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“42岁”河北体育馆,开启焕新路_我的网站

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A |     8月18日,体育馆改造提升项目启动,这个承载着几代石家庄人记忆的地标建筑,将开启焕新之路。    

People watch a Smart Dragon-3 carrier rocket, carrying Oriental Smart Eye hyperspectral satellites 01 and 02, blasting off from the sea near the city of Haiyang, east China's Shandong Province, Aug. 5, 2026.  (Photo by Tang Ke/Xinhua)
    People watch a Smart Dragon-3 carrier rocket, carrying Oriental Smart Eye hyperspectral satellites 01 and 02, blasting off from the sea near the city of Haiyang, east China's Shandong Province, Aug. 5, 2026. (Photo by Tang Ke/Xinhua)
A burst of flame lit the morning sky over waters off Haiyang in east China's Shandong Province on Wednesday as a Smart Dragon-3 (SD-3) carrier rocket lifted off, drawing cheers from viewing sites along the coast.
Among the spectators were international students studying aerospace subjects in China. Aithana Perez, a Venezuelan aeronautical engineer studying space project management at Hangzhou Innovation Institute of Beihang University, said she and her classmates were excited because their studies involved spacecraft launch, design and operation.
For Marwane Oufrid, a 23-year-old Moroccan student in the same institute specializing in microsatellite technology, it was the first time he had watched a rocket launch in person.
The rocket blasted off at 10:38 a.m. (Beijing Time), delivering the Oriental Smart Eye hyperspectral satellites 01 and 02 into planned orbit.
In their respective cooperation projects with Indonesia and Uzbekistan, Satellite 01 is also known as Lampung-1 and Satellite 02 as Samarkand-2028.
Once in orbit, the satellites turned their attention back toward Earth. Lampung-1 is expected to monitor crop growth and disaster risks in Indonesia, while Samarkand-2028 is designed to support cotton cultivation and other land-monitoring applications in Uzbekistan.
Ordinary optical cameras mainly record the shape and color of objects. Hyperspectral imagers record a detailed spectrum for each image pixel, creating "spectral fingerprints" that can help determine the condition and composition of vegetation, water, soil and minerals.
These spectral "eyes" are paired with onboard AI computing modules capable of delivering up to 400 trillion operations per second. Instead of sending every raw image to the ground, the satellites can identify features, detect anomalies and extract useful information in orbit, potentially shortening delivery time from days to minutes.
Song Bingchen, co-founder of the Star.ai Spatio-temporal Intelligence Technology Co., Ltd., whose subsidiary STAR.VISION developed the satellites, compared the system to moving an AI inference platform from the ground into space.
"It changes the traditional model from transmitting images to transmitting results," Song said.
"Our satellite constellations are open to the world," Song noted, adding that the company welcomes international partners to jointly invest in, build and use the satellite networks.
In Indonesia, Lampung-1's planned applications are centered in Lampung Province on the island of Sumatra. Agriculture, forestry and fisheries accounted for 28.38 percent of the provincial economy in the third quarter of 2025. The satellite will also support marine resource management, environmental monitoring and disaster response.
Rahmat Mirzani Djausal, governor of Indonesia's Lampung Province, described the successful launch as a "historic moment" for the province.
"Cooperation with China on this satellite project is of historic and strategic significance," he said. "It marks the beginning of Lampung's transformation into a technologically advanced province."
The governor commended China's openness in sharing space technology and its commitment to long-term cooperation.
"China understands that any problems we face on one side of the world will ultimately impact the other side. Therefore, it is essential to empower regions that are left behind to make the world ultimately a better place," he said.
This cooperation also extends to people. Lampung is preparing to send over 100 young professionals to China for training in remote sensing and satellite communications, with the goal of building local capacity in satellite operation, data processing and spatial analysis.
In Uzbekistan, the applications center on cotton, grain and vegetation monitoring. Samarkand-2028 is designed to follow cotton cultivation from sowing to harvesting, while Uzbekcosmos has said hyperspectral data will also be used to produce national cotton and wheat maps.
Mukhiddin Ibragimov, deputy director of the Uzbekcosmos Agency, described the project as one of the largest international space projects in Uzbekistan's history and a milestone in its national space program.
He called the launch "a great occasion," saying it was the first time Uzbekistan had participated in an international space mission of such scale.
Ibragimov said Uzbekistan sent a technical team to China early in the project and formed a working group with Chinese specialists to develop an AI model for onboard data analysis. This model focuses on crop classification, including cotton verification, grain identification and vegetation monitoring.
The resulting data will support agriculture, water resource management, environmental protection and emergency monitoring, among other applications, he revealed.
Ibragimov said no single country can handle all space-related tasks alone.
"We believe that partnership brings value. We see that China is doing the same thing," he said, adding that Uzbekistan is exploring further satellite cooperation with China.
The projects offer a commercial example of the approach set out in China's 2021 space white paper, which called for international cooperation based on equality, mutual benefit, peaceful utilization and inclusive development.
Back in Haiyang, Oufrid said projects of this kind could give more countries an opportunity to participate in the space sector. He expressed the hope to see such cooperation happen more often and "maybe someday with Morocco as well."
。看见馆外的公告牌,路过的62岁石家庄市民刘建忠停住了脚步,拿出手机拍照留念。“年轻的时候就在这儿锻炼,太熟悉了。我怕改完认不出原来的样子,得先留个影。公告牌前,像刘建忠这样驻足留影的,不在少数。大家舍不得这口“老”味道,可“42岁”的老馆,早已跟不上群众健身的热乎劲儿——首先是“老”。主馆钢网架锈蚀、管线老化,部分设施已难以适应高强度的使用需求。其次是“小”。原有车位约百个,赶上晚高峰和周末健身扎堆,院内一位难求。再就是“挤”。羽毛球、乒乓球等热门场地常年预约爆满,想打场球,得蹲守零点拼手速抢票。“群众反映最集中的就是这三件事。

