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Forge: Thermoelectric Cookstove

机译:伪造:热电炊具

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摘要

Our interdisciplinary team, known as Forge, has built a cookstove that not only can be a portable cookstove, but also includes a port to charge devices such as a phone using thermoelectrics. The product has been designed for developing areas in Nicaragua where power is inaccessible and a multi-purpose cookstove/phone charger could be of use. The cookstove features a cylindrical combustion chamber that can be used for gasification. Gasification is a burning process where smoke from the fire is also burned, creating higher temperatures and a cleaner burn. The combustion chamber is insulated using refractory cement, which will drop the temperature from about 700 Celsius inside the chamber to 200 Celsius outside the chamber. The cookstove outputs heat at a rate of 4.6-6.6 kW. The cookstove has thermoelectric modules attached to the outside, which, by utilizing the Seebeck effect, convert excess heat into electrical energy. Ideally, the energy would be transferred into the phone at 5 volts and 0.5-0.6 amps and some of the electrical energy would be used to power a cooling fan to help the stove function properly. The final temperatures that were recorded ranged from around 400ºC to 700ºC in the combustion chamber and around 500ºC for the cooking surface. Gasification was successfully occurring during this stage, and the smoke was being visibly burned off. The electrical output was less successful, resulting with only around 0.08 V coming out of the thermoelectric generators due to the lack of air flow within the electrical housing and poor electrical connection. The stove does achieve its primary functionality of being more than capable of boiling water, something that presently available cookstoves in Nicaragua cannot do consistently.
机译:我们的跨学科团队Forge建立了一个炊具,它不仅可以是便携式炊具,还包括一个端口,可以使用热电为电话等设备充电。该产品专为尼加拉瓜的发展中地区而设计,该地区无法接通电源,可以使用多用途炉灶/电话充电器。炉灶具有可用于气化的圆柱形燃烧室。气化是一个燃烧过程,在燃烧过程中,还燃烧了火中的烟气,从而产生了更高的温度和更清洁的燃烧。燃烧室使用耐火水泥绝缘,这将使温度从燃烧室内部的大约700摄氏度下降到燃烧室外部的200摄氏度。炉灶以4.6-6.6 kW的速度输出热量。炉灶具有连接到外部的热电模块,该热电模块通过利用塞贝克效应将多余的热量转换为电能。理想情况下,能量将以5伏特和0.5-0.6安培的电流转移到手机中,并且一些电能将用于为冷却风扇供电,以帮助炉灶正常工作。记录的最终温度在燃烧室中约为400ºC至700ºC,而烹饪表面约为500ºC。在此阶段成功进行了气化,并且明显燃烧掉了烟雾。电气输出不太成功,由于电气外壳内空气流动不足以及电气连接不良,导致热电发电机仅输出约0.08 V电压。炉子的确实现了其主要功能,即不仅具有开水的功能,而尼加拉瓜目前可用的炉灶无法做到这一点。

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