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For Datacenters, is it SMR? MMR?

$NANO Nuclear Energy (NNE.US)$ However, after seeing the news that Lear has acquired Micro Modular Reactor (MMR) and Pylon Technologies, along with all related patents, through a Chapter 11 bankruptcy auction, I think it will still take some time to materialize, but I have considered the future development of SMR and MMR.
In urban areas where data centers are becoming larger and the demand for energy is increasing rapidly,SMRThe likelihood of its introduction is high. SMR is suitable for meeting the electrical utilities demand of large-scale data centers for cloud providers and enterprises due to its output scale and scalability. On the other hand, in remote areas where infrastructure is undeveloped, installation is easy and fuel replacement frequency is low.MMR is easy to install and has a low frequency of fuel replacement.There is a high possibility of being introduced.
Therefore, as a future development,
1. SMR installation in urban areascovering the energy demand of datacenters in advance.
2. Afterwards, to rural and remote areasdeploy MMRand promote the decentralization of energy supply.
We envisaged this trend.
Below, we compare SMR and MMR from the perspective of Datacenters and organize the reasons for that.
1. Output scale
SMR: 10-300MW
→ Suitable for medium to large-scale data centers. It can meet high demand for electrical utilities.
MMR is easy to install and has a low frequency of fuel replacement.: 1-10MW
For small-scale or remote Datacenters. Suitable for low Electrical Utilities demand.
2. Installation Location
SMR: Suitable for urban areas or regions with existing infrastructure.
MMR is easy to install and has a low frequency of fuel replacement.: Suitable for remote areas, polar regions, and other places with poor infrastructure.
3. Electrical Utilities Stability
SMR: Able to handle high loads, enabling stable electrical power supply.
MMR is easy to install and has a low frequency of fuel replacement.: Providing sufficient electrical stability for small-scale data centers.
4. Scalability
SMR: 需要に応じてモジュールを追加することで、発電能力を拡張可能。
MMR is easy to install and has a low frequency of fuel replacement.: スケーラビリティは限定的。需要増加時に対応が難しい。
5. 燃料交換頻度
SMR: 数年ごとに燃料交換が必要。
MMR is easy to install and has a low frequency of fuel replacement.: 10年以上の長期間運転が可能で、燃料交換の頻度が低い。
6. 設置と運用の容易さ
SMR: モジュール化設計で設置は比較的効率的だが、大型施設に適する。
MMR is easy to install and has a low frequency of fuel replacement.: 輸送可能な一体型設計で、設置が簡単。遠隔地でも運用可能。
7. 利用コスト
SMR: 初期コストは高めだが、大規模運用でコスト効率が向上。
MMR is easy to install and has a low frequency of fuel replacement.The initial cost may be relatively low, but the cost per unit output can be high at times.
8. Usage
SMRFor cloud providers and enterprises, suitable for large-scale datacenters.
MMR is easy to install and has a low frequency of fuel replacement.Suitable for decentralized, small-scale data centers and special purposes (military bases, polar facilities).
9. Flexibility of Energy
SMRPossible supply of electricity to regions other than data centers and industrial process applications.
MMR is easy to install and has a low frequency of fuel replacement.Specialized in small-scale and localized applications mainly.
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