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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

薛平贵与王宝钏

一 |     Nancy 编译 在计划消减各种财政预算以后,新政府宣布将展开一项新的调查,此次调查的主要范围将涵盖计划中的学校建筑工程,以及学校所面临的不切实际且无法负担的支出问题。

二 |          教育部长Erica Stanford本周表示,一份联合政府的报告揭示了目前新西兰学校财产系统面临严峻挑战和诸多问题。    

    
Photos: Courtesy of Landspace
    Photos: Courtesy of Landspace
    

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.
    
Photos: Courtesy of Landspace
    Photos: Courtesy of LandspaceDesigned to fly again

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.  

Photos: Courtesy of Landspace
    Photos: Courtesy of LandspaceMore than a single rocket's return

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.
Photos: Courtesy of Landspace
    Photos: Courtesy of Landspace

三 |          Advertise with us          她指出,“目前,一些学校的建筑以及维护项目成本已经出现了多次上升,并且这些学校所期待的建筑项目可能将无法付诸行动。”          Stanford提到,“在组建新政府的几周内,教育部已经砍掉了20个建筑项目,并可能取消多达350个项目,因为这些项目从设计到施工,已经超出了预期可实现的支出。”          前总理兼工党领袖Chris Hipkins做出回应,称此举是新政府试图削减学校建设项目的“拙劣“企图”。         Stanford继续说,“很多学校的许多计划已经进行了多年,但这些计划是毫无价值的。

四 | ”          她指出,这对教学和学习造成了干扰,因为一些新项目导致人们对学校的期望提高,最终却因“流程不善”而落空,这是不公平的。         Stanford还提到了一个例子,比如Te Tātoru o Wairau Marlborough schools共同建设的项目,该项目的成本已经连续上升了数年,目前估算高达4.05亿纽币,而在2018年内阁只拨款1.7亿纽币,这样巨大的数字落差很难找到替代资金。         她强调,“新政府明显很有必要对学校财产系统进行审查,以评估当前计划的可持续性和效率,并确保我们能够交付给孩子们应得的学校财产,同时保护纳税人免受进一步低效和浪费的影响。”          政府声明称,目标是让审查者在三个月内提交报告。一名主要审查员和审查团队将会很快被任命。         工党表示,新联合政府需要优先考虑减税,而不是将学校建设作为牺牲品。         Hipkins表示,成本上升并不令人意外,并声称新政府正在寻找一个“借口”来推迟学校课堂升级计划。         他补充说,“这是一次拙劣的企图,试图找借口来削减急需的学校建设项目,而不是优先投资教育。”          最后,他提到工党通过学校投资计划升级了全国每所学校,建造了数千间教室,并随着学生人数增长缓解了学校的升学压力。

五 |          相关阅读:          新西兰政府发布“迷你预算案”!取消这些福利!这类华人迎来利好          新政府废除2条重要政策!          政府宣布,这些福利上涨,明年4月生效!          政府宣布圣诞节前废除公平薪酬协议,全面恢复90天试用期          总理Christopher Luxon公布百天计划!这“49项行动”最为紧迫          新西兰史上首个三党政府诞生!未来三年政策走向如何?          奥克兰市长的十年预算案长达1000页,明年和2026年的地税将涨到令人崩溃          注:本文为编译/原创,欢迎转发分享;但严禁复制等未经授权的非法使用。违反上述声明者,本网将追究其相关法律责任。使用授权请联系[email protected]。         chineseherald.co.nz All Rights Reserved 版权所有          (责编:Nancy)          来源 -          相关内容                新西兰主流新闻网站将关闭,员工自己都不知道这新闻           新西兰人气最高前总理宣布退休,下一站是夏威夷           奥克兰高档电动自行车连环窃案告破,警方还搜出200发子弹           国会紧急立法:撤销毛利卫生局、废除最严禁烟令           又发现一起!前绿党议员被指控第四项入店行窃罪!           开车时使用手机的违规行为剧增,总理表示要重罚           疫情通报:过去一周新西兰新增6084例           奥克兰Mt Albert一人死亡 警方启动凶杀案调查。

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