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A recent estimate of the cost of the first human mission to Mars suggests that it could cost “half a trillion dollars.” This estimate is consistent with most past estimates. A similar cost number can easily be derived using mass-cost estimating factors based on the International Space Station (ISS) and other experience.
- Harry W. Jones
- 2016
The International Thermonuclear Experimental Reactor is the big fusion tokamok being built by France, Russia, the United States, Japan, and others, and the total cost is estimated to be roughly $50 billion dollars, with a total timeline of approximately 20 years, give or take.
NASA uses three different parametric models for the design and development cost of crewed space systems; the commercial PRICE-H space hardware cost model, the NASA-Air Force Cost Model (NAFCOM), and the Advanced Missions Cost Model (AMCM). System mass is an important parameter in all three models.
- Harry W. Jones
- 2015
Extended Missions. Curiosity is currently in its 2nd extended mission. Primary mission: 2 years. Extended missions add to the mission cost (~$50M per year in operations costs), but if a Flagship can still gather science, NASA will almost always fund it.
• Estimate the cost of the spacecraft by analogy method • New Spacecraft = ~200kg will cost $? • Based on historic SMEX missions, average spacecraft mass = ~150 kg and
Feb 25, 2024 · So, let’s use an estimate of what a human mission to Mars is expected to cost – the number ranges from around $100 billion to $500 billion per mission. I imagine it is going to be closer to the $500 billion or more given that the ISS alone cost more around $150 billion.
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Mar 1, 2016 · As can be seen in Fig. 1, the simulation environment consists of four modules: a Habitation module, an ISRU Sizing module, a Sparing module, and a Space Logistics module. The Habitation module uses key mission parameters to calculate the consumables requirement and the sizing of the ECLS hardware.