seismographic
简明释义
英[ˌsaɪzməˈɡræfɪk]美[ˌsaɪzməˈɡræfɪk]
adj. 地震仪的;地震学的
英英释义
Relating to the recording of seismic waves caused by earthquakes or other ground vibrations. | 与记录由地震或其他地面振动引起的地震波有关。 |
单词用法
地震监测 | |
地震勘测 | |
地震台站 | |
地震波 | |
地震网络 | |
地震图表 | |
地震设备 | |
地震技术 | |
地震研究 | |
地震测量 |
同义词
地震的 | 使用先进技术监测地震活动。 | ||
地震学的 | Seismological studies help us understand the Earth's movements. | 地震学研究帮助我们理解地球的运动。 | |
震动相关的 | Tremor-related data can provide insights into potential earthquakes. | 与震动相关的数据可以提供潜在地震的见解。 |
反义词
静态的 | 静态的环境带来了宁静的感觉。 | ||
稳定的 | 这个稳定的结构经受住了时间的考验。 |
例句
1.Along with sensitive seismographic equipment, GEMS will drill down about 20 ft. (6 m) with a thermometer-equipped probe, trying to figure out how quickly the temperature rises with depth.
除了备有灵敏的地震仪,地球物理监测站还将会使用一个装有温度计的探测器钻入地下20英尺(6米)以尝试着计算出温度随深度增加而升高的速度。
2.Along with sensitive seismographic equipment, GEMS will drill down about 20 ft. (6 m) with a thermometer-equipped probe, trying to figure out how quickly the temperature rises with depth.
除了备有灵敏的地震仪,地球物理监测站还将会使用一个装有温度计的探测器钻入地下20英尺(6米)以尝试着计算出温度随深度增加而升高的速度。
3.But these aren't the only types of graphs; some forms of data, especially time-based data such as share prices or seismographic data are best plotted on line graphs.
但这并不是惟一的图形,某些形式的数据,特别是基于时间的数据(如股票价格或者地震数据),最好用线图来表示。
4.In the Middle East, the sultanate of Oman have stated that they are planning to build seven new seismographic stations to monitor possible quakes and tsunamis.
在中东的阿曼苏丹国(简称阿曼,the sultanateof Oman)已经表态说他们将新建7个地震监测站以便对潜在地震和海啸进行预警。
5.Some studies have been done, seismographic, geochemical, where the data's consistent with the model, but they aren't definitive proof.
人们进行了一些地震学、地球化学方面的研究,这些研究中得出的数据和模型是一致的,但是它们不是最可靠的证据。
6.The accurate measurement of seismometer transfer function is important to interpret and use of seismographic observation data.
数字地震观测系统中地震计传递函数的测定对于观测数据在地震学中的解释和应用是非常重要的。
7.Top photo: Buzz Aldrin has just set up seismographic equipment on the surface of the moon, July 20, 1969.
照片:巴兹·奥尔德林刚在月球表面架起测震器材,1969年7月20日。
8.Photo: Buzz Aldrin has just set up seismographic equipment on the surface of the moon, July 20, 1969.
照片:1969年7月20日BuzzAldrin刚刚在月球表面设置完成测震学仪器。
9.Data transmission is the base of Telemeter Seismographic Network.
数据传输是遥测地震台网的运行基础之一。
10.The city installed new seismographic 地震图的 sensors to monitor earthquake activity.
这座城市安装了新的seismographic 地震图的传感器来监测地震活动。
11.Researchers analyzed the seismographic 地震图的 data to predict potential aftershocks.
研究人员分析了seismographic 地震图的数据,以预测潜在的余震。
12.The seismographic 地震图的 readings indicated a significant tremor in the region.
该地区的seismographic 地震图的读数显示出显著的震动。
13.During the conference, experts discussed the latest advancements in seismographic 地震图的 technology.
在会议期间,专家们讨论了seismographic 地震图的技术的最新进展。
14.The seismographic 地震图的 equipment was installed in various locations to ensure comprehensive coverage.
