uninsulated
简明释义
英[ʌnˈɪnsjuleɪtɪd]美[ʌnˈɪnsəleɪtɪd]
adj. [电] 未绝缘的;未保温的,不保温的
英英释义
没有任何保护性覆盖或绝缘层的。 |
单词用法
未绝缘的管道 | |
未绝缘的电气系统 | |
未绝缘区域 | |
未绝缘表面 |
同义词
反义词
绝缘的 | 绝缘电线可以防止电击。 | ||
受保护的 | The insulated walls help to maintain the temperature inside the house. | 绝缘墙有助于保持房屋内部的温度。 |
例句
1.If an uninsulated tank is filled with steam, the condensing rate due to ambient cooling may exceed the venting rates specified in this standard.
如果向一个非绝缘的储罐内通入蒸汽,在该标准中由环境造成的冷凝率可能超过了指定的排泄率。
2.Enclose and protect all uninsulated conductors.
密封并保护所有未绝缘的导体。
3.Never allow any unprotected part of the body to come in contact with uninsulated pipes or equipment containing cryogenic product.
禁止身体任何没有得到保护的部分接触不隔热管道或装有低温产品的设备。
4.Never allow any unprotected part of your body to touch uninsulated pipes or vessels containing cryogenic liquids.
禁止允许你的身体的任何未受到保护的部分接触不隔热的装有低温液体的管道或容器。
5.Uninsulated used for supply, return, exhaust, and any other application where an uninsulated flexible air connector is needed.
该产品主要用于供应,回收,废气,以及任何其他需要非绝缘软管的应用。
6.Never allow any unprotected part of the body to come in contact with uninsulated pipes or equipment that contains cryogenic product.
禁止身体任何没有得到保护的部分接触不隔热管道或装有低温产品的设备。
7.If an uninsulated tank is filled with steam, the condensing rate due to ambient cooling may exceed the venting rates specified in this standard.
如果向一个非绝缘的储罐内通入蒸汽,在该标准中由环境造成的冷凝率可能超过了指定的排泄率。
8.Living in an uninsulated attic can be uncomfortable during extreme weather.
在一个未绝缘的阁楼里生活,在极端天气下会很不舒服。
9.The pipes in the basement were uninsulated, causing them to freeze during the cold snap.
地下室的管道是未绝缘的,导致它们在寒潮中结冰。
10.An uninsulated garage can lead to temperature fluctuations that affect stored items.
一个未绝缘的车库可能导致温度波动,从而影响存放的物品。
11.We decided to renovate the house to replace the uninsulated walls with energy-efficient materials.
我们决定翻新房子,将未绝缘的墙壁更换为节能材料。
12.The old building had many areas that were uninsulated, leading to high heating costs in winter.
这座老建筑有许多区域是未绝缘的,导致冬天取暖费用高昂。
作文
In today's world, energy efficiency is more important than ever. One of the significant challenges we face in achieving this efficiency lies in the construction and maintenance of our buildings. Many homes and offices are plagued by issues related to heat loss or gain, primarily due to poor insulation. This leads us to consider the term uninsulated, which refers to structures that lack adequate insulating materials to regulate temperature effectively. An uninsulated building can result in increased energy consumption and higher utility bills, as heating and cooling systems must work harder to maintain comfortable indoor conditions.To illustrate the impact of uninsulated spaces, let's take a closer look at an average family home. Imagine a house built several decades ago, with little attention paid to modern insulation standards. The walls may be uninsulated, allowing cold air to seep in during winter and warm air to escape in summer. As a result, the family living in this house experiences fluctuating temperatures, leading them to crank up the thermostat in winter and blast the air conditioning in summer. This not only creates discomfort but also significantly increases their energy bills.Moreover, the consequences of living in an uninsulated environment extend beyond financial implications. Poor insulation can contribute to health issues as well. For instance, cold drafts can lead to respiratory problems, especially for vulnerable populations such as the elderly or young children. Additionally, moisture can accumulate in uninsulated areas, creating an ideal environment for mold and mildew growth, which poses further health risks.On a broader scale, the prevalence of uninsulated buildings contributes to environmental concerns. Increased energy consumption leads to higher carbon emissions, exacerbating climate change. By improving insulation in our homes and offices, we can reduce our carbon footprint and make a significant positive impact on the environment. This is why many governments and organizations are promoting initiatives aimed at retrofitting uninsulated buildings with modern insulation materials.Fortunately, there are various solutions available for addressing the challenges posed by uninsulated structures. Homeowners can consider options such as adding insulation to walls, attics, and basements, which can dramatically improve energy efficiency. Furthermore, using energy-efficient windows and doors can help seal off uninsulated areas where drafts may enter. These investments not only enhance comfort but also offer long-term savings on energy costs.In conclusion, understanding the implications of uninsulated buildings is crucial for anyone looking to improve their living or working conditions. By recognizing the importance of proper insulation, we can create healthier, more comfortable environments while also contributing to a more sustainable future. Whether through personal action or community initiatives, addressing the issue of uninsulated spaces is a step toward a better quality of life for all.
在当今世界,能源效率比以往任何时候都更为重要。我们在实现这一效率方面面临的一个重大挑战在于建筑物的建设和维护。许多住宅和办公室都受到热量损失或增益的问题困扰,这主要是由于隔热不良。这使我们考虑到“uninsulated”这个词,它指的是缺乏足够绝缘材料以有效调节温度的结构。uninsulated建筑会导致能源消耗增加和更高的公用事业账单,因为供暖和制冷系统必须更加努力地维持舒适的室内条件。为了说明uninsulated空间的影响,让我们更仔细地看看一座普通家庭住宅。想象一下,一座建于几十年前的房子,几乎没有关注现代隔热标准。墙壁可能是uninsulated的,允许寒冷的空气在冬季渗入,夏季温暖的空气逃逸。因此,住在这座房子里的家庭经历着温度波动,导致他们在冬季提高恒温器的设置,在夏季开启空调。这不仅造成了不适,还显著增加了他们的能源账单。此外,生活在uninsulated环境中的后果还超出了财务影响。隔热不良可能会导致健康问题。例如,寒冷的气流可能导致呼吸系统问题,尤其是对老年人或幼儿等脆弱人群。此外,湿气可能在uninsulated区域积聚,创造出霉菌和霉味生长的理想环境,这进一步构成健康风险。在更广泛的范围内,uninsulated建筑物的普遍存在助长了环境问题。能源消耗的增加导致碳排放增加,加剧了气候变化。因此,通过改善我们家庭和办公室的隔热,我们可以减少碳足迹,并对环境产生显著的积极影响。这就是为什么许多政府和组织正在推动旨在为uninsulated建筑物进行现代绝缘材料改造的倡议。幸运的是,有多种解决方案可用于解决uninsulated结构所带来的挑战。房主可以考虑在墙壁、阁楼和地下室添加隔热材料,这可以显著提高能源效率。此外,使用节能窗户和门可以帮助封闭可能进入的uninsulated区域的气流。这些投资不仅增强了舒适度,还在长期内节省了能源成本。总之,理解uninsulated建筑物的影响对于任何希望改善其居住或工作条件的人来说都是至关重要的。通过认识到适当隔热的重要性,我们可以创造出更健康、更舒适的环境,同时也为可持续的未来做出贡献。无论是通过个人行动还是社区倡议,解决uninsulated空间的问题都是改善所有人生活质量的一步。