently "cool" things. However, if you put those designs in VR, engineering will become one of the coolest professions out there. For right now, utilizing VR as a STEM and engineering motivation tool might be another fantastic use.
O) At the end of the day, engineering and the design process is becoming increasingly based on simulation, cutting edge tools, and cutting-edge visualization capabilities. Designing in 2020 looks a lot different than it did in 2010. Designing in 2010 looked a lot different than designing in 2000... and so on. That’s why we should always follow the step of high technology and make full use of it to make everything better than you could expect.
VR has not yet been fully adopted in the engineering design and validation space in the industry of engineering.
选项
答案
L
解析
由题干中的engineering design and validation space定位到L)段第一句。同义转述题。定位句提到。虚拟现实在工程设计和验证领域仍然是一项有待于主流工程采用的新技术。题干中的adopted对应定位句中的adoption,故答案为L)。
转载请注明原文地址:https://www.kaotiyun.com/show/DEqD777K
0
大学英语四级
相关试题推荐
Thistextistightlystructuredaroundthemainthemeofresearchassessment,scaffoldedwithaclearintroductionandusefulco
ManyiceresearchersbelievethatthemeltingGreenland,ifitcontinues,willaddatleastthreefeettoglobalsealevelsby2
Scientistsarepushingknowntechnologiestotheirlimitsinanattemptto________moreenergyfromtheearth.
OntheInternet,adsarearealproblem.They’reaproblemforus,thepeople,andnotjustbecausetheyclutterupourWebpage
Acertainamountofunemploymentlubricateslabormarkets,maintainingareadysupplyofworkersforexpandingbusinesses.
Inthisnewworldthemostdangerousconflictswillnotbebetweensocialclassesorothereconomicallydefinedgroups,butbetw
奶奶吃“鲜”,现在想起来意味深长。在那样-一个遥远的乡村,奶奶的生命与大自然紧密相连,天增岁月人增寿。她以感恩的心情,真情面对土地上的每一种果实的每一次成熟。深刻领会大自然无比的恩惠,年迈的她活得谦恭执着而又鲜活。与居住在乡间的奶奶相比,现代的都
SuggestopediaIntroductionbasis:how【L1】________worksandhowwelearnmosteffectivelyorigin:【L2】________andpedagogy
HowtoBondwithYourBossHavingagoodrelationshipwithyourbosshasapositiveimpactonyourcareer.Accordingtorese
HavingaBetterConversationHavingagoodconversationisdifficultnowadaysTraditional【L1】________mayalsoevolveintoan
随机试题
对资料平均水平描述的指标有
骨关节炎最常累及的关节是
既能利尿通淋,又治湿热痹痛的药物是
某热电厂从某煤矿购煤200吨,约定交货期限为2007年9月30日,付款期限为2007年10月31日。9月底,煤矿交付200吨煤,热电厂经检验发现煤的含硫量远远超过约定标准,根据政府规定不能在该厂区燃烧。基于上述情况,热电厂的哪些主张有法律依据?(2008年
某企业向银行借款250万元,期限2年,年利率6%,半年复利计息一次。第2年末还本付息,则到期企业需支付给银行的利息为()万元。
属于堤岸支挡的工程有()。
被称为现代“教育学之父”的教育家是()。
50名大众评委投票从甲、乙、丙三道菜中评选最佳菜肴,投票时每人只能投给一道菜,得票最多的当选为最佳菜肴。开票中途累计,前25张票中,甲得13票,乙得9票,丙得3票。问在尚未统计的选票中,甲至少再得多少票才能当选为最佳菜肴?()
Solongasteachersfailtodistinguishbetweenteachingandlearning,theywillcontinuetoundertaketodoforchildrenthatw
毛泽东在《新民主主义论》中指出:“在五四以后,中国产生了完全崭新的文化生力军,即新民主主义的文化,就是民族的科学的大众的文化,就是人民大众的反帝反封建的文化。”论述这种新民主主义文化的基本内涵和要求,为什么说它代表了五四以来中国先进文化的前进方向?
最新回复
(
0
)