在各个地点安装了seismographic 地震图的设备,以确保全面覆盖。
作文
The world we live in is a dynamic place, constantly shaped by natural forces that are often invisible to us. One of the most significant of these forces is seismic activity, which can lead to earthquakes and other geological events. To understand and monitor these phenomena, scientists rely on various tools, among which the seismographic 地震图的 instruments play a crucial role. These devices are designed to detect and record the vibrations of the Earth caused by seismic waves, providing valuable data that can help predict and mitigate the impacts of earthquakes. Seismographs work by measuring the ground motion during an earthquake. When seismic waves travel through the Earth, they cause the ground to shake. The seismographic 地震图的 instruments consist of a mass suspended on a spring, which remains stationary as the ground moves. This relative motion between the mass and the ground is recorded, resulting in a trace that represents the intensity and duration of the seismic event. The data collected from seismographic 地震图的 readings can be analyzed to determine the earthquake's magnitude, depth, and location. The importance of seismographic 地震图的 technology cannot be overstated. In regions prone to earthquakes, such as California or Japan, these instruments are vital for early warning systems. By detecting the initial, less destructive waves of an earthquake, seismographic 地震图的 networks can alert people seconds before the more damaging waves arrive, potentially saving lives and reducing injuries. Furthermore, this technology aids in the study of tectonic plate movements, helping geologists understand the underlying processes that lead to seismic events. In addition to their application in earthquake monitoring, seismographic 地震图的 instruments are also used in various fields, including engineering and construction. Before building large structures, engineers often conduct seismic surveys using seismographic 地震图的 data to assess the ground's stability and the potential for seismic activity. This information is crucial for designing buildings that can withstand earthquakes, ensuring the safety of occupants. The evolution of seismographic 地震图的 technology has been remarkable. From the early seismometers developed in the 19th century to today's sophisticated digital systems, advancements have greatly improved our ability to detect and analyze seismic activity. Modern seismographic 地震图的 networks are often interconnected, allowing for real-time data sharing and analysis across vast geographical areas. This collaboration enhances our understanding of global seismic patterns and improves our preparedness for future earthquakes. In conclusion, the role of seismographic 地震图的 instruments in monitoring and understanding seismic activity is indispensable. Their ability to provide critical data not only aids in predicting and responding to earthquakes but also contributes to safer engineering practices. As technology continues to advance, the insights gained from seismographic 地震图的 research will undoubtedly enhance our resilience to the ever-present threat of seismic events, ultimately safeguarding lives and property in vulnerable regions around the world.
我们生活的世界是一个动态的地方,不断受到自然力量的影响,这些力量往往对我们来说是看不见的。其中最重要的力量之一就是地震活动,它可能导致地震和其他地质事件。为了理解和监测这些现象,科学家们依赖于各种工具,其中seismographic 地震图的仪器发挥着至关重要的作用。这些设备旨在检测和记录由地震波引起的地球振动,提供有价值的数据,帮助预测和减轻地震的影响。 地震仪通过测量地震期间的地面运动来工作。当地震波穿过地球时,它们会导致地面震动。seismographic 地震图的仪器由悬挂在弹簧上的质量组成,当地面移动时它保持静止。这种质量与地面之间的相对运动被记录下来,形成一条表示地震事件强度和持续时间的轨迹。从seismographic 地震图的读数中收集的数据可以分析,以确定地震的震级、深度和位置。 seismographic 地震图的技术的重要性不容小觑。在地震频发的地区,如加利福尼亚或日本,这些仪器对于早期预警系统至关重要。通过检测地震的初始、较不具破坏性的波动,seismographic 地震图的网络能够在更具破坏性的波到达之前几秒钟警告人们,从而潜在地拯救生命并减少伤害。此外,这项技术还帮助研究构造板块运动,帮助地质学家理解导致地震事件的基本过程。 除了在地震监测中的应用外,seismographic 地震图的仪器还被广泛应用于工程和建筑等领域。在建造大型结构之前,工程师通常使用seismographic 地震图的数据进行地震调查,以评估地面的稳定性和地震活动的潜在性。这些信息对于设计能够承受地震的建筑物至关重要,确保居住者的安全。 seismographic 地震图的技术的演变是显著的。从19世纪开发的早期地震仪到今天复杂的数字系统,进步大大提高了我们检测和分析地震活动的能力。现代seismographic 地震图的网络通常是互联的,允许实时数据共享和跨广阔地理区域的分析。这种合作增强了我们对全球地震模式的理解,并改善了我们对未来地震的准备。 总之,seismographic 地震图的仪器在监测和理解地震活动中的作用是不可或缺的。它们提供关键数据的能力不仅有助于预测和应对地震,还促进了更安全的工程实践。随着技术的不断进步,从seismographic 地震图的研究中获得的见解无疑将增强我们对地震事件的应对能力,最终保护世界各地脆弱地区的生命和财产。
文章标题:seismographic的意思是什么
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