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Zhuque-3 Y2 landmark recovery test marks China’s dual-track reusable rocket development, aerospace experts say_我的网站

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A rocket that once would have been discarded after completing its mission has now taken a different path - returning from the edge of space back to Earth. In the early hours on Wednesday, the Zhuque-3 Y2 reusable launch vehicle lifted off for a flight test, carrying not only a satellite payload but also a major test of China's emerging reusable rocket capabilities. After completing its orbital mission, the rocket's first stage attempted a controlled return and recovery, with its developers Beijing-based private firm LandSpace describing the mission as a key transition from technology verification toward engineering application for China's commercial aerospace industry.
About 137 seconds after liftoff, the rocket’s first and second stages separated. The second stage continued its flight and successfully placed the Honghu-03 satellite, independently developed by Hongqing Technology, into its designated orbit. And at around 7:43 am, the rocket’s first stage successfully made a soft landing as planned at the Zhuque-3 landing site in Minqin county, Northwest China’s Gansu Province, marking the successful completion of the flight test mission.
This mission marked China's first-ever recovery of a launch vehicle's first stage using landing legs, as well as the country's first land-based recovery of the first stage of an orbital-class launch vehicle, the developer highlighted.
The achievement came shortly after China's Long March-10B reusable rocket successfully completed its maiden flight and a sea-based recovery test on July 10, marking a wave of breakthroughs in reusable launch technology. The parallel progress of state-owned and private aerospace players through different technical approaches is creating a dual-track development landscape for China's future low-cost and high-frequency space transportation, some aerospace experts told the Global Times.

Unlike traditional expendable rockets, which are discarded after a single mission, reusable launch vehicles are designed around an entirely different concept: a rocket should not only complete a launch, but also return safely and be prepared for future missions.
According to LandSpace, for conventional expendable liquid launch vehicles, the rocket itself represents the majority of launch costs, while fuel expenses generally account for only 1-3 percent. The first stage typically makes up about 70 percent of the total rocket cost. As a result, repeated reuse of rockets - particularly the first stage - can significantly lower launch costs by amortizing the cost of the vehicle over multiple missions. For partially reusable rockets that reuse the first stage while discarding the second stage, the cost advantage becomes increasingly evident as the number of reuse cycles grows.
The Zhuque-3 is a reusable liquid oxygen-methane launch vehicle independently developed by Beijing-based private aerospace firm LandSpace for future large satellite constellation deployment missions, according to the company's statement.
The rocket adopts a two-stage configuration, with a diameter of 4.5 meters, a total length of 66.1 meters and a liftoff mass of about 570 tons. Its first stage is equipped with nine Tianque-12A liquid oxygen-methane engines, as well as recovery systems including grid fins, attitude control systems and landing legs, enabling autonomous return and soft landing after orbital missions, LandSpace said.
The Y2 mission was conducted on the basis of experience accumulated from the previous flight test, with improvements focused on recovery reliability, flight control and engine performance.
LandSpace said it optimized the first-stage landing propulsion scheme by reducing the number of engines used during landing ignition, simplifying system design and improving reliability during the recovery phase. The company also added an autonomous safety control function capable of predicting landing points based on flight conditions and making corresponding safety adjustments.
The mission also further verified key technologies including the use of stainless-steel rocket structures, liquid oxygen-methane propulsion and landing-leg recovery systems.
According to LandSpace, stainless steel provides advantages in manufacturing cost, processing efficiency, high- and low-temperature performance and post-recovery maintenance, making it suitable for reusable rocket development.

