Inertial Confinement Fusion Driven Thermonuclear Energy by Bahman Zohuri

Inertial Confinement Fusion Driven Thermonuclear Energy by Bahman Zohuri

Author:Bahman Zohuri
Language: eng
Format: epub
Publisher: Springer International Publishing, Cham


(Eq. 3.46)

(i.e., in case, of ICF, r can be denoted as radius of pellet compression).

In Eq. 3.46, m i is presentation of mean ionic mass, and the inertial confinement time τ can thus be approximated as

(Eq. 3.47)

Multiplying both sides of Eq. 3.47 by particle density n and substituting Eq. 3.43, then we produce the following result:

(Eq. 3.48)

The product must be greater than a value related to the minimum of T 3/2/〈συ〉. The same requirements are traditionally expressed in terms of mass density ρ = 〈nm i〉, thus we can write



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