B | ”体育馆副馆长韩士磊说,“体育馆热门场地小程序一放票就秒空,这不是小修小补能解决的,必须动大手术。”体育馆动大手术,是否意味着要在拆和留之间做一道不二的选择题?一座城市地标建筑往往承载着许多城市文化记忆,拆了重建固然省事,但文化记忆难再。于体育馆而言,它承载着很多石家庄人“第一次”,这座1984年落成的省会首座万人体育馆,曾承接第二届世界武术锦标赛、WCBA联赛等高等级体育赛事,也留下过李宗盛、蔡琴、梁静茹等演唱会的动人回声,因此改造提升成为必选之项,而这意味着要在原有建筑上进行精细作业。

C | 主馆钢网架体量大、受力复杂,原有结构状况存在不确定性;外立面的壁画等历史元素,必须在施工中同步保护。“既要完成结构加固和功能升级,也要在更新外立面中留住老馆的辨识度。”施工方、中国建筑第三工程局有限公司项目执行经理郭旭涛说,新馆按被动式超低能耗建筑标准建设,主馆应用光伏、导光管等绿色技术,搭建智慧服务、智慧安防、智慧管理等平台。

D | “更难的是,老馆身在闹市。”郭旭涛介绍,通过噪声控制时段、扬尘封闭管理、交通人车分流,尽量让施工期间少惊扰周边居民生活。老馆改造再复杂,最终目的是服务群众健身。“改造后,主馆可开展篮球、羽毛球等多项室内运动,新馆则配建8道标准泳池。

E | ”韩士磊说,主馆中心场地由1262.6平方米拓展至2090平方米,具备承办全国单项赛事能力;西侧新建综合运动馆建筑面积34167平方米,地下增设400个停车位,是原有车位的4倍,同步配建母婴室、无障碍通道及适老化设施。八百天后,这座承载着城市记忆的地标将焕然一新。“等新馆建成了,也不用定闹钟抢票了。

F | ”端详着手机里未来新馆的照片,刘建忠很是满意。

G | 而常来打网球的张宇刚则告诉记者,那时候,他下班打球再也不怕停车难了。(日报见习记者 梁 潇)。

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