The significance of Zhuque-3 Y2 extends beyond one flight test, as it reflects China's broader effort to develop reusable launch systems through multiple technological routes, according to Chinese experts.
Kang Guohua, a senior member of the Chinese Society of Astronautics and a professor of aerospace engineering at Nanjing University of Aeronautics and Astronautics, told the Global Times that China has become the second country after the US to develop orbital-class rocket recovery capabilities.
The US currently leads reusable rocket development, with SpaceX and Blue Origin advancing different recovery technologies. China, meanwhile, has seen both state-owned aerospace programs and private companies explore different technical pathways, creating a diversified development pattern, Kang said.
According to Kang, the parallel development of different approaches demonstrates the advantages of combining national strategic capabilities with market-driven innovation.
Pang Zhihao, a prominent Chinese space exploration expert and retired researcher from the China Academy of Spacecraft Technology, told the Global Times that the successful recovery of Zhuque-3 would carry special significance for China's private aerospace sector.
A landing-leg recovery approach would mean that private aerospace companies have completed the full process of developing a large-capacity reusable rocket system, validating key technologies including stainless-steel structures, multi-engine propulsion and recovery systems, Pang said.
More to expect
LandSpace said the first stage represents a significant share of the total cost of a liquid launch vehicle. Through repeated reuse, the cost of each launch can be gradually reduced, while production cycles can be shortened and launch frequency increased.
Such capabilities are becoming increasingly important as countries and companies accelerate the deployment of large low Earth orbit satellite constellations, it added.
The Zhuque-3 has demonstrated the ability to support various commercial missions, including satellite constellation deployment, single satellite launches and rideshare missions, according to LandSpace.
The company said the rocket has achieved a maximum orbital payload capacity of 14.2 tons in expendable mode, while its reusable configuration is designed to support future constellation deployment needs.
The Y2 mission also carried the Honghu-03 satellite developed by Hongqing Technology, combining reusable technology verification with a commercial launch application scenario. LandSpace said the mission verified the full chain of "design, manufacturing, testing, launch and recovery," laying the foundation for future commercial operations.
The Zhuque-3 Y2 test comes as China's aerospace industry accelerates efforts to develop reusable launch vehicles.
According to Chinese experts, multiple companies are now exploring different recovery technologies, including vertical landing and other innovative approaches, reflecting the rapid growth of China's commercial aerospace ecosystem.
Reusable liquid launch vehicle, Pallas-1 will begin its mission from Galactic Energy's independently built facility at the Dongfeng Commercial Aerospace Innovation Test Zone in northwestern China, where the company will soon complete testing, propellant filling and launch preparation operations, according to its developer Galactic Energy on Thursday.
Orienspace's Gravity-2 reusable large liquid launch vehicle is undergoing final ground testing ahead of its maiden flight, which is scheduled in the fourth quarter of 2026. The rocket is designed with a low Earth orbit payload capacity of 21.5 tons.
Space Pioneer is advancing verification and joint testing of its Yuanxingzhe-1 (YXZ-1) rocket, while i-Space's Hyperbola-3 reusable rocket has completed full-cycle ground verification of offshore recovery and landing technologies and is expected to conduct its maiden flight around the end of 2026.
Meanwhile, CAS Space's reusable Lihong-2 vehicle is being developed as a platform for verifying key recovery and reuse technologies, as well as conducting microgravity experiments. The vehicle is scheduled to complete its maiden flight and 100-kilometer-class recovery verification test in 2026.
Pang said reusable rocket technology could help lower launch costs, increase mission frequency and provide stronger support for emerging sectors such as satellite internet, space-based information networks and future large-scale space applications.
For China's private space sector, the Zhuque-3 Y2 mission represents a transition from technology verification toward engineering application, according to LandSpace. The company said it aims to further build a "launch-recovery-inspection-reuse" cycle to support future high-frequency and low-cost commercial operations.
Experts said reusable rocket technology could help reduce launch costs, increase launch frequency and provide stronger support for emerging sectors such as satellite internet and large-scale space applications.
The future challenge for China's reusable rocket developers will be turning successful flight tests into repeatable commercial operations, as the country advances toward a new era of high-frequency space transportation, they noted.

。 8月26日,记者从国家电网有限公司(以下简称“国家电网”)获悉,该公司已制定出台助力国家“十五五”碳达峰目标实现的若干举措,围绕能源电力结构转型、清洁能源优化配置、重点领域节能降碳等7个方面,提出20项具体措施。其中,“十五五”期间经营区年均新增新能源装机2亿千瓦左右、新投产跨区直流15回、新增新型储能装机1.4亿千瓦等硬指标,勾勒出一幅清晰的碳达峰“施工图”。特高压、新型储能、新能源等产业链有望迎来密集投资窗口期。 看点1 年均新增2亿千瓦:新能源装机持续扩容 作为碳达峰的“主力军”,新能源装机的规模与节奏始终是市场关注的焦点。

二 | 此次举措明确,“十五五”期间国家电网经营区年均新增新能源装机2亿千瓦左右。这意味着,五年间累计新增新能源装机规模有望达到10亿千瓦量级,继续保持全球最大规模增长态势。 在并网保障方面,国家电网提出全力保障沙戈荒大基地、分布式、海上风电等新能源“应并尽并”,并滚动开展新能源消纳能力测算,服务地方主管部门优化新能源发展规模、布局和时序,合理设置利用率目标。同时,支持存量水电站增容改造和设备更新,推动核电和灵活调峰气电有序发展。 从发电量看,到2030年,国家电网经营区新能源发电量占比将达到30%以上,较当前水平显著提升。这意味着新能源在电力供应中的“话语权”将进一步增强,对电网调节能力和系统灵活性提出了更高要求。 看点2 15回跨区直流、5亿千瓦:特高压建设按下“快进键” 在新能源大规模并网的背景下,特高压作为“电力高速公路”的战略价值愈发凸显。此次举措中,特高压建设被置于“打造清洁能源优化配置平台”的核心位置。 国家电网明确,“十五五”期间新投产跨区直流15回,跨省区输电能力达到5亿千瓦。同时,推进华中—南方、华中—华东等省间电力互济工程建设,跨区灵活互济能力较“十四五”末扩大两倍以上。

