| 000 | 01397nam a2200121Ia 4500 | ||
|---|---|---|---|
| 008 | 231221s9999 xx 000 0 und d | ||
| 041 | _aEnglish | ||
| 100 | _aDinakar Aradhya, R. | ||
| 245 | 2 |
_aA typical helicopter cabin heat load estimation methodology and analysis of aircraft cabin pressure control system _bKrishna, V. |
|
| 260 |
_cJan - May 2019 _bPES University _aBengaluru |
||
| 510 | _aHelicopters are an essential part of both civil and military activities. In the future, it is expected that a significant increase in the use of this mode of transportation widely. There is a need to maintain the cabin in a good and safe condition so that the passengers and the crew inside the cabin feel comfortable. For a cabin to be maintained in comfort conditions, an efficient environmental control system is to be adapted and in case of an aircraft, cabin pressure control system (CPCS) is needed to depressurize the cabin and maintain constant cabin pressure. Helicopter heat loads are challenging because of their design i.e., more transparent surfaces, heat from the engine (generally mounted on the ceiling) and infiltration effect. Heat load on the cabin must be mitigated through an efficient air cycle system. In this project, helicopter cabin heat load values and mass flow of air required at different altitudes are determined and a heat exchanger for an environmental con | ||
| 942 | _cCD | ||
| 999 |
_c237172 _d237172 |
||