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In this work, an improved counterflow double-channel micro combustor is designed.
The micro combustor is the key component in the micro thermophotovoltaic (TPV) system.
The micro combustor is a key component of the micro thermophotovoltaic (TPV) system.
Improving the wall temperature of the micro combustor is an effective way to elevate the system efficiency.
As a major component, the design of a micro combustor is very critical when determining the power output of these devices.
Results show that the cavity and the backward-facing step in micro combustor is useful for the heat recirculation and the flame stability.
Similar(49)
It is crucial that the design and performance of a micro combustor are optimized for its application in a micro TPV system.
In addition, the effects of front-cavity size and front-cavity shape on OH mass fraction, flame location and thermal performance of micro combustor are also discussed.
A high and uniform wall temperature on micro combustors is desirable for Micro-TPV system application.
One way of increasing energy output of micro combustors is to optimize its geometry by considering simplicity and easy manufacturability.
In this work, a method for evaluating the effects of various factors on the emitter efficiency of micro combustors is proposed.
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