三 | 在区域主网架方面,华北、华东、华中和西南特高压交流电网规模将翻一番,西北、东北省间联络整体加强。这意味着特高压交直流建设将进入新一轮高峰期,相关设备制造、工程建设、材料供应等环节有望持续受益。 值得关注的是,特高压建设不仅服务于“西电东送”等传统跨区输电需求,更将成为沙戈荒大基地全绿电外送、海上风电汇集送出等新场景的关键支撑。国家电网在科技创新部分明确将突破沙戈荒全绿电外送等关键技术,显示特高压技术升级与工程建设将同步推进。 看点3 1.4亿千瓦新型储能:储能建设迎来规模化发展期 储能是新能源大规模消纳的关键“调节器”。此次举措对抽水蓄能和新型储能均设定了明确的量化目标。 在抽水蓄能方面,国家电网将加快新疆哈密、吉林安图等一批抽蓄电站建设和前期工作。“十五五”期间,公司新投产、新开工抽蓄均超过3000万千瓦,力争2030年在运在建抽蓄规模超1.2亿千瓦。这一目标意味着抽蓄建设节奏将明显加快,未来五年有望迎来新一轮核准和开工高峰。

四 | 在新型储能方面,“十五五”期间国家电网经营区新增新型储能装机1.4亿千瓦。从当前发展态势看,新型储能(包括电化学储能、压缩空气储能等)正从示范应用向规模化商用加速过渡。随着成本下降和政策完善,新型储能有望成为增长最快的储能细分赛道。 此外,国家电网还将加强新能源场站和储能调度运行,加快虚拟电厂建设,提升负荷资源需求响应能力,强化源荷高效互动。这些举措将共同构建起“源网荷储”协同的灵活调节体系,为新能源大规模并网提供系统支撑。 看点4 算电协同、电能替代同向发力:终端侧多措并举 在能源转型的“终端侧”,国家电网也在多点布局。算电协同是此次举措的一大亮点。国家电网提出推动新能源基地与算力设施协同布局,推进算力跨区域跨时段低碳调度,加强算电协同线上服务专区建设,支撑新建算力设施主要使用非化石能源电力。同时,积极服务零碳园区、零碳工厂等建设,支撑经营区首批国家级零碳园区及后续试点按期建成。 在电能替代方面,国家电网将推广电锅炉、电窑炉、电炉冶炼等技术在工业领域的应用,推进建筑光伏一体化,优化私人乘用车充电报装接电服务,推进公共充电设施焕新升级,支撑农村地区充电服务网络延伸。同时,积极对接零碳运输走廊规划布局,服务兆瓦级充电设施建设,支撑新能源重卡规模化应用。

五 | 到2030年,电能占终端能源消费比重将达到35%。 看点5 市场机制与科技创新双轮驱动 在市场机制层面,国家电网将有序推动气、水、核等电源参与市场,推广沙戈荒大基地“联营不联运”模式,加大跨省区电力交易力度,常态化开展跨经营区交易。在绿电绿证市场方面,优化多年期绿电交易机制,推广小时级绿电交易,到2030年经营区绿电绿证交易规模达到8000亿千瓦时。同时,配合完善分时电价,推动扩大峰谷电价差,以价格信号引导清洁能源消纳与系统调节。 在科技创新层面,国家电网将加强与发电企业、装备企业、科研机构协同攻关,突破沙戈荒全绿电外送、海上风电汇集送出、新能源精准预测主动支撑等关键技术,加快长时储能等研发应用。

六 | 构建数字孪生电网,深入实施“人工智能+”专项行动。同时,加快研制电力碳排放核算、产品碳足迹评价等领域标准,推动特高压、新能源并网、智能电表等领域产品、技术、服务一体化“走出去”。 在公司自身绿色低碳发展方面,国家电网明确“十五五”碳排放强度降低超过18%,推进办公生产外购电100%绿色电力消费,建设一批零碳变电站。同时,深化绿色供应链建设,强化电工装备典型设施产品碳足迹核算和绿色采购应用。

七 | 业内分析人士指出,国家电网此次出台的20项举措,从“源—网—荷—储—市—碳—技”全链条发力,为“十五五”碳达峰提供了系统性“施工图”。其中,特高压建设提速、新型储能规模化、新能源装机持续扩容三大方向,不仅是实现碳达峰目标的“硬支撑”,也为电力设备、储能、新能源等产业链上市公司带来明确的中长期增长预期。

八 | 随着相关项目陆续落地,资本市场有望迎来持续的主题催化与业绩兑现。

九 |
(文章来源:上海证券报)。

十